EMAS L51K23LUM323 Limit Switch – L51 Metal Body Flexible Key Safety Switch Slow Action 1NO+1NC
The EMAS L51K23LUM323 is a rugged industrial safety limit switch from the EMAS L51 Metal Body series, designed for machine safety monitoring, guard door interlocking, and industrial automation applications. Featuring a durable metal body and cover, flexible key safety actuator, slow action switching mechanism, and 1NO + 1NC contact configuration, this limit switch provides reliable safety switching performance in demanding industrial environments.
Built for reliable operation in industrial control systems, the EMAS L51K23LUM323 provides a mechanical life of up to 10 million operations and an electrical life of up to 1 million operations. With IP65 protection, AgNi contact material, and compliance with TS EN 60947-5-1, UL 508, and VDE 0660 standards, it is suitable for safety interlocks and machinery protection applications.
EMAS L51K23LUM323 Product Features
- Manufacturer: EMAS
- Series: L51 Metal Body Limit Switch
- Product Type: Safety Limit Switch
- Actuator Type: Metal Flexible Key Safety Switch
- Contact Configuration: 1NO + 1NC
- Contact Action: Slow Action
- Rated Current: 3A at 240V AC
- Usage Category: AC15
- Mechanical Life: Minimum 10,000,000 operations
- Electrical Life: Minimum 1,000,000 operations
- Protection Rating: IP65
- Operating Temperature: -25°C to +80°C
- Standards: TS EN 60947-5-1, UL 508, VDE 0660
Applications
The EMAS L51K23LUM323 safety limit switch is commonly used for:
- Machine safety door monitoring
- Industrial automation systems
- Safety interlock circuits
- Production line protection
- Machinery guarding systems
- Industrial control panels
Why Choose EMAS L51K23LUM323?
The EMAS L51K23LUM323 combines a strong metal construction with a flexible key safety actuator for reliable machine protection. Its slow action contacts, IP65 environmental protection, and long operational life make it an effective solution for industrial safety applications requiring dependable access monitoring and emergency switching.