㬚䇤䌇㘘᎙
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1
Chapter 1 Safety Precautions
1.1 Before Supplying Power to the Inverter
Warning
The main circuit must be correctly wired. For single phase supply use input terminals
(R/L1, T/L3) and for three phase supply use input terminals (R/L1, S/L2, T/L3).
Terminals U/T1, V/T2, W/T3 must only be used to connect the motor. Connecting the
input supply to any of the U/T1, V/T2 or W/T3 terminals will cause damage to the
inverter.
Caution
To avoid the front cover from disengaging or other physical damage, do not carry the
inverter by its cover. Support the unit by its heat sink when transporting. Improper
handling can damage the inverter or injure personnel, and should be avoided.
To avoid the risk of fire, do not install the inverter on or near flammable objects. Install
on nonflammable objects such as metal surfaces.
If several inverters are placed inside the same control panel, provide adequate
ventilation to maintain the temperature below 40°C/104°F (50°C/122°F without a dust
cover) to avoid overheating or fire.
When removing or installing the digital operator, turn off the power first, and then
follow the instructions in our instruction manual to avoid operator error or loss of
display caused by faulty connections.
Warning
This product is sold subject to IEC 61800-3. In a domestic environment this product may
cause radio interference in which case the user may need to apply corrective measures.
Motor over temperature protection is provided.
1.2 Wiring
Warning
Always turn OFF the power supply before attempting inverter installation and wiring
of the user terminals.
Wiring must be performed by a qualified personnel / certified electrician.
Make sure the inverter is properly grounded. (200V Class: Grounding impedance shall
be less than 100Ω. 400V Class: Grounding impedance shall be less than 10Ω.)
Make sure the inverter is properly grounded. It is required to disconnect the ground
wire in the control board to avoid the sudden surge causing damage on electronic
parts if it is improperly grounded.
RCD is required to be in compliance with the protection norm of B-type leakage
current.
Please check and test emergency stop circuits after wiring. (Installer is responsible
for the correct wiring.)
Never touch any of the input or output power lines directly or allow any input of output
power lines to come in contact with the inverter case.
Do not perform a dielectric voltage withstand test (megger) on the inverter this will result
in inverter damage to the semiconductor components.
Caution
The line voltage applied must comply with the inverter’s specified input voltage. (See
product nameplate section 2.1)
Connect braking resistor and braking unit to the designated terminals. (See section
3.10)
Do not connect a braking resistor directly to the DC terminals P (+) and N (-), otherwise fire may
result.
2
Use wire gauge recommendations and torque specifications. (See Wire Gauge and
Torque Specification in section 3.6)
Never connect input power to the inverter output terminals U/T1, V/T2, W/T3.
Do not connect a contactor or switch in series with the inverter and the motor.
Do not connect a power factor correction capacitor or surge suppressor to the inverter
output.
Ensure the interference generated by the inverter and motor does not affect peripheral
devices.
1.3 Before Operation
Warning
Make sure the inverter capacity matches the parameters 13-00.
Reduce the carrier frequency (parameter 11-01) If the cable from the inverter to the
motor is greater than 80 ft (25m). A high-frequency current can be generated by stray
capacitance between the cables and result in an overcurrent trip of the inverter, an
increase in leakage current, or an inaccurate current readout.
Be sure to install all covers before turning on power. Do not remove any of the covers
while power to the inverter is on, otherwise electric shock may occur.
Do not operate switches with wet hands, otherwise electric shock may result.
Do not touch inverter terminals when energized even if inverter has stopped, otherwise
electric shock may result.
1.4 Parameters Setting
Caution
Do not connect a load to the motor while performing a rotational auto-tune.
Make sure the motor can freely run and there is sufficient space around the motor
when performing a rotational auto-tune.
1.5 Operation
Warning
Be sure to install all covers before turning on power. Do not remove any of the covers
while power to the inverter is on, otherwise electric shock may occur.
Do not connect or disconnect the motor during operation. This will cause the inverter
to trip and may cause damage to the inverter.
Operations may start suddenly if an alarm or fault is reset with a run command active.
Confirm that no run command is active upon resetting the alarm or fault, otherwise
accidents may occur.
Do not operate switches with wet hands, otherwise electric shock may result.
It provides an independent external hardware emergency switch, which emergently
shuts down the inverter output in the case of danger.
If automatic restart after power recovery (parameter 07-00) is enabled, the inverter will
start automatically after power is restored.
Make sure it is safe to operate the inverter and motor before performing a rotational autotune.
Do not touch inverter terminals when energized even if inverter has stopped, otherwise
electric shock may result.
Do not check signals on circuit boards while the inverter is running.
After the power is turned off, the cooling fan may continue to run for some time.
Caution
Do not touch heat-generating components such as heat sinks and braking resistors.
Carefully check the performance of motor or machine before operating at high speed,
otherwise Injury may result.
Note the parameter settings related to the braking unit when applicable.
3
Do not use the inverter braking function for mechanical holding, otherwise injury may
result.
Do not check signals on circuit boards while the inverter is running.
1.6 Maintenance, Inspection and Replacement
Warning
Wait a minimum of five minutes after power has been turned OFF before starting an
inspection. Also confirm that the charge light is OFF and that the DC bus voltage has
dropped below 25Vdc.
Never touch high voltage terminals in the inverter.
Make sure power to the inverter is disconnected before disassembling the inverter.
Only authorized personnel should perform maintenance, inspection, and replacement
operations. (Take off metal jewelry such as watches and rings and use insulated tools.)
Caution
The Inverter can be used in an environment with a temperature range from 14°
~104(140) °F (-10~+40(60)°C) and relative humidity of 95% non-condensing.
The inverter must be operated in a dust, gas, mist and moisture free environment.
1.7 Disposal of the Inverter
Caution
Please dispose of this unit with care as an industrial waste and according to your
required local regulations.
The capacitors of inverter main circuit and printed circuit board are considered as
hazardous waste and must not be burned.
The Plastic enclosure and parts of the inverter such as the top cover board will release
harmful gases if burned.
Equipment containing electrical components may not be disposed of together with
domestic waste. It must be separately collected with electrical and electronic waste
according to local and currently valid legislation.
1.8 Guaranteed liability exemption
Loss of opportunity caused by the company's products, damage to customers of your
company or your company, damage to non-company products, or compensation for
other businesses, whether within the warranty period or not, is not covered by the
company.
4
Chapter 2 Environment and Installation
2.1 System Diagram
Power supply:
Make sure the correct voltage is applied to avoid damaging the
inverter.
Molded-case circuit breaker (MCCB) or fused disconnect:
A molded-case circuit breaker or fused disconnect must be installed
between the AC source and the inverter that conforms to the rated
voltage and current of the inverter to control the power and protect the
inverter.
Do not use the circuit breaker as the run/stop switch for the inverter.
Ground fault detector / breaker:
Install a ground fault breaker to prevent problems caused by current
leakage and to protect personnel. Select current range up to 200mA,
and action time up to 0.1 second to prevent high frequency failure.
Magnetic contactor:
Normal operations do not need a magnetic contactor. When performing
functions such as external control and auto restart after power failure, or
when using a brake controller, install a magnetic contactor.
Do not use the magnetic contactor as the run/stop switch for
the inverter.
AC line reactor for power quality:
When inverters are supplied by a high capacity power source (>
600KVA), an AC reactor can be connected to improve the power
factor.
Install Fast Acting Fuse:
To protect peripheral equipment, install fast acting fuses in accordance with
the specifications in the instruction manual for peripheral devices.
Input Noise filter:
A filter must be installed when there are inductive loads affecting the
inverter. The inverter meets EMC standard when the special filter is
used. See the instruction manual for peripheral devices.
Inverter:
Output terminals T1, T2, and T3 are connected to U, V, and W terminals of
the motor. If the motor runs in reverse while the inverter is set to run
forward, swap any two terminals connections for T1, T2, and T3.
To avoid damaging the inverter, do not connect the output terminals
T1, T2, and T3 to AC input power.
Connect the ground terminal properly. (200V class: Rg <100; 400V
class: Rg <10.)
Output Noise filter:
An output noise filter may reduce system interference and induced noise.
Motor:
If the inverter drives multiple motors the output rated current of the inverter
must be greater than the total current of all the motors.
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2.1.1 Inverter Nameplate
2.1.2 Model
E710 - 4 01 - H 3 E F
Input Voltage:
2:200V class
4:400V class
5:575V 級
6:690V 級
Maximum applicable
motor capacity :
P5: 0.5HP
01: 1HP
02: 2HP
∫
10: 10HP
Power Phase:
1:Single Phase input
3:Three Phase input
Blank:Single/ Three
Phase
E: Easy
S: Standard
Product Pattern:
H:Standard(LED)
C:Standard (LCD)
Blank:Without Display
E710 series
EMC Filter:
F: with Filter Biult-in
Blank:without
Filter Biult-in
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Mode List:
Inverter
Model
Input
Voltage
(Vac)
Frequency
(Hz)
Power
(HP)
Motor
(KW)
Filter
built-in
with without
E710-2P5-HE
1ph/3ph,
200~240V
+10%/-15%
50/60Hz
0.5 0.4 ◎
E710-201-HE 1 0.75 ◎
E710-202-HS 2 1.5 ◎
E710-203-HS 3 2.2 ◎
E710-2P5-H1EF
1ph,
200~240V
+10%/-15%
0.5 0.4 ◎
E710-201-H1EF 1 0.75 ◎
E710-202-H1SF 2 1.5 ◎
E710-203-H1SF 3 2.2 ◎
E710-205-H3S 3ph,
200~240V
+10%/-15%
5 3.7 ◎
E710-208-H3S 7.5 5.5 ◎
E710-401-H3E
3ph,
380~480V
+10%/-15%
1 0.75 ◎
E710-402-H3E 2 1.5 ◎
E710-403-H3S 3 2.2 ◎
E710-405-H3S 5 3.7 ◎
E710-408-H3S 7.5 5.5 ◎
E710-410-H3S 10 7.5 ◎
E710-401-H3EF 1 0.75 ◎
E710-402-H3EF 2 1.5 ◎
E710-403-H3SF 3 2.2 ◎
E710-405-H3SF 5 3.7 ◎
E710-408-H3SF 7.5 5.5 ◎
E710-410-H3SF 10 7.5 ◎
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2.1.3 Electrical specification of product
200V Series:
型號: E710-□□□ 2P5 201 202 203 205 208
Horse Power(HP) 0.5 1 2 3 5 7.5
Suitable motor capacity
(kW) 0.4 0.75 1.5 2.2 3.7 5.5
Rated output current
(A) 2.8 4.8 7.5 11 17 25
Rated capacity (kVA) 1.2 1.7 2.9 4.0 6.7 9.9
Input voltage range 單/三相 200~240V (+10%-15%),50/60HZ
Output voltage range 三相 0~240V
Input current (A) 5.0/2.9 8.7/5.0 13.7/7.9 20.1/11.6 17.9 26.3
Allowable momentary
power loss time (Sec) 2.0 2.0 2.0 2.0 2.0 2.0
Enclosure IP20/NEMA1
380V Series:
型号: E710-□□□ 401 402 403 405 408 410
Horse Power(HP) 1 2 3 5 7.5 10
Suitable motor capacity (kW) 0.75 1.5 2.2 3.7 5.5 7.5
Rated output current (A) 2.7 4.2 5.5 9.0 13 17
Rated capacity (kVA) 1.7 2.9 4.0 6.7 9.9 13.3
Input voltage range 三相 380~480V (+10%-15%),50/60HZ
Output voltage range 三相 0~480V
Input current (A) 2.8 4.4 5.8 9.5 13.7 17.9
Allowable momentary power
loss time (Sec) 1.5 2.0 2.0 2.0 2.0 2.0
Enclosure IP20/NEMA1
2.2 Product specifications and wiring diagram (for simple E type)
■2.2.1 General Specifications
ITEM Basic Specifications
Control mode IM: V/F、SLV
PM: SLV
Frequency
Frequency control
range 0.01~599Hz
starting torque 150%/3Hz(VF) , 150% / 0.5Hz (SLV)
Frequency setting
resolution
Digital references: 0.01Hz
Analog references: 0.06Hz/60Hz
Frequency setting keypad:Set directly with▲▼ keys or the VR on the keypad
8
ITEM Basic Specifications
External Input Terminlas:
AI1、AI2 (0~10V / 2~10V / 0~20mA / 4~20mA) input
Multifunction input up/down function
Setting frequency by communication method.
