/ Thermal conductivity: 7.0 W/m*K
/ Fast curing in normal atmospheric temperature
/ Great reliability
/ Great sealing in low pressure
FEATURES
/ Between CPU and heat sink
/ Between a component and heat sink
/ Power supplies
/ High speed mass storage drives
/ Telecommunication hardware
/ Electric vehicle& Automotive battery
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml, 400ml
/ Other special and custom sizes are available upon request
CONFIGURATIONS
Use the disposable plastic static mixing nozzles to mix parts A and B together to the desired ratio.
Liquid gap fillers can be dispensed using an automatic dispensing machine or a manual dispensing
tool that can be provided by LiPOLY upon request/purchase. The disposable plastic static mixing
nozzles cannot be re-used.
DISPENSING INSTRUCTIONS
Two-part liquid gap fillers should be stored in climate-controlled environments at or below 25°C.
Keep liquid gap fillers away from direct sunlight and away from high-temperature environments.
STORAGE
The two-part liquid gap filler may not cure properly if it comes into contact with certain substances,
including amine, sulfur, organophosphorus compounds, and organotin compounds. Please avoid the
following substances when handling: (N, P, S, Sn, Pb, Hg, Sb, Bi, As) Ensure a clean mixing container
is used (e.g.: paper cup or plastic cup) before injecting the A and B parts into the mixing container.
The plasticizer, wax from the cups, varnish or the epoxy from the oven may contaminate the A and B
parts. You are reminded to pre-test the gap filler before using it.
PRECAUTIONS
It can be preserved for 24 months under the condition of unopened and under room temperature 25℃.
PRESERVATION
LiPOLY PK700DM is a two-part liquid gap filler, fast cured at room temperature or elevated temperature. With a thermal conductivity of 7.0 W/m*K, PK700DM provides high thermal conductivity and
low thermal impedance. It is ideally suited for dispensing using the dispensing robot or by syringe.
Two-Part Thermal Conductive Gap Filler
PK700DM
51
PROPERTY PK700DM TEST METHOD UNIT
Color
Gray (A part)
White (B part) Visual -
Solid content 100%
(Two-part : 100:100) - -
Viscosity A 315 ISO 3219 Pa.s
Viscosity B 285 ISO 3219 Pa.s
Density 2.8 ASTM D792 g/cm³
Shelf life 24 months - -
ROHS & REACH Compliant - -
SOLID(AFTER CURE)
Thermal conductivity 7.0 ASTM D5470 W/m*K
Thermal impedance@10mils BLT 0.058 ASTM D5470 °C-in²/ W
Thermal impedance@20mils BLT 0.115 ASTM D5470 °C-in²/ W
Thermal impedance@30mils BLT 0.170 ASTM D5470 °C-in²/ W
Hardness 60
>10¹¹
ASTM D2240 Shore OO
Surface resistivity ASTM D257 Ohm
Volume resistivity >10¹⁰ ASTM D257 Ohm-m
Dielectric breakdown 8 ASTM D149 KV/mm
Working temp (long term) -60 ~ 200 - °C
Operating ambient temp 20 ~ 30 - °C
CURE SCHEDULE
ELECTRICAL
Pot life @ 25°C
Surface dry @ 25°C 30~40 By LiPOLY min
20~30 By LiPOLY min
Cure @ 25°C 40~50 By LiPOLY min
Cure @ 100°C 40 By LiPOLY sec
Cure @ 120°C 10 By LiPOLY sec
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used
as the definition standards for LiPOLY. Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the
purchaser’s specific purpose. The purchaser needs to evaluate and verify the safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product
under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user. LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY
material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are sold in accordance with the LiPOLY Terms and Conditions in
effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates. Statements concerning possible
or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
TYPICAL PROPERTIES
PLEASE NOTE
It’s recommended that the diameter of mixing tube outlet should be 3mm at least, which can solve the
possible problem of poor fluidity caused by ambient temperature.
52
PROPERTY TEST METHOD UNIT
Color Visual -
Resin base - -
A:B -
ISO 3219 Pa.s
-
Viscosity
Density ASTM D792 g/cm³
Application temperature - °C
Curing condition 1 By LiPOLY -
Curing condition 2
By LiPOLY
By LiPOLY
-
-
Curing condition 3
Hardness ASTM D2240 Shore A
Shelf life - -
ROHS & REACH - -
ELECTRICAL
Dielectric breakdown
Volume resistivity
ASTM D149
ASTM D257
KV/mm
Ohm-m
THERMAL
Thermal conductivity ASTM D5470
TPS586
White (A part)
Gray (B part)
Silicone
100:100
5.0
2.1
-60~180
25°C / 2.5 hr
120°C / 1 min
70°C / 25 min
6
24 months
Compliant
14
>10¹²
1.5
TPS5868
White (A part)
Gray (B part)
Silicone
100:100
8.0
2.8
-60~180
Pot life 25°C / 1.5 hr 25°C / 1.0 hr By LiPOLY -
Surface dry 25°C / 2.0 hr 25°C / 1.5 hr By LiPOLY -
25°C / 2.0 hr
120°C / 1 min
70°C / 20 min
5
24 months
Compliant
14
>10¹²
3.0 W/m*K
/ Thermal conductivity: 1.5/3.0 W/m*K
/ Two-parts package and easy to use
/ Waterproof and air-tight
/ Thermally conductive vibration dampening
FEATURES
/ Automotive electronics / Telecommunications
/ Computer and peripherals / 5G base station & infrastructure
/ Between any heat-generating component and a heat sink
/ EV electric vehicle
TYPICAL APPLICATION
/ It can be preserved for 24 months under the condition of unopened and under room temperature 25°C
/ TPS586/TPS5868 If the interface has organic compounds such as Nitrogen, Phosphorous, Sulfur etc., and
heavy metals ionic compound such as Tin, Lead, Mercury, Antimony, Bismuth, Arsenic etc., and
Organometallic-salts etc., which will cause the gel incomplete curving even will be non-curved.
PRESERVATION
TYPICAL PROPERTIES
PRECAUTIONS
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY TPS586/5868 is a two-part sealing gap filler, provides low viscosity and high fluidity. The high
deformation material, which can filling the gap closely, cover the tolerance, and has outstanding conductivity, makes is suitable for filling the peculiar gap.
Two-Part Thermal Conductive Sealing Glue
TPS586/TPS5868
53
PROPERTY TEST METHOD UNIT
Color Visual -
Resin base - -
A:B -
ISO 3219 Pa.s
-
Viscosity
Density ASTM D792 g/cm³
Application temperature - °C
Curing condition By LiPOLY -
Hardness ASTM D2240 Shore A
Shelf life - -
ROHS & REACH - -
ELECTRICAL
Dielectric breakdown
Volume resistivity
ASTM D149
ASTM D257
KV/mm
Ohm-m
THERMAL
Thermal conductivity ASTM D5470
TPS589
White
Silicone
100:3
5.0
1.8
-60~180
25°C / 7day
50
24 months
Compliant
14
>10¹¹
0.8 W/m*K
/ Thermal conductivity: 0.8 W/m*K
/ Two-parts package and easy to use
/ Waterproof and air-tight
/ Thermally conductive vibration dampening
FEATURES
/ Automotive electronics
/ Telecommunications
/ Computer and peripherals
/ Between any heat-generating component and a heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ It can be preserved for 24 months under the condition of unopened and under room temperature 25°C.
/ TPS589 The principle of moisture hardening is to harden by reacting with moisture in the air at room
temperature. The hardening process starts from the surface in contact with the air and hardens in the deep
direction, so the hardening process is a little slow. The speed of hardening is related to temperature and
humidity. When there is not enough water vapor in the use environment to react, it may not be completely
hardened.
PRESERVATION
TYPICAL PROPERTIES
PRECAUTIONS
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY TPS589 is a two-part sealing gap filler, provides low viscosity and high fluidity. The high deformation material, which can be filling the gap closely, cover the tolerance, and has outstanding conductivity, makes is suitable for filling the peculiar gap.
Two-Part Thermal Conductive Sealing Glue
TPS589
54
PROPERTY UNIT
Color
Resin Base -
A:B
Pa.s
-
Viscosity
Density g/cm³
Application temperature °C
Working Time
Curing Condition 2 -
-
Curing Condition 3 -
Hardness Shore A
Shelf Life -
ROHS & REACH
ELECTRICAL
Dielectric breakdown
Volume resistivity
KV/mm
Ohm-m
THERMAL
Thermal conductivity
Silicone
100:10
1.9
1.35
-60~180
25°C/30 min
25°C/48 hrs
-
55
24 months
Compliant
10
>10¹³
0.55
TPS31
Translucent (B part) - White (A part)
Silicone
100:100
3.2
1.72
-60~180
25°C/1 hrs
80°C/1 hrs
25°C/24 hrs
65
24 months
Compliant
9
>10¹³
1.5
TPS32
Black(B part)
White(A part)
-
-
ISO 3219
ASTM D792
-
By LiPOLY
By LiPOLY
By LiPOLY
ASTM D2240
-
- -
ASTM D149
ASTM D257
ASTM D5470
TEST METHOD
Visual
W/m*K
/ Lightweight, Low Density, Thermal Conductivity 0.55 & 1.5 W/m*K
/ Medium-to-high hardness silicone material with excellent insulation
and weather resistance
/ Suitable for automatic dispensing machine
/ TPS31 Moisture absorb hardening reaction at room temperature.
/ TPS32 Hardened at room temperature, also can be heated to
accelerate the hardening reaction.
FEATURES
/ Heat Dissipation & lightweight applications, such as Automotive electronic devices, Mobile communication
device, Drone & aircraft, Sports and leisure electronic products, Portable game consoles, VR devices and etc.
/ 5G base station & infrastructure / EV electric vehicle
TYPICAL APPLICATION
/ It can be preserved for 24 months under the condition of unopened and under room temperature 25°C.
PRESERVATION
TYPICAL PROPERTIES
/ TPS32 If the interface has organic compounds such as Nitrogen, Phosphorous, Sulfur etc., and heavy
metals ionic compound such as Tin, Lead, Mercury, Antimony, Bismuth, Arsenic etc., and
Organometallic-salts etc., which will cause the gel incomplete curving even will be non-curved.
PRECAUTIONS
Lightweight Two-Part Thermal Conductive Sealing Glue
TPS31&TPS32
LiPOLY’s TPS31/TPS32 is a low-density, two-part compound silicone base thermal conductive sealing
material. It’s low viscosity and excellent fluidity can tightly fill the gaps of electrical components and
cover the tolerances between components. It has excellent thermal conductivity, low density and
insulation properties.
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
55
Heatsink
Heat Spreader
TIM-2
Underfill
Substrate
Chip
TIM12
/ Excellent thermal conductivity 2.0 W/m*K
/ No freeze preservation required.
/ Dispensable for serial manufacture
/ Adhesive for IC packaging design
FEATURES
/ Designed to provide efficient thermal transfer
for the cooling of chip packaging as TIM-1.
