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The Allen Bradley 1793-IE2X0E1 is an analog module tailored for use in the FLEX I/O 1793 series, equipped with two single-ended analog input channels and a single single-ended analog output channel. It operates with a nominal input voltage of 24 VDC, accommodating a voltage range from 19.2 to 31.2 VDC for flexibility in various applications.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Analog Module |
| Product Line | FLEX I/O 1793 |
| Part Number | 1793-IE2X0E1 |
| Weight | 0.19 lbs (0.09 kg) |
| Backplane Interface | FLEXbus |
| Mounting Type | DIN Rail Mount |
| Nominal Input Voltage | 24 VDC |
| Rated Voltage | 19.2 V to 31.2 V DC |
| Flexbus Current | 20 mA at 5 VDC |
| Number of Input Channels | 2 single-ended analog inputs |
| Number of Output Channels | 1 single-ended analog output |
| Terminal Connection | Integral spring-clamp connectors |
| Status Indicators | LED |
| Min. Operating Temperature | 0 °C |
| Max. Operating Temperature | 55 °C |
The 1793-IE2X0E1 from Allen Bradley is designed as a precision analog module in the FLEX I/O 1793 lineup. This device employs a FLEXbus interface, which optimizes connectivity for various control applications. The module is intended for DIN rail mounting, ensuring convenient installation in control cabinets and panels.
It operates nominally at 24 VDC and can tolerate voltage inputs spanning from 19.2 V to 31.2 V DC, making it versatile across different scenarios. The analog module features two single-ended analog input channels, allowing it to handle distinct signals, and additionally includes one single-ended analog output channel for signal transmission.
The design encompasses integral spring-clamp connectors for secure and efficient terminal connections, fostering reliable electrical contacts. The incorporation of LED status indicators facilitates immediate feedback regarding the device's operational state. It is built to withstand operating environments that range in temperature from 0 °C to 55 °C, suitable for various industrial applications while ensuring dependable performance under those conditions.