Frequency limit Lower and upper frequency limits
3 skip frequency settings.
Speed control
accuracy
V/F :±2~3%
SLV :± 1%
Run Operation set
Keypad run, stop button
External terminals:
Multi- operation-mode2 / 3 wire selection
Jog operation
Run signal by communication method.
Main
Control
Features
V / F curve setting 18 fixed curves and one customized curve
Carrier frequency 2~16KHz (default value : 4kHz)
Acceleration and
deceleration
control
2 off Acc / dec time parameters.
4 off S curve parameters.
Multifunction input 29 functions (refer to description on group3)
Multifunction output 21 functions (refer to description on group3)
Multifunction
analog output 5 functions (refer to description on group4)
Main features
Overload Detection,16 preset speeds,Auto-run,Acc/Dec Switch (2
Stages),Main/Alt run Command select,Main/Alt Frequency
Command select,PID control, torque boost, V/F start Frequency,
Fault reset,
Display
LED
Display :parameter / parameter value / frequency / line speed / DC
voltage / output voltage / output current / PID feedback / input and
output terminal status / Heat sink temperature / Program Version /
Fault Log.
LED
Status Indicator FWD,REV,SEQ,REF
Protective
Functions
Overload
Protection The relays to protect the motor and the inverter. (150%/1min)
Over voltage ·220V: >410V ,380V: >820V
Under Voltage ·220V: <190V ,380V: <380V
Momentary Power
Loss Restart Inverter auto-restart after a momentary power loss.
Stall Prevention Stall prevention for Acceleration/ Deceleration/ Operation.
Short-circuit output
terminal Electronic Circuit Protection.
Ground fault Using current detector protection.
Other protection
features
Protection for overheating of heat sink,The carrier frequency
decreasing with the temperature function,fault output,reverse
prohibit,prohibit for direct start after power up and error
recovery ,parameter lock up
Communication control
Standard built-in RS485 communication (Modbus), One to one or
One to many control.
Environment
Operating
temperature
IP20 /NEMA 1:
–10 ~ 50℃ (without stick on type dust cover.)
–10 ~40℃ (with stick on type dust cover.)
Storage
temperature -20~70℃
Humidity 95% RH or less (no condensation)
(Compliance with IEC 60068 - 2-78)
Shock 10Hz≦f≦57Hz:±0.075mm Amplitude;
57Hz≦f≦150Hz:1.0G Acceleration:(依據 IEC60068-2-6 標準)
Protection class IP20/NEMA1
Certification UL、CE、RoHS、REACH
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2.2.2 General Wiring Diagram (for simple E type)
L1/R
L2/S
L3/T U/T1
V/T2
W/T3 P BR 3Ø Induction motor
E Main Power Section
+10V: Power for Analog Input (max. 20mA) AI1: Multi-Function Analog Input (0~10V, 500KΩ / 4~20mA, 500Ω)
S1
DOG
DO1 Multi-Functional transistor digital outputs Open Collector, 48V @50mA (opto-isolated)
(R1A) (R1C)
(R1B) NC
NO Multi-Function Relay Output
External Analog Inputs
Digital Input Section
+
-
Contact rating: 250 VAC < 1.0A 30 VDC < 1.0A
Ground < 100Ω Analog Output 1 Analog Output 2
AO1
AO2
GND Analog Outputs AO1: 0 – 10 VDC / 4-20mA AO2: 0 – 10 VDC / 4-20mA S2
S3
S4
S5
S6
24V Power terminal for digital signal (source) E710 Multi- Functional Digital Inputs Jog Command Fault Reset Multi-Step Speed Ref. 2 Multi-Step Speed Ref. 1
FWD / STOP REV / STOP
Factory Default
RS485 Communication Port
L1(R) L2(S) L3(T)
Magnetic Contactor MCCB AC Reactor Fast Acting Fuses
AC Input Voltage Braking Resistor
24VG Digital signal common (sink)
GND: Analog Signal Common 0V
0 ~ 10V / 4 ~ 20mA
SOURCE PNP SINK NPN (DEFAULT) SW5
P SGND P
SW3 (AI1) V I
E
CN2 (RJ45) A
B 1 : S(+) 2 : S(-) 3 : S(+) 4 : Reserved 5 : Reserved 6 : S(-) 7 : 5V 8 : GND RS485
SW1 (AO1) V I SW2 (AO2) V I
Notes:
*1: Use SW5 to select between Sink (NPN, with 24VG common) or Source (PNP, with +24V common) for multi-function
digital input terminals S1~S6.
*2: Use SW3 to switch between voltage (0~10V) and current (4~20mA) input for Multi-function analog input 1 (AI1).
Besides please also check parameter 04-00 for proper setting.
*3: When using the open collector for multi-function digital input, it doesn’t need resistance because of built-in pull-up resistance.
*4: AO1/AO2 default setting is 0~+10V. Use SW1/SW2 to switch between voltage (0~10V) and current (4~20mA) output.
Besides please also check parameter 04-19 for proper setting.
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2.3 Product specifications and wiring diagram (for standard S type)
2.3.1 General Specifications
ITEM Basic Specifications
Control mode
IM: V/F、V/F+PG(In development)、SLV、SV(In
development)
PM: SV(In development)、SLV
SRM(In development): PMA-SyRM-SLV、SyRM-SLV
Frequency
Frequency control
range 0.01~599Hz
starting torque 150%/3Hz(VF) , 150% / 0.5Hz (SLV)
Frequency setting
resolution
Digital references: 0.01Hz
Analog references: 0.06Hz/60Hz
Frequency setting
keypad:Set directly with▲▼ keys or the VR on the keypad
External Input Terminlas:
AI1、AI2 (0~10V / 2~10V / 0~20mA / 4~20mA) input
Multifunction input up/down function
Setting frequency by communication method.
Frequency limit
Lower and upper frequency limits
3 skip frequency settings.
Speed control
accuracy
V/F :±2~3%
SLV :± 1%
Run Operation set
Keypad run, stop button
External terminals:
Multi- operation-mode2 / 3 wire selection
Jog operation
Run signal by communication method.
Main
Control
Features
V / F curve setting 18 fixed curves and one customized curve
Carrier frequency 2~16KHz (default value : 4kHz)
Acceleration and
deceleration
control
2 off Acc / dec time parameters.
4 off S curve parameters.
Multifunction input 29 functions (refer to description on group3)
Multifunction output 21 functions (refer to description on group3)
Multifunction
analog output 5 functions (refer to description on group4)
Main features
Overload Detection,16 preset speeds,Auto-run,Acc/Dec Switch (2
Stages),Main/Alt run Command select,Main/Alt Frequency
Command select,PID control, torque boost, V/F start Frequency,
Fault reset,
Display
LED
Display :parameter / parameter value / frequency / line speed / DC
voltage / output voltage / output current / PID feedback / input and
output terminal status / Heat sink temperature / Program Version /
Fault Log.
LED
Status Indicator FWD,REV,SEQ,REF
Protective
Functions
Overload
Protection The relays to protect the motor and the inverter. (150%/1min)
Over voltage ·220V: >410V ,380V: >820V
Under Voltage ·220V: <190V ,380V: <380V
Momentary Power
Loss Restart Inverter auto-restart after a momentary power loss.
Stall Prevention Stall prevention for Acceleration/ Deceleration/ Operation.
Short-circuit output
terminal Electronic Circuit Protection.
Ground fault Using current detector protection.
STO Functions Output quick break
Other protection
features
Protection for overheating of heat sink,The carrier frequency
decreasing with the temperature function,fault output,reverse
11
ITEM Basic Specifications
prohibit,prohibit for direct start after power up and error
recovery ,parameter lock up
Communication control
Standard built-in RS485 communication (Modbus), One to one or
One to many control.
Environment
Operating
temperature
IP20 /NEMA 1:
–10 ~ 50℃ (without stick on type dust cover.)
–10 ~40℃ (with stick on type dust cover.)
Storage
temperature -20~70℃
Humidity 95% RH or less (no condensation)
(Compliance with IEC 60068 - 2-78)
Shock 10Hz≦f≦57Hz:±0.075mm Amplitude;
57Hz≦f≦150Hz:1.0G Acceleration:(依據 IEC60068-2-6 標準)
Protection class IP20/NEMA1
Certification UL、CE、RoHS、REACH
12
2.3.2 General Wiring Diagram (for standard S type)
L1/R
L2/S
L3/T U/T1
V/T2
W/T3 P BR 3Ø Induction motor
E Main Power Section
+10V: Power for Analog Input (max. 20mA) AI1: Multi-Function Analog Input AI2: Multi-Function Analog Input
S1
Multi-Functional transistor digital outputs DO1: Open Collector, 48V @50mA(opto-isolated) DO2: Open Collector, 48V @50mA(opto-isolated) / Multi-function pulse output 32kHz Max.
(R1A) (R1C)
(R1B) NO
NC Multi-Function Relay Output External Analog Inputs
Digital Input Section
+
-
Contact rating: 250 VAC < 1.0A 30 VDC < 1.0A
Ground < 100Ω Analog Output 1 Analog Output 2
AO1
AO2
GND Analog Outputs AO1: 0 – 10 VDC / 4-20mA AO2: 0 – 10 VDC / 4-20mA S2
S3
S4
S5
S6
S7 / PI Pulse Input 32kHz Max. 24V Power terminal for digital signal (source) E710 Multi- Functional Digital Inputs Jog Command Fault Reset Multi-Step Speed Ref. 1 FWD / STOP REV / STOP
Factory Default
L2(S) L3(T)
Magnetic Contactor MCCB AC Reactor
AC Input Voltage Braking Resistor
24VG Digital signal common (sink)
GND: Analog Signal Common 0V
4 ~ 20mA / 0 ~ 10V 0 ~ 10V / 4~20mA
SF1
SF2
SW5
P
P
CN3 Option PG encoder card or comm. card
(0~10V, 500KΩ / 4~20mA, 500Ω) (0~10V, 900KΩ / 4~20mA, 250Ω)
SG
Multi-Step Speed Ref. 2 Multi-Step Speed Ref. 3
L1(R) Fast Acting Fuses
E
RS485 Communication Port SGND P CN2 (RJ45) A
B 1 : S(+) 2 : S(-) 3 : S(+) 4 : Reserved 5 : Reserved 6 : S(-) 7 : 5V 8 : GND RS485
DOG
DO1
DO2
SOURCE PNP SINK NPN (DEFAULT)
SW4 (AI2) V I SW3 (AI1) V I SW1 (AO1) V I SW2 (AO1) V I
Run Permissive Input Notes:
*1:Use SW5 to select between Sink (NPN, with 24VG common) or Source (PNP, with +24V common) for multi-function
digital input terminals S1~S7.
*2:Use SW3/SW4 to switch between voltage (0~10V) and current (4~20mA) input for Multi-function analog input 1/2
(AI1/AI2). Besides please also check parameter 04-00 for proper setting.
*3:When using the open collector for multi-function digital input, it doesn’t need resistance because of built-in pull-up resistance.
*4:Run Permissive input SF1 and SF2 is a normally closed input. This input should be closed to enable the inverter
output. To activate this input remove the jumper wire between SF1/ SF2 and SG.
*5:AO1/AO2 default setting is 0~+10V. Use SW1/SW2 to switch between voltage (0~10V) and current (4~20mA)
output. Besides please also check parameter 04-19 for proper setting.
*6:When using the open collector for pulse output of DO2, the recommend pull-up resistance is 200Ω.
