The RDCO-02C is an add-on communication option module designed to handle high-speed data transmission and fieldbus networking within variable speed drive configurations. This module functions as an industrial interface board that establishes DDCS communication channels for the RMIO Motor Control and I/O board or BCU control units. Operating as a bridge for fiber optic connections, the board contains four discrete optical channels (CH0, CH1, CH2, and CH3) used to network overriding systems, local peripheral options, master-follower drive links, and diagnostic PC tools. Equipped with a coated circuit board to ensure protection against environmental degradation , the RDCO-02C provides deterministic signaling and robust noise immunity essential for reliable automated operations in demanding industrial sectors.
Features
Complete fiber optic communication interface with four integrated transmitter/receiver connector pairs
Features a coated circuit board (indicated by the C suffix) to provide enhanced protection in standard industrial applications
Direct electrical integration through a built-in 20-pin pinheader that connects power and signal directly to the drive control unit
Flexible media capability supporting plastic optical fiber (POF) and Hard Clad Silica (HCS) physical lines
Overriding system fieldbus adapter interfacing and data communication bridging
Drive parameter monitoring and external I/O configuration expansion networks
Technical Specifications
Parameter
Value
Manufacturer
ABB
Model Designation
RDCO-02C
Product Type
DDCS Communication Option Module
Channel CH0 Optical Component
5 MBd
Channel CH1 Optical Component
5 MBd
Channel CH2 Optical Component
10 MBd
Channel CH3 Optical Component
10 MBd
Supported Communication Speed
1, 2 or 4 Mbit/s
Connector Type
20-pin pinheader / Agilent Technologies Versatile Link pairs
Operating Voltage
+5 V DC ±10% (supplied by drive control unit)
Current Consumption
200 mA max.
Degree of Protection
IP 20
Dimensions (W x H x D)
30 mm x 95 mm x 34 mm
Installation Guidelines
Safety Rules: Ensure all mains input voltages and external dangerous voltages from control circuits are fully isolated and locked out before initiating work on the system. Always wait 5 minutes for the intermediate circuit capacitors to completely discharge after cutting power.
ESD Prevention: The internal board assemblies carry micro-circuits highly susceptible to electrostatic breakdown. Personnel must wear an earthing wrist band when handling the equipment and avoid touching component traces unnecessarily.
Mechanical Alignment: Insert the module safely into the designated slot marked with "DDCS" until the plastic clips engage into position. Fasten the two supplied M3x8 screws securely; these provide the structural earth path and interconnect module and board grounds to fulfill local EMC requirements.
Optical Handling: Do not touch the fiber optic endpoints with bare hands since the interfaces are sensitive to surface dirt. Verify that cable long-term tensile loads remain below 1 N and respect a minimum short-term bend radius of 35 mm.
FAQ
What primary functions are allocated to the fiber optic channels on this module?
The channels are typically assigned to establish communication links with overriding systems (CH0), local I/O or supply choices (CH1), master-follower setups (CH2), and localized PC configuration software (CH3).
What is the mechanical significance of the two mounting screws?
The screws hold the hardware card securely in place and establish the primary earthing path, interconnecting module ground signals to satisfy industrial EMC compliance requirements.
Does the optical component rating dictate the final network transmission rate?
No, the optical component specification (5 MBd or 10 MBd) reflects light sensitivity and intensity matching criteria, not the actual network communication speed.
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