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The CPM1A-ETL03-CH from Omron serves as an input simulator specifically designed for the CPM1A-30CDR control unit. It features six input points and incorporates a stored program control method for effective input simulation.
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| Manufacturer | Omron |
|---|---|
| Product Type | Input Simulator for CPM1A-30CDR |
| Product Line | CPM1 |
| Part Number | CPM1A-ETL03-CH |
| Weight | 3.00 lbs (1.36 kg) |
| Input Points | 6 Points |
| Insulation Resistance | 20 MΩ at 500 VDC |
| Control Method | Stored Program |
| Dielectric Strength | 2,300 VAC for 1 minute, 10 mA max leakage |
| AC Power Supply | 100-240 VAC, 50/60 Hz |
| I/O Control Method | Cyclic scan and immediate refresh |
| Noise Resistance | IEC61000-4-4, 2 kV (power lines) |
| DC Power Supply | 24 VDC |
| Programming Language | Ladder Diagram |
| AC Voltage Range | 85-264 VAC |
| DC Voltage Range | 20.4-26.4 VDC |
The Omron CPM1A-ETL03-CH serves a specific function as an input simulator for the CPM1A-30CDR unit. It has six dedicated input points for effective simulation tasks. This simulator operates based on a stored program control method that allows for controlled input processing.
Insulation resistance ratings are robust, measuring 20 MΩ under 500 VDC conditions, which aids in ensuring reliable performance in various applications. Additionally, the module exhibits a dielectric strength of 2,300 VAC for one minute, with a maximum leakage current of 10 mA, confirming its suitability for demanding environments.
Power requirements include an AC supply ranging from 100 to 240 VAC at 50/60 Hz, and it also supports a DC input range of 24 VDC. The voltage ranges for operation include an AC spectrum from 85 to 264 VAC and a DC range spanning 20.4 to 26.4 VDC, which allows this simulator to function effectively in numerous situations.
The I/O control method is executed via cyclic scanning with an immediate refresh, facilitating timely data updates. Furthermore, it features noise resistance compliant with IEC61000-4-4 standards for power lines at levels of 2 kV, ensuring reliable operation amidst electrical interference. The programming language utilized for this simulator is Ladder Diagram, common in automation applications, allowing for straightforward implementation and configuration.