LS ELECTRIC 2AYQXUMCRS VCB Cradle Controller and Wired Remote Control Instruction Manual

June 6, 2024
LS ELECTRIC

LS ELECTRIC 2AYQXUMCRS VCB Cradle Controller and Wired Remote Control
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LS ELECTRIC 2AYQXUMCRS VCB Cradle Controller and Wired Remote Control

LS
ELECTRIC 2AYQXUMCRS VCB Cradle Controller and Wired Remote Control
PRO

RATING SPEC

No. Classification RATING
1 Control Power AC 84~270V, DC 84~280V (Free voltage)
2 Motor 1.

| AC120(DC125) à DC110V Motor

AC240V(DC250) à DC220V Motor

3| Rating Frequency| 1.| 50/60Hz
 |  | 1.| CONTROLLER: INCLUDE CASE

415(W)ⅹ257(D)ⅹ73(H)

Main PCB 330(W)ⅹ200(D)ⅹ40(H) Relay PCB 110(W)ⅹ62(D)ⅹ35(H)

WIRED REMOTE CONTROL:

209.3(W)ⅹ84.1(D)ⅹ38.4(H)(mm)

PCB 200(W)ⅹ75(D)ⅹ25(H)

4

|

SIZE

|
 |  | 2.

5

|

Communication Port

| Ethernet Port 3ea

(Communication Remote control Modbus

/ PLC Connecting)

6| Communications Protocol| MODBUS

(According to the LS electric MODBUS Standard)

7| Quantity of MODBUS

Address

| Rotary Switch 3ea (Total : 259ea)

Function

Drive the DC motor to move the VCB position to Disconnect, Test Connect by receiving an operation command through wired remote control communication and when an error occurs Controller and wired remote control capable of sending error messages

Hardware spec

  1. CPU: STM32F107VCT7
  2. Memory : Flash Memory 256KB

Input Terminal

8 Pin Connecter Terminal

  1. Location Check Cell Switch: 6Pin
  2. VCB Presence check Cell Switch: 2Pin

8 Pin PCB Terminal (250V, 20A or more)

  1. For MOC Close signal input: 2Pin
  2. For MOC Open signal input: 2Pin
  3. For Checking manual withdrawal operation Cell switch: 2Pin
  4. For FG (Frame Ground) Terminal: 1Pin

3 Pin PCB Terminal

Input Power Line (+, FG, -): 3Pin

2 Pin PCB Connector

Motor Power Line: 2Pin

2 Pin PCB Terminal

Current breaker connection terminal for 15A: 2Pin

2 Pin PCB Terminal

  1. Cell Switch (GPIO) connection terminal for user selection: 2Pin
  2. PLC connection check terminal: 2Pin

2Pin PCB Terminal

VCB CLOSE connection terminal: 2Pin

2Pin PCB Terminal

VCB OPEN connection terminal: 2Pin

**Input terminal configuration

LS ELECTRIC 2AYQXUMCRS VCB Cradle
Controller and Wired Remote Control 1**

  •  Input Power (+,FG, -)
  •  Motor Power(+, -)
  •  Motor protection bracket (MCCB circuit breaker) connection
  •  Upper Modbus communication(A,B) control(parallel with connector 5)  Do not connect in basic use
  •  Upper Modbus communication(A, B) control (use only one of the connectors 4and 5)
    • Do not connect in basic use
  •  MOC Close, Open signal, and Cell switch signal(contact) connection for checking manually in/out the operation
  •  Motor position check Cell switch signal(contact) connection
  •  Cell Switch(GPIO) signal(contact) connection for user selection (Do not connect in basic use)
  •  Check whether PLC connection terminal  Do not connect when using remote control
  •  Remote control connection
  •  VCB CLOSE signal contact connection
  • VCB OPEN signal contact connection

Standard operating environment

  1.  Use temperature: -30℃ ~ +70℃ (Constant driving conditions)
  2. Storage temperature: -40℃ ~ +70℃
  3. Annual average relative humidity: ≤ 80%
  4. Relative humidity for 30 consecutive days throughout the year: 95%
  5. Installation height: 1000m or less in altitude

Pollution degree
Level 3 (conductive contamination, contamination by drying and condensation)
Basic operation

Button list| Function| Action when the button is executed| VCB status
---|---|---|---

Disconnect

|

Button to move VCB to Disconnect position

|

VCB at Test or Connect position moves to disconnect positon

| VCB is open, and the button is executed only at the Connect or

Test position.

