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The IC600LX680 is a memory module within the Series Six by GE Fanuc Emerson. This module is equipped with a logic memory capacity of 64K and a register memory capacity of 16K. It supports battery backup, ensuring data retention during power outages.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Line | Series Six |
| Part Number | IC600LX680 |
| Weight | 6.00 lbs (2.72 kg) |
| Module Type | Memory Module |
| Logic Memory | 64K |
| Register Memory | 16K |
| Battery Backup | Supported |
| Circuit Board Dimensions | 208 x 280 mm |
| Power Requirements | 5V DC, 1.5 mA or -12V DC, 10 mA |
| Power Source for Power Requirements | CPU Power Supply |
| Operating Temperature Outside of Rack | 0 to 60 degrees Celsius |
| Storage Temperature | -20 to 70 degrees Celsius |
| Relative Humidity | 5 to 95%, Non-Condensing |
The IC600LX680 is a dedicated memory module designed for use in the GE Fanuc Emerson Series Six environment. It incorporates 64K of logic memory along with an additional 16K dedicated to register memory. This configuration supports various applications requiring efficient data processing and retention.
The module offers a reliable battery backup feature, ensuring that critical information remains intact during interruptions in power supply. This is a key asset in maintaining data integrity and operational continuity. Regarding power specifications, this module operates using a 5V DC supply drawing 1.5 mA or a -12V DC supply at 10 mA, utilizing the CPU's power supply.
Its circuit board measures 208 mm in width and 280 mm in height, designed to fit appropriately within designated slots. The module is capable of functioning within an operational temperature range from 0 to 60 degrees Celsius when placed outside of the rack, while its storage conditions accommodate temperatures ranging from -20 to 70 degrees Celsius. This range ensures broad usability in various environments without risking damage or performance loss. Furthermore, it can operate under relative humidity conditions between 5% and 95%, non-condensing, which adds to its versatility in diverse industrial settings.