Channel 29 1/2"W 11 Sheet Pan Rack w/ 5" Bottom Load Slides (SRS-11) - Image 1
SKU: 148-SRS11
Brand: Channel
Model: SRS-11

Channel 29 1/2"W 11 Sheet Pan Rack w/ 5" Bottom Load Slides (SRS-11)

The Channel SRS-11 is a durable, 11-sheet pan rack with 5" bottom load slides, designed for commercial kitchens. Made in the USA with aluminum construction, it offers side-load convenience and NSF compliance. Perfect for high-volume operations.

Key Features

  • 11 levels of storage for full-size sheet pans (18" x 26") with 5" bottom-load slides for effortless side-loading
  • Durable **aluminum construction** with **lifetime rust and corrosion warranty**—built for heavy-duty commercial use
  • NSF-certified and **Made in the USA**, ensuring compliance and quality for professional kitchens
  • Full-height (70") design with **swivel stem casters** for mobility and space efficiency in tight kitchen layouts
  • Accommodates **5" angle spacing** between shelves, optimizing storage for multiple pan types while maintaining accessibility
Starting from $799.00/unit

Volume discounts available

The **Channel SRS-11 11-Sheet Pan Rack** is a versatile, high-capacity storage solution designed for commercial kitchens, bakeries, and restaurants. With a **29.5" width** and **11 levels**, this **aluminum pan rack** efficiently organizes **full-size sheet pans (18" x 26")** while maximizing vertical space in tight kitchens. Its **5" bottom-load slides** enable smooth, side-loading access, reducing fatigue and improving workflow efficiency—ideal for high-volume operations. Made in the **USA**, this **NSF-certified** rack is built to withstand daily wear