13
2.4 General Terminals
2.4.1 Power Terminals
220V : 2P5~201HP/440V : 401~402HP
220V : 202~208HP/440V : 403~410HP
Table1 Main Power terminal definition
Terminal
200V:0.5~8HP
400V:1~10HP
R/L1
S/L2 Main power input
T/L3
P
P-BR:External brake resistor
BR
U/T1
V/T2 Inverter Output
W/T3
E/PE/ Ground Terminal
14
2.4.2 Control Terminals
■Type E
220V : 2P5~201HP/440V : 401~402HP
Table 2 Control terminal definition(Type E)
Type Terminal Terminal Function
Digital
input
signal
S1 Multifunction Input Terminal
S2 Multifunction Input Terminal
S3 Multifunction Input Terminal
S4 Multifunction Input Terminal
S5 Multifunction Input Terminal
S6 Multifunction Input Terminal
24V
power
supply
24V Digital signal SOURCE point (SW6 switched to SOURCE )
24VG Common terminal of Digital signals
Common point of digital signal SINK ( SW6 switched to SINK )
Type Terminal Terminal Function
Analog
input
signal
+10V Positive power for external speed potentiometer
AI1 Multi-function analog input terminal (0~10V)/(4-20mA)
GND Analog signal ground terminal
E Shielding wire’s connecting terminal (Ground)
Analog
output
signal
AO1 Multi-function analog output terminal(0~10V)/(4-20mA )
AO2 Multi-function analog output terminal(0~10V)/(4-20mA )
GND Analog signal ground terminal
Digital
output
D01 Multi-function(open collector transistor) output
DOG Open collector transistor digital ground
Relay
output
R1A Relay A contact (multi-function output terminal)
R1B Relay B contact (multi-function output terminal)
R1C Relay contact common terminal,
RS-485
A
RS485/MODBUS B
SGND Grounding to earth
Shield the connecting terminal
15
■Type S
220V : 202~208HP/440V : 403~410HP
Table 3 Control terminal definition(Type S)
Type Terminal Terminal Function
Digital
input
signal
S1 Multifunction Input Terminal
S2 Multifunction Input Terminal
S3 Multifunction Input Terminal
S4 Multifunction Input Terminal
S5 Multifunction Input Terminal
S6 Multifunction Input Terminal
S7
Multifunction Input Terminal/ Pulse command input,
Bandwidth: 32KHz
24V
power
supply
24V Digital signal SOURCE point (SW6 switched to SOURCE )
24VG Common terminal of Digital signals
Common point of digital signal SINK ( SW6 switched to SINK )
Caution
Maximum output current capacity for terminal 10V is 20mA.
Multi-function analog output AO1 and AO2 are used for an analog output meter. Do not use these outputs
for feedback control.
Control board’s 24V and +10V are to be used for internal control only, Do not use the internal power-supply to
power external devices.
Type Terminal Terminal Function
Analog
input
signal
+10V Positive power for external speed potentiometer
AI1 Multi-function analog input terminal (0~10V)/(4-20mA)
GND Analog signal ground terminal
E Shielding wire’s connecting terminal (Ground)
Analog
output
signal
AO1 Multi-function analog output terminal(0~10V)/(4-20mA )
AO2 Multi-function analog output terminal(0~10V)/(4-20mA )
GND Analog signal ground terminal
Digital
output
D01 Multi-function(open collector transistor) output
DOG Open collector transistor digital ground
Relay
output
R1A Relay A contact (multi-function output terminal)
R1B Relay B contact (multi-function output terminal)
R1C Relay contact common terminal,
Safety
Functions
F1 On: normal operation.
Off: stop.
(Jumper wired between SF1/ SF2 and SG has to be removed by using external
contact to stop.)
F2
SG Safety command common terminal
RS-485
A
RS485/MODBUS
B
SGND Grounding to earth
Shield the connecting terminal
16
2.5 Specifications of terminal wiring
2.5.1 Wiring specification
E710 series Wiring diameter AWG (mm2
)
NFB*4 MC*4 Power
Supply Motor(HP)*1
Rated
Current
(A)
main
Terminal*2
Ground
E(G)
Control
Terminal
*3
200V
0.5HP 2.8 14~12
(2~3.5)
14~12
(2~3.5)
24~16
(0.2~
1.5)
TO-50EC(15A) CU-11 1HP 4.8
2HP 7.5
12~10
(3.5~5.3)
12~10
(3.5~5.3)
TO-50EC(20A) CU-11
3HP 11 10
(5.3)
10
(5.3) TO-50EC(30A) CU-11
5HP 17 8(8.4) 8(8.4) TO-50EC(30A) CU-16
7.5HP 25 8(8.4) 8(8.4) TO-100S(50A) CU-18
400V
3 Ø
1HP 2.7
14~12
(2~3.5)
14~12
(2~3.5)
TO-50EC(15A) CU-11
2HP 4.2
14~12
(2~3.5)
14~12
(2~3.5)
TO-50EC(15A) CU-11
3HP 5.5
14~10
(2~5.3)
14~10
(2~5.3) TO-50EC(15A) CU-11
5HP 9
12~10
(3.5~5.3)
12~10
(3.5~5.3) TO-50EC(15A) CU-18
7.5HP 13 10
(5.3)
10
(5.3) TO-50EC(20A) CU-18
10HP 17 8(8.4) 8(8.4) TO-50EC(30A) CU-25
2.5.2 Terminal specification suggestion
2.5.2.1 Main Terminal
17
2.5.2.2 Control Terminal
18
2.6 Outline Dimensions and installation
2.6.1 Standard
(a)220V : 2P5~201HP/440V : 401~402HP (IP00)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-2P5-HE 72 142 150 60 130.5 5 M4 1.2
E710-201-HE 72 142 150 60 130.5 5 M4
1.2
E710-401-H3E 72 142 150 60 130.5 5 M4
1.2
E710-402-H3E 72 142 150 60 130.5 5 M4
1.2
19
(b)220V : 2P5~201HP/440V : 401~402HP (NEMA1)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-2P5-HE 72 220 150 60 130.5 5 M4 1.5
E710-201-HE 72 220 150 60 130.5 5 M4
1.5
E710-401-H3E 72 220 150 60 130.5 5 M4
1.5
E710-402-H3E 72 220 150 60 130.5 5 M4
1.5
20
(c)220V : 202~205HP/440V : 403~405HP (IP00)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-202-HS 87 157 164 73 145 5 M4 1.9
E710-203-HS 87 157 164 73 145 5 M4
1.9
E710-205-H3S 87 157 164 73 145 5 M4
1.9
E710-403-H3S 87 157 164 73 145 5 M4
1.9
E710-405-H3S 87 157 164 73 145 5 M4
1.9
21
(d)220V : 202~205HP/440V : 403~405HP (NEMA1)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-202-HS 87 220 164 73 145 5 M4 2.0
E710-203-HS 87
220 164 73 145 5 M4
2.0
E710-205-H3S 87
220 164 73 145 5 M4
2.0
E710-403-H3E 87
220 164 73 145 5 M4
2.0
E710-405-H3S 87
220 164 73 145 5 M4
2.0
22
(e)220V : 208HP/440V : 408-410HP (IP00)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-208-H3S 109 207 169 94 194.5 6 M4 2.3
E710-408-H3S 109 207 169 94 194.5 6 M4
2.3
E710-410-H3S 109 207 169 94 194.5 6 M4
2.3
23
(f)220V : 208HP/440V : 408-410HP (NEMA1)
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-208-H3S 109 250 169 94 194.5 6 M4 2.3
E710-408-H3S 109 250 169 94 194.5 6 M4
2.3
E710-410-H3S 109 250 169 94 194.5 6 M4
2.3
24
2.6.2 Filter built-in(440V 1~10HP)
(a)440V : 401~402HP
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-401-H3EF 72 169.5 195.5 60 156 1.2 M4 Weight to be
determined E710-402-H3EF 72 169.5 195.5 60 156 1.2 M4
25
(b)440V : 403-405HP
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-403-H3SF 87
184 207 73 171 1.2 M4 Weight to be
determined E710-405-H3SF 87
184
207 73 171 1.2 M4
26
(c)440V : 408-410HP
Inverter model
Outline Dimensions (mm)
W H D W1 H1 t d
Gross
Weight(kg)
remark
E710-408-H3SF 109 232 210 94 222.5 1.2 M4 Weight to be
determined E710-410-H3SF 109
232 210
94
222.5
1.2 M4
2.6.3 KeyPadOutline Dimensions
Installation position
Install the product in an easy to operate environment and avoid exposure to:
to avoid direct sunlight
prevent rain drops of rain or damp environment
to prevent oil mist, the erosion of salt
prevent the corrosive liquid and gas
to prevent dust, lint and metal fines
to prevent electromagnetic interference (welding machine, power machine)
from radioactive material and fuel
27
to prevent vibration (punch), if cannot avoid please add shock pads to reduce the vibration
Chapter 3 Parameters
Parameter group Group Name
Group 00 Basic Parameters
Group 01 V/F Control Parameters
Group 02 IM Motor Parameters
Group 03 External Digital Input and Output Parameters
Group 04 External Analog Input and Output Parameters
Group 05 Multi-Speed Parameters
Group 06 Automatic Program Operation Parameters
Group 07 Start /Stop Parameters
Group 08 Protection Parameters
Group 09 Communication Parameters
Group 10 PID Parameters
Group 11 Auxiliary Parameters
Group 12 Monitoring Parameters
Group 13 Maintenance Parameters
Group 14 PLC Parameters
Group 15 PLC Monitoring Parameters
Group 16 LCD Parameters
Group 17 Automatic Tuning Parameters
Group 18 Slip Compensation Parameters
Group 19 Wobble Frequency Parameters
Group 20 Speed Control Parameters
Group 21 Torque And Position Control Parameters
Group 22 PM Motor Parameters
Parameter Attribute
*1 Parameters can be changed during run
operation.
*2 Reserved
*3 Parameter will not reset to default during a
factory reset (initialization).
*4 Read-only parameter
*5 Parameter will be displayed in being coupled
with the option card.
*6 Parameter will be displayed only in LED
keypad.
*7 Parameter will be displayed only in LCD
keypad.
*8
When 13-08 setting is changed, the value will
be also changed.
*9 Reserved
*10
Only available after I/O expansion card
installed(In development)
*11 In development
28
Group 00: Basic Parameters
Code Parameter
Name Setting Range Default Attrib
ute
00-00 Control Mode
Selection
0: V/F
0 *3
1: Reserved
2: SLV
3: Reserved
4: Reserved
5: PMSLV
6: SLV2
00-01
Motor’s
Rotation
Direction
0: Forward
0 *1
1: Reverse
00-02
Main Run
Command
Source
Selection
0: Keypad
0
1: External
Terminal
(Control Circuit)
2:
Communication
Control (RS485)
3: PLC
4: RTC (*11)
00-03
Alternative
Run
Command
Selection
0: Keypad
0
(Note4)
1: External
Terminal
(Control Circuit)
2:
Communication
Control (RS485)
3: PLC
4: RTC (*11)
00-04 Language
0: English
0 *7
1: Simplified
Chinese
2: Traditional
Chinese
3: Turkish
00-05
Main
Frequency
Command
Source
Selection
0: Keypad
1
1: External
Terminal
(Analog 1)
2: Terminal
Command
UP/DOWN
3:
Communication
Control (RS-485)
4: Pulse Input
5: Reserved
6: RTC (*11)
7: AI2 Auxiliary
Frequency
8: Keypad VR
9: Manual Pulse
Generator
(MPG) (*11)
00-06 Alternative
Frequency
0: Keypad 0
1: VR (Analog 1) (Note4)
Group 00: Basic Parameters
Code Parameter
Name Setting Range Default Attrib
ute
Source
Selection
2: External
Terminal
(Analog 1)
3: Communication
Control (RS-485)
4: Terminal
Command
UP/DOWN
5: Pulse Input
6: Reserved
7: RTC (*11)
8: AI2 Auxiliary
Frequency
00-07
Main and
Alternative
Frequency
Command
Modes
0: Main
Frequency
0
1: Main
frequency
+Alternative
Frequency
00-08
Communicati
on Frequency
Command
Range
0.00~599.00 0.00
00-09
Communicati
on Frequency
Command
Memory
Selection
0: Don’t save
when power
supply is off.
