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GE Fanuc Emerson Series Five IC655MDL503

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IC655MDL503

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The GE Fanuc Emerson IC655MDL503 is designed as an input module, providing critical functionality in control systems. It operates effectively within a 20 to 28-volt DC voltage range and can handle varying temperatures from 10 to 60 degrees Celsius.

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Technical specifications for IC655MDL503

ManufacturerGE Fanuc Emerson
Product TypeInput Module
Product LineSeries Five
Part NumberIC655MDL503
Weight1.44 lbs (0.65 kg)
Input Voltage Range20 to 28 Volts DC
Operating Temperature Range10 to 60 degrees Celsius
Maximum Number of Operational Circuits at 60°C32
Maximum Number of Operational Circuits at 50°C64
Current Draw per Operating Input Circuit at 5V50.1 mA
Additional Current Draw per LED (On State)12.5 mA
Combined Typical Current Draw136 mA
Internal Circuit Organization4 groups of 16 circuits each
Circuit "On" Level19 Volts DC
Circuit "Off" Level10 Volts DC
Peak Leakage Current1.6 mA
Minimum "On" Current3.5 Amps
On to Off Response Time2 to 10 milliseconds
Off to On Response Time2 to 10 milliseconds

Operating within the Series Five lineup, the IC655MDL503 input module from GE Fanuc Emerson is integral for managing input signals in various industrial processes. Its design supports a range of input voltages from 20 to 28 volts DC, which makes it suitable for diverse applications.

With an operating temperature capacity extending from 10 to 60 degrees Celsius, this module is engineered to function efficiently in different environmental conditions. It can accommodate up to 32 active circuits at the highest operational temperature, effectively doubling this capability to 64 circuits at a reduced temperature of 50°C.

At 5 volts, the input circuits are expected to draw 50.1 mA. Moreover, when an LED indicator is on, it consumes an additional 12.5 mA. This leads to a combined typical current draw of approximately 136 mA. The internal configuration is organized into four groups, each containing 16 circuits.

The circuits' activation and deactivation levels are set at 19 volts DC and 10 volts DC, respectively. The leakage current at the peak is measured at 1.6 mA, and the minimum necessary current to maintain an "ON" state is 3.5 A.