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The Mitsubishi A162P, part of the A Series, is a high-performance switching module designed for stability in demanding settings. Its robust features make it well-suited for applications in marine environments.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Line | A Series |
| Part Number | A162P |
| Weight | 1.00 lbs (0.45 kg) |
| Type | Switching Module |
| Specialized Coating | Corrosion-resistant coating suitable for marine environments |
| Switch Type | DPDT |
| Contact Rating | 3A @ 230VAC |
| Configuration | PCB Assembly |
| Actuator Type | Toggle or Push-button |
| Contact Material | Silver Alloy |
| Insulation Resistance | 100 MΩ Minimum |
| Dielectric Strength | 2,000 V AC |
| Mechanical Life | 10,000,000 Cycles |
Operating as an effective switching module, the Mitsubishi A162P model is designed for robustness and reliability. This device has a corrosion-resistant coating specially formulated for marine settings, making it relevant for outdoor or humidity-prone applications.
The switch type deployed in this module is DPDT, allowing for versatile control capabilities. With a contact rating of 3A at 230VAC, the A162P efficiently handles moderate voltage and current. The module's configuration is based on PCB assembly, which supports efficient integration into control systems.
Users can select either toggle or push-button actuators, enhancing versatility in the types of operations that can be performed. The actuator features contacts made from silver alloy, a material known for its excellent conductivity and durability.
The A162P's electrical integrity is notably high. It maintains an insulation resistance of at least 100 MΩ, which ensures minimal leakage and stability during operation. The component's dielectric strength rating of 2,000 V AC signifies that it can withstand significant electrical stress.
The mechanical longevity of this product is impressive, with a lifespan rated at 10 million cycles, ensuring durability and reliability across numerous applications. This contributes to its status as an effective switching solution within various operational contexts.