(00-08) 0
1: Save when
power is off. (00-
08)
00-10
Minimum
frequency
detection
0:Show warning
if lower than
minimum
frequency
0 Note1
1:Run as
minimum
frequency if
lower than
minimum
frequency
2:No STP0
warning, output
frequency
command
3:No STP0
warning, below
the minimum
frequency output
0
00-11
PID Lower
Limit of
Frequency
Selection
0: PID Sleep
Limit is Lower
Limit of
Frequency 0
1: PID Sleep
Limit is 0Hz
00-12
Upper
Frequency
limit
0.1~109.0 100.0
00-13 Lower 0.0~109.0 0.0
29
Group 00: Basic Parameters
Code Parameter
Name Setting Range Default Attrib
ute
Frequency
limit
00-14 Acceleration
Time 1
0.1~6000.0 * *1
00-15 Deceleration
Time 1
0.1~6000.0 * *1
00-16 Acceleration
Time 2
0.1~6000.0 * *1
00-17 Deceleration
Time 2
0.1~6000.0 * *1
00-18 *Jog
Frequency
0.00~599.00 6.00 *1
00-19
Jog
Acceleration
Time
0.1~0600.0 - *1
00-20
Jog
Deceleration
Time
0.1~0600.0 - *1
00-21 Acceleration
time 3
0.1~6000.0 * *1
00-22 Deceleration
time 3 0.1~6000.0 * *1
00-23 Acceleration
time 4 0.1~6000.0 * *1
00-24 Deceleration
time 4 0.1~6000.0 * *1
00-25
Switch-Over
Frequency of
Acc/Dec Time
1 and Time 4
0.00~599.00 0.0
00-26 Emergency
Stop Time 0.1~6000.0 5.0
00-27 Reserved
00-28
Command
Characteristic
selection of
master
frequency
0: Positive
Characteristic
(0~10V/4~20mA
is corresponding
to 0~100%) 0
1: Negative
Characteristic
(0~10V/4~20mA
is corresponding
to 100~0%)
00-29
Zero-Speed
Operation
Selection
0: Operation
Based on
Frequency
Command
0
1: Stop
2: Operation
Based on the
Lowest
Frequency
3: Zero-Speed
Operation
00-30
00-31 Reserved
Group 00: Basic Parameters
Code Parameter
Name Setting Range Default Attrib
ute
00-32
Application
Selection
Presets**
0: General
0
1: Reserved
2: Conveyor
3: Exhaust Fan
4: Reserved
5: Compressor
6: Hoist**
7: Crane**
8: Manual Pulse
Generator
(MPG) (Note4)
9: Band Saw
10: Stamping
Press
00-33
Modified
Parameters
(only for LCD
keypad)
0:Disable
0 *7
1:Enable
00-34
~
00-40
Reserved
00-41 User
parameter 0
Set 13-06 = 1,
start user
parameter. The
setting range is
00-01 ~22-31,
but except 00-
41~00-56 and
group 17 (only
for LCD keypad)
00-41 *7
00-42 User
parameter 1
00-42 *7
00-43 User
parameter 2
00-43 *7
00-44 User
parameter 3
00-44 *7
00-45 User
parameter 4
00-45 *7
00-46 User
parameter 5
00-46 *7
00-47 User
parameter 6
00-47 *7
00-48 User
parameter 7
00-48 *7
00-49 User
parameter 8
00-49 *7
00-50 User
parameter 9
00-50 *7
00-51 User
parameter 10 00-51 *7
00-52 User
parameter 11 00-52 *7
00-53 User
parameter 12 00-53 *7
00-54 User
parameter 13 00-54 *7
00-55 User
parameter 14 00-55 *7
00-56 User
parameter 15 00-56 *7
00-57 SV High
Speed Mode
0: SV High
Speed Mode1
0
1: SV High
Speed Mode2
*: Refer to the attachment 1 in our instruction manual.
30
**: Before to set up 00-32 Application, it should do
initialized setting (parameter 13-08) first. When
setting 00-32, the I/O port function changed
automatically. To avoid accident, be sure to confirm
the I/O port signal of inverter and external terminal
control.
*** If parameter 00-27 is set to ND mode, group 02 motor
1 parameter will automatically adjust to more than 1
class of it.
If parameter 00-27 is set to HD mode, group 02 motor 1
parameter will automatically adjust to the same class
of it.
It is suggested that parameter 00-27 be set first
before motor performs auto-tuning because the
parameter will make the motor parameter
automatically be changed.
***** If the maximum output frequency of motor is over
300HZ,the frequency resolution is changed to 0.1Hz.
Group 01: V/F Control Parameters
Code Parameter
Name Setting Range Default Attrib
ute
01-00 V/F Curve
Selection 0~FF F *3
01-01 Reserved
01-02
Maximum
Output
Frequency of
Motor 1
4.8~599.0 50.0/
60.0 *8
01-03
Maximum
Output
Voltage of
Motor 1
200V: 0.1~255.0 -
*8 400V: 0.2~510.0 -
575V: 0.1~670.0 -
690V: 0.1~804.0 -
01-04
Middle Output
Frequency 2
of Motor 1
0.0~599.0 0.0
01-05
Middle Output
Voltage 2 of
Motor 1
200V: 0.0~255.0
0.0 *8 400V: 0.0~510.0
575V: 0.0~670.0
690V: 0.0~804.0
01-06
Middle Output
Frequency 1
of Motor 1
0.0~599.0 3.0
01-07
Middle Output
Voltage 1 of
Motor 1
200V: 0.0~255.0
* *8 400V: 0.0~510.0
575V: 0.0~670.0
690V: 0.0~804.0
01-08
Minimum
Output
Frequency of
Motor 1
0.0~599.0
VF:
1.3/1.5
VF+PG:-
SLV:0.5/0.
6
SV:-
PMSV:-
PMSLV:
0.8
SLV2:
1.3/1.5
01-09 Minimum
Output
200V: 0.0~255.0 -
*8 400V: 0.0~510.0
Group 01: V/F Control Parameters
Code Parameter
Name Setting Range Default Attrib
ute
Voltage of
Motor 1
575V: 0.0~670.0
-
690V: 0.0~804.0
01-10
Torque
Compensatio
n Gain
0.0~2.0 0.5 *1
01-11
Selection of
Torque
Compensatio
n Mode
0: Torque
Compensation
Mode 0 0
1: Torque
Compensation
Mode 1
01-12
Base
Frequency of
Motor 1
4.8~599.0 50.0/
60.0 *8
01-13
Base Output
Voltage of
Motor 1
200V: 0.0~255.0 -
*8 400V: 0.0~510.0 -
575V: 0.0~670.0 -
690V: 0.0~804.0 -
01-14 Input Voltage
Setting
200V: 155.0~255.0 -
*8 400V: 310.0~510.0 -
575V: 540.0~670.0 -
690V: 648.0~804.0 -
01-15
Torque
Compensatio
n Time
0~10000 200
01-16
Maximum
Output
Frequency of
Motor 2
4.8~599.0 50.0/
60.0 *8
01-17
Maximum
Output
Voltage of
Motor 2
200V: 0.1~255.0 -
*8 400V: 0.2~510.0 -
575V: 0.1~670.0 -
690V: 0.1~804.0 -
01-18
Middle Output
Frequency 2
of Motor 2
0.0~599.0 0.0
01-19
Middle Output
Voltage 2 of
Motor 2
200V: 0.0~255.0
0.0 400V: 0.0~510.0
575V: 0.0~670.0
690V: 0.0~804.0
01-20
Middle Output
Frequency 1
of Motor 2
0.0~599.0 -
01-21
Middle Output
Voltage 1 of
Motor 2
200V: 0.0~255.0
KVA
400V: 0.0~510.0
575V: 0.0~670.0
690V: 0.0~804.0
01-22
Minimum
Output
Frequency of
Motor 2
0.0~599.0 -
01-23
Minimum
Output
Voltage of
Motor 2
200V: 0.0~255.0
KVA
400V: 0.0~510.0
575V: 0.0~670.0
690V: 0.0~804.0
31
Group 01: V/F Control Parameters
Code Parameter
Name Setting Range Default Attrib
ute
01-24
Base
Frequency of
Motor 2
4.8~599.0 50.0/
60.0 *8
01-25
Base Output
Voltage of
Motor 2
200V: 0.0~255.0 -
*8 400V: 0.0~510.0 -
575V: 0.0~670.0 -
690V: 0.0~804.0 -
01-26
V/F Curve
Selection of
Motor 2
0~FF F *3
KVA: The default value of this parameter will be
changed by different capacities of inverter.
Group 02: IM Motor Parameters
Code Parameter
Name Setting Range Default Attrib
ute
02-00
No-Load
Current of
Motor1
0.01~600.00 -
02-01
Rated
Current of
Motor1
Modes of V/F,
V/F+PG are
10%~200% of
inverter’s rated
current. Modes
of SLV, SV are
25%~200% of
inverter’s rated
current.
-
02-02 Reserved
02-03
Rated
Rotation
Speed of
Motor1
0~60000 -
02-04
Rated
Voltage of
Motor1
200V: 50.0~240.0 -
*8 400V: 100.0~480.0 -
575V: 150.0~670.0 -
690V: 200.0~804.0 -
02-05 Rated Power
of Motor1 0.01~600.00 -
02-06
Rated
Frequency of
Motor1
4.8~599.0 50.0/
60.0 *8
02-07 Poles of
Motor 1 2~16(Even) 4
02-08 Reserved
02-09
Excitation
Current of
Motor 1
15%~70% of
Motor Rated
Current
-
02-10
Core
Saturation
Coefficient 1
of Motor 1
1~100 -
02-11
Core
Saturation
Coefficient 2
of Motor 1
1~100 -
Group 02: IM Motor Parameters
Code Parameter
Name Setting Range Default Attrib
ute
02-12
Core
Saturation
Coefficient 3
of Motor 1
80~300 -
02-13 Core loss of
Motor 1 0.0~15.0 -
02-14 Reserved
02-15
Resistance
between
Wires of
Motor 1
0.001~60.000 -
02-16
rotor
resistance of
Motor 1
0.001~60.000
02-17
leakage
inductance of
Motor 1
0.01~200.00
02-18
mutual
inductance of
Motor 1
0.1~6553.4
02-19
No-Load
Voltage of
Motor 1
200V: 50~240 -
400V: 100~480 -
575V: 420~600 -
690V: 504~720 -
02-20
No-Load
Current of
Motor 2
0.01~600.00 -
02-21
Rated
Current of
Motor 2
25%~200% of
inverter’s rated
current
-
02-22
Rated
Rotation
Speed of
Motor 2
0~60000 -
02-23
Rated
Voltage of
Motor 2
200V: 50.0~240.0 -
*8 400V: 100.0~480.0 -
575V: 150.0~670.0 -
690V: 200.0~804.0 -
02-24 Rated Power
of Motor 2 0.01~600.00 -
02-25
Rated
Frequency of
Motor 2
4.8~599.0 50.0/
60.0 *8
02-26 Poles of
Motor 2
2~16 (Even) 4
02-27
~
02-31
Reserved
02-32
Resistance
between
Wires of
Motor 2
0.001~60.000 -
02-33
Proportion of
Motor 1
Leakage
Inductance
0.1~15.0 -
02-34 Motor 1 Slip
Frequency 0.10~20.00 -
32
Group 02: IM Motor Parameters
Code Parameter
Name Setting Range Default Attrib
ute
02-35
~
02-36
Reserved
02-37
Motor
Mechanical
Loss
0.0~10.0 4.0
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
03-00
Multi-Function
Terminal
Function
Setting-S1
0: 2-Wire
Sequence
(ON: Forward
Run Command)
0
1: 2-Wire
Sequence (ON:
Reverse Run
Command)
2: MultiSpeed/Position
Setting
Command 1
3: MultiSpeed/Position
Setting
Command 2
4: MultiSpeed/Position
Setting
Command 3
5: MultiSpeed/Position
Setting
Command 4
6: Forward Jog
Run Command
03-01
Multi-Function
Terminal
Function
Setting-S2
7: Reverse Jog
Run Command
1
8: UP Frequency
Increasing
Command
9: DOWN
Frequency
Decreasing
Command
10: Acceleration/
Deceleration
Time Selection 1
11: Inhibit
Acceleration/
Deceleration
Command
12: Main/
Alternative Run
