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  F u n c t i o n C o d e T a b l e

EC590

 

  F u n c t i o n C o d e T a b l e

EC590

 

0℃ to 200℃

Motor overheat 

protection threshold

F9-57

0

Judging time of bus 

voltage recovering 

from power dip

F9-62

F9-68

Overspeed detection 

time

0.0s: Not detected
0.1 to 60.0s 

F9-71

Power dip ride-through 

gain Kp

40

0 to 100

FA-00

PID reference setting

 

channel 

0: Set by FA-01 (PID digital setting) 
1: AI1 

 

                2: AI2

     

3: Keyboard potentiometer
4: Pulse reference (S5) 
5: Communication reference
6: Multi-reference

F9-48

F9-49

BIT0:Motor overload (Err11)
0: Coast to stop

      

1: Stop according to the stop mode
2: Continue to run
BIT1:Input phase loss (Err12)
BIT2

:

Output phase loss (Err13)

BIT3

:

Thousands: External fault (Err15)

BIT4

:

Communication

 

fault (Err16)

Fault protection 

action selection 1 

F9-47

Fault protection 

action selection 2

Fault protection 

action selection 3

F9-50

Fault protection 

action selection 4

Frequency selection 

for continuing 

to run upon fault

0: Current running frequency 
1: Frequency reference 
2: Frequency upper limit
3: Frequency lower limit 
4: Backup frequency upon abnormality 

00000

BIT0:Encoder fault (Err20)
0: Coast to stop

      

BIT1:EEPROM read-write fault

 

(Err21

)

0: Coast to stop

      

1: Stop according to the stop mode
BIT2

:

Reserve

BIT3

:

Motor overheat (Err45)

BIT4

:

Accumulative running

 

time reached(Err26)

BIT0:User-defined fault 1 (Err27)
0: Coast to stop

 

1: Stop according to the stop mode
2: Continue to run

     

BIT1:User-defined fault 2 (Err28)
0: Coast to stop

      

1: Stop according to the stop mode
2: Continue to run
BIT2

:

Accumulative power-on

 

time reached

(Err29)
0: Coast to stop

 

1: Stop according to the stop mode
2: Continue to run

 

BIT3

:

Load lost (Err30)

0: Coast to stop
1: Deceleration to stop
2: Continue to run at 7% of rated motor 
frequency and restore to the frequency 
reference if the load recovers
BIT4

:

PID feedback lost

 

during running (Err31)

0: Coast to stop
1: Stop according to the stop mode
2: Continue to run

BIT0:Too large speed feedback error

(

Err42)

0: Coast to stop

      

1: Stop according to the stop mode
2: Continue to run
BIT1:Motor overspeed (Err43)
BIT2

:

Initial position fault

(

Err51)

F9-54

F9-55

Backup frequency 

upon fault

0.0% to 100.0%
(100.0% corresponds to F0-10.)

00000

00000

0000

0

100

.

0

%

F9-56

Type of motor 

temperature sensor

0: No temperature sensor

        

1: PT100

2: PT1000
 

0

110℃

F9-58

Motor overheat pro

-

warning threshold

0℃ to 200℃

F9-59

Power dip ride-through 

function selection

0: Disabled
1: Bus voltage constant control
2: Decelerate to stop

F9-60

Threshold of power 

dip ride-through 

function disabled

80% to 100%

F9-61

0.0 to 100.0s

Threshold of power 

dip ride-through 
function enabled

60% to 100%

F9-63

0: Disabled

         

1

:

Enabled

Load lost protection

F9-64

0.0 to 100.0%

Load lost detection

 level

F9-65

0.0 to 60.0s

Load lost detection

 time

F9-67

0.0% to 50.0% (maximum frequency)

Overspeed detection 

level

F9-69

Detection level of 

speed error

0.0% to 50.0% (maximum frequency)

F9-70

Detection time of 

speed error

0.0s: Not detected
0.1 to 60.0s

F9-72

Power dip ride-

through integral 

coefficient Ki

0 to 100

F9-73

Deceleration time of 

power dip ride-through 0 to 300

.

