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Hub van Doorneweg 8 • 2171 KZ Sassenheim – NL • 

T

 +31(0)252 228850 • 

F

 +31(0)252 228235 • 

E

 [email protected] • 

I

 euronormdrives.com

Hub van Doorneweg 8 • 2171 KZ Sassenheim – NL • 

T

 +31(0)252 228850 • 

F

 +31(0)252 228235 • 

E

 [email protected] • 

I

 euronormdrives.com

10

11

EURN010000_

002_C

EURN010000_

002_C

F1 group  Input terminals

Code

Parameter name

Setting range

Factory setting

Change

F1.00

DI1 terminal function selection

0~51

1

F1.01

DI2 terminal function selection

2

F1.02

DI3 terminal function selection

8

F1.03

DI4 terminal function selection

9

F1.04

DI5 terminal function selection

0

The functions of digital multi-functional input terminal DI1~DI5 can be set by parameter F1.00~F1.04. 
The optional functions are shown in the following table

Set 

value

Function

Description

0

No function

The terminal for not use can be set to “no function” to prevent accidental operation.

1

Forward run (FWD)

External terminals are used to control the FWD run mode of inverter.

2

Reverse run (REV)

External terminals are used to control the REV run mode of inverter.

3

Three-wire operation control

This terminal is used to determine the inverter’s three-wire control mode. For details, please refer to 
the instructions of function code F1.10 (“terminal command mode).

4

Forward JOG(FJOG)

FJOG means Forward JOG running, RJOG means Reverse JOG running. For Jog running 
frequency and Jog Ac/deceleration time, please refer to the description of the function code F7.00, 
F7.01, F7.02.

5

Reverse JOG(RJOG)

Modify frequency increment/decrement command when the frequency is referenced by external 
terminal. Adjust up/down the set frequency when the digital setting is selected as the frequency 
source. 

6

Terminal UP

7

Terminal DOWN

8

Free stop

The inverter output is blocked, at the time, the parking process of motor is not controlled by the 
inverter. This way is same as the principle of free stop described in F3.07.

9

Fault reset (RESET)

The function make use of terminal for fault reset. It has same function with RESET key on the 
keyboard. This function can be used to realize remote fault reset

10

Run pausing

The inverter slows down and stops,but all operating parameters are memorized.Such as PLC 
parameters,wobbulate frequency parameters, and PID parameters. This terminal signal disappears, 
the inverter reverts to the previous state of running before parking

11

External fault normally open input

When the signal is sent to the inverter, the inverter reports fault Err.15, and performs troubleshooting 
according to fault protection action (For details, please refer to the function code F8.17) 

12

Multi-speed terminal 1

The setting of 16 stage speed or 16 kinds of other command can be achieved through the 16 
states of the four terminals.

13

Multi-speed terminal 2

14

Multi-speed terminal 3

15

Multi-speed terminal 4

16

Ac/deceleration time selection terminal 1 

The selection of 4 ac/deceleration times can be achieved through the 4 states of the two terminals.

17

Ac/deceleration time selection terminal 2

18

Frequency source switching

Used to switch between different frequency sources.
According to the setting of frequency source selection function code (F0.07) , the terminal is used to 
switch between two frequency sources

19

UP/DOWN setting (Terminal, keyboard)

When the frequency reference is the digital frequency, this terminal is used to clear the changed 
frequency value by terminal UP/DOWN or keyboard UP/DOWN, so that the reference frequency can 
recover to the set value of F0.01

20

Run command switch terminal 1

When the command source is set to the terminal control (F0.11 =1), the terminal can be used to 
switch between terminal control and keyboard control.
When the command source is set to the communication control(F0.11 = 2), the terminal can be 
used to switch between communication control and keyboard control.

21

Ac/deceleration prohibited

Ensure the inverter is free from external signals affect (Except for shutdown command), maintain 
current output frequency.

22

PID pause

PID is temporarily disabled, the inverter maintains current output frequency, no longer performs PID 
adjustment of frequency source.

23

PLC status reset

When PLC pauses and runs again, this terminal is used to reset the inverter to the initial state of 
simple PLC.

24

Wobbulate pause

When the inverter outputs at center frequency. Wobbulate will pause

25

Counter input

Input terminal of the count pulse

26

Counter reset

Clear counter status

27

Length count input

Input terminal of the length count.

28

Length reset

Clear length

32

Immediately DC braking

If the terminal is active, the inverter switches directly to DC braking status

33

External fault normally closed input

When the signal of external fault normally closed input is inputted into the inverter, the inverter will 
report fault Err.15 and shutdown.

34

Frequency change enable

If the function is set to be valid, when the frequency changes, the inverter does not respond to 
frequency changes until the terminal state is invalid.

35

PID action direction as reverse

If the terminal is valid, PID action direction opposites to the direction set by E2.03

36

External parking terminal 1

Under keyboard control mode, the terminal can be used to stop the inverter, same as STOP key on 
the keyboard.

Summary of Contents for JI150

Page 1: ...www euronormdrives com info euronorm nl 31 0 252 228850 Frequency Drive JI150 Manual...

Page 2: ...terminals 11 F2 group Output terminal 13 F3 group Start and stop control group 14 F4 group V F control parameter group 15 F5 group Vector control parameter group 15 F6 group Keyboard and display 16 F7...

Page 3: ...requency inverter The diagrams of these operating instructions are used for convenience of explanation and may be slightly different from the product due to product upgrades Please take this manual to...