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml
CONFIGURATIONS
Use the disposable plastic static mixing nozzles to mix parts A and B together to the desired ratio.
Liquid gap fillers can be dispensed using an automatic dispensing machine or a manual dispensing
tool that can be provided by LiPOLY upon request/purchase. The disposable plastic static mixing
nozzles cannot be re-used.
DISPENSING INSTRUCTIONS
Two-part liquid gap fillers should be stored in climate-controlled environments at or below 25°C.
Keep liquid gap fillers away from direct sunlight and away from high-temperature environments.
STORAGE
It can be preserved for 24 months under the condition of unopened and under room temperature 25℃.
PRESERVATION
The two-part liquid gap filler may not cure properly if it comes into contact with certain substances,
including amine, sulfur, organophosphorus compounds, and organotin compounds. Please avoid the
following substances when handling: (N, P, S, Sn, Pb, Hg, Sb, Bi, As) Ensure a clean mixing container is
used (e.g.: paper cup or plastic cup) before injecting the A and B parts into the mixing container. The
plasticizer, wax from the cups, varnish or the epoxy from the oven may contaminate the A and B parts.
You are reminded to pre-test the gap filler before using it.
PRECAUTIONS
LiPOLY’s TIM12 is a two-part compound silicone base thermal conductive adhesive gel. which is
mainly designed to provide efficient thermal transfer for the cooling of chip packaging. The high
deformation properties perfectly fill small air gaps to eliminate tolerances. It’s ideally suited for
manual dispensing applicator and dispensing robot. Friendly design escape from high cost of
cold-chain transportation and freeze preservation.)
Thermal Conductive Die Attach Adhesive
TIM12
56
PROPERTY TIM12 TEST METHOD UNIT
Color Gray (A part)
White (B part) Visual -
Resin base Silicone - -
Form Grease Visual -
Viscosity A 190 ISO 3219 Pa.s
Viscosity B 150 ISO 3219 Pa.s
Density 2.7 ASTM D792 g/cm³
Application temperature -50~180 - °C
Working time
Cure conditions
24 @ RT By LiPOLY hrs
Volatile content
125°C / 90 mins By LiPOLY -
BLT
< 0.4 150°C x 24h %
27 - µm
Elongation 170 ASTM D412 %
Adhesive strength 0.64 - -
ELECTRICAL
THERMAL
Thermal conductivity 2.0 ASTM D5470 W/m*K
Surface resistivity >10¹³ ASTM D257 Ohm
Volume resistivity >10¹³ ASTM D257 Ohm-m
Dielectric breakdown 25 ASTM D149 KV/mm
TYPICAL PROPERTIES
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used
as the definition standards for LiPOLY. Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the
purchaser’s specific purpose. The purchaser needs to evaluate and verify the safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product
under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user. LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY
material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are sold in accordance with the LiPOLY Terms and Conditions in
effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates. Statements concerning possible
or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PLEASE NOTE
It’s recommended that the diameter of mixing tube outlet should be 3mm at least, which can solve the
possible problem of poor fluidity caused by ambient temperature.
57
Heatsink
Heat Spreader
TIM-2
Underfill
Substrate
Chip
TIM14
/ Excellent thermal conductivity 4.0 W/m*K
/ No freeze preservation required
/ Dispensable for serial manufacture
/ Adhesive for IC packaging design
FEATURES
/ Designed to provide efficient thermal transfer
for the cooling of chip packaging as TIM-1.
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml
CONFIGURATIONS
Use the disposable plastic static mixing nozzles to mix parts A and B together to the desired ratio.
Liquid gap fillers can be dispensed using an automatic dispensing machine or a manual dispensing
tool that can be provided by LiPOLY upon request/purchase. The disposable plastic static mixing
nozzles cannot be re-used.
DISPENSING INSTRUCTIONS
Two-part liquid gap fillers should be stored in climate-controlled environments at or below 25°C.
Keep liquid gap fillers away from direct sunlight and away from high-temperature environments.
STORAGE
It can be preserved for 24 months under the condition of unopened and under room temperature 25℃.
PRESERVATION
The two-part liquid gap filler may not cure properly if it comes into contact with certain substances,
including amine, sulfur, organophosphorus compounds, and organotin compounds. Please avoid the
following substances when handling: (N, P, S, Sn, Pb, Hg, Sb, Bi, As) Ensure a clean mixing container is
used (e.g.: paper cup or plastic cup) before injecting the A and B parts into the mixing container. The
plasticizer, wax from the cups, varnish or the epoxy from the oven may contaminate the A and B parts.
You are reminded to pre-test the gap filler before using it.
PRECAUTIONS
LiPOLY’s TIM14 is a two-part compound silicone base thermal conductive adhesive gel. which is
mainly designed to provide efficient thermal transfer for the cooling of chip packaging. The high
deformation properties perfectly fill small air gaps to eliminate tolerances. It’s ideally suited for
manual dispensing applicator and dispensing robot. Friendly design escape from high cost of
cold-chain transportation and freeze preservation.)
Thermal Conductive Die Attach Adhesive
TIM14
58
PROPERTY TIM14 TEST METHOD UNIT
Color Gray (A part)
White (B part) Visual -
Resin base Silicone - -
Form Grease Visual -
Viscosity A 380 ISO 3219 Pa.s
Viscosity B 380 ISO 3219 Pa.s
Density 3.0 ASTM D792 g/cm³
Application temperature -50~180 - °C
Working time
Cure conditions
24 @ RT By LiPOLY hrs
Volatile content
125°C / 90 mins By LiPOLY -
BLT
< 0.4 150°C x 24h %
27 - µm
Elongation 110 ASTM D412 %
Adhesive strength 3.5 - kgf/cm²
ELECTRICAL
THERMAL
Thermal conductivity 4.0 ASTM D5470 W/m*K
Surface resistivity >10¹³ ASTM D257 Ohm
Volume resistivity >10¹³ ASTM D257 Ohm-m
Dielectric breakdown 25 ASTM D149 KV/mm
TYPICAL PROPERTIES
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used
as the definition standards for LiPOLY. Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the
purchaser’s specific purpose. The purchaser needs to evaluate and verify the safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product
under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user. LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY
material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are sold in accordance with the LiPOLY Terms and Conditions in
effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates. Statements concerning possible
or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PLEASE NOTE
It’s recommended that the diameter of mixing tube outlet should be 3mm at least, which can solve the
possible problem of poor fluidity caused by ambient temperature.
59
/ Thermal conductivity:2.0 W/m*K
/ Cured and Re-workable thermal Grease.
/ Without Pump-out and Dry out concern.
/ Great reliability
/ Low thermal resistance and thinner Bond Line
Thickness.
FEATURES
/ Between CPU and heat sink
/ Between a component and heat sink
/ Power supplies
/ High speed mass storage drives
/ Telecommunication hardware
/ Mobile devices
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml, 400ml
/ Other special and custom sizes are available upon request
CONFIGURATIONS
Use the disposable plastic static mixing nozzles to mix parts A and B together to the desired ratio.
Liquid gap fillers can be dispensed using an automatic dispensing machine or a manual dispensing
tool that can be provided by LiPOLY upon request/purchase. The disposable plastic static mixing
nozzles cannot be re-used.
DISPENSING INSTRUCTIONS
Two-part liquid gap fillers should be stored in climate-controlled environments at or below 25°C.
Keep liquid gap fillers away from direct sunlight and away from high-temperature environments.
STORAGE
The two-part liquid gap filler may not cure properly if it comes into contact with certain substances,
including amine, sulfur, organophosphorus compounds, and organotin compounds. Please avoid the
following substances when handling: (N, P, S, Sn, Pb, Hg, Sb, Bi, As) Ensure a clean mixing container
is used (e.g.: paper cup or plastic cup) before injecting the A and B parts into the mixing container.
The plasticizer, wax from the cups, varnish or the epoxy from the oven may contaminate the A and B
parts. You are reminded to pre-test the gap filler before using it.
PRECAUTIONS
It can be preserved for 24 months under the condition of unopened and under room temperature 25℃.
PRESERVATION
LiPOLY D2000 is a two-part curable thermal grease. It can be cured quickly at room temperature and
high temperature without pump-out effect. It is a highly reliable material. With a thermal conductivity
of 2.0 W/m*K, has low thermal resistance. It is ideally suited for dispensing using the dispensing
robot or by syringe.
Two-Part Curable Thermal Grease
D2000
60
PROPERTY D2000 TEST METHOD UNIT
Color White (A part)
Gray (B part) Visual -
Solid content 100%
(Two-part : 100:100 ) - -
Viscosity A 95 ISO 3219 Pa.s
Viscosity B 95 ISO 3219 Pa.s
Density 2.8 ASTM D792 g/cm³
Shelf life 24 months - -
ROHS & REACH Compliant - -
SOLID(AFTER CURE)
Thermal conductivity 2.0 ASTM D5470 W/m*K
Thermal impedance@2mils BLT 0.042 ASTM D5470 °C-in²/ W
Bond line thickness 50 - μm
Hardness 75 ASTM D2240 Shore OO
Heat capacity 1.0
>10¹²
ASTM E1269 J/g*K
Volume resistivity ASTM D257 Ohm-m
Dielectric breakdown 14 ASTM D149 KV/mm
Working temp (long term) -60 ~ 200 - °C
Working temp (short term) 288 - °C
Operating ambient temp 20 ~ 30 - °C
CURE SCHEDULE
Pot life @ 25°C
Surface dry @ 25°C 25~30 By LiPOLY min
10~15 By LiPOLY min
Cure @ 25°C 35~40 By LiPOLY min
Cure @ 100°C 80 By LiPOLY sec
Cure @ 120°C 30 By LiPOLY sec
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used
as the definition standards for LiPOLY. Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the
purchaser’s specific purpose. The purchaser needs to evaluate and verify the safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product
under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user. LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY
material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are sold in accordance with the LiPOLY Terms and Conditions in
effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates. Statements concerning possible
or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
TYPICAL PROPERTIES
PLEASE NOTE
It’s recommended that the diameter of mixing tube outlet should be 3mm at least, which can solve the
possible problem of poor fluidity caused by ambient temperature.
61
PROPERTY TT3000 TEST METHOD UNIT
Color White Visual -
Resin base Silicone - -
- μm
Filler Non-Metal -
Viscosity 300 ISO 3219 Pa.s
-
Density 3.3 ASTM D792 g/cm³
Application temperature -60~180
Bond line thickness 10
- °C
Shelf life 60 months - -
ROHS & REACH Compliant - -
ELECTRICAL
Dielectric breakdown 8 ASTM D149 KV/mm
Volume resistivity >10¹² ASTM D257 Ohm-m
THERMAL
Thermal conductivity
Thermal impedance@50psi 0.007 ASTM D5470 °C-in²/ W
6.0 ASTM D5470 W/m*K
Thermal impedance@50psi 5.0 ASTM D5470 °C-mm²/ W
/ Thermal conductivity:6.0 W/m*K
/ Excellent thermal conductivity
/ Stable and homogeneous compound
to ensure thermal performance
/ Formula can fill the gap at low
pressure
/ High stability and reliability
/ Solvent-free formula
/ The product is qualified for ROHS
and REACH
FEATURES
/ CPU and chip coolers
/ Switching power supplies
/ Between any heat-generating
component and heat Sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml
/ Tinplate Can: 1kg
/ Other special and custom sizes are available
upon request
CONFIGURATIONS
It can be preserved for 60 months under
the condition of unopened and under room
temperature 25℃.