Switch Function
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
13: Main/
Alternative
Frequency
Switch Function
03-02
Multi-Function
Terminal
Function
Setting-S3
14: Emergency
Stop (decelerate
to zero and stop)
2
15: External
Baseblock
Command
(rotation freely to
stop)
16: PID Control
Disable
17: Fault Reset
(RESET)
18: Reserved
19: Speed
Search 1 (from
the maximum
frequency)
20: Manual
Energy Saving
Function
03-03
Multi-Function
Terminal
Function
Setting-S4
21: PID Integral
Reset
3
22~23 : Reserved
24: PLC Input
25: External Fault
26: 3-Wire
Sequence
(Forward/Revers
e command)
27: Local/
Remote
Selection
03-04
Multi-Function
Terminal
Function
Setting-S5
28: Remote
Mode Selection
4
29: Jog
Frequency
Selection
30: Acceleration/
Deceleration
Time Selection 2
31: Inverter
Overheating
Warning
32: Sync
Command
33: DC Braking
34: Speed
Search 2 (from
the frequency
command)
35: Timing
Function Input
33
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
36: PID Soft
Start Disable
03-05
Multi-Function
Terminal
Function
Setting-S6
37: Traversing
Operation
17
38: Upper
Deviation of
Traverse
Operation
39: Lower
Deviation of
Traverse
Operation
40: Switching
between Motor
1/Motor 2
41: PID Sleep
42: PG Disable
43: PG Integral
Reset
03-06
Multi-Function
Terminal
Function
Setting-S7
44: Mode
Switching
between Speed
and Torque
29*
45: Negative
Torque
Command
46: Zero-Servo
Command
47: Fire
mode(Forced
Operation mode)
48: KEB
Acceleration
49: Parameters
Writing Allowable
50: Unattended
Start Protection
(USP)
03-07 Reserved
03-08 (S1~S7) DI
Scan Time
0: Scan Time 4ms
1: Scan Time 8ms 1
03-09
Multi-Function
Terminal S1-
S4 Type
Selection
xxx0b: S1 A
Contact
xxx1b: S1 B
Contact
0000b
xx0xb: S2 A
Contact
xx1xb: S2 B
Contact
x0xxb: S3 A
Contact
x1xxb: S3 B
Contact
0xxxb: S4 A
Contact
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
1xxxb: S4 B
Contact
03-10
Multi-Function
Terminal S5-
S7 Type
Selection
xxx0b: S5 A
Contact
xxx1b: S5 B
Contact
0000b
xx0xb: S6 A
Contact
xx1xb: S6 B
Contact
x0xxb: S7 A
Contact
x1xxb: S7 B
Contact
0xxxb: S8 A
Contact
1xxxb: S8 B
Contact
03-11 Relay (R1AR1C) Output
0: During
Running
1
(Note4)
1: Fault Contact
Output
2: Frequency
Agree
3: Setting
Frequency
Agree
4: Frequency
Detection 1 (≧
03-13+03-14)
5: Frequency
Detection 2 (≦
03-13+03-14)
6: Automatic
Restart
7~8: Reserved
9: Baseblock
10~11: Reserved
12: Over-Torque
Detection
13: Current
Agree
14: Mechanical
Braking Control
(03-17~18)
15~17: Reserved
18: PLC status
19: PLC Control
Contact
03-12
(Note)
Photo-coupler
Output(DO1-
DOG)
20: Zero Speed
0
(Note4)
21: Inverter
Ready
22: Under
Voltage
Detection
34
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
23: Source of
Operation
Command
24: Source of
Frequency
Command
25: Low Torque
Detection
26: Frequency
Reference
Missing
27: Timing
Function Output
28: Traverse
Operation UP
Status
29 : During
Traverse
Operation Status
30 : Motor 2
Selection
31 : Zero Speed
Servo Status
(Position Mode)
32: Communication
Control Contacts
33: RTC Timer 1 Note8
34: RTC Timer 2 Note8
35: RTC Timer 3 Note8
36: RTC Timer 4 Note8
37: PID
Feedback Loss
Detection Output
38: Brake
Release
39: Frequency
Detection 1
(dedicated for
Crane)
40: Frequency
Output
41: Position
Agree (Position
Mode)
42~44: Reserved
45: PID sleep
46~49: Reserved
50: Frequency
Detection 3 (≧
03-44+03-45)
51: Frequency
Detection 4 (≦
03-44+03-45)
52: Frequency
Detection 5 (≧
03-46+03-47)
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
53: Frequency
Detection 6 (≦
03-46+03-47)
54: Turn on
short-circuit
braking
Note1
57: Low Current
Detection Note2
58: Frequency
Deceleration
Detection
Note4
59: OverTemperature
Detection
Note4
60: Life warning
period
03-13
Frequency
Detection
Level
0.0~599.0 0.0
03-14
Frequency
Detection
Width
0.1~25.5 2.0
03-15 Current Agree
Level 0.1~999.9 0.1
03-16
Delay Time of
Current Agree
Detection
0.1~10.0 0.1
03-17
**Mechanical
Braking
Release
Level
0.00~599.00 0.00
03-18
**Mechanical
Braking Level
Set
0.00~599.00 0.00
03-19 Relay &DO1
Type
xxx0b: R1 A
Contact
xxx1b: R1 B
Contact
0000b *10 xx0xb: Photocoupler 1 A
Contact
xx1xb: Photocoupler 1 B
Contact
03-20 Reserved
03-21 Reserved
03-22
~
03-26
Reserved
03-27
UP/DOWN
Frequency
Hold/Adjust
Selection
0: Hold last set
frequency when
stopped 0
1: Set frequency
to 0 when
stopped
35
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
2: Allow speed
changes from
last set
frequency when
stopped
3: Refresh
frequency at
acceleration.
03-28
Photo-coupler
Output (DO1-
DOG)
Range and
definition are the
same as those of
03-11, 03-12
(03-28 Set to 8
is pulse output
function)
0
03-29
Photo-coupler
Output
Selection
(DO1-DOG)
(DO2-DOG)
xx0xb: Photocoupler 2 A
Contact
xx1xb: Photocoupler 2 B
Contact
0000b
*10
03-30 Selection of
Pulse Input
0: General Pulse
Input 0
1: PWM
03-31 Scale of
Pulse Input
Depending on
the setting of 03-
30
03-30 = 0:
50~32000Hz
03-30 = 1:
10~1000Hz
1000 *1
03-32 Pulse Input
Gain
0.0~1000.0 100 *1
03-33 Pulse Input
Bias -100.0~100.0 0.0 *1
03-34 Filter Time of
Pulse Input 0.00~2.00 0.1 *1
03-35
Function
Setting of
Pulse Output
1: Frequency
Command
2 *1
2: Output
Frequency
3: Output
Frequency
after Soft-Start
4: Motor Speed
5: PID Feedback
6: PID Input
7: PG Output
(with PG card)
03-36 Scale of
Pulse Output 1~32000 1000 *1
03-37 Timer ON
Delay (DIO) 0.0~6000.0 0.0
03-38 Timer OFF
Delay (DIO) 0.0~6000.0 0.0
Group 03: External Digital Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
03-39 Reserved
03-40
Up/Down
Frequency
Width Setting
0.00~5.00 0.00
03-41
Torque
Detection
Level
0~150 10
03-42
Brake
Release
Delay Time
0.00~65.00 0.00
03-43
UP/DOWN
Acceleration/
Deceleration
Selection
0: Acceleration/
Deceleration
Time 1 0
1: Acceleration/
Deceleration
Time 2
03-44
Frequency
Detection
Level 2
0.0~599.0 0.0
03-45
Frequency
Detection
Width 2
0.1~25.5 2.0
03-46
Frequency
Detection
Level 3
0.0~599.0 0.0
03-47
Frequency
Detection
Width 3
0.1~25.5 2.0
03-48
Low Current
Detection
Level
0.0~999.9 0.1 Note2
03-49
Low Current
Detection
Delay Time
0.00~655.34
(Note4) 0.01 Note2
03-50
Frequency
Detection
Level 4
0.0~599.0 0.0 Note3
03-51
Frequency
Detection
Level 5
0.0~599.0 0.0 Note3
03-52
Frequency
Detection
Level 6
0.0~599.0 0.0 Note3
03-53 Current
Agree Level 2 0.0~999.9 0 Note4
03-54 counter ON
delay
0~12 0
03-55 counter OFF
delay
0~12 0
* 2-wire operation mode: 29; 3-wire operation mode:
26.
* *If the maximum output frequency of motor is over
300HZ, the frequency resolution is changed to 0.1Hz
Note: For standard H & C type frame 1, the DO2
function is setting by 03-12.
36
Group 04: External Analog Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
04-00 AI Input
Signal Type
0: AI1:0~10V
AI2:0~10V
1
1: AI1:0~10V
AI2:4~20mA
2: Reserved
3: Reserved
4: AI1: 4~20mA
AI2: 0~10V *9
5: AI1: 4~20mA
AI2: 4~20mA *9
04-01
AI1 Signal
Scanning and
Filtering Time
0.00~2.00 0.03
04-02 AI1 Gain 0.0~1000.0 100.0 *1
04-03 AI1 Bias -100.0~100.0 0 *1
04-04 Negative AI 0: Disable 0 Note4 1: Enable
04-05 AI2 Function
Setting
0: Auxiliary
Frequency
10
1: Frequency
Reference Gain
2: Frequency
Reference Bias
3: Output
Voltage Bias
4: Coefficient of
Acceleration and
Deceleration
Reduction
5: DC Braking
Current
6: Over-Torque
Detection Level
7: Stall
Prevention Level
During Running
8: Frequency
Lower Limit
9: Jump
Frequency 4
10: Added to AI1
11: Positive
torque limit
12: Negative
torque limit
13: Regenerative
Torque Limit
14: Positive /
Negative Torque
Limit
15: Torque
Reference/
Torque Limit (in
Speed Control)
16: Torque
Compensation
Group 04: External Analog Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
17: PTC
Overheat
Protection
04-06
AI2 Signal
Scanning and
Filtering Time
0.00~2.00 0.03
04-07 AI2 Gain 0.0~1000.0 100.0 *1
04-08 AI2 Bias -100.0~100.0 0 *1
04-09 Reserved
04-10 Reserved
04-11 AO1 Function
Setting
0: Output
Frequency
0
1: Frequency
Command
2: Output
Voltage
3: DC Voltage
4: Output Current
5: Output Power
6: Motor Speed
7: Output Power
Factor
8: AI1 Input
9: AI2 Input
10: Torque
Command
11: q-axis
Current
(reserved above
Frame2)
12: d-axis
Current
(reserved above
Frame2)
13: Speed
Deviation
14: Reserved
15: ASR Output
16: Reserved
17: q-axis
Voltage
(reserved above
Frame2)
18: d-axis
Voltage
(reserved above
Frame2)
19~20: Reserved
21: PID Input
22: PID Output
23: PID Target
Value
24: PID
Feedback Value
37
Group 04: External Analog Input and
Output Parameters
Code Parameter
Name Setting Range Default Attrib
ute
25: Output
Frequency of the
Soft Starter
26: PG
Feedback
27: Reserved
28:Communicati
on control
04-12 AO1 Gain 0.0~1000.0 100.0 *1
04-13 AO1 Bias -100.0~100.0 0 *1
04-14
04-15 Reserved
04-16 AO2 Function
Setting
Range and
definition are the
same as those of
04-11.
