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The Omron CP1E-N30SDT1-D is an efficient programmable logic controller designed for panel mounting. Operating on a power supply of 24 VDC, it accommodates a voltage range from 20.4 to 26.4 VDC. The device features 12 outputs, utilizing a transistor sourcing type for optimal control.
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| Manufacturer | Omron |
|---|---|
| Product Line | CP1 |
| Part Number | CP1E-N30SDT1-D |
| Weight | 3.00 lbs (1.36 kg) |
| Power Supply | 24 VDC |
| Enclosure | Mounted in a panel |
| Outputs | 12 |
| Operating Voltage Range | 20.4 to 26.4 VDC |
| Output Type | Transistor (sourcing) |
| Power Consumption | 20 W max. |
| Program Capacity | 8K steps |
| Inrush Current | 24 VDC, 30 A for 20 ms max. for cold start at room temperature |
| Data Memory Capacity | 8K words |
| Current Consumption (5V) | 0.27 A |
| Current Consumption (24V) | 0.02 A |
| Control Method | Stored program method |
| I/O Control Method | Cyclic scan with immediate refreshing |
| Program Language | Ladder diagram |
The CP1E-N30SDT1-D from Omron serves as a compact yet powerful controller tailored for panel mounting applications. It functions with a stable power supply at 24 VDC, operating effectively within a voltage range spanning from 20.4 to 26.4 VDC. This unit provides 12 outputs equipped with sourcing transistors, suitable for various automation needs.
With a peak power consumption capped at 20 watts, the device is designed to be energy-efficient yet capable of handling demanding tasks. It boasts a program capacity of 8K steps, enabling robust programming capabilities, and it includes a data memory capacity of 8K words to support operational data management.
Inrush current for cold starts is rated at 30 A for a maximum duration of 20 milliseconds, making it receptive under specific conditions when initiated at room temperature. The controller's current draws are 0.27A at 5V and a minimal 0.02A at 24V, showing efficient functionality in power usage.
The control strategy employed is a stored program method, allowing pre-defined operations based on user-designed logic. It implements a cyclic scan I/O control method, which features immediate refreshing to enhance the responsiveness of the system. Lastly, the programming language utilized to configure this device is a ladder diagram, a common choice that simplifies the design of control circuits.