ABB DCS 500 3BSE006567R1 SDCS-COM-5 TC Link Communication Board
SKU SDCS-COM-5 3BSE006567R1
In stock
No reviews
12-month warranty
Free returns within 30 days
Manufacturer:
ABB
Product No.:
SDCS-COM-5 3BSE006567R1
Country of origin:Sweden
Product Type:
Communication Board
Barcode:
8537101190
Payment:
T/T, Western Union
Weight:
500g
Dimensions:
15.8 cm x 2 cm x 8.3 cm
Shipping port:
Xiamen
Warranty:
12 months
Description
The SDCS-COM-5 (Product ID: 3BSE006567R1) is a dedicated TC Link communication board manufactured by ABB specifically for integration within DCS 500 converter modules. This module provides specialized hardware processing for three independent serial communication channels, allowing a reliable, high-speed interface link between converter setups, PCs, and distributed industrial control systems. The board links directly via the designated X11 system connector interface, utilizing an engineered arrangement of grey transmitter (TxD) and blue receiver (RxD) fiber-optic ports to establish clean electrical isolation across active processing channels.
Features
Three distinct communication channels enabling concurrent data path transfers
High-speed HDLC system interfacing peaking at a 1.5 Mbits/s rating on Channel 1
Broadband DDCS processing capacity scaling up to 4 Mbits/s on Channel 3
Color-coded optical ports separating transmission (grey) and reception (blue) loops
High-speed industrial drive PC monitoring connections
PROFIBUS, CS31, and MODBUS hardware adaptations
Technical Specifications
Parameter
Specification
Manufacturer
ABB
Product ID
3BSE006567R1
ABB Type Designation
SDCS-COM-5
Component Class
TC Link Communication Board
System Compatibility
DCS 500 Converter Modules with software up to S21.1xx
Incompatible Software
Version S21.xxx
Channel 1 Spec
HDLC protocol channel, 1.5 Mbits/s (PC interface)
Channel 2 Spec
Dedicated data link channel
Channel 3 Spec
DDCS channel, up to 4 Mbits/s (PROFIBUS/CS31/MODBUS)
Interface Port Type
Fiber-Optic RxD / TxD Plug and Socket
Main System Connector
X11 Interface
Board Length
156.5 mm
Board Width
83.5 mm
Connections/Interfaces
Connector Pin / Port
Function
V3 / CH2 RxD
Channel 2 Optical Receiver Port (Blue Socket)
V4 / CH2 TxD
Channel 2 Optical Transmitter Port (Grey Socket)
V1 / CH1 RxD
Channel 1 Optical Receiver Port (Blue Socket)
V2 / CH1 TxD
Channel 1 Optical Transmitter Port (Grey Socket)
V5 / CH3 RxD
Channel 3 Optical Receiver Port (Blue Socket)
V6 / CH3 TxD
Channel 3 Optical Transmitter Port (Grey Socket)
X11 Block
Primary System Converter Connection Interface
Installation Guidelines
Disconnect all primary converter supplies and auxiliary power inputs before matching the board onto the system carrier.
Ensure matching plug and socket colors are aligned during fiber-optic link up (always connect blue to blue and grey to grey).
Verify that software loaded within the target DCS 500 converter module scales up to version S21.1xx maximum to ensure runtime protocol compatibility.
Adjust the 4-position S1 inline slide switch block to match your specific converter line network destination layout (Positions 1 through 4 correlate to converter numbers 1 to 4 respectively, with position 1 serving as default).
Check that both board mounting standoffs and the designated conductive support pad align firmly with the metallic chassis to guarantee electrical path continuity.
FAQ
What configuration rules must be followed when plugging in the fiber-optic lines?
Optical fibers must consistently follow the layout colors. Ensure the blue cable plug connects directly to the blue receiver (RxD) socket, and the grey cable plug connects directly to the grey transmitter (TxD) socket.
What are the protocol limits and speeds supported on Channel 3?
Channel 3 runs a DDCS architecture scaling up to 4 Mbits/s. It is designed to bridge serial systems operating over PROFIBUS, CS31, or MODBUS network hardware via an adaptation module.
How is the communication interface board configured for multi-converter setups?
The board features an onboard S1 jumper coding block. Sliding the selection pin changes the address routing based on the target converter line number (values 1 through 4).
A practical commissioning sequence for KEPServerEX OPC UA connections: define data ownership, test tags locally, configure endpoint and certificate trust, limit access, then verify failure recovery...
Commissioning an Ethernet-connected PLC often starts with the laptop, not the controller. Learn how to record existing settings, choose a temporary address, test connectivity, and restore the plant...
Combustible dust controls require more than alarms. Learn how to map dust generation, select instrumentation, design interlocks, handle failed feedback, test safe states, and maintain the full...
Hairpin windings raise slot fill and support compact traction motors, but conductor geometry, AC losses, insulation damage, weld quality, and cooling determine whether the design meets its targets.
Use Ansible to standardize SCADA server changes without expanding OT risk. This guide covers inventories, idempotent playbooks, staged testing, credentials, logging, and practical rollback controls.
A VPN encrypts the path to an industrial network, but secure remote PLC work also needs identity controls, segmented access, change approval, logging, safe operating boundaries, and tested recovery...
Choosing a selection results in a full page refresh.