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The EP-125F module from GE Fanuc Emerson functions as a digital input module within the PACSystems RSTi-EP series. It accommodates 16 input channels and operates effectively at a rated supply voltage of 24 V DC, which is ideal for various industrial applications.
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| Manufacturer | GE Fanuc Emerson |
|---|---|
| Product Line | PACSystems RSTi-EP |
| Part Number | EP-125F |
| Weight | 1.00 lbs (0.45 kg) |
| Module Type | Digital Input Module |
| Number of Inputs | 16 Inputs |
| Rated Supply Voltage | 24 Volts DC |
| Sensor Connection | 1-Wire Connection |
| Sensor Types | Type 1, Type 3 |
| Transfer Rate for the System Bus | 48 Mbps |
| Input Filter Delay Rating | 3 ms |
| Reverse Polarity Protection | Included |
| Sensor Supply | None |
| Supply Voltage | 20.4-28.8V DC |
| System Current Path Current Consumption | 8 mA |
| Input Current Path Current Consumption | 52 mA |
| Storage Temperature | -40 to 85 degrees Celsius |
| Operating Temperature | -20 to 60 degrees Celsius |
The EP-125F module represents a digital input solution within GE Fanuc Emerson’s PACSystems RSTi-EP series. This unit is designed with 16 input capabilities, allowing for substantial data acquisition from various sensors. Operating on a rated supply voltage of 24 volts DC, the module can withstand input supply voltages between 20.4 and 28.8 volts DC. The system bus's quick 48 Mbps transfer rate enhances communication efficacy with connected devices.
The EP-125F features a sensor connection based on a 1-wire system. It is compatible with both Type 1 and Type 3 sensors, providing flexibility in sensor selection. The module is also engineered with reverse polarity protection, safeguarding it against potential damage from incorrect wiring.
Regarding current consumption, the system current path draws 8 mA, while the input current path consumes 52 mA during operation. This module is also built to perform reliably across a substantial temperature spectrum, functioning efficiently between -20 and 60 degrees Celsius while enduring storage temperatures from -40 to 85 degrees Celsius. The input filter delay is also rated at 3 milliseconds, which optimizes the timing characteristics for accurate input detection.