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Omron's C500-OA225 is a TRIAC output unit, engineered to manage various control tasks. This device has a C-shaped design which facilitates integration into existing systems.
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| Manufacturer | Omron |
|---|---|
| Product Line | C500 |
| Part Number | C500-OA225 |
| Weight | 1.63 lbs (0.74 kg) |
| Description of Product | TRIAC Output Unit |
| Fuse Capacity | Not provided |
| Maximum Switching Capacity | 1 A, 250 VAC, 50/60 Hz (4 A/common, 5 A/unit) |
| Minimum Switching Capacity | 10 mA (resistive load), 40 mA (inductive load), 10 VAC |
| Leakage Current | 2 mA (100 VAC) max., 5 mA (200 VAC) max. |
| Residual Voltage | 1.6 V max |
| ON Response Time | 1 ms max |
| OFF Response Time | 1/2 of load frequency max |
| Number of Points | 32 (8 points/common, 4 circuits) |
| Internal Current Consumption | 200 mA, 5 VDC max. |
Designed for robust performance, the Omron C500-OA225 TRIAC output unit offers a reliable solution for control applications. This I/O component is compact, with a weight of only 0.6 kg, making installation straightforward while optimizing space within control panels.
The output unit is capable of handling a maximum switching capacity of 1 ampere at 250 VAC under 50 or 60 Hz, which allows it to effectively manage varying loads. It supports a minimum switching capacity of 10 mA for resistive loads and 40 mA for inductive loads, while also accommodating a minimum of 10 VAC. The unit’s leakage current is maintained at a maximum of 2 mA at 100 VAC and 5 mA at 200 VAC, which is crucial for maintaining efficiency and safety.
Furthermore, this output unit exhibits a maximum residual voltage of 1.6 volts, ensuring minimal voltage drop during operation. The ON response time is quick, limited to a maximum of 1 millisecond, while the OFF response time is half of the load frequency, enhancing its suitability for high-speed applications.
This TRIAC output unit features 32 points, organized into 4 circuits (8 points per common), which allows for extensive control capabilities in various applications. Additionally, it consumes a maximum internal current of 200 mA at 5 VDC, making it energy efficient within operational contexts.