3
04-17 AO2 Gain 0.0~1000.0 100.0 *1
04-18 AO2 Bias -100.0~100.0 0 *1
04-19 AO Output
Signal Type
0: AO1 0~10V
AO2 0~10V
0
1: AO1 0~10V
AO2 4~20mA
2: AO1 4~20mA
AO2 0~10V *9
3: AO1 4~20mA
AO2 4~20mA *9
04-20
Filter Time of
AO Signal
Scan
0.00~0.50 0.00 *1
04-21 Reserved
04-22 Reserved
04-23 Reserved
Group 05: Multi-Speed Parameters
Code Parameter
Name Setting Range Default Attrib
ute
05-00
Acceleration
and
Deceleration
Selection of
Multi-Speed
0: Acceleration
and deceleration
time are set by
00-14 ~ 00-24 0
1: Acceleration
and Deceleration
Time are set by
05-17 ~ 05-48
05-01
*Frequency
Setting of
Speed-Stage 0
0.00~599.00 5.00 *1
05-02
*Frequency
Setting of
Speed-Stage 1
0.00~599.00 5.00 *1
Group 05: Multi-Speed Parameters
Code Parameter
Name Setting Range Default Attrib
ute
05-03
*Frequency
Setting of
Speed-Stage 2
0.00~599.00 10.00 *1
05-04
*Frequency
Setting of
Speed-Stage 3
0.00~599.00 20.00 *1
05-05
*Frequency
Setting of
Speed-Stage 4
0.00~599.00 30.00 *1
05-06
*Frequency
Setting of
Speed-Stage 5
0.00~599.00 40.00 *1
05-07
*Frequency
Setting of
Speed-Stage 6
0.00~599.00 50.00 *1
05-08
*Frequency
Setting of
Speed-Stage 7
0.00~599.00 50.00 *1
05-09
*Frequency
Setting of
Speed-Stage 8
0.00~599.00 5.00 *1
05-10
*Frequency
Setting of
Speed-Stage 9
0.00~599.00 5.00 *1
05-11
*Frequency
Setting of
Speed-Stage
10
0.00~599.00 5.00 *1
05-12
*Frequency
Setting of
Speed-Stage
11
0.00~599.00 5.00 *1
05-13
*Frequency
Setting of
Speed-Stage
12
0.00~599.00 5.00 *1
05-14
*Frequency
Setting of
Speed-Stage
13
0.00~599.00 5.00 *1
05-15
*Frequency
Setting of
Speed-Stage
14
0.00~599.00 5.00 *1
05-16
*Frequency
Setting of
Speed-Stage
15
0.00~599.00 5.00 *1
05-17
Acceleration
Time Setting
of Multi
Speed 0
0.1~6000.0 10.0
05-18
Deceleration
Time Setting
of Multi
Speed 0
0.1~6000.0 10.0
05-19
Acceleration
Time Setting
of Multi
Speed 1
0.1~6000.0 10.0
05-20
Deceleration
Time Setting
of Multi
Speed 1
0.1~6000.0 10.0
38
Group 05: Multi-Speed Parameters
Code Parameter
Name Setting Range Default Attrib
ute
05-21
Acceleration
Time Setting
of Multi
Speed 2
0.1~6000.0 10.0
05-22
Deceleration
Time Setting
of Multi
Speed 2
0.1~6000.0 10.0
05-23
Acceleration
Time Setting
of Multi
Speed 3
0.1~6000.0 10.0
05-24
Deceleration
Time Setting
of Multi
Speed 3
0.1~6000.0 10.0
05-25
Acceleration
Time Setting
of Multi
Speed 4
0.1~6000.0 10.0
05-26
Deceleration
Time Setting
of Multi
Speed 4
0.1~6000.0 10.0
05-27
Acceleration
Time Setting
of Multi
Speed 5
0.1~6000.0 10.0
05-28
Deceleration
Time Setting
of Multi
Speed 5
0.1~6000.0 10.0
05-29
Acceleration
Time Setting
of Multi
Speed 6
0.1~6000.0 10.0
05-30
Deceleration
Time Setting
of Multi
Speed 6
0.1~6000.0 10.0
05-31
Acceleration
Time Setting
of Multi
Speed 7
0.1~6000.0 10.0
05-32
Deceleration
Time Setting
of Multi
Speed 7
0.1~6000.0 10.0
05-33
Acceleration
Time Setting
of Multi
Speed 8
0.1~6000.0 10.0
05-34
Deceleration
Time Setting
of Multi
Speed 8
0.1~6000.0 10.0
05-35 Acceleration
Time Setting 0.1~6000.0 10.0
Group 05: Multi-Speed Parameters
Code Parameter
Name Setting Range Default Attrib
ute
of Multi
Speed 9
05-36
Deceleration
Time Setting
of Multi
Speed 9
0.1~6000.0 10.0
05-37
Acceleration
Time Setting
of Multi
Speed 10
0.1~6000.0 10.0
05-38
Deceleration
Time Setting
of Multi
Speed 10
0.1~6000.0 10.0
05-39
Acceleration
Time Setting
of Multi
Speed 11
0.1~6000.0 10.0
05-40
Deceleration
Time Setting
of Multi
Speed 11
0.1~6000.0 10.0
05-41
Acceleration
Time Setting
of Multi
Speed 12
0.1~6000.0 10.0
05-42
Deceleration
Time Setting
of Multi
Speed 12
0.1~6000.0 10.0
05-43
Acceleration
Time Setting
of Multi
Speed 13
0.1~6000.0 10.0
05-44
Deceleration
Time Setting
of Multi
Speed 13
0.1~6000.0 10.0
05-45
Acceleration
Time Setting
of Multi
Speed 14
0.1~6000.0 10.0
05-46
Deceleration
Time Setting
of Multi
Speed 14
0.1~6000.0 10.0
05-47
Acceleration
Time Setting
of Multi
Speed 15
0.1~6000.0 10.0
05-48
Deceleration
Time Setting
of Multi
Speed 15
0.1~6000.0 10.0
* If the maximum output frequency of motor is over
300HZ, the frequency resolution is changed to 0.1Hz
39
Group 06: Automatic Program Operation
Parameters
Code Parameter
Name Setting Range Default Attrib
ute
06-00
Automatic
Operation
Mode
Selection
0: Disable
0
1: Execute a single
cycle operation
mode. Restart
speed is based on
the previous
stopped speed.
2: Execute
continuous cycle
operation mode.
Restart speed is
based on the
previous stopped
speed.
3: After the
completion of a
single cycle, the
on-going operation
speed is based on
the speed of the
last stage. Restart
speed is based on
the previous
stopped speed.
4: Execute a single
cycle operation
mode. Restart
speed will be
based on the
speed of stage 0.
5: Execute
continuous cycle
operation mode.
Restart speed will
be based on the
speed of stage 0.
6: After the
completion of a
single cycle, the
on-going operation
speed is based on
the speed of the
last stage. Restart
speed is based on
the speed of stage
0.
06-01
*Frequency
Setting of
OperationStage 1
0.00~599.00 5.00 *1
06-02
*Frequency
Setting of
OperationStage 2
0.00~599.00 10.00 *1
06-03
*Frequency
Setting of
OperationStage 3
0.00~599.00 20.00 *1
06-04
*Frequency
Setting of
OperationStage 4
0.00~599.00 30.00 *1
Group 06: Automatic Program Operation
Parameters
Code Parameter
Name Setting Range Default Attrib
ute
06-05
*Frequency
Setting of
OperationStage 5
0.00~599.00 40.00 *1
06-06
*Frequency
Setting of
OperationStage 6
0.00~599.00 50.00 *1
06-07
*Frequency
Setting of
OperationStage 7
0.00~599.00 50.00 *1
06-08
*Frequency
Setting of
OperationStage 8
0.00~599.00 5.00 *1
06-09
*Frequency
Setting of
OperationStage 9
0.00~599.00 5.00 *1
06-10
*Frequency
Setting of
OperationStage 10
0.00~599.00 5.00 *1
06-11
*Frequency
Setting of
OperationStage 11
0.00~599.00 5.00 *1
06-12
*Frequency
Setting of
OperationStage 12
0.00~599.00 5.00 *1
06-13
*Frequency
Setting of
OperationStage 13
0.00~599.00 5.00 *1
06-14
*Frequency
Setting of
OperationStage 14
0.00~599.00 5.00 *1
06-15
*Frequency
Setting of
OperationStage 15
0.00~599.00 5.00 *1
06-16
Operation
Time Setting
of SpeedStage 0
0.0~6000.0 0.0 *1
06-17
Operation
Time Setting
of SpeedStage 1
0.0~6000.0 0.0 *1
06-18
Operation
Time Setting
of SpeedStage 2
0.0~6000.0 0.0 *1
06-19 Operation
Time Setting 0.0~6000.0 0.0 *1
40
Group 06: Automatic Program Operation
Parameters
Code Parameter
Name Setting Range Default Attrib
ute
of SpeedStage 3
06-20
Operation
Time Setting
of SpeedStage 4
0.0~6000.0 0.0 *1
06-21
Operation
Time Setting
of SpeedStage 5
0.0~6000.0 0.0 *1
06-22
Operation
Time Setting
of SpeedStage 6
0.0~6000.0 0.0 *1
06-23
Operation
Time Setting
of SpeedStage 7
0.0~6000.0 0.0 *1
06-24
Operation
Time Setting
of SpeedStage 8
0.0~6000.0 0.0 *1
06-25
Operation
Time Setting
of SpeedStage 9
0.0~6000.0 0.0 *1
06-26
Operation
Time Setting
of SpeedStage 10
0.0~6000.0 0.0 *1
06-27
Operation
Time Setting
of SpeedStage 11
0.0~6000.0 0.0 *1
06-28
Operation
Time Setting
of SpeedStage 12
0.0~6000.0 0.0 *1
06-29
Operation
Time Setting
of SpeedStage 13
0.0~6000.0 0.0 *1
06-30
Operation
Time Setting
of SpeedStage 14
0.0~6000.0 0.0 *1
06-31
Operation
Time Setting
of SpeedStage 15
0.0~6000.0 0.0 *1
06-32
Operation
Direction
Selection of
Speed-Stage 0
0: Stop
1: Forward
2: Reverse
0
06-33
Operation
Direction
Selection of
Speed-Stage 1
0: Stop
1: Forward
2: Reverse
0
Group 06: Automatic Program Operation
Parameters
Code Parameter
Name Setting Range Default Attrib
ute
06-34
Operation
Direction
Selection of
Speed-Stage 2
0: Stop
1: Forward
2: Reverse
0
06-35
Operation
Direction
Selection of
Speed-Stage 3
0: Stop
1: Forward
2: Reverse
0
06-36
Operation
Direction
Selection of
Speed-Stage 4
0: Stop
1: Forward
2: Reverse
0
06-37
Operation
Direction
Selection of
Speed-Stage 5
0: Stop
1: Forward
2: Reverse
0
06-38
Operation
Direction
Selection of
Speed-Stage 6
0: Stop
1: Forward
2: Reverse
0
06-39
Operation
Direction
Selection of
Speed-Stage 7
0: Stop
1: Forward
2: Reverse
0
06-40
Operation
Direction
Selection of
Speed-Stage 8
0: Stop
1: Forward
2: Reverse
0
06-41
Operation
Direction
Selection of
Speed-Stage 9
0: Stop
1: Forward
2: Reverse
0
06-42
Operation
Direction
Selection of
Speed-Stage
10
0: Stop
1: Forward
2: Reverse
0
06-43
Operation
Direction
Selection of
Speed-Stage
11
0: Stop
1: Forward
2: Reverse
0
06-44
Operation
Direction
Selection of
Speed-Stage
12
0: Stop
1: Forward
2: Reverse
0
06-45
Operation
Direction
Selection of
Speed-Stage
13
0: Stop
1: Forward
2: Reverse
0
06-46
Operation
Direction
Selection of
Speed-Stage
14
0: Stop
1: Forward
2: Reverse
0
06-47
Operation
Direction
Selection of
Speed-Stage
15
0: Stop
1: Forward
2: Reverse
0
* If the maximum output frequency of motor is over
300HZ, the frequency resolution is changed to 0.1Hz
41
Group 07: Start /Stop Parameters
Code Parameter
Name Setting Range Default Attrib
ute
07-00
Momentary
Power
Loss/Fault
Restart
Selection
0: Disable
0
1: Enable
07-01 Fault AutoRestart Time 0~7200 0
07-02
Number of
Fault AutoRestart
Attempts
0~10 0
07-03 Reserved
07-04 Direct Start at
Power on
0: When the
external run
command is
enabled, direct
start at power up
1: When the 1
external run
command is
enabled, unable
to direct start at
power-up.
