C.R. Laurence ESK2MBL Matte Black Electric Strike Keeper for Double Doors - Fail Secure offers a robust solution for securing glass entrances while ensuring ease of access. Designed specifically for 1/2" or 3/4" tempered glass doors, this electric strike keeper is a perfect match for CRL's Panic and Deadbolt Handles, allowing for seamless integration into your security system. The fail secure feature ensures that the locking mechanism remains engaged during a power failure, providing peace of mind in high-security environments. Ideal for both single and double door applications, the ESK2MBL is crafted from durable aluminum with a sleek matte black finish, adding a modern aesthetic to any architectural setting. This electric strike keeper is not just about functionality; it enhances the overall design of your glass entrances while maintaining safety and security. Compliance with safety standards means you can trust its reliability in commercial and residential applications alike. With no shipping limitations and the option to ship via UPS, incorporating the ESK2MBL into your project is straightforward. Elevate your door hardware with the C.R. Laurence ESK2MBL and ensure that your access points are both secure and stylish.
Matte Blackl Electric Strike Keeper for Double Doors- Fail Secure
This CRL Electric Strike Keeper is used with our Panic and Deadbolt Handles, and can be ordered for use on either single or double doors.
Most shipping weights are approximate and have not been verified. If the exact weight is needed in order to determine shipping costs, and shipping costs are required in order for you to complete your order, please request this prior to submitting your order by contacting CRL Customer Service. Product images shown are of the actual product or a close representation. Colors can vary depending on your computer's video card and on how your monitor's color is adjusted.
Compliance and Restrictions: Warning Reproductive Harm - www.p65warnings.ca.gov
Finish/ Color:: Matte Black
Material: Aluminum
Shipping Limitations: None