0

s

F A P ID Fu n c t i on

Function 

Code

Parameter Name

Change

Setting Range

Default

 

90℃

0

85.0%

0.50s

80.0%

10.0%

1.0s

20.0%

1.0s

20.0%

5.0s

30

20.0s

FA-01

PID digital setting

0.0% to 100.0%

0

50.0%

Summary of Contents for EC590 Series

Page 1: ...0 in 2022 Copyright subject to change without notice Professional AC Drive Manufacturer ZHEJIANG EACN ELECTRONIC TECHNOLOGY CO LTD Address No 1 Jinhe Road Qinshan Street Haiyan County Jiaxing City Zh...

Page 2: ...s 9 5 F4 Input Terminals 9 6 F5 Output Terminals 9 7 F6 Start stop control 9 8 F7 Operating panel and display 9 9 F8 Auxiliary Functions 9 10 F9 Fault and Protection 9 11 FA PID Function 9 12 FB Fixed...

Page 3: ...e read carefully If you have any questions please contact with the agents of our company and our technicians are ready to serve you The instructions are subject to change without notice You can contac...

Page 4: ...range of 0 0 6500 0s DC braking JOG control DC braking frequency 0 00 Hz to maximum frequency Braking time 0 0 100 0s Braking action current value 0 0 150 0 Simple PIC Multiple preset speeds JOG frequ...

Page 5: ...It helps to avoid frequent overcurrent faults of the AC drive Timing control Time range 0 0 6500 0 minutes Individua lized functions Multiple communication protocols It supports Modbus Item Specifica...

Page 6: ...171 160 130 127 4 5 1 5Kw 2 2Kw 4 0Kw 7 5Kw 18 5Kw 15Kw 126 146 170 115 131 151 320 186 256 175 243 305 158 174 198 155 171 195 4 5 6 6 30Kw 5 5Kw 11Kw 22Kw A Structure 45Kw 75Kw 180 250 120 170 489 6...

Page 7: ...C 0V 10V 2 Impedance 22k 1 Input range DC 0V 10V 4mA 20mA decided by selection of F4 40 2 Impedance 22k voltage input 500 current input 10V GND 24V COM PLC AI1 GND AI2 GND Name External 10V power supp...

Page 8: ...sudden load is added during operation 5 The AC drive model is of too small power class 6 Subject to external inter ference 1 Eliminate external faults 2 Perform the motor autotuning 3 Adjust the volta...

Page 9: ...oard is faulty 4 The module is faulty 1 Eliminate external faults 2 Check whether the motor three phase winding is normal 3 Seek technical support 4 Seek technical support 13 14 Err14 Module overheat...

Page 10: ...ameter protection password is set In the function parameter mode and user change parameter mode the parameter menu can only be entered after correctly entering the password Set FP 00 to 0 to cancel th...

Page 11: ...anel keypad display 0 No function 1 Digital setting 2 AI1 3 AI2 4 Keyboard potentiometer 5 Pulse reference S5 6 Multi reference 7 Simple PLC 8 PID reference 9 Serial communication Tens terminal contro...

Page 12: ...V F complete separation 11 V F half separation Default 0 Parameter Name F3 02 Cut off frequency of torque boost 0 00 Hz to the maximum frequency 50 00Hz F3 03 F3 04 F3 05 F3 06 F3 07 F3 08 Multi poin...

Page 13: ...control switchover 47 Emergency stop 48 External STOP terminal 2 49 Deceleration DC injection braking 50 Clear the current running time 51 Two wire Three wire mode switchover 52 Reverse frequency forb...

Page 14: ...specified count value reached 10 Length arrives 11 PLC cycle completed 0 2 F5 06 F5 07 0 Operationg frequency 1 Set frequency 2 Output current 3 Output torque torque absolute value 4 Output power 5 O...