07-05
Delay of
Direct Start at
Power on
1.0~300.0 3.5
07-06
DC Injection
Braking
Starting
Frequency
0.0~10.0 0.5
07-07
DC Injection
Braking
Current
0~100 50
07-08
DC Injection
Braking Time
at Stop
0.00~100.00 0.50
07-09 Stop Mode
Selection
0: Deceleration
to Stop
0
1: Coast to Stop
2: DC Braking
Stop in All
Fields
3: Coast to Stop
with Timer
07-10
~
07-12
Reserved
07-13
Low Voltage
Detection
Level
200V: 150~300 190
400V: 250~600 380
575V: 500~600 546
690V: 500~600 546
07-14 Pre-excitation
Time 0.00~10.00 2.00
07-15 Pre-excitation
Level 50~200 100
Group 07: Start /Stop Parameters
Code Parameter
Name Setting Range Default Attrib
ute
07-16
DC Injection
Braking Time
at Start
0.00~100.00 0.00
07-17 Reserved
07-18
Minimum
Base block
Time
0.1~5.0 -
07-19
DirectionDetection
Speed
Search
Operating
Current
0~100 50
07-20
Speed
Search
Operating
Current
0~100 20
07-21
Integral Time
of Speed
Searching
0.1~10.0 2.0
07-22
Delay Time of
Speed
Searching
0.0~20.0 0.2
07-23
Voltage
Recovery
Time
0.1~5.0 2.0
07-24 Reserved
07-25
Low Voltage
Detection
Time
0.00~1.00 0.02
07-26
Start-up Mode
Selection of
SLV Coast to
Stop
0: Start with
speed search 0
1: Normal start
07-27
Start Selection
after Fault
during SLV
Mode
0: Start with
speed search 0
1: Normal start
07-28
Start after
External Base
Block
0: Start with
speed
search 0
1: Normal start
07-29
Run
Command
Selection at
the Action of
DC Braking
0: Not Allowable
to Run
0
1: Allowable to
Run
07-30
Low Voltage
Level
Selection
0: Disable
0
1: Enable
07-31
**Low Voltage
Run
Frequency
0.00~599.00 10.00
07-32
Speed
Search Mode
Selection
0: Disable
0
1: Mode1:
Execute a
Speed Search at
Power On
42
Group 07: Start /Stop Parameters
Code Parameter
Name Setting Range Default Attrib
ute
2: Execute a
Speed Search
each time
07-33
Start
Frequency of
Speed
Search
Selection
0: Maximum
Output
Frequency of
Motor 0
1: Frequency
Command
07-34
Start shortcircuit braking
time
0.00~100.00 0.00 Note1
07-35
Stop Shortcircuit braking
time
0.00~100.00 0.50 Note1
07-36
Short-circuit
braking
current limited
0.0~200.0 100.0 Note1
07-37
~
07-41
Reserved
07-42 Voltage Limit
Gain 0.0~50.0 0 Note2
07-43
Short-circuit
Braking Time
of PM Speed
Search
0.00~100.00 0.00 Note3
07-44
DC Braking
Time of PM
Speed
Search
0.00~100.00 0.00 Note3
07-45
STP2
Function
Selection
0: STP2 Enable
0 Note4
1: STP2 Disable
07-46 DC Injection
Current Limit 0~150 100 Note5
07-47
PM Speed
Switching
Frequency
Mode
0: Disabled
1: Mode 1 0 Note8
2: Mode 2
*07-13 Low Voltage Detection Level, it is enable when
07-30 Low Voltage Level Selection set 0 (Enable) and
lower frequency limit set to 250V.This application is
for Emergency power supply (EPS)
* *If the maximum output frequency of motor is over
300HZ, the frequency resolution is changed to 0.1Hz
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-00
Stall
Prevention
Function
xxx0b: Stall
prevention is
enabled in
acceleration. 0000b
xxx1b: Stall
prevention is
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
disabled in
acceleration.
xx0xb: Stall
prevention is
enabled in
deceleration.
xx1xb: Stall
prevention is
disabled in
deceleration.
x0xxb: Stall
prevention is
enabled in
operation
x1xxb: Stall
prevention is
disabled in
operation
0xxxb: Stall
prevention in
operation is based
on deceleration
time of speedstage 1.
1xxxb: Stall
prevention in
operation is based
on deceleration
time of speedstage 2.
08-01
Stall
Prevention
Level in
Acceleration
20~200 150
08-02
Stall
Prevention
Level in
Deceleration
200V: 330V~410V 385V
400V: 660V~820V 770V
575V:900~1000 950V
690V:1080~1200 1140V
08-03
Stall
Prevention
Level in
Operation
30~200 160
08-04 Reserved
08-05
Selection for
Motor
Overload
Protection
(OL1)
xxx0b: Overload
Protection is
disabled.
0001b
xxx1b: Overload
Protection is
enabled.
xx0xb: Cold Start
of Motor
Overload
xx1xb: Hot Start
of Motor
Overload
x0xxb: Standard
Motor
x1xxb: Inverter
Duty Motor
0xxxb: Reserved
1xxxb: Reserved
43
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-06
Start-up
Mode of
Overload
Protection
Operation
(OL1)
0: Stop Output
after Overload
Protection
1: Continuous 0
Operation after
Overload
Protection.
08-07
Motor
Overload
(OL1)
Protection
Level
0: Motor
Overload (OL1)
Protection 0
0 Note2
1: Motor
Overload (OL1)
Protection 1
2: Motor
Overload (OL1)
Protection 2
08-08
Automatic
Voltage
Regulation
(AVR)
0: Enable
0
1: Disable
08-09
Selection of
Input Phase
Loss
Protection
0: Disable
0
1: Enable
08-10
Selection of
Output Phase
Loss
Protection
0: Disable
0
1: Enable
08-11
08-12 Reserved
08-13
Selection of
Over-Torque
Detection
0: Over-Torque
Detection is
Disabled.
0
1: Start to Detect
when Reaching
the Set
Frequency.
2: Start to Detect
when the
Operation is
Begun.
08-14
Selection of
Over-Torque
Operation
0: Deceleration
to Stop when
Over Torque is
Detected.
0
1: Display
Warning when
Over Torque is
Detected. Go on
Operation.
2: Coast to Stop
when Over
Torque is
Detected
08-15
Level of OverTorque
Detection
0~300 150
08-16
Time of OverTorque
Detection
0.0~10.0 0.1
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-17
Selection of
Low-Torque
Detection
0: Low-Torque
Detection is
Disabled.
0
1: Start to Detect
when Reaching
the Set
Frequency.
2: Start to Detect
when the
Operation is
Begun.
08-18
Selection of
Low-Torque
Operation
0: Deceleration
to Stop when
Low Torque is
Detected.
0
1: Display
Warning when
Low Torque is
Detected. Go on
Operation.
2: Coast to Stop
when Low
Torque is
Detected
08-19
Level of LowTorque
Detection
0~300 30
08-20
Time of LowTorque
Detection
0.0~10.0 0.1
08-21
Limit of Stall
Prevention in
Acc over
Base Speed
1~100 50
08-22
Stall
Prevention
Detection
Time in
Operation
2~100 100
08-23
Ground Fault
(GF)
Selection
0: Disable
0
1: Enable
08-24
External Fault
Operation
Selection
0: Deceleration
to Stop
1: Coast to Stop 0
2: Continuous
Operation
08-25
Detection
Selection of
External Fault
0: Immediately
Detect when the
Power is
Supplied. 0
1: Start to Detect
when the
Operation is
Started.
08-26
~
08-29
Reserved
44
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-30
Run
Permissive
Function
Selection
0: Deceleration
to Stop 0
1: Coast to Stop
08-31
~
08-34
Reserved
08-35
Motor
Overheating
Fault
Selection
0: Disable
0
1: Deceleration
to Stop
2: Coast to Stop
3: Continue
Running
08-36
PTC Input
Filter Time
Constant
0.00 ~ 5.00 2.00
08-37 Fan Control
Function
0: Start in
operation
0
1: Permanent
Start
2: Start in high
temperature
(Note)
08-38 Delay Time of
Fan Off 0~600 60
08-39
Delay Time of
Motor
Overheat
Protection
1~300 60
08-40
Motor2
Acceleration
Stall
Prevention
Level
20~200 150
08-41
Motor2
Acceleration
Stall
Prevention
Limit
1~100 50
08-42
PTC
Protection
Level
0.1~10.0V 0.7
08-43 PTC Restart
Level 0.1~10.0V 0.3
08-44 PTC Warning
Level 0.1~10.0V 0.5
08-45 Reserved
08-46 Temperature
Agree Level 0~254°C 0
08-47 Temperature
Reset Level 0~254°C 0
08-48 Selection of
Fire Mode
0: Disable
1: Enable 0
08-49
Multi-Function
Input
Terminal
Status of Fire
Mode
0:Reset after
Power Off
1:Reset after
Terminal
Removed
0
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-50
Multi-Function
Terminal
Status of Fire
Mode
XXX0b: S6 A
contact
XXX1b: S6 B
contact
0000b
08-51
Motor Speed
Setting
Source of Fire
Mode
0:Fire Mode
Speed (08-52)
1:PID Control
2:AI2
0
08-52 Motor Speed
of Fire Mode 0.00~100.00 100.00
08-53
PID Detection
Level of Fire
Mode
0~100 0
08-54
Delay Time of
Fire Mode
PID Loss
0.0~10.0 1.0
08-55
PID
Feedback
Loss
Detection
Selection of
Fire Mode
0:Keep
Running
1:Fire Mode
Speed (08-52)
2:Maximum
Output
Frequency (01-
02)
1
08-56
Detection
Level of Fire
Mode AI2
Signal
0.0~100.0 80.0
08-57
Delay Time of
Fire Mode AI2
Signal Loss
0.0~10.0 1.0
08-58
Selection of
Fire Mode AI2
Signal Loss
0:Keep
Running
1: Fire Mode
Speed (08-52)
2: Maximum
Output
Frequency (01-
02)
1
08-59
Fire Mode
Motor
Direction
0: Forward
1: Reverse 0
08-60 Fire Mode
Password 00000~65534 0
08-61
Capacitor
maintenance
settings
0: Disable
0
1: Enable
08-64 choose of
keypad
0:E710
1:T310
2:A510S
0
08-65
Cooling fan
maintenance
settings
0~9999 0
45
Group 08: Protection Parameters
Code Parameter
Name Setting Range Default Attrib
ute
08-66
IGBT
maintenance
settings
0~150 0
Note: Models of 200V 50HP and 400V 100HP and
above don’t have this function.
Group 09: Communication Parameters
Code Parameter
Name Setting Range Default Attrib
ute
09-00
INV
Communicati
on Station
Address
1~31 1 *3
09-01
Communicati
on Mode
Selection
0: MODBUS 0 *3
09-02 Baud Rate
Setting (bps)
0: 1200
4 *3
1: 2400
2: 4800
3: 9600
4: 19200
5: 38400
09-03 Stop Bit
Selection
0: 1 Stop Bit 0 *3
1: 2 Stop Bit
09-04 Parity
Selection
0: No Parity
1: Even Bit 0 *3
2: Odd Bit
09-05
Communicati
on Data Bit
Selection
0: 8 Bit Data
0 *3
1: 7 Bit Data
09-06
Communicati
on Error
Detection
Time
0.0~25.5 0.0 *3
09-07 Fault Stop
Selection
0: Deceleration to
Stop Based on
Deceleration Time 1
when
Communication
Fault Occurs.
3 *3
1: Coast to Stop
when
Communication
Fault Occurs.
2: Deceleration to
Stop Based on
Deceleration Time 2
when
Communication
Fault Occurs.
3: Keep Operating
when
Communication
Fault Occurs.
09-08
Comm. Fault
Tolerance
Count
1~20 1 *3
09-09 Waiting Time 5~65 5 *3
Group 09: Communication Parameters
Code Parameter
Name Setting Range Default Attrib
ute
09-10 Reserved
09-11 Bluetooth 0: Disable 0
1: Enable
09-12 Bluetooth
Password 0~65534 0 *7
*3: Parameter 09 does not be influenced by 13-08
(Restore Factory Setting)
Group 10: PID Parameters
Code Parameter
Name Setting Range Default Attrib
ute
10-00
PID Target
Value Source
Setting
1: AI1 given
1
2: AI2 given
3: PI given
4:10-02 given
5: Reserved
6: Frequency
Command (00-
05)
10-01
PID Feedback
Value Source
Setting
1: AI1 given
2: AI2 given 2
3: PI given
10-02 PID Target
Value 0.00~100.00 0.00 *1
10-03 PID Control
Mode
xxx0b: PID
Disable
0000b
xxx1b: PID
Enable
xx0xb: PID
Positive
Characteristic
xx1xb: PID
Negative
Characteristic
x0xxb: PID Error
Value of D
Control
x1xxb: PID
Feedback Value
of D Ctrl
0xxxb: PID
Output
1xxxb: PID
Output +
Frequency
Command
10-04 Feedback
Gain 0.01~10.00 1.00 *1
10-05 Proportional
Gain (P) 0.00~10.00 1.00 *1
10-06 Integral Time
(I) 0.00~100.00 1.00 *1
10-07 Differential
Time (D) 0.00~10.00 0.00 *1
46
Group 10: PID Parameters
Code Parameter
Name Setting Range Default Attrib
ute
10-08
AI1
Frequency
Limit
0.00~599.00 0 Note2
10-09 PID Bias -100.0~100.0 0 *1
10-10 PID Output
Delay Time 0.00~10.00 0.00 *1
10-11
PID Feedback
Loss
Detection
Selection
0: Disable
1: Warning 0
2: Fault
10-12 PID Feedback
Loss Det. Lev. 0~100 0
10-13
PID Feedback
Loss Det.
