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The SRT2-ID04 model by Omron functions as a transistor remote terminal block designed for effective input management. This device accommodates four I/O points, facilitating quick and reliable signal transmission.
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| Manufacturer | Omron |
|---|---|
| Product Line | Other |
| Part Number | SRT2-ID04 |
| Weight | 1.00 lbs (0.45 kg) |
| Product Category | Transistor Remote Terminal Block |
| Number of I/O Points | 4 |
| Type of I/O | Input |
| Internal I/O Circuit Configuration | NPN (+ common) |
| Power Supply Voltage | 24 VDC ±10%/–15% |
| Voltage for Communication Power Supply | 14 to 26.4 VDC |
| Input Status Indicators | Yellow LED |
| Communication Mode | High-speed and long-distance |
| Standard Voltage | 24 VDC |
| Maximum Input Current | 6 mA per point max. |
| Minimum ON Voltage | 15 VDC minimum between input terminals and V |
| Maximum OFF Voltage | 5 VDC maximum between input terminals and V |
| ON/OFF Response Times | ON: 1.5 ms max.; OFF: 1.5 ms max. |
| Isolation Technique | Photocoupler |
The SRT2-ID04 remote terminal block, manufactured by Omron, is categorized as a transistor type. It consists of four input channels configured with an NPN circuit type, allowing for effective integration into various systems. The required power supply voltage for operation is specified at 24 VDC, with permissible fluctuations of ±10% to –15%. In addition to this, it supports a communication power supply voltage range of 14 to 26.4 VDC.
Each input can handle a maximum current of 6 mA, ensuring compatibility with various input devices. The module requires a minimum ON voltage of 15 VDC between input terminals and V to function effectively. On the contrary, the maximum OFF voltage is capped at 5 VDC to maintain operational integrity. The response times for switching are efficient, with a maximum of 1.5 milliseconds for both ON and OFF states.
The device is equipped with yellow LED indicators that display the status of each input, facilitating quick visual checks. The SRT2-ID04 is designed for high-speed communication over longer distances, making it suitable for extensive industrial applications. Isolation is maintained through a photocoupler technique, ensuring reliable operation amid potential electrical interferences.