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GE Fanuc Emerson Series Five IC655BEM500

IC655BEM500

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The IC655BEM500 is a local I/O interface module designed for the GE Fanuc Emerson Series Five. This module facilitates communication between the modules in a base unit and the I/O bus, ensuring streamlined data transfer.

Ships Mon, Jun 23.
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Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All our products come with DO Supply's 2-year warranty.
Learn more

Technical specifications for IC655BEM500

ManufacturerGE Fanuc Emerson
SeriesSeries Five
Part NumberIC655BEM500
Product TypeLocal I/O Interface Module
FunctionAllows modules in a base unit to communicate with an I/O bus
Base UnitI/O Expansion Base Unit
Installation Slot RequirementModule slot adjacent to power supply
Items Requiring User ConfigurationNone
Maximum Supply Current380 Amps
Operating Temperature at Outside of Rack without Cooling Devices32 to 140 degrees Fahrenheit
Storage Temperature-4 to 158 degrees Fahrenheit
Humidity (Non-Condensing)5-95%

The GE Fanuc Emerson IC655BEM500 local I/O interface module is part of the Series Five and specifically designed to facilitate communication for modules within an I/O expansion base unit. This module connects seamlessly to the I/O bus, allowing for efficient data transfer between components in the network.

For installation, it should be placed in the module slot directly next to the power supply, ensuring optimal operation. There are no special configurations required from the user, making setup straightforward. The module can handle a robust maximum supply current of 380 Amps, which is essential for supporting high-power applications.

In terms of environmental conditions, the module operates within a temperature range of 32 to 140 degrees Fahrenheit when situated outside of a rack without additional cooling. For storage, it is designed to withstand temperatures from -4 to 158 degrees Fahrenheit. Additionally, the IC655BEM500 is capable of functioning under humidity levels between 5% and 95%, provided that conditions remain non-condensing.