PRESERVATION
LiPOLY TT3000 is a Nano type thermal interface material based on a unique formula. TT3000’s
formulation is solvent-free. We used a unique silicone oil which interacts with thermally conductive
fillers, making the compounds extremely stable, preventing pump-out problems and other common
failure mechanisms. TT3000 has high thermal conductivity, low thermal resistance, improving the
components performance as well as the product lifecycle.
Nano Thermal Grease
TT3000
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
62
PROPERTY TEST METHOD UNIT
Color Visual -
Resin base - -
Filler -
ISO 3219 Pa.s
-
Viscosity
Density ASTM D792 g/cm³
Application temperature - °C
Bond line thickness - µm
Shelf life
-
-
-
-
ROHS & REACH
ELECTRICAL
Dielectric breakdown ASTM D149 KV/mm
Volume resistivity ASTM D257 Ohm-m
THERMAL
Thermal conductivity
Thermal impedance@50psi
ASTM D5470
ASTM D5470
W/m*K
°C-in²/ W
Thermal impedance@50psi
G3380A
White
Silicone
Non-Metal
16.5
2.2
-60~180
55
Compliant
60 months
14
>10¹¹
1.3
0.05
32.2 ASTM D5470 °C-mm²/ W
G3380B
Gray
Silicone
Non-Metal
130
2.7
-60~180
33
Compliant
60 months
11
>10¹¹
3.2
0.03
22.5
G3380C
Gray
Silicone
Metal
126
2.0
-60~180
30
Compliant
60 months
N/A
N/A
4.5
0.02
12.9
G3380D
Gray
Silicone
Metal
136
2.0
-60~180
30
Compliant
60 months
N/A
N/A
6.0
0.01
6.0
/ Thermal conductivity: 1.3 / 3.2 / 4.5 /6.0 W/m*K
/ Low thermal impedance
/ Can be applied manually dispensed or screen printed
/ Low minimum bond line
FEATURES
/ LED appliance
/ EV electric vehicle
/ CPU and chip coolers
/ Switching power supplies
/ 5G base station & infrastructure
/ Between any heat-generating component and heat sink
TYPICAL APPLICATION
/ Cartridges: 50ml
/ Tinplate Can: 1kg
/ Other special and custom sizes are available upon request
CONFIGURATIONS
It can be preserved for 60 months under the condition
of unopened and under room temperature 25℃.
PRESERVATION
LiPOLY G3380 thermal interface grease has low thermal resistance and great thermal conductivity.
G3380 has been used extensively in Consumer electronics and Microprocessors for their thermal control
techniques. The grease can cover several coats on the component interface. When the component’s
temperature rises, the grease stickiness will decrease, which can moisten the interface components.
Thermal Grease Series
G3380A/B/C/D
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
63
N-putty
Color Gray Visual -
Resin base Non-Silicone - -
- -
Viscosity 15000 DIN 53018
Density 3.0 ASTM D792 g/cm³
Pa.s
Application temperature -60~150 - °C
Bond line thickness 100~1000
Shelf life 60 months
ROHS & REACH Compliant - -
- μm
ELECTRICAL
Dielectric breakdown 12 ASTM D149 KV/mm
Volume resistivity >10¹³ ASTM D257 Ohm-m
THERMAL
Thermal conductivity 3.5 ASTM D5470 W/m*K
Thermal impedance@10psi 0.066 ASTM D5470 °C-in²/ W
Thermal impedance@30psi 0.059 ASTM D5470 °C-in²/ W
Thermal impedance@50psi 0.051 ASTM D5470 °C-in²/ W
PROPERTY TEST METHOD UNIT
Using 1.0mm pad as a gap control, put the putty between the
aluminum and the glass panel mark the initial position. Then,
place it in the oven with 125℃ for 1,000 hours and observe its
displacement after reliability test
Material no dropped or changed after
high temperature aging testing
VERTICAL RELIABILITY
/ Thermal conductivity:3.5 W/m*K
/ Bond line thickness:100-1000µm
/ Non-silicone resin materials
/ Designed to remove manufacturing
tolerances
/ Does not produce stress on delicate
components
/ No vertical flow
/ Dispensable for serial manufacture
/ For any high compression and
low stress application
FEATURES TYPICAL PROPERTIES
TYPICAL APPLICATION
/ Between CPU and heat sink
/ Between a component and heat sink
/ High speed mass storage drives
/ Telecommunication hardware
/ Flat-panel displays
/ Set-top box
/ IP CAM
/ 5G base station & infrastructure
/ EV electric vehicle
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY N-putty series is a non-silicon thermally conductive material without volatilization of low
molecular siloxane, and low total volatile gas. With a thermal conductivity of 3.5 W/m*K, the high
deformation can perfectly fill small air gaps to eliminate tolerances. It also can overcome overflow
and drying problems to increase the thermal conductivity. N-putty is a great alternative to thermal
grease and ideally suited for dispensing using the dispensing robot.
Non-Silicone Thermal Conductive Putty
N-putty
/ Cartridges: 30ml, 55ml, 330ml
/ Bucket: 1kg, 25kg
CONFIGURATIONS
It can be preserved for 60 months
under the condition of unopened
and under room temperature 25℃.
PRESERVATION
64
N-putty2
Gray Visual -
Non-Silicone - -
- -
15000 DIN 53018
3.2 ASTM D792 g/cm³
Pa.s
-60~150 - °C
100~1000
60 months
Compliant - -
- μm
12 ASTM D149 KV/mm
>10¹³ ASTM D257 Ohm-m
5.0 ASTM D5470 W/m*K
0.045 ASTM D5470 °C-in²/ W
0.040 ASTM D5470 °C-in²/ W
0.036 ASTM D5470 °C-in²/ W
PROPERTY TEST METHOD UNIT
Color
Resin base
Viscosity
Density
Application temperature
Bond line thickness
Shelf life
ROHS & REACH
ELECTRICAL
Dielectric breakdown
Volume resistivity
THERMAL
Thermal conductivity
Thermal impedance@10psi
Thermal impedance@30psi
Thermal impedance@50psi
Using 1.0mm pad as a gap control, put the putty between the
aluminum and the glass panel mark the initial position. Then,
place it in the oven with 125℃ for 1,000 hours and observe its
displacement after reliability test
Material no dropped or changed after
high temperature aging testing
VERTICAL RELIABILITY
/ Thermal conductivity:5.0 W/m*K
/ Bond line thickness:100-1000µm
/ Non-silicone resin materials
/ Designed to remove manufacturing
tolerances
/ Does not produce stress on delicate
components
/ No vertical flow
/ Dispensable for serial manufacture
/ For any high compression and
low stress application
FEATURES TYPICAL PROPERTIES
TYPICAL APPLICATION
/ Cartridges: 30ml, 55ml, 330ml
/ Bucket: 1kg, 25kg
CONFIGURATIONS
It can be preserved for 60 months
under the condition of unopened
and under room temperature 25℃.
PRESERVATION
/ Between CPU and heat sink
/ Between a component and heat sink
/ High speed mass storage drives
/ Telecommunication hardware
/ Flat-panel displays
/ Set-top box
/ IP CAM
/ 5G base station & infrastructure
/ EV electric vehicle
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY N-putty2 series is a non-silicon thermally conductive material without volatilization of low
molecular siloxane, and low total volatile gas. With a thermal conductivity of 5.0 W/m*K, the high
deformation can perfectly fill small air gaps to eliminate tolerances. It also can overcome overflow
and drying problems to increase the thermal conductivity. N-putty2 is a great alternative to thermal
grease and ideally suited for dispensing using the dispensing robot.
Non-Silicone Thermal Conductive Putty
N-putty2
65
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
EPDM20 TEST METHOD UNIT
Color Black Gray (A part)
Black (B part) Visual -
Epoxy - -
- °C
A:B 100:100 -
Viscosity A 265 ISO 3219 Pa.s
-
Viscosity B 252 ISO 3219 Pa.s
Density 2.7
Application temperature -40~120
ASTM D792 g/cm³
Thixotropic Index 4.1 ISO 3219 -
Surface dry 25°C/55 min By LiPOLY -
Curing condition 25°C/4 hrs By LiPOLY -
Hardness
Elongation at break <1 ISO527 %
90 ASTM D2240 Shore A
350 ASTM D1002 N/cm²
Tensile strength 65 ISO527 N/cm²
Lap shear to aluminum
Shelf life 24 months - -
ROHS & REACH Compliant - -
ELECTRICAL
Dielectric breakdown 14 ASTM D149 KV/mm
Volume resistivity >10¹¹ ASTM D257 Ohm-m
THERMAL
2.2 ISO 22007-2 W/m*K
PROPERTY
Thermal conductivity
Resin base
/ Thermal conductivity: 2.2 W/m*K
/ Can be applied with dispenser
/ Room Temperature curing or heating
curing
/ Low compression stress during
assembly
/ Excellent adhesion to metal & PCB
/ Electronic components: IC、CPU
MOS、Mother Board、Wireless Hub
Telecom Device 、Automotive
electronics、Computer 、 Peripherals
and High frequency magnetic inductor
/ Between any heat-generating
component and a heat sink.
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges:50ml, 400ml
/ Other special and custom sizes are
available upon request
CONFIGURATIONS
It can be preserved for 24 months
under the condition of unopened and
under room temperature 25℃.
/ It is recommended to preheat
the material to 40°C for 20 minutes or
50°C for 10 minutes if ambient
temperature is less than 25°C for
better extrusion and mixing.
/ It’s recommended that the diameter of
mixing tube outlet should be 3mm at least,
which can solve the possible problem of
poor fluidity caused by ambient
temperature.
PRESERVATION
PLEASE NOTE
FEATURES TYPICAL PROPERTIES
LiPOLY EPDM20 is a silicone-free two-part liquid caulking agent that does not volatilize low-molecular-weight siloxane. With high viscosity and good adhesion, it can cure quickly at room temperature
or elevated temperature. With a thermal conductivity of 2.2 W/m*K, EPDM20 provides high thermal
conductivity and low thermal impedance. It is ideally suited for dispensing using the dispensing
robot or by syringe.