Time
0.0~10.0 1.0
10-14 PID Integral
Limit 0.0~100.0 100.0 *1
10-15 PID Trim
Mode 0~2 0 Note2
10-16 PID Trim
Scale 0~100 100 Note2
10-17
*Start
Frequency of
PID Sleep
0.00~599.00 0.00
10-18 Delay Time of
PID Sleep 0.0~255.5 0.0
10-19
*Frequency of
PID Waking
up
0.00~599.00 0.00
10-20
Delay Time of
PID Waking
up
0.0~255.5 0.0
10-21
10-22 Reserved
10-23 PID Output
Limit 0.00~100.0 100.0 *1
10-24 PID Output
Gain 0.0~25.0 1.0
10-25
PID Reversal
Output
Selection
0: No Allowing
Reversal Output 0
1: Allow
Reversal Output
10-26
PID Target
Acceleration/
Deceleration
Time
0.0~25.5 0.0
10-27 PID Feedback
Display Bias 0~9999 0
10-28 Reserved
10-29 PID Sleep
Selection
0: Disable
1: Enable 1
2: set by DI
10-30 Upper Limit of
PID Target 0.0 ~ 100.0 100.0
10-31 Lower Limit of
PID Target 0.0 ~ 100.0 0.0
10-32 Reserved
Group 10: PID Parameters
Code Parameter
Name Setting Range Default Attrib
ute
10-33
Maximum
Value of PID
Feedback
1 ~ 10000 999
10-34 PID Decimal
Width 0 ~ 4 1
10-35 PID Unit
0: %
0 *7
1: FPM
2: CFM
3: SPI
4: GPH
5: GPM
6: IN
7: FT
8: /s
9: /m
10: /h
11: °F
12: inW
13: HP
14: m/s
15: MPM
16: CMM
17: W
18: KW
19: m
20: °C
21: RPM
22: Bar
23: Pa
24: KPa
10-36 Proportional
Gain 2 (P) 0.00~10.00 3.00 Note2
10-37 Integral Time
2 (I) 0.00~100.00 0.50 Note2
10-38 Differential
Time 2 (D) 0.00~10.00 0.00 Note2
10-39
*Output
Frequency
Setting of PID
Disconnection
00.00~599.00 30.00
10-40
Selection of
PID forced
Sleep
Frequency
0: Disable
0
1: Enable
10-41 PID Mode
Switch
0: General PID 0 Note2
1: D Type PID
10-42
~
10-46
Reserved
10-47 Proportional
Gain 3(P) 0.00~10.00 3.00 Note4
10-48 Integral Time
3(I) 0.00~100.00 0.50 Note4
10-49 Differential
Time 3(D) 0.00~10.00 0.00 Note4
* If the maximum output frequency of motor is over
300HZ, the frequency resolution is changed to 0.1Hz
47
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
11-00 Direction Lock
Selection
0: Allow
Forward and
Reverse
Rotation
0
1: Only Allow
Forward
Rotation
2: Only Allow
Reverse
Rotation
11-01 Carrier
frequency 2~16: 2~16KHz * *1
11-02
Soft PWM
Function
Selection
0: Disable
1: Soft PWM 1
2: Soft PWM 2
0
11-03
Automatic
carrier lowering
selection
0: Disable
1: Enable 0
11-04
S-curve Time
Setting at the
Start of
Acceleration
0.00~2.50 0.20
11-05
S-curve Time
Setting at the
Stop of
Acceleration
0.00~2.50 0.20
11-06
S-curve Time
Setting at the
Start of
Deceleration
0.00~2.50 0.20
11-07
S-curve Time
Setting at the
Stop of
Deceleration
0.00~2.50 0.20
11-08 Jump
Frequency 1 0.0~599.0 0.0
11-09 Jump
Frequency 2 0.0~599.0 0.0
11-10 Jump
Frequency 3 0.0~599.0 0.0
11-11
Jump
Frequency
Width
0.0~25.5 1.0
11-12 Manual Energy
Saving Gain 0~100 80
11-13 Automatic
Return Time 0~120 60 *1
11-14
~
11-17
Reserved
11-18
Manual Energy
Saving
Frequency
0.0~599.0 0.00
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
11-19
Automatic
Energy Saving
Function
0: Automatic
energy saving
is disabled. 0
1: Automatic
energy saving
is enabled.
11-20
Filter Time of
Automatic
Energy Saving
0~200 140
11-21
Voltage Upper
Limit of Energy
Saving Tuning
0~100 100
11-22
Adjustment
Time of
Automatic
Energy Saving
0~5000 20 *1
11-23
Detection Level
of Automatic
Energy Saving
0~100 10
11-24
Coefficient of
Automatic
Energy Saving
0.00~655.34
(Note4) -
11-25 Reserved
11-26
Carrier Output
Frequency
Tuning Upper
Limit (%)
10~100 80
11-27
Carrier Output
Frequency
Tuning Lower
Limit (%)
2~100 20
11-28
Frequency
Gain of Over
Voltage
Prevention 2
1~200 100
11-29 Auto De-rating
Selection
0: Disable
1: Enable 0
11-30
Variable Carrier
Frequency
Upper Limit
2~16 -
11-31
Variable Carrier
Frequency
Lower Limit
1~16 -
11-32
Variable Carrier
Frequency
Proportional
Gain
00~99 00
11-33
DC Voltage
Filter Rise
Amount
0.1~10.0 0.1 *1
11-34
DC Voltage
Filter Fall
Amount
0.1~10.0 5.0 *1
11-35
DC Voltage
Filter Dead
band Level
0.0~99.0 10.0 *1
11-36
Frequency
Gain of OV
Prevention
0.000~1.000 0.050 *1
48
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
11-37
**Frequency
Limit of OV
Prevention
0.00~599.00 5.00
11-38
Deceleration
Start Voltage of
OV Prevention
200V: 200~400V 300
400V: 400~800V 700
575V: 500~1000V 900
690V: 600~1200V 1080
11-39
Deceleration
Stop Voltage of
OV Prevention
200V: 300~400V 350
400V: 600~800V 750
575V: 500~1000V 950
690V: 600~1200V 1140
11-40 OV Prevention
Selection
0: Disable
0
1: OV Prevention
Mode 1
2: OV Prevention
Mode 2
3: OV Prevention
Mode 3
4: OV Prevention
Mode 4
11-41
Selection of
Reference
Frequency
Disappearance
Detection
0: Decelerate
to Stop when
Reference
Frequency
Disappears
0
1: Operation is
set by
Parameter 11-
42 when
Reference
Frequency
Disappears
11-42
Disappearance
Level of
Reference
Frequency
0.0~100.0 80.0
11-43
Hold
Frequency at
Start
0.0~599.0 0.0
11-44
Frequency
Hold Time at
Start
0.0~10.0 0.0
11-45
Hold
Frequency at
Stop
0.0~599.0 0.0
11-46
Frequency
Hold Time at
Stop
0.0~10.0 0.0
11-47
KEB
Deceleration
Time
0.0~25.5 0.0 *1
11-48 KEB Detection
Level
200V: 190~210 200
400V: 380~420 400
575V: 540~570 555
690V: 540~684 555
11-49 Zero-servo
Gain 0.01~5.00 1.00
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
11-50 Zero-servo
Count 0~4096 12
11-51
Braking
Selection of
Zero Speed
0: Disable
0
1: Enable
11-52 Droop Control
Level 0.0~100.0% 0.0 *1
11-53 Droop Control
Delay 0.01~2.00 0.2 *1
11-54
Initialization of
Cumulative
Energy
0: Do not Clear
Cumulative
Energy 0 *1 1: Clear
Cumulative
Energy
11-55 STOP Key
Selection
0: Stop Key is
Disabled when
the Operation
Command is
not Provided
by Operator. 1
1: Stop Key is
Enabled when
the Operation
Command is
not Provided
by Operator.
11-56 UP/DOWN
Selection
0: When
UP/DOWN in
Keypad is
Disabled, it will
be Enabled if
Pressing
ENTER after
Frequency
Modification. 0
1: When
UP/DOWN in
Keypad is
Enabled, it will
be Enabled
upon
Frequency
Modification.
11-57 Reserved
11-58
Record
Reference
Frequency
0: Disable
0 *1
1: Enable
11-59
Gain of
Preventing
Oscillation
0.00~2.50 *
11-60
Upper Limit of
Preventing
Oscillation
1~100 *
11-61
Time
Parameter of
Preventing
Oscillation
0~100 0
49
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
11-62
Selection of
Preventing
Oscillation
0: Mode1
1: Mode2 2
2: Mode3
11-63
Strong
Magnetic
Selection
0: Disable
1
1: Enable
11-64
Acceleration
Speed Gain
Adjustment
0.1~10.0 1.0
11-65 Target Main
Circuit Voltage
200V: 200V~400V 370
400V: 400V~800V 740
575V: 520V~1040V 962
690V: 624V~1248V 1154
11-66
2 Phase/ 3
Phase PWM
Switch
Frequency
6.00~60.00 20 Note2
11-67
Soft PWM 2
Frequency
Range
0~12000 0 Note2
11-68
Soft PWM 2
Switch
Frequency
6.00~60.00 20 Note2
11-69
Gain of
Preventing
Oscillation 3
0.00~200.00 2.00 Note1
11-70
Upper Limit of
Preventing
Oscillation 3
0.01~100.00 5.00 Note1
11-71
Time
Parameter of
Preventing
Oscillation 3
0~30000 100 Note1
11-72
Gain of
Preventing
Oscillation for
switch
frequency 1
0.01~300.00 2.00 Note1
11-73
Gain of
Preventing
Oscillation for
switch
frequency 2
0.01~300.00 7.00 Note1
11-76
Droop
Frequency
Level 1
0.00~599.00 0.00 Note4
11-77
Droop
Frequency
Level 2
0.00~599.00 0.00 Note4
11-78 Droop Torque
Offset Value 0.00~100.00 0.00 Note4
11-79
LOC/REM
Keypad Button
Selection
0: Forward /
Reverse
control
1: Local /
Remote
control
0
11-80 Local / Remote
selection mode
0: Mode 1
Allow direct 0
Group 11: Auxiliary Parameters
Code Parameter
Name Setting Range Default Attrib
ute
switching
1: Mode 2
No switching
in operation
2: Mode 3
Stop running
after switching
11-81
OVP4 Level
(%) 1.00~2.00 1.10
11-82 OVP4 Gain 0~256 64
*: Refer to the attachment 1 in our instruction manual..
Note: The parameter of 11-01 can be changed during run
operation, the range is 1~16KHz.
Group 12: Monitoring Parameters
Code Parameter
Name Setting Range Default Attrib
ute
12-00 Display Screen
Selection (LED)
00000~77777
From the
leftmost bit, it
displays the
screen when
press DSP key
in order.
0:no display
1: Output Current
2: Output Voltage
3: DC Bus
Voltage
4: Heatsink
Temperature*
5: PID Feedback
6: AI1 Value
7: AI2 Value
00321
(Note4)
1
*6
12-01
PID Feedback
Display Mode
(LED)
0: Display the
Feedback
Value by
Integer (xxx)
0 *6
1: Display the
Feedback
Value by the
Value with One
Decimal Place
(xx.x)
2: Display the
Feedback
Value by the
Value with Two
Decimal
Places (x.xx)
12-02
PID Feedback
Display Unit
Setting (LED)
0: xxxxx (no
unit)
1: xxxPb 0 *6
(pressure)
2: xxxFL (flow)
12-03 Line Speed
Display (LED) 0~60000 1500/
1800 *6