Page 4: ...installation position mm Weight kg L W H A B d E JI150 0R7G4 Z 0 75 138 72 123 5 127 61 5 62 1 1 JI150 1R5G4 Z 1 5 JI150 2R2G4 Z 2 2 JI150 004G4 Z 4 185 72 134 175 45 5 82 1 3 JI150 5R5G4 Z 5 5 0 75 5...

Page 5: ...ance vector control inverter based on DSP Control method V F control vector control W O PG Automatic torque boost function Realize low frequency 1Hz and large output torque control under the V F contr...

Page 6: ...trol Jog frequency range 0 00Hz to max frequency jog Ac deceleration time 0 0 6500 0s Built in PID Easy to realize closed loop control system for the process control Automatic voltage regulation AVR A...

Page 7: ...n At most save three error message and the time type voltage current frequency and work status can be queried when the failure is occurred Key lock and function selection Lock part or all of keys defi...

Page 8: ...wiring requirements correct selection of accessories such as Voltmeter input power supply etc After completing the wiring please check it correctly and make sure that it is correct before powering it...

Page 9: ...put status DO output status d0 09 AI1 voltage AI1 input voltage value 0 01V d0 12 Count value Actual pulse count value in counting function d0 13 Length value Actual length in fixed length function d0...

Page 10: ...nning 0 Running frequency 1 Set frequency 0 F0 11 Command source selection Keyboard control LED off 1 Terminal block control LED on 2 Communications command control LED flashes 3 Keyboard control Comm...

Page 11: ...rminal 1 The setting of 16 stage speed or 16 kinds of other command can be achieved through the 16 states of the four terminals 13 Multi speed terminal 2 14 Multi speed terminal 3 15 Multi speed termi...

Page 12: ...then switches directly to DC braking status 50 Clear current running time If the terminal is valid the inverter s current running time is cleared Table 1 Multi command functions description Over 4 se...

Page 13: ...Ready to run When the inverter main circuit and control circuit power supply has stabilized and the drive does not detect any fault information the drive is in an operational state output ON signal 1...

Page 14: ...Relay 1 output delay time 0 0s 3600 0s 0 0s F2 15 DO terminal active status selection Units digit Reserve Tens digit Relay 0 Positive 1 Negtive 00000 F2 16 DA1 zero bias coefficient 100 0 100 0 20 0...

Page 15: ...00 80 F4 11 V F oscillation suppression gain 0 100 0 F4 12 V F separation voltage source 0 9 0 F4 13 V F separation voltage digital setting 0V motor rated voltage 0V F4 14 V F separation voltage rise...

Page 16: ...F6 06 Inverter module radiator temperature 0 0 100 0 F6 07 Total running time 0h 65535h F6 08 Total power on time 0h 65535h F6 09 Total power consumption 0 65535 F6 10 Product number Inverter product...

Page 17: ...22 Start protection selection 0 OFF 1 ON 0 F7 23 FDT1 detection value 0 00Hz F0 19 Max frequency 50 00Hz F7 24 FDT1 detection hysteresis value 0 0 100 0 FDT1 level 5 0 F7 25 Frequency reaches detectio...

Page 18: ...8 12 Automatic fault reset 0 1s 100 0s 1 0s F8 25 Abnormal reserve frequency 60 0 100 0 100 F8 26 Momentary power cut action selection 0 Invalid 1 Deceleration 2 Deceleration and stop 0 F8 28 Recovery...

Page 19: ...on 1 Compensation mode 1 2 Compensation mode 2 1 Fb 06 Upper limiting frequency for DPWM switching 0 00 15 00Hz 12 00Hz Fb 07 PWM modulation mode 0 Asynchronous 1 Synchronous 0 Fb 08 Random PWM depth...

Page 20: ...2 stage ac deceleration time selection Same to E1 19 0 E1 24 3 stage running time T3 0 0s h 6500 0s h 0 0s h E1 25 3 stage ac deceleration time selection Same to E1 19 0 E1 26 4 stage running time T4...

Page 21: ...l gain KP1 0 0 to 200 0 80 0 E2 14 Integration time Ti1 0 01s to 10 00s 0 50s E2 15 Differential time Td1 0 00s to 10 000s 0 000s E2 16 Proportional gain KP2 0 0 to 200 0 20 0 E2 17 Integration time T...

Page 22: ...rter power 55kW 0 01mH to 655 35mH Inverter power 55kW Motor parameters b0 10 Asynchronous motor no load current 0 01A to b0 03 Inverter power 55kW 0 1A to b0 03 Inverter power 55kW Motor parameters b...

Page 23: ...back loss when running 40 Fast current limiting timeout 41 Switch motor when running 42 Too large speed deviation 43 Motor overspeed 45 Motor over temperature 51 Initial position error COF communicati...

Page 24: ...ens 2 The control mode is vector and without identification of parameters 3 The deceleration time is too short 4 The voltage is low 5 Suddenly increase the load in the process of deceleration 6 didn t...

Page 25: ...he existing problems in the peripheral line 2 replace the drive the power board or contactor 18 Err 18 Current detection fault 1 Check Hall device 2 The drive panel is abnormal 1 Replace the drive pan...

Page 26: ...___________________________________________________________________ ____________________________________________________________________________________________________________________________________...

Page 27: ...Hub van Doorneweg 8 2171 KZ Sassenheim NL T 31 0 252 228850 F 31 0 252 228235 E sales euronorm nl I euronormdrives com 27 EURN010000_002_C Delivery program...

Page 28: ...www euronormdrives com Hub van Doorneweg 8 Sassenheim...

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