Non-Silicone Two-Part Thermal Conductive Adhesive
EPDM20
66
PROPERTY EPDM30 TEST METHOD UNIT
Color Visual -
Resin base Epoxy - -
- °C
A:B 100:100 -
Viscosity A 270 ISO 3219 Pa.s
-
Viscosity B 240 ISO 3219 Pa.s
Density 2.8
Application temperature -40~120
ASTM D792 g/cm³
Surface dry 25°C/50 min By LiPOLY -
Curing condition 25°C/4 hrs By LiPOLY -
Hardness
Elongation at break <1 ISO527 %
90 ASTM D2240 Shore A
300 ASTM D1002 N/cm²
Tensile strength 60 ISO527 N/cm²
Lap shear to aluminum
Shelf life 24 months - -
ROHS & REACH Compliant - -
ELECTRICAL
Dielectric breakdown 14 ASTM D149 KV/mm
Volume resistivity >10¹¹ ASTM D257 Ohm-m
THERMAL
Thermal conductivity 3.0 ISO 22007-2 W/m*K
Thixotropic Index 4.3 ISO 3219 -
Black Gray (A part)
Black (B part)
/ Thermal conductivity: 3.0 W/m*K
/ Can be applied with dispenser
/ Room Temperature curing or heating
curing
/ Low compression stress during
assembly
/ Excellent adhesion to metal & PCB
FEATURES TYPICAL PROPERTIES
/ Electronic components: IC、CPU
MOS、Mother Board、Wireless Hub
Telecom Device 、Automotive
electronics、Computer 、 Peripherals
and High frequency magnetic inductor
/ Between any heat-generating
component and a heat sink.
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges:50ml, 400ml
/ Other special and custom sizes are
available upon request
CONFIGURATIONS
It can be preserved for 24 months
under the condition of unopened and
under room temperature 25℃.
/ It is recommended to preheat
the material to 40°C for 20 minutes or
50°C for 10 minutes if ambient
temperature is less than 25°C for
better extrusion and mixing.
/ It’s recommended that the diameter of
mixing tube outlet should be 3mm at least,
which can solve the possible problem of
poor fluidity caused by ambient
temperature.
PRESERVATION
PLEASE NOTE
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY EPDM30 is a silicone-free two-part liquid caulking agent that does not volatilize low-molecular-weight siloxane. With high viscosity and good adhesion, it can cure quickly at room temperature
or elevated temperature. With a thermal conductivity of 3.0 W/m*K, EPDM30 provides high thermal
conductivity and low thermal impedance. It is ideally suited for dispensing using the dispensing
robot or by syringe.
Non-Silicone Two-Part Thermal Conductive Adhesive
EPDM30
67
PROPERTY EP770 TEST METHOD UNIT
Color Black Visual -
Resin base Epoxy - -
ASTM D792 g/cm³
A:B 100:10 -
Viscosity A 350 ISO 3219 Pa.s
-
Viscosity mixed 5 ISO 3219 Pa.s
Shrinkage rate 0.01
Density 1.8
ASTM D2566 %
Application temperature -60~150 - °C
Curing condition 1 80°C/1.5 hrs By LiPOLY -
Curing condition 2 25°C/35 hrs By LiPOLY -
Hardness 80 ASTM D2240 Shore A
Tensile strength 73 ISO527 N/cm²
Lap shear to aluminum 412 ASTM D1002 N/cm²
Shelf life 24 months - -
ROHS & REACH Compliant - -
ELECTRICAL
Dielectric breakdown 14 ASTM D149 KV/mm
Volume resistivity >10¹¹ ASTM D257 Ohm-m
THERMAL
Thermal conductivity 2.5 ASTM D5470 W/m*K
/ Thermal conductivity: 2.5 W/m*K
/ Thermally conductive vibration
dampening
/ Low mixing viscosity
/ Extremely low Shrinkage rate 0.01%.
/ Epoxy Based material with high
hardness for support
/ Slow sedimentation rate due to
Resin & powder mixing perfectly via
superb processing technology.
It leads EP770 material easy to
mix and disperse
FEATURES
/Motor: Torque motor、Linear Motor
Servo motor
/IGBT module
/Electronic components: IC、CPU
MOS、Mother Board
/Wireless Hub
/Automotive electronics
/Between any heat-generating
component and a heat sink
/5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Tinplate Can:1 kg
/ Other special and custom sizes are
available upon request
CONFIGURATIONS
It can be preserved for 24 months
under the condition of unopened and
under room temperature 25℃.
PRESERVATION
TYPICAL PROPERTIES
It is recommended to preheat the
material to 40°C for 20 minutes or 50°C
for 10 minutes if ambient temperature
is less than 25°C for better extrusion
and mixing.
PLEASE NOTE
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY EP770 is a silicone-free two-part sealing gap filler and caulking agent without low molecular
siloxane volatilization. EP770 provides low viscosity and high fluidity. The high deformation material,
which can be filling the gap closely, cover the tolerance, and has outstanding conductivity, makes is
suitable for filling the peculiar gap.
Non-Silicone Two-Part Thermal Conductive Sealing Glue
EP770
68
PROPERTY TEST METHOD UNIT
Color Visual -
Resin base - -
Filler -
ISO 3219 Pa.s
-
Viscosity
Density ASTM D792 g/cm³
Application temperature - °C
Bond line thickness - µm
Shelf life
-
-
-
-
ROHS & REACH
ELECTRICAL
Dielectric breakdown ASTM D149 KV/mm
Volume resistivity ASTM D257 Ohm-m
THERMAL
Thermal conductivity
Thermal impedance@50psi
ASTM D5470
ASTM D5470
W/m*K
°C-in²/ W
Thermal impedance@50psi
G3380NA
White
Non-Silicone
Non-Metal
96
2.2
-60~150
55
Compliant
60 months
14
>10¹¹
1.3
0.05
32.2 ASTM D5470 °C-mm²/ W
G3380NB
Gray
Non-Silicone
Metal
43
1.9
-60~150
33
Compliant
60 months
N/A
N/A
3.2
0.03
22.5
G3380NC
Gray
Non-Silicone
Metal
93
2.1
-60~150
30
Compliant
60 months
N/A
N/A
4.5
0.02
12.9
/ Thermal conductivity: 1.3 / 3.2 / 4.5 W/m*K
/ No outgassing
/ Low thermal impedance
FEATURES
TYPICAL PROPERTIES
/ CPU and chip coolers
/ Switching power supplies
/ LED appliance
/ Between any heat-generating component and
heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Cartridges: 50ml
/ Tinplate Can:1kg
/ Other special and custom sizes are available upon request
CONFIGURATIONS
It can be preserved for 60 months under the condition of unopened and under room temperature 25℃.
PRESERVATION
LiPOLY G3380N is made of non-silicon resin material, no low-molecular siloxane volatilization, and will not
pollute the optical surface. Low thermal resistance and great thermal conductivity. G3380N has been used
extensively in Consumer electronics and Microprocessors for their thermal control techniques. The grease
can cover several coats on the component interface. When the component’s temperature rises, the grease
stickiness will decrease, which can moisten the interface components.
Non-Silicone Thermal Grease Series
G3380NA/NB/NC
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
69
PROPERTY UNIT
Color
Surface tack 2-side/1-side
Thickness
Density
Hardness
Application temperature
ROHS & REACH
COMPRESSION@1.0mm
Deflection @10 psi
Deflection @20 psi
Deflection @30 psi
Deflection @40 psi
Deflection @50 psi
EMI Attenuation @1.0mm
ELECTRICAL
Volume resistivity
Surface resistivity
THERMAL
Thermal Conductivity
Thermal impedance@10 psi
Thermal impedance@20 psi
Thermal impedance@30 psi
Thermal impedance@40 psi
Thermal impedance@50 psi
EMI attenuation@ 2.4 GHz
EMI attenuation@ 3.5 GHz
EMI attenuation@ 5.0 GHz
EMI attenuation@ 12 GHz
EMI attenuation@ 18 GHz
EMI attenuation@ 28 GHz
EMI attenuation@ 39 GHz
TEM96A
Dark Gray
2
Customized
4.4
40
-60~180
Compliant
21
28
34
39
43
>10¹¹
>10¹⁰
2.0
0.762
0.692
0.614
0.562
0.530
16.6
24.0
43.5
93.8
116
131
106
TEST METHOD
Visual
-
ASTM D374
ASTM D792
ASTM D2240
-
-
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D257
ASTM D257
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
-
-
mm
g/cm³
Shore OO
Water absorption 0.04 ASTM D570 %
°C
-
%
%
%
%
%
TML 0.14 By LiPOLY %
Ohm-m
Ohm
W/m*K
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
Thermal Conductive RF Absorber Pad
TEM96A
/ Thermal conductivity: 2.0 W/m*K
/ Excellent absorption characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
FREQUENCY APPLICATION
LiPOLY TEM96A is a thermally TYPICAL PROPERTIES
conductive absorber based upon
soft magnetic materials dispersed
in a polymeric resin. It has a thermal
conductivity of 2.0 W/m*K and
dissipates electromagnetic radiation rapidly to mitigate against EMI
issues.
Attenuation Thermal Resistance vs. Pressure vs. Deflection
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
70
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY UNIT
Color
Surface tack 2-side/1-side
Thickness
Density
Hardness
Application temperature
ROHS & REACH
COMPRESSION@1.0mm
Deflection @10 psi
Deflection @20 psi
Deflection @30 psi
Deflection @40 psi
Deflection @50 psi
EMI Attenuation @1.0mm
ELECTRICAL
Volume resistivity
Surface resistivity
THERMAL
Thermal conductivity
Thermal impedance@10 psi
Thermal impedance@20 psi
Thermal impedance@30 psi
Thermal impedance@40 psi
Thermal impedance@50 psi
EMI attenuation@ 2.4 GHz
EMI attenuation@ 3.5 GHz
EMI attenuation@ 5.0 GHz
EMI attenuation@ 12 GHz
EMI attenuation@ 18 GHz
EMI attenuation@ 28 GHz
EMI attenuation@ 39 GHz
TEM96B
Dark Gray
2
Customized
3.9
45
-60~180
Compliant
7
12
16
21
25
>10¹¹
>10¹⁰
3.0
0.634
0.606
0.579
0.551
0.516
7.0
8.6
20.3
52.5
70.8
75.0
64.4
TEST METHOD
Visual
-
ASTM D374
ASTM D792
ASTM D2240
-
-
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D257
ASTM D257
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
-
-
mm
g/cm³
Shore OO
TML 0.07 By LiPOLY %
Water absorption 0.04 ASTM D570 %
°C
-
%
%
%
%
%
Ohm-m
Ohm
W/m*K
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
Thermal Conductive RF Absorber Pad
TEM96B
/ Thermal conductivity: 3.0 W/m*K
/ Excellent absorption characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
FREQUENCY APPLICATION
LiPOLY TEM96B is a thermally
conductive absorber based upon
soft magnetic materials dispersed
in a polymeric resin. It has a thermal
conductivity of 3.0 W/m*K and
dissipates electromagnetic radiation rapidly to mitigate against EMI
issues.