Test

|

Button to move VCB to Test position

|

VCB in Disconnect or Connect position moves to Test position

| VCB is in the open state and the button is executed only in the Connect or Disconnect

position

Connect

|

Button to move VCB to connect position

|

VCB in Disconnect or Test position moves to Connect position

| VCB is in the open state and the button is executed only in the disconnect or test

position

STOP

/RESET

| Before ERROR:

Button to forcibly stop the movement during movement

After ERROR:

Button to initialize all functions and activate only the remote control disconnect function

| Before ERROR:

If you press the STOP/RESET button during VCB movement operation, the movement operation stops immediately.

After ERROR:

Press the STOP/RESET button for 3 seconds to activate the Disconnect button and move the VCB to the Disconnect position. In the Disconnect

position, all errors are cleared

|

Button can be executed only in VCB open state

VCB CLOSE|

Button to close VCB

|

Close VCB in VCB OPEN state

| The button can be executed only when

MOC Open is disabled.

VCB OPEN|

Button to open VCB

|

Open VCB in VCB CLOSE state

| Button can be executed only in MOC

Close in non-live state

Remote Control ERROR display items

Display

indication

| Error content| standard| Response in case

of error

| Error solution and operation
---|---|---|---|---

E00

|

Press Stop/Reset Button

|

When you press the Stop/Reset Button

|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

E01

|

Motor overcurrent (15A)

|

MAX 15A or higher (requires actual measurement)

|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

E02

|

Motor overheating

| 20 times of continuous operation within 20 minutes|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

E03

|

Motor operation time exceeded

|

45 seconds

|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

E04

|

VCB location not available

| No cell switch input or no cell switch input after a certain moving time|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

E05

|

VCB input state

|

MOC signal is closed

| Reject all operation commands from the controller through MOC

signal

|

Solution: Open VCB -> Error message automatically resets when open operation -> Normal use available

E06

|

Poor communication

|

Inability to communicate with the controller

|

Controller not available

| Solution: Can be used after checking the terminal connection status or cable status and then checking the normal communication status between

controllers

E07

|

No VCB

|

VCB in/out operation: 2~3A Connector in/out operation: 10A

No cell switch input for checking the presence or absence of VCB (requires actual measurement)

|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT position.

If the input of Cell Switch is confirmed after cradle up the VCB normally, all

functions can be used normally.

E08| communication error| Inability to communicate with

the remote control

| Controller power off| Firmware error, contact LS Electric representative to update the firmware

E09

|

GPIO error

| When GPIO input is False, motor current is applied or VCB is moved|

All buttons except the Reset button are disabled

| Solution: Press the Reset button for 3 seconds -> When the DISCONNECT button is activated, press the button to move the VCB to the DISCONNECT

position.

How to communication speed, address, option settingLS ELECTRIC 2AYQXUMCRS
VCB Cradle Controller and Wired Remote Control 2

  1.  RS485 communication default (for basic installation) No.1,2 switch OFF / Device(in case of terminal installation) No.1,2 switch ON

  2.  When using Cell Switch(GPIO) for user selection, No.1,2 switch ON

  3. Modbus communication address setting : 0~225ch setting (When channel 15 is set, 0: 1: 5 is set from the left rotary switch)

  4.  RS485 communication speed setting

  5. 9600bps  Rotary switch No.0

  6. 19200bps  Rotary switch No.1

  7. 38400bps  Rotary switch No.2

  8. 57600bps  Rotary switch No.3

  9. 115200bps  Rotary switch No.4

  10.  How to Remote Control ERROR test

  11.  Position contact test and remote control communication and button test (Test by combining the two items)

  12. When the remote control button LED moves to the corresponding position, the button LED of the corresponding position flashes and lights up at the corresponding position.

