Introducing the Louisville 8.9 ft. Wood Attic Ladder Type 1, now available at Reading Lumber in North reading, MA. This premium attic ladder is designed to provide safe and reliable access to your attic space, making it an essential addition for homeowners and DIY enthusiasts alike. With a robust weight capacity of 350 pounds, this ladder is built to support your needs while ensuring durability and stability during use.
- ANSI Ladder Rating: Rated as Type 1, this ladder meets stringent safety standards, ensuring it can handle heavy loads with ease.
- Quality Construction: Made from high-quality wood, both the frame and rungs are designed for long-lasting performance.
- Optimal Dimensions: With a height of 8.9 feet and a width of 25.5 inches, this ladder fits comfortably in most attic spaces, providing ample landing space.
- Rung Depth: The rungs are designed with a depth of 5.25 inches and a width of 16.25 inches, offering a secure footing for safe climbing.
- Step Rise: Each step has a rise of 12 inches, making it easy to navigate up and down.
- Swing Clearance: Requires a swing clearance of 70 inches, ensuring it can be opened and closed without obstruction.
Imagine transforming your attic into a functional space for storage or even a cozy hideaway. The
Louisville 8.9 ft. Wood Attic Ladder allows you to access your attic safely and conveniently, making it perfect for storing seasonal items, holiday decorations, or even creating a small workspace. Whether you're a homeowner in North reading looking to maximize your space or a contractor needing reliable access to upper levels, this ladder is designed to meet your needs.
In conclusion, the
Louisville 8.9 ft. Wood Attic Ladder Type 1 is not just a ladder; it's a gateway to utilizing your attic space effectively. With its sturdy construction and thoughtful design, this ladder ensures safety and ease of use for all your attic access needs. Don't miss out on the opportunity to enhance your home with this essential tool, available now at Reading Lumber in North reading, MA.