Attenuation Thermal Resistance vs. Pressure vs. Deflection
71
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY UNIT
Color
Surface tack 2-side/1-side
Thickness
Density
Hardness
Application temperature
ROHS & REACH
COMPRESSION@1.0mm
Deflection @10 psi
Deflection @20 psi
Deflection @30 psi
Deflection @40 psi
Deflection @50 psi
EMI Attenuation @1.0mm
ELECTRICAL
Volume resistivity
Surface resistivity
THERMAL
Thermal conductivity
Thermal impedance@10 psi
Thermal impedance@20 psi
Thermal impedance@30 psi
Thermal impedance@40 psi
Thermal impedance@50 psi
EMI attenuation@ 2.4 GHz
EMI attenuation@ 3.5 GHz
EMI attenuation@ 5.0 GHz
EMI attenuation@ 12 GHz
EMI attenuation@ 18 GHz
EMI attenuation@ 28 GHz
EMI attenuation@ 39 GHz
TEM96C
Dark Gray
2
Customized
3.6
55
-60~180
Compliant
11
15
21
25
30
>10¹¹
>10¹⁰
4.0
0.462
0.426
0.404
0.387
0.353
7.0
6.7
15.8
43.7
56.8
76.6
45.5
TEST METHOD
Visual
-
ASTM D374
ASTM D792
ASTM D2240
-
-
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D5470 modify
ASTM D257
ASTM D257
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
ASTM D4935 modify
-
-
mm
g/cm³
Shore OO
Water absorption 0.04 ASTM D570 %
°C
-
%
%
%
%
%
TML 0.04 By LiPOLY %
Ohm-m
Ohm
W/m*K
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
dB/cm
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
Thermal Conductive RF Absorber Pad
TEM96C
/ Thermal conductivity: 4.0 W/m*K
/ Excellent absorption characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
LiPOLY TEM96C is a thermally TYPICAL PROPERTIES
conductive absorber based upon
soft magnetic materials dispersed
in a polymeric resin. It has a thermal
conductivity of 4.0 W/m*K and
dissipates electromagnetic radiation rapidly to mitigate against EMI
issues.
FREQUENCY APPLICATION
Attenuation Thermal Resistance vs. Pressure vs. Deflection
72
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY N-TEM52 TEST METHOD UNIT
Color Dark Gray Visual -
Surface tack 2-side/1-side 2 - -
- -
Thickness Customized ASTM D374
Density 4.4 ASTM D792 g/cm³
mm
Hardness 60 ASTM D2240 Shore OO
Application temperature -60~130
ROHS & REACH Compliant
- °C
EMI Attenuation @1.0mm
COMPRESSION@1.0mm
EMI attenuation@ 3.5 GHz 30 ASTM D4935 modify dB/cm
EMI attenuation@ 2.4 GHz 26 ASTM D4935 modify dB/cm
EMI attenuation@ 5.0 GHz 49 ASTM D4935 modify dB/cm
EMI attenuation@ 6.0 GHz 50 ASTM D4935 modify dB/cm
EMI attenuation@ 12 GHz 96 ASTM D4935 modify dB/cm
EMI attenuation@ 18 GHz 116 ASTM D4935 modify dB/cm
EMI attenuation@ 28 GHz 135 ASTM D4935 modify dB/cm
EMI attenuation@ 39 GHz 113 ASTM D4935 modify dB/cm
Deflection @10 psi 6 ASTM D5470 modify %
Deflection @20 psi 8 ASTM D5470 modify %
Deflection @30 psi 10 ASTM D5470 modify %
Deflection @40 psi 11 ASTM D5470 modify %
Deflection @50 psi 12 ASTM D5470 modify %
ELECTRICAL
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity >10¹⁰ ASTM D257 Ohm-m
THERMAL
Thermal Conductivity 2.0 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.823 ASTM D5470
Thermal impedance@20 psi 0.794 ASTM D5470
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.771 ASTM D5470 °C-in²/ W
Thermal impedance@40 psi 0.756 ASTM D5470 °C-in²/ W
Thermal impedance@50 psi 0.737 ASTM D5470 °C-in²/ W
TML <0.8 By LiPOLY %
/ Thermal conductivity: 2.0 W/m*K
/ Excellent absorption
characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
Thermal Resistance vs. Pressure vs. Deflection
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
6.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
FREQUENCY APPLICATION
Attenuation
LiPOLY N-TEM52 is a thermally TYPICAL PROPERTIES
conductive absorber based upon
soft magnetic materials
dispersed in a non-silicone resin.
It has a thermal conductivity of
2.0 W/m*K and dissipates electromagnetic radia- tion rapidly to
mitigate against EMI issues.
Non-Silicone Thermal Conductive RF Absorber Pad
N-TEM52
73
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY N-TEM53 TEST METHOD UNIT
Color Dark Gray Visual -
Surface tack 2-side/1-side 2 - -
- -
Thickness Customized ASTM D374
Density 3.9 ASTM D792 g/cm³
mm
Hardness 75 ASTM D2240 Shore OO
Application temperature -60~130
ROHS & REACH Compliant
- °C
EMI Attenuation @1.0mm
COMPRESSION@1.0mm
EMI attenuation@ 3.5 GHz 14 ASTM D4935 modify dB/cm
EMI attenuation@ 2.4 GHz 12 ASTM D4935 modify dB/cm
EMI attenuation@ 5.0 GHz 29 ASTM D4935 modify dB/cm
EMI attenuation@ 6.0 GHz 25 ASTM D4935 modify dB/cm
EMI attenuation@ 12 GHz 60 ASTM D4935 modify dB/cm
EMI attenuation@ 18 GHz 71 ASTM D4935 modify dB/cm
EMI attenuation@ 28 GHz 112 ASTM D4935 modify dB/cm
EMI attenuation@ 39 GHz 68 ASTM D4935 modify dB/cm
Deflection @10 psi 8 ASTM D5470 modify %
Deflection @20 psi 11 ASTM D5470 modify %
Deflection @30 psi 15 ASTM D5470 modify %
Deflection @40 psi 21 ASTM D5470 modify %
Deflection @50 psi 28 ASTM D5470 modify %
ELECTRICAL
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity >10¹⁰ ASTM D257 Ohm-m
THERMAL
Thermal Conductivity 3.0 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.496 ASTM D5470
Thermal impedance@20 psi 0.473 ASTM D5470
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.452 ASTM D5470 °C-in²/ W
Thermal impedance@40 psi 0.423 ASTM D5470 °C-in²/ W
Thermal impedance@50 psi 0.385 ASTM D5470 °C-in²/ W
TML <0.8 By LiPOLY %
/ Thermal conductivity: 3.0 W/m*K
/ Excellent absorption
characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
Thermal Resistance vs. Pressure vs. Deflection
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
6.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
FREQUENCY APPLICATION
Attenuation
LiPOLY N-TEM53 is a thermally TYPICAL PROPERTIES
conductive absorber based upon
soft magnetic materials
dispersed in a non-silicone resin.
It has a thermal conductivity of
3.0 W/m*K and dissipates electromagnetic radia- tion rapidly to
mitigate against EMI issues.
Non-Silicone Thermal Conductive RF Absorber Pad
N-TEM53
74
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY N-TEM54 TEST METHOD UNIT
Color Dark Gray Visual -
Surface tack 2-side/1-side 2 - -
- -
Thickness Customized ASTM D374
Density 3.6 ASTM D792 g/cm³
mm
Hardness 75 ASTM D2240 Shore OO
Application temperature -60~130
ROHS & REACH Compliant
- °C
EMI Attenuation @1.0mm
COMPRESSION@1.0mm
EMI attenuation@ 3.5 GHz 9 ASTM D4935 modify dB/cm
EMI attenuation@ 2.4 GHz 12 ASTM D4935 modify dB/cm
EMI attenuation@ 5.0 GHz 22 ASTM D4935 modify dB/cm
EMI attenuation@ 6.0 GHz 18 ASTM D4935 modify dB/cm
EMI attenuation@ 12 GHz 47 ASTM D4935 modify dB/cm
EMI attenuation@ 18 GHz 53 ASTM D4935 modify dB/cm
EMI attenuation@ 28 GHz 118 ASTM D4935 modify dB/cm
EMI attenuation@ 39 GHz 49 ASTM D4935 modify dB/cm
Deflection @10 psi 3 ASTM D5470 modify %
Deflection @20 psi 5 ASTM D5470 modify %
Deflection @30 psi 8 ASTM D5470 modify %
Deflection @40 psi 12 ASTM D5470 modify %
Deflection @50 psi 17 ASTM D5470 modify %
ELECTRICAL
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity >10¹⁰ ASTM D257 Ohm-m
THERMAL
Thermal Conductivity 4.0 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.419 ASTM D5470
Thermal impedance@20 psi 0.399 ASTM D5470
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.377 ASTM D5470 °C-in²/ W
Thermal impedance@40 psi 0.357 ASTM D5470 °C-in²/ W
Thermal impedance@50 psi 0.338 ASTM D5470 °C-in²/ W
TML <0.8 By LiPOLY %
/ Thermal conductivity: 4.0 W/m*K
/ Excellent absorption
characteristics
/ Naturally tacky
/ Reworkable
FEATURES
/ IC, CPU, MOS, LED, M/B, Heat sink
/ LCD-TV, Notebook PC, PC,
Telecom device, Wireless hub
/ DDR II module, DVD applications,
Hand-set applications
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
Thermal Resistance vs. Pressure vs. Deflection
2.4 GHz Wi-Fi Router , Bluetooth
3.5 GHz 5G Mobile Networks
5.0 GHz Wi-Fi Router
6.0 GHz Wi-Fi Router
12~18 GHz Low Earth Orbit (LEO) System
28 GHz 5G Mobile Networks
39 GHz 5G Mobile Networks
FREQUENCY APPLICATION
Attenuation
LiPOLY N-TEM54 is a thermally TYPICAL PROPERTIES
conductive absorber based upon
soft magnetic materials
dispersed in a non-silicone resin.
It has a thermal conductivity of
4.0 W/m*K and dissipates electromagnetic radia- tion rapidly to
mitigate against EMI issues.
