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GE Fanuc Emerson Series Six IC600LX616

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IC600LX616

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The IC600LX616 is a robust register memory module falling under GE Fanuc Emerson's Series Six. It is designed to operate with a power supply of 5V DC at 1.5A, alongside a -12V DC requirement of 10 mA. This module boasts a capacity of 8K 16-bit words for both register and logic memory, supported by battery backup for logic memory.

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Technical specifications for IC600LX616

ManufacturerGE Fanuc Emerson
Product TypeRegister Memory Module
Product LineSeries Six
Part NumberIC600LX616
Weight6.00 lbs (2.72 kg)
Power SupplyCPU Power Supply
Power Requirements5V DC, 1.5A and -12V DC, 10 mA
Register Memory Capacity8K 16-Bit Words
Logic Memory Capacity8K (8192) 16-Bit Words
Battery BackupSupported for Logic Memory
Circuit Board Dimensions208 x 280 mm
Operating Temperature (Outside of Rack)0 to 60°C
Storage Temperature-20 to 70°C
Non-Condensing Humidity5-95%
InstallationIn the CPU rack immediately to the left of the rack's arithmetic control module

The GE Fanuc Emerson IC600LX616 is a dedicated register memory module tailored for the Series Six architecture. It requires a CPU power supply to function, with specifications calling for 5V DC at 1.5A and -12V DC at 10 mA. This memory module is capable of storing 8K 16-bit words for both register and logic memory, facilitating robust processing tasks. The logic memory benefits from battery backup, ensuring data retention even in the event of a power disruption.

When considering physical dimensions, the circuit board measures 208 mm by 280 mm, allowing it to neatly fit into compatible systems. It operates efficiently across a temperature range from 0 to 60°C when positioned outside of a rack, and it withstands storage temperatures between -20 to 70°C. Additionally, this module can endure humidity levels from 5% to 95% without condensation, which is critical for operational reliability within various environmental conditions.

The proper installation of the IC600LX616 requires placement within the CPU rack. Specifically, it should be positioned immediately to the left of the arithmetic control module of the rack. This careful placement enhances system organization and promotes ease of access during maintenance and troubleshooting.