C.R. Laurence J10SP16 Jackson 5/8" Interchangeable Spindle for the 1000 Series Ultimate Overhead Concealed Door Closer is an essential accessory designed to enhance the versatility of your door closing systems. Measuring 5/8" (16 mm) from the base of the closer body, this spindle offers a tailored solution for a variety of door types and applications. The J10SP16 spindle serves as an optional replacement for the standard 7/8" (23 mm) spindle that comes with the 1000 Series Ultimate OHC Closer. By providing multiple spindle lengths-including the 1-1/4" (32 mm) option-this product allows for greater customization, ensuring optimal performance regardless of the specific installation requirements. Crafted with durability in mind, the interchangeable spindle is part of the CRL Jackson® commitment to quality and reliability in architectural hardware. Its easy installation and adaptability make it a preferred choice for building professionals and knowledgeable homeowners alike. Whether you're upgrading existing hardware or installing new systems, the J10SP16 spindle is a smart investment that enhances the functionality of your overhead concealed door closer. Trust C.R. Laurence to deliver exceptional solutions tailored to your architectural needs.
Jackson 5/8" Interchangeable Spindle for 1000 Series Ultimate Overhead Concealed Door Closer
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
Product Details: Measures 5/8" From Base of Closer Body
Recommended Door Type: Aluminum, Hollow Metal
Shipping Limitations: None
Square Corners: No