Non-Silicone Thermal Conductive RF Absorber Pad
N-TEM54
75
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY DTT44-s TEST METHOD UNIT
Color Blue Visual -
Surface tack 2-side/1-side 2 - -
- -
Thickness Customized ASTM D374
Density 2.2 ASTM D792 g/cm³
mm
Hardness 50 ASTM D2240 Shore OO
Application temperature -60~180
ROHS & REACH Compliant
- °C
Water absorption 0.02 ASTM D570 %
COMPRESSION@1.0mm
Deflection @10 psi 13 ASTM D5470 modify %
Deflection @20 psi 16 ASTM D5470 modify %
Deflection @30 psi 20 ASTM D5470 modify %
Deflection @40 psi 23 ASTM D5470 modify %
Deflection @50 psi 26 ASTM D5470 modify %
ELECTRICAL
Dielectric breakdown 11 ASTM D149 KV/mm
Surface resistivity >10¹⁰ ASTM D257 Ohm
Volume resistivity
Dielectric constant@2GHz Dk
Dielectric constant@6GHz Dk
Dielectric constant@10GHz Dk
Dielectric loss@2GHz Df
Dielectric loss@6GHz Df
Dielectric loss@10GHz Df
>10¹⁰ ASTM D257 Ohm-m
4.115 ASTM D150 -
4.214 ASTM D150 -
3.983 ASTM D150 -
0.00486 ASTM D150 -
0.00704 ASTM D150 -
0.00940 ASTM D150 -
THERMAL
Thermal conductivity 3.0 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.652 ASTM D5470
Thermal impedance@20 psi 0.630 ASTM D5470
Thermal impedance@40 psi 0.574 ASTM D5470
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.591 ASTM D5470
Thermal impedance@50 psi 0.562 ASTM D5470
/ Thermal conductivity: 3.0 W/m*K
/ Hardness: Shore OO/50
/ Low dielectric constant
/ For high frequency applications
/ Available in a range of
thicknesses
FEATURES
/ Communications satellite
/ Satellite positioning devices
/ IoT devices
/ Telecommunication hardware
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
Thermal Resistance vs. Pressure vs. Deflection
LiPOLY DTT44-s is a soft thermal- TYPICAL PROPERTIES
ly conductive gel pad specifically
designed for networking communication applications.DTT44-s is
designed to focus on Dk and Df to
reduce interference in RF modules. DTT44-s has a thermal
conductivity of 3.0 W/m*K. This
product can be supplied as standard sheets, custom die-cuts or
custom molded parts making it
suitable for a wide range of applications.
5G mmWave Thermal Conductive Gel Pad
DTT44-s
76
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY DTT65-s TEST METHOD UNIT
Color Red Visual -
Surface tack 2-side/1-side 2 - -
- -
Thickness Customized ASTM D374
Density 2.1 ASTM D792 g/cm³
mm
Hardness 55 ASTM D2240 Shore OO
Application temperature -60~180
ROHS & REACH Compliant
- °C
Water absorption 0.005 ASTM D570 %
COMPRESSION@1.0mm
Deflection @10 psi 8 ASTM D5470 modify %
Deflection @20 psi 11 ASTM D5470 modify %
Deflection @30 psi 16 ASTM D5470 modify %
Deflection @40 psi 21 ASTM D5470 modify %
Deflection @50 psi 26 ASTM D5470 modify %
ELECTRICAL
Dielectric breakdown 10 ASTM D149 KV/mm
Surface resistivity >10¹² ASTM D257 Ohm
Volume resistivity
Dielectric constant@2GHz Dk
Dielectric constant@6GHz Dk
Dielectric constant@10GHz Dk
Dielectric loss@2GHz Df
Dielectric loss@6GHz Df
Dielectric loss@10GHz Df
>10¹³ ASTM D257 Ohm-m
4.131 ASTM D150 -
4.058 ASTM D150 -
4.013 ASTM D150 -
0.00509 ASTM D150 -
0.00658 ASTM D150 -
0.00780 ASTM D150 -
THERMAL
Thermal conductivity 5.0 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.350 ASTM D5470
Thermal impedance@20 psi 0.342 ASTM D5470
Thermal impedance@40 psi 0.302 ASTM D5470
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.323 ASTM D5470
Thermal impedance@50 psi 0.281 ASTM D5470
Thermal Resistance vs. Pressure vs. Deflection
TYPICAL PROPERTIES
/ Thermal conductivity: 5.0 W/m*K
/ Hardness: Shore OO/55
/ Low dielectric constant
/ For high frequency applications
/ Available in a range of
thicknesses
FEATURES
/ Communications satellite
/ Satellite positioning devices
/ IoT devices
/ Telecommunication hardware
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
LiPOLY DTT65-s is a soft thermally conductive gel pad specifically
designed for networking communication applications.DTT65-s is
designed to focus on Dk and Df to
reduce interference in RF modules. DTT65-s has a thermal
conductivity of 5.0 W/m*K. This
product can be supplied as standard sheets, custom die-cuts or
custom molded parts making it
suitable for a wide range of applications.
5G mmWave Thermal Conductive Gel Pad
DTT65-s
77
PROPERTY ST6000-S TEST METHOD UNIT
Color White Visual -
Reinforced layer None - -
Thickness 0.2 ASTM D374
Density 2.3 ASTM D792 g/cm³
mm
Application temperature -60~180 - °C
Short time temp. @30sec 288 - °C
ROHS Compliant - -
ADHESION
Lap shear strength 35 ASTM D1002 N/cm²
Die shear strength@25°C 50 - N/cm²
Die shear strength@80°C 50 - N/cm²
Holding power 1kg @25°C >10000 PSTC-7 min
Holding power 1kg @80°C >10000
>8
PSTC-7
ASTM D3330
min
90° Peeling strength @ 25°C, 72 hrs N/inch
90° Peeling strength @ Thermal aging >7 80°C 1000 hrs N/inch
90° Peeling strength @ HAST >10 85°C/85%RH 1000 hrs N/inch
90° Peeling strength @ Thermal cycling >9.5 -40°C~120°C 500 cycles N/inch
ELECTRICAL
Dielectric breakdown 3.5 ASTM D149 KV
Surface resistivity >10⁹ ASTM D257 Ohm
Volume resistivity
THERMAL
>10⁹ ASTM D257 Ohm-m
Thermal impedance@5psi 0.81 ASTM D5470 °C-in²/ W
Thermal conductivity 1.8 ASTM D5470 W/m*K
Thermal impedance@15psi 0.65 ASTM D5470 °C-in²/ W
Thermal impedance@10psi 0.72 ASTM D5470 °C-in²/ W
/ Thermal conductivity:1.8 W/m*K
/ High temperature stability
/ Easy to assemble
FEATURES
/ Power supplies
/ Motor controls
/ Power semiconductors
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY ST6000-S is a thermally conductive tape with UL high temperature heat resistance. The thermal
conductivity is 1.8 W/m*K. The stickiness and strength of the thermal tape will increase when temperatures and pressure rise. They are designed to securely bond heat sinks to power dissipating components
without an additional clamping mechanism.)
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
UL Flammability Thermal Conductive Tape
ST6000-S
78
PROPERTY AT910 TEST METHOD UNIT
Color White Visual -
Reinforced layer Fiberglass - -
Thickness 0.15 ASTM D374
Density 1.8 ASTM D792 g/cm³
mm
Application temperature -60~120 - °C
Short time temp. @30sec 200 - °C
Compliant - -
ADHESION
Initial tack 11 PSTC-6 cm
Lap shear strength 50 ASTM D1002 N/cm²
Die shear strength@25°C 100 - N/cm²
Die shear strength@80°C 70 - N/cm²
Holding power 1kg @25°C >10000
>10000
PSTC-7
PSTC-7
min
Holding power 1kg @80°C min
90° Peeling strength @ 25°C, 72 hrs >5 ASTM D3330 N/inch
90° Peeling strength @ Thermal aging >14 80°C 1000 hrs N/inch
90° Peeling strength @ HAST
90° Peeling strength @ Thermal cycling
>20 85°C/85%RH 1000 hrs N/inch
ELECTRICAL
Dielectric breakdown 2 ASTM D149 KV
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity
THERMAL
>10¹¹ ASTM D257 Ohm-m
Thermal impedance@5psi 0.81 ASTM D5470 °C-in²/ W
Thermal conductivity 1.0 ASTM D5470 W/m*K
Thermal impedance@15psi 0.76 ASTM D5470 °C-in²/ W
Thermal impedance@10psi 0.78
0.25
1.8
-60~120
200
Compliant
8
50
100
70
>10000
>10000
>6
>20
>24
>27 >28 -40°C~120°C 500 cycles N/inch
3
>10¹¹
>10¹¹
1.38
1.0
1.25
1.30 ASTM D5470 °C-in²/ W
ROHS
/ Thermal conductivity:1.0 W/m*K
/ Excellent adhesive properties
/ Designed for manufacture
/ Excellent long term reliability
/ Fiberglass reinforced layer
FEATURES
/ Automotive electronics
/ Telecommunications
/ LED light bar & LED lamp
/ Between any heat-generating
component and heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY AT910 is a fiberglass reinforced thermally conductive tape with UL high temperature heat
resistance. The thermal conductivity is 1.0 W/m*K. The stickiness and strength of the thermal tape
will increase when temperatures and pressure rise. They are designed to securely bond heat sinks to
power dissipating components without an additional clamping mechanism.
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
UL Flammability Thermal Conductive Tape
AT910
79
PROPERTY AT900A TEST METHOD UNIT
Color White Visual -
Reinforced layer Fiberglass - -
Thickness 0.15 ASTM D374
Density 1.6 ASTM D792 g/cm³
mm
Application temperature -60~120 - °C
Short time temp. @30sec 200 - °C
ROHS Compliant - -
ADHESION
Initial tack 10 PSTC-6 cm
Lap shear strength 60 ASTM D1002 N/cm²
Die shear strength@25°C 107 - N/cm²
Die shear strength@80°C 70 - N/cm²
Holding power 1kg @25°C >10000
>10000
PSTC-7
PSTC-7
min
Holding power 1kg @80°C min
90° Peeling strength @ 25°C, 72 hrs >10 ASTM D3330 N/inch
90° Peeling strength @ Thermal aging >14 80°C 1000 hrs N/inch
90° Peeling strength @ HAST
90° Peeling strength @ Thermal cycling
>20 85°C/85%RH 1000 hrs N/inch
ELECTRICAL
Dielectric breakdown 2 ASTM D149 KV
Surface resistivity >10¹⁰ ASTM D257 Ohm
Volume resistivity
THERMAL
>10¹⁰ ASTM D257 Ohm-m
Thermal impedance@5psi 0.87 ASTM D5470 °C-in²/ W
Thermal conductivity 0.9 ASTM D5470 W/m*K
Thermal impedance@15psi 0.82 ASTM D5470 °C-in²/ W
Thermal impedance@10psi 0.85
0.25
1.6
-60~120
200
Compliant
8
60
94
70
>10000
>10000
>12
>20
>25
>15 >20 -40°C~120°C 500 cycles N/inch
3
>10¹⁰
>10¹⁰
1.15
0.9
1.12
1.14 ASTM D5470 °C-in²/ W
/ Thermal conductivity:0.9 W/m*K
/ Excellent adhesive properties
/ Designed for manufacture
/ Excellent long term reliability
/ Fiberglass reinforced layer
FEATURES
/ Automotive electronics
/ Telecommunications
/ LED light bar & LED lamp
/ Between any heat-generating
component and heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY AT900A is a thermally conductive tape. With a fiberglass reinforced layer and a thermal conductivity of 0.9 W/m*K this product is designed for applications where additional durability is needed.
