Schlage Electronics M490G Gate Electromagnetic Lock
The Schlage Electronics M490G Gate Electromagnetic Lock is designed for high-security applications on both sliding and swinging gates. It is part of the M400 Series, known for its robust construction and advanced security features, making it ideal for demanding outdoor environments.
Key Features and Specifications
- Holding Force: The M490G provides a substantial holding force of 1500 pounds, ensuring strong security for gates.
- Voltage and Power: The lock features automatic voltage selection, operating on both 12VDC and 24VDC. The current draw is 0.65A at 12VDC and 0.35A at 24VDC, making it adaptable to various power systems.
- Weather Resistance: Designed to withstand outdoor conditions, the M490G is weather-resistant, making it suitable for use in various climates.
- Magnetic Bond Sensor (MBS): Monitors the strength of the magnetic bond between the lock and the armature, ensuring the gate is securely locked.
- Gate Status Monitor (DPS): Provides real-time status updates on whether the gate is open or closed.
- Installation Features:
- Includes a 1/2-inch compression connector for installation of 1/2-inch EMT conduit, protecting wiring from weather and vandalism.
- Equipped with universal mounting brackets, making it suitable for various gate types and accommodating gate misalignment issues.
- Dimensions: The lock measures 11 inches in length, 3 inches in height, and 1-3/4 inches in width, with an approximate weight of 14 pounds.
- Durability: The lock features heavy-duty plating to resist corrosion, providing a low-maintenance, long-lasting solution.
- Certifications: The M490G meets ANSI/BHMA A156.23 outdoor-rated standards, ensuring it meets high-security and durability requirements.
Applications
The M490G is ideal for securing both sliding and swinging gates in a variety of settings, including commercial buildings, industrial sites, and other outdoor facilities. Its robust design and weather resistance make it a reliable choice for enhancing security in demanding environments.