# TH-N20KP Thermal Overload Relay | Mitsubishi - 1.7-2.5A Protection

The Mitsubishi Electric TH-N20KP Thermal Overload Relay provides reliable protection for electrical circuits against overload conditions. Designed for optimal performance in industrial automation, this relay is a crucial component for safeguarding motors, generators, and other critical equipment. It ensures the longevity and efficiency of your electrical systems.

-   **Precise Overload Protection:** Tripping current set at 125% of the dial setting for accurate protection.
-   **Wide Current Range:** Offers a tripping current range of 1.7-2.5A (2.1A), suitable for various applications.
-   **Durable Construction:** Manufactured in Japan to meet international standards.
-   **Versatile Contacts:** Features Class 10 contacts, including 1NO + 1NC (B600), for flexible system integration.
-   **Easy Installation:** Compact and lightweight design for easy integration into existing systems.

The TH-N20KP is perfect for use in industrial settings, providing essential protection for your equipment. Its robust construction and precise tripping capabilities ensure the safety and efficiency of your operations. Trust Mitsubishi Electric for dependable, high-quality components designed to meet the demands of modern automation systems. This is an essential component for ensuring the safety and efficiency of your electrical systems. For any inquiries, contact us at [info@ramautomations.com](mailto:info@ramautomations.com).

## Details

- **Price:** 999.0 USD
- **Vendor:** Mitsubishi
- **Type:** Industrial Automation > Electrical Components > Overload Relays
- **Tags:** 1.7-2.5A, electrical safety, Mitsubishi, motor protection, TH-N20KP, thermal overload relay

## Variants

| Variant | Price | Available |
|---------|-------|-----------|
| New | 999.00 USD | In stock |

## Images

- TH-N20KP Thermal Overload Relay | Mitsubishi - 1.7-2.5A Protection-Ram Automations

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> Source: [Ram Automations](https://ramautomations.com/products/mitsubishi-th-n20kp-relay)
> Updated: 2026-10-02