AT900A can be provided in either standard sheets or custom-die cuts.
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
Insulated Thermal Conductive Tape
AT900A
80
PROPERTY AT900C TEST METHOD UNIT
Color White Visual -
Reinforced layer Fiberglass - -
Thickness 0.15 ASTM D374
Density 1.7 ASTM D792 g/cm³
mm
Application temperature -60~120 - °C
Short time temp. @30sec 200 - °C
Compliant - -
ADHESION
Initial tack 14 PSTC-6 cm
Lap shear strength 55 ASTM D1002 N/cm²
Die shear strength@25°C 100 - N/cm²
Die shear strength@80°C 65 - N/cm²
Holding power 1kg @25°C >10000
>10000
PSTC-7
PSTC-7
min
Holding power 1kg @80°C min
90° Peeling strength @ 25°C, 72 hrs >6 ASTM D3330 N/inch
90° Peeling strength @ Thermal aging >10 80°C 1000 hrs N/inch
90° Peeling strength @ HAST
90° Peeling strength @ Thermal cycling
>18 85°C/85%RH 1000 hrs N/inch
ELECTRICAL
Dielectric breakdown 3 ASTM D149 KV
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity
THERMAL
>10¹¹ ASTM D257 Ohm-m
Thermal impedance@5psi 0.72 ASTM D5470 °C-in²/ W
Thermal conductivity 1.2 ASTM D5470 W/m*K
Thermal impedance@15psi 0.66 ASTM D5470 °C-in²/ W
Thermal impedance@10psi 0.68
0.25
1.7
-60~120
200
Compliant
12
60
100
65
>10000
>10000
>8
>15
>22
>13 >19 -40°C~120°C 500 cycles N/inch
4
>10¹¹
>10¹¹
0.98
1.2
0.92
0.94 ASTM D5470 °C-in²/ W
ROHS
LiPOLY AT900C is a thermally conductive tape. With a fiberglass reinforced layer and a thermal conductivity of 1.2 W/m*K this product is designed for applications where additional durability is needed.
AT900C can be provided in either standard sheets or custom-die cuts.
/ Thermal conductivity:1.2 W/m*K
/ Excellent adhesive properties
/ Designed for manufacture
/ Excellent long term reliability
/ Fiberglass reinforced layer
FEATURES
/ Automotive electronics
/ Telecommunications
/ LED light bar & LED lamp
/ Between any heat-generating
component and heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
Insulated Thermal Conductive Tape
AT900C
81
PROPERTY AT920-s TEST METHOD UNIT
Color White Visual -
Reinforced layer None - -
Thickness 0.25 ASTM D374
Density 2.6 ASTM D792 g/cm³
mm
Application temperature -60~120 - °C
Short time temp. @30sec 200 - °C
ROHS Compliant - -
ADHESION
Initial tack 12 PSTC-6 cm
Lap shear strength 30 ASTM D1002 N/cm²
Die shear strength@25°C 80 - N/cm²
Die shear strength@80°C 40 - N/cm²
Holding power 1kg @25°C >10000
>10000
PSTC-7
PSTC-7
min
Holding power 1kg @80°C min
90° Peeling strength @ 25°C, 72 hrs >7 ASTM D3330 N/inch
90° Peeling strength @ Thermal aging >12 80°C 1000 hrs N/inch
90° Peeling strength @ HAST
90° Peeling strength @ Thermal cycling
>20 85°C/85%RH 1000 hrs N/inch
ELECTRICAL
Dielectric breakdown 4 ASTM D149 KV
Surface resistivity >10¹¹ ASTM D257 Ohm
Volume resistivity
THERMAL
>10¹² ASTM D257 Ohm-m
0.33 ASTM D5470 °C-in²/ W
Thermal conductivity 3.5 ASTM D5470 W/m*K
0.31 ASTM D5470 °C-in²/ W
0.32
>11
0.50
2.6
-60~120
200
Compliant
8
35
85
40
>10000
>10000
>9
>13
>22
7
>10¹¹
>10¹²
0.54
3.5
0.50
0.53
>13 -40°C~120°C 500 cycles N/inch
ASTM D5470 °C-in²/ W
Thermal impedance@5psi
Thermal impedance@15psi
Thermal impedance@10psi
/ Thermal conductivity:3.5 W/m*K
/ Excellent adhesive properties
/ Designed for manufacture
/ Excellent long term reliability
FEATURES TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY AT920-s is an unsupported thermally conductive tape with a thermal conductivity of 3.5 W/m*K.
The thickness comes in 0.25 and 0.50 mm, and the AT920-s can withstand 4~7K voltage. Using highly
thermal conductive particles makes the tape extremely reliable and easy to use. The stickiness and
strength will increase when temperature and pressure rise.
/ Automotive electronics
/ Telecommunications
/ LED light bar & LED lamp
/ Between any heat-generating
component and heat sink
/ 5G base station & infrastructure
/ EV electric vehicle
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
High Thermal Conductive Tape
AT920-s
82
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY PR27 TEST METHOD UNIT
Color
Surface tack 2-side/1-side
Reinforced layer
Thickness
Density
Hardness
Application temperature
ROHS & REACH
ELECTRICAL
Dielectric breakdown
Surface resistivity
Volume resistivity
THERMAL
Thermal conductivity
Thermal impedance@20psi
Thermal impedance@60psi
Thermal impedance@100psi
Gray
0
Polyimide
0.10 / 0.125 / 0.15
1.5
80
-60~180
Compliant
12
>10¹³
>10¹²
1.8
0.441
0.360
0.329
Visual
-
-
ASTM D374
ASTM D792
ASTM D2240
-
-
ASTM D149
ASTM D257
ASTM D257
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
-
-
-
mm
g/cm³
Shore A
°C
-
KV
Ohm
Ohm-m
W/m*K
°C-in²/ W
°C-in²/ W
°C-in²/ W
/ Thermal conductivity:1.8 W/m*K
/ Good insulator
/ Low thermal impedance
/ Reworkable
/ High performance
FEATURES
/ Power supplies
/ Motor controls
/ Power semiconductors
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
/ Single-sided adhesive or double-sided
adhesive can be used as required
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY PR27 is a very thin, high
insulator with a thickness of
0.15mm. It uses Polyimide Film as
the reinforcement material, which
can increase the tensile strength. It’s
suitable for high power transistors,
electrical equipment, and will be the
best choice for auto-distribution
systems.
High Insulated Thermal Conductive Film
PR27
83
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY PR28-s TEST METHOD UNIT
Color
Surface tack 2-side/1-side
Reinforced layer
Thickness
Density
Hardness
Application temperature
ROHS & REACH
ELECTRICAL
Dielectric breakdown
Surface resistivity
Volume resistivity
THERMAL
Thermal conductivity
Thermal impedance@20psi
Thermal impedance@60psi
Thermal impedance@100psi
Gray
0
Polyimide
0.10 / 0.125 / 0.15
1.5
80
-60~180
Compliant
8
>10¹³
>10¹²
2.5
0.342
0.269
0.235
Visual
-
-
ASTM D374
ASTM D792
ASTM D2240
-
-
ASTM D149
ASTM D257
ASTM D257
ASTM D5470
ASTM D5470
ASTM D5470
ASTM D5470
-
-
-
mm
g/cm³
Shore A
°C
-
KV
Ohm
Ohm-m
W/m*K
°C-in²/ W
°C-in²/ W
°C-in²/ W
/ Thermal conductivity:2.5 W/m*K
/ Good insulator
/ Low thermal impedance
/ Reworkable
/ High performance
FEATURES
/ Power supplies
/ Motor controls
/ Power semiconductors
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
/ Single-sided adhesive or double-sided
adhesive can be used as required
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY PR28-s is a very thin, high
insulator with a thickness of
0.15mm. It uses Polyimide Film as
the reinforcement material, which
can increase the tensile strength. It’s
suitable for high power transistors,
electrical equipment, and will be the
best choice for auto-distribution
systems.
High Insulated Thermal Conductive Film
PR28-s
84
PROPERTY SH1500 TEST METHOD UNIT
Color Yellow Visual -
Reinforced layer Fiberglass - -
Thickness 0.23 ASTM D374 mm
Density 2.3 ASTM D792 g/cm³
Hardness 80 ASTM D2240 Shore A
Application temperature -60~180 - °C
ELECTRICAL
Dielectric breakdown 4 ASTM D149 KV
Surface resistivity >10¹² ASTM D257 Ohm
Volume resistivity >10¹² ASTM D257 Ohm-m
THERMAL
Thermal conductivity 1.5 ASTM D5470 W/m*K
Thermal impedance@20 psi 0.634
0.451
ASTM D5470 °C-in²/ W
Thermal impedance@60 psi ASTM D5470 °C-in²/ W
Thermal impedance@100 psi 0.410
SH2000
Green
Fiberglass
0.30
2.6
80
-60~180
5
>10¹²
>10¹²
2.0
0.533
0.386
0.362
SH3000
Pink
Fiberglass
0.35
2.8
80
-60~180
ROHS Compliant Compliant Compliant - -
5.5
>10¹²
>10¹⁰
3.0
0.574
0.393
0.361 ASTM D5470 °C-in²/ W
/ Thermal conductivity:1.5/2.0/3.0 W/m*K
/ Excellent insulator
/ Reworkable
/ Fiberglass reinforced
FEATURES
/ Power supplies
/ Motor controls
/ EV electric vehicle
/ Automotive electronics
/ 5G base station & infrastructure
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
LiPOLY SH1500/2000/3000 is a thermal insulator uses fiberglass cloth as a reinforcement material,
combined with thermal conductive silicon, giving it high thermal conduction and great compression
strength. The thermal conductivity is 1.5/2.0/3.0 W/m*K, the thickness is 0.25~0.45mm. Its high
insulation and fiberglass materials increase the strength of its structure making it cut resistant.
SH1500/2000/3000 is the best choice for high torque screw setting. It functions well with electrical
isolative of high power electronic component and the heat sink.
