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IC693CBL302 The length of the I/O extension cable is 15 meters

Aug 29th,2024 116 Views

Technical specifications of IC693CBL302
Brand GE Fanuc
Series Series 90-30
Part number IC693CBL302
Type cable
Destination bus extension
Structural continuous shield
Length 15 m
Compatible with cpus and remote racks
Features Y-type adapter
Connector 1st end Single male connector
Connector The second end has a single male connector at the end
Resistor Yes, on the end connector
Catalogue accessories
The maximum number in the system depends on the CPU
Product life cycle status * Discontinued/obsolete


The IC693CBL302 cable is a manufactured I/O expansion cable whose primary purpose is to interconnect different baseboards and expansion ports in a programmable logic controller or PLC system. This special expansion cable is included in the 90-30 series of PLC assemblies manufactured by GE Fanuc. This cable is used as the last cable of the link in the PLC system. This cable cannot be used as a Y cable. The GE Fanuc IC693CBL302 I/O expansion cable has a length of 15 meters and includes a male connector for connecting to the CPU baseboard end and a male connector for terminating at the baseboard end.

The GE Fanuc IC693CBL302 I/O expansion cable is specifically designed to avoid the need to use cables of different lengths to reach a specific distance on the baseboard. It is the maximum length allowed in the last extended baseboard in the PLC. The maximum total cable length between the CPU backboard and the last remote backboard is 213 meters. If these distances are not calculated correctly, errors may occur during operation, including failed signal transmission or unstable signals. The GE Fanuc IC693CBL302 I/O expansion cable has an I/O bus terminating resistor built into the end connector. Depending on the CPU type, the number of cables may vary, with cpus rated 350 to 374 supporting up to seven different cables, and cpus numbered 331 to 341 supporting up to four expansion cables. Do not energize the system when connecting or disconnecting these cables, as this may cause irreversible damage to the system.