  13. It does not work when an error occurs.

  14. Connect location movement and operation experiment(logic test)

  15. Start with U-MCS JIG Disconnect position contact ON→ Press the connect button on the remote control → Connect button LED on the remote control blink→ Relay ON → Disconnect switch of U-MCS JIG OFF →

  16. Connect switch ON → Relay OFF → Connect button on the remote control lights up → Press the close button on the remote control → Relay B/D Relay ON → U-MCS JIG Open button OFF → U-MCS JIG Close button ON → Representation of DOT LED ‘E05’ on the remote control(VCB live wire status) → U-MCS JIG Close button OFF → U-MCS JIG Open button ON  Representation of DOT LED ‘E05’ on the remote control (normal)

  17. Test by changing only the remote control button and U-mars jig Contact signal in the same way as the test location movement and operation test connect

  18. Remote control Stop/Reset button(logic test)

  19. Press the Stop button on the remote control → Representation of DOT LED ‘E00’ on the remote control → Press Stop button for 3 seconds → Representation of DOT LED ‘LS’ on the remote control → Disconnect button LED on the remote control blink → Press Disconnect button on remote control → Relay ON → U-MCS JIG Test contact OFF → U-MCS JIG Disconnect con ON → Disconnect button on the remote control lights up → Reset all errors

  20. If there is no problem when operating in the above order, the test of the controller’s location contact and remote control buttons and LED functions is completed.

  21. Error items (Execute reset after an error occurs)

  22. All error items are executed in a normal state.

  23.  Normal → DOT LED ‘L S’ on the remote control

  24. Press the stop button on the remote control -> DOT LED ‘E00’ on the remote control

  25. Release the motor connector and press the position move button → Judged by disconnection DOT LED ‘E 0 1’ on the remote control
    Press the position move button after connecting the motor connector → Increase the load value of the resistance load to 2.8A(RMS) → Judging as overcurrent ‘E01’ on the remote control

  26. Position movement repeat operation 20times(within 20minutes) → Judging that the Motor is overheating ‘E02’ on the remote control

  27. Move the location by pressing the location button on the remote control and do not give the contact signal of U-MCS JIG → Judged that the operation time is exceeded after 30 seconds ‘E03 on the remote control

  28. Turn off all contact points of U-MCS JIG or attach two or more contact points → Judging that VCB location cannot be confirmed ‘E04’ on the remote control

  29. Press the close button on the remote control at the Connect Position → Turn off the Open button of U-MCS JIG and turn on the Close button → ‘E 0 5’ (E05 error is automatically reset when it is restored to normal)

  30. Modbus communication failure → ‘E 0 6’

  31. Increase the value of the load resistor by 0.5A(RMS) or more while moving the VCB position → Maintains the load value while moving the normal VCB position → Judging that there is no VCB → ‘E 0 7’

  32. Separate remote control and controller for more than 3seconds → Connect the remote control to the controller → Judging by communication error with the remote control → ‘E 0 8’

  33. Turn on the GPIO contact of U-MCS JIG → Judging as a GPIO error → ‘E 0 9’

PLC control
Turn on and control PLC SW of U-MCRS while disconnecting the connection between the controller and the remote control

  1. Since it is a communication error by releasing the remote control, reset it and move to the Disconnect position
  2. Go to Connect location
  3. Go to the Test location

The user’s manual or instruction manual for an intentional or unintentional radiator shall caution the user that changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. In cases where the manual is provided only in a form other than paper, such as on a computer disk or over the Internet, the information required by this section may be included in the manual in that alternative form, provided the user can reasonably be expected to have the capability to access information in that form.
Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense.

FCC

(a) [interference compliance statement], unless the following statement is already provided on the device label:- “This device complies with part 15 of the  FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.”

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