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
High Insulated Thermal Conductive Pad Series
SH1500/2000/3000
85
PROPERTY SP22/23/33 TEST METHOD UNIT
Color Gray Visual -
Resin base Silicone - -
- -
Thickness 0.3 / 0.45 ASTM D374
Density 1.8 ASTM D792 g/cm³
mm
Hardness 55 ASTM D2240 Shore A
Application temperature -60~180
ROHS & REACH Compliant
- °C
COMPRESSION@1.0mm
Deflection @10 psi 1 ASTM D5470 modify %
Deflection @20 psi 2 ASTM D5470 modify %
Deflection @30 psi 3 ASTM D5470 modify %
Deflection @40 psi 4 ASTM D5470 modify %
Deflection @50 psi 5 ASTM D5470 modify %
ELECTRICAL
Dielectric breakdown 7 / 8 ASTM D149 KV/mm
Surface resistivity >10¹² ASTM D257 Ohm
Volume resistivity >10¹³ ASTM D257 Ohm-m
THERMAL@0.3mm
Thermal conductivity 0.8 ASTM D5470 W/m*K
Thermal impedance@10 psi 1.110 ASTM D5470
Thermal impedance@20 psi 1.058 ASTM D5470
Thermal impedance@40 psi 0.929 ASTM D5470
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.988 ASTM D5470
Thermal impedance@50 psi 0.897 ASTM D5470
/ Thermal conductivity: 0.8 W/m*K
/ Good insulator
/ High recovery
/ Easy to assemble
/ Available in a range of
thicknesses
FEATURES
/ Between CPU and heat sink
/ Between a component and
heat sink
/ Notebook computers
/ Power supplies
/ High speed mass storage drives
/ Telecommunication hardware
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ SP22-11.4 x 16x5.8mm
/ SP23-11.4 x 21.5x5.8mm
/ SP33-17.5 x 28.5x5.8mm
SPECIFICATIONS
TYPICAL PROPERTIES
Thermal Resistance vs. Pressure
LiPOLY SP is a stereoscopic thermal conductive silicone rubber cap as substrate through a special
production process. Due to its excellent characteristic of high thermal conductivity, insulation,
shockproof and convenient assembly, it is widely used in heat transistor refer to TO220 / TO3P,
diode, triode.
Thermal Conductive Rubber Cap Series
SP22/23/33
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
86
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY CP-S TEST METHOD UNIT
Color Gray Visual -
Resin base Silicone - -
- -
Thickness 0.30 / 0.45 ASTM D374
Density 2.3 ASTM D792 g/cm³
mm
Hardness 65 ASTM D2240 Shore A
Application temperature -60~180
ROHS & REACH Compliant
- °C
COMPRESSION@1.0mm
Deflection @10 psi 1 ASTM D5470 modify %
Deflection @20 psi 2 ASTM D5470 modify %
Deflection @30 psi 4 ASTM D5470 modify %
Deflection @40 psi 5 ASTM D5470 modify %
Deflection @50 psi 6 ASTM D5470 modify %
ELECTRICAL
Dielectric breakdown 7 / 8 ASTM D149 KV/mm
Surface resistivity >10¹² ASTM D257 Ohm
Volume resistivity >10¹³ ASTM D257 Ohm-m
THERMAL
Thermal Conductivity 2.5 ASTM D5470 W/m*K
Thermal impedance@10 psi 0.830 ASTM D5470
Thermal impedance@20 psi 0.741 ASTM D5470
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.597 ASTM D5470 °C-in²/ W
Thermal impedance@40 psi 0.511 ASTM D5470 °C-in²/ W
Thermal impedance@50 psi 0.462 ASTM D5470 °C-in²/ W
/ Thermal conductivity: 2.5 W/m*K
/ Good insulator
/ High recovery
/ Easy to assemble
/ Available in a range of
thicknesses
FEATURES
/ Between CPU and heat sink
/ Between a component and
heat sink
/ Notebook computers
/ Power supplies
/ High speed mass storage drives
/ Telecommunication hardware
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ 11.4 x 16x5.8mm
/ 11.4 x 21.5x5.8mm
/ 17.5 x 28.5x5.8mm
SPECIFICATIONS
Thermal Resistance vs. Pressure
TYPICAL PROPERTIES
LiPOLY CP-S is a stereoscopic thermal conductive silicone rubber cap as substrate through a special
production process. Due to its excellent characteristic of high thermal conductivity, insulation, shockproof and convenient assembly, it is widely used in heat transistor refer to TO220 / TO3P, diode, triode.
Thermal Conductive Rubber Cap
CP-S
87
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
PROPERTY TP200 TEST METHOD UNIT
Color Gray Visual -
Resin base Silicone - -
- -
Thickness 0.3 ASTM D374
Density 1.8 ASTM D792 g/cm³
mm
Hardness 55 ASTM D2240 Shore A
Application temperature -60~180
ROHS & REACH Compliant
- °C
COMPRESSION@1.0mm
Deflection @10 psi 1 ASTM D5470 modify %
Deflection @20 psi 2 ASTM D5470 modify %
Deflection @30 psi 3 ASTM D5470 modify %
Deflection @40 psi 4 ASTM D5470 modify %
Deflection @50 psi 5 ASTM D5470 modify %
ELECTRICAL
Dielectric breakdown 7 ASTM D149 KV/mm
Surface resistivity >10¹² ASTM D257 Ohm
Volume resistivity >10¹³ ASTM D257 Ohm-m
THERMAL@0.3mm
Thermal conductivity 0.8 ASTM D5470 W/m*K
Thermal impedance@10 psi 1.110 ASTM D5470
Thermal impedance@20 psi 1.058 ASTM D5470
Thermal impedance@40 psi 0.929 ASTM D5470
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
°C-in²/ W
Thermal impedance@30 psi 0.988 ASTM D5470
Thermal impedance@50 psi 0.897 ASTM D5470
TYPICAL PROPERTIES
/ Thermal conductivity: 0.8 W/m*K
/ Good insulator
/ High recovery
/ Easy to assemble
/ Available in a range of
thicknesses
FEATURES
/ Between CPU and heat sink
/ Between a component and
heat sink
/ Notebook computers
/ Power supplies
/ High speed mass storage drives
/ Telecommunication hardware
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Diameter/Length:11mm/25mm
/ Diameter/Length:13.5mm/25mm
/ Diameter/Length:11mm/30mm
/ Diameter/Length:13.5mm/30mm
SPECIFICATIONS
Thermal Resistance vs. Pressure
LiPOLY TP200 is a stereoscopic thermal conductive silicone rubber cap as substrate through a
special production process. Due to its excellent characteristic of high thermal conductivity, insulation, shockproof and convenient assembly, it is widely used in heat transistor refer to TO220 / TO3P,
diode, triode.
Thermal Conductive Rubber Tube
TP200
88
PET
Copper
Acrylic
Release Film
Graphite
PROPERTY TEST METHOD UNIT
Thickness ASTM D374 mm
Color
TML By LiPOLY %
Application temperature -
- °C
°C
Short time temp. @30sec
ADHESION
Initial tack PSTC-6 cm
RADIATION
Heat emissivity coefficient ASTM C1371 -
ELECTRICAL
Dielectric breakdown ASTM D149 KV
Surface resistivity ASTM D257 Ohm
Volume resistivity ASTM D257 Ohm-m
Thermal conductivity Z axis
TR332CU
0.10
<0.1
-60~120
25
150
0.96
1
>10¹¹
>10¹¹
THERMAL
1.2
AC calorimeter W/m*K
Laser flash W/m*K
Thermal conductivity XY axis 1500
0.15
<0.1
-60~120
11
150
0.96
1.5
>10¹¹
>10¹¹
1.2
1500
Black Visual -
/ Excellent heat transfer
/ Manufacturing friendly form-factor
/ Can be custom die-cut
/ Flexibly conforms to surfaces
FEATURES
/ Set top box
/ Notebook Computers
/ Projector
/ Mobile phone
/ Hand held devices
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
TYPICAL PROPERTIES
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY TR332CU is a complex thermally conductive film , composed of graphite radiator which can be
laminated on copper foil to superior thermal management and ease of manufacture.TR332CU can be
supplied in various manufacturing friendly formats and custom die-cut for the ultimate convenience.
TR332CU
Complex Thermal Conductive Film
89
PET 黑色
Graphite石墨
Adhesive tape膠
Release Film離型紙
Graphite石墨
Adhesive tape膠
Release Film離型紙
PROPERTY TEST METHOD UNIT
Color Visual -
Surface tack 2-side/1-side - -
Thickness Micrometer
Archimedes law g/cm³
µm
Density
Heat resistance - °C
Flexibility - -
ROHS & REACH - -
ELECTRICAL
Electrical conductivity JIS K7194 S/cm
Thermal conductivity XY axis
THERMAL
Thermal conductivity Z axis
Thermal diffusivity
Laser flash
AC calorimeter
W/m*K
cm²/s
Heat capacity(SHC)
G566A
Black
1
35
2.1
120
Flexible
Compliant
20000
5
8.92
0.895 - J/g*K
G566AP
Black
1
45
2.1
120
Flexible
Compliant
20000
5
8.92
0.895
1500~1700 1500~1700 AC calorimeter W/m*K
G566A G566AP
/ Thermal conductivity: 1500~1700W/m*K
/ Good average temperature
/ Easy to assemble
/ Lightweight, Specific gravity 2.1 g/cm³
FEATURES
/ Smart phones, Mobile phones
/ LED, DVD appliance
/ Hand held devices
/ 5G base station & infrastructure
/ EV electric vehicle
TYPICAL APPLICATION
/ Sheet form
/ Die-cut parts
SPECIFICATIONS
Note: All specifications provided by LiPOLY are subject to change without notice. The test methods used by LiPOLY are based on the TIM Tester method and ASTM D5470 test method. These test methods are used as the definition standards for LiPOLY.
Property values provided in this document are not for product specifications or guaranteed. This document does not guarantee the performance and quality required for the purchaser’s specific purpose. The purchaser needs to evaluate and verify the
safety before using the material. We strongly recommend the purchaser pre-test the product and verify the performance of the product under the purchaser’s specific conditions. Liability and use of the product are the responsibility of the end user.
LiPOLY makes no warranty as to the suitability, merchantability, or non-infringement of any LiPOLY material or product for any specific or general uses. LiPOLY shall not be liable for incidental orconsequential damages of any kind. All LiPOLY products are
sold in accordance with the LiPOLY Terms and Conditions in effect at the time of purchase and a copy of which will be furnished upon request. All rights reserved, including LiPOLY trademarks or registered trademarks of LiPOLY or its affiliates.
Statements concerning possible or suggested uses made herein shall not be relied upon or be constructed as a guaranty of patent infringement. Copyright 2023 LiPOLY.
LiPOLY G566 Graphite Sheet has great thermal conductivity on the X and Y axis. The thermal conducti¬vity is 1700 W/m*K. It is flexible and bendable, which is suitable for thin products and high capability
mobile devices.
Artificial Graphite Sheet
G566A/G566AP
90
TESTING CAPABILITIES
Shiu Li Technology has advanced manufacturing technology at our HQ in Taiwan.
All of our products undergo extensive testing in our state-of-the-art experimental
development lab and reliability testing lab. Shiu Li has top-of-the-line manufacturing technology, a complete experiment development lab, and an advanced reliability testing laboratory.
• Thermal Resistance Testing
• Thermal Conductivity Testing
• Viscosity Testing
• Hardness Testing
• X-ray Testing
• Compression Force Testing
• Peeling Strength Testing
• Holding Power Testing
• Attenuation Testing
• Electrical Resistance Testing
• Dielectric Testing
• GC Testing
• Thermal Aging Testing
• Thermal HAST Testing
• Thermal Cycling Testing
Our Branches
2023 CATALOG
www.lipoly.com.tw




