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The CP1L-EM30DT-D model from Omron is a compact programmable logic controller with efficient processing capabilities. It offers a common processing time of just 0.4 milliseconds and operates within a voltage range of 20.4 to 26.4 VDC.
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| Manufacturer | Omron |
|---|---|
| Product Line | CP1 |
| Part Number | CP1L-EM30DT-D |
| Weight | 1.00 lbs (0.45 kg) |
| Common Processing Time | 0.4 ms |
| Operating Voltage Range | 20.4 to 26.4 VDC |
| Power Consumption | 20 W max. |
| Inrush Current | 30 A max. (for cold start at room temperature), 20 ms max. |
| Power Supply | 24 VDC |
| Output Method | Transistor output (sinking) |
| Inputs | 18 |
| Outputs | 12 |
| Control Method | Stored program method |
| I/O Control Method | Cyclic scan with immediate refreshing |
| Program Language | Ladder diagram |
The Omron CP1L-EM30DT-D serves as a capable programmable logic controller designed for various automation tasks. It features a very responsive processing time of 0.4 milliseconds, enabling quick command execution. The device is powered by a 24 VDC supply and operates efficiently within an input voltage range of 20.4 to 26.4 VDC.
This controller supports a combination of 18 inputs and 12 outputs, utilizing a sinking type transistor output method for enhanced control. With a maximum power consumption of 20 watts, it maintains energy efficiency during operation. The CP1L-EM30DT-D handles functions using a stored program method, providing users flexibility in creating logic sequences.
I/O control is managed through a cyclic scan methodology with immediate refreshing, ensuring that input states are accurately reflected in real-time. Additionally, it employs ladder diagram programming language, making it user-friendly for those familiar with traditional PLC programming approaches. The device weighs 1.36 kilograms, contributing to a lightweight design suitable for various installations. Furthermore, it can handle an inrush current of up to 30 A for cold starts at room temperature while maintaining a maximum duration of 20 milliseconds.