Page 15: ...l Change Function Code Setting Range Default Parameter Name 0 Speed tracking method 0 Start with stop frequency 1 Start from zero speed 2 Start from maximum frequency 0 F6 02 Speed tracking speed 1 10...

Page 16: ...eference Hz BIT0 1 Bus voltage BIT0 2 S state BIT0 3 YO state BIT0 4 AI1 voltage V BIT0 5 AI2 voltage V BITO 6 Keyboard potentiometer voltage BIT0 7 Count value BITO 8 Length value BIT0 9 PLC stage BI...

Page 17: ...d 0 00Hz F8 25 Switch over frequency of acceleration time 1 and acceleration time 2 0 00Hz to the maximum frequency F8 26 Switch over frequency of deceleration time 1 and deceleration time 2 0 00Hz to...

Page 18: ...upon 3rd latest fault Current upon 3rd latest fault 3rd latest fault type F9 19 F9 20 Bus voltage upon 3rd latest fault S state upon 3rd latest fault Y state upon 3rd latest fault F9 21 Power on time...

Page 19: ...reached Err29 0 Coast to stop 1 Stop according to the stop mode 2 Continue to run BIT3 Load lost Err30 0 Coast to stop 1 Deceleration to stop 2 Continue to run at 7 of rated motor frequency and restor...

Page 20: ...d 0 00 to 60 00s 0 AI1 1 AI2 2 Keyboard potentiometer 3 AI1 AI2 4 Pulse reference S5 5 Communication reference 6 AI1 AI2 7 Max AI1 AI2 8 Min AI1 AI2 0 0 FA 03 PID operation direction 0 Forward 1 Rever...

Page 21: ...ence 4 FC 29 FC 28 Running time of simple PLC reference 5 0 0s h to 6553 5s h Acceleration Deceleration time of simple PLC reference 4 0 to 3 Running time of simple PLC reference 6 FC 30 0 0s h to 655...

Page 22: ...mmunication detection time FE 00 User defined parameter 0 U3 17 FE 01 User defined parameter 1 F0 00 F0 00 FC 47 Acceleration Deceleration time of simple PLC reference 14 0 to 3 Running time of simple...

Page 23: ...ter 27 F0 00 FE 28 User defined parameter 28 F0 00 FE 29 User defined parameter 29 F0 00 F0 00 to FP xx A0 00 to Ax xx U0 00 to U0 xx U3 00 to U3 xx FP Parameter Management Change Function Code Settin...

Page 24: ...2 10 A2 27 A2 28 Rotor resistance Leakage inductive reactance Mutual inductive reactance No load current Encoder pulses per revolution Encoder type 0 001 to 65 535 AC drive power 55 kW 0 0001 to 6 553...

Page 25: ...0 DPWM switchover frequency upper limit 5 00 Hz to the maximum frequency 0 Asynchronous modulation 1 Synchronous modulation A5 02 Dead zone compensation mode selection 0 Disabled 1 Enabled compensatio...

Page 26: ...ump range A7 User Programmable Card Change Function Code Setting Range Default Parameter Name 0 Disabled 1 Enabled A7 01 Control board output terminal control mode selection 0 0 AC drive control 1 Use...

Page 27: ...tory corrected Factory corrected Factory corrected Factory corrected Factory corrected Factory corrected Factory corrected Factory corrected U Minimum Unit UO Monitoring Parameters Function Code Param...

Page 28: ...de parameters some function codes cannot be changed only for manufacturers to use or monitor function code parameter address marking rules The rules are represented by the function code group number a...

Page 29: ...BIT1 Y2 output control BIT2 RELAY1 output control BIT3 RELAY2 output control BIT4 Y4R output control BIT5 VY1 BIT6 VY2 BIT7 VY3 BIT8 VY4 BIT9 VY5 2001 Digital output terminal control write only Comman...

Page 30: ...4 port is constrained by the functional parameter F5 00 and can be used as a high speed pulse output channel with a maximum output frequency of 50KHz when used as an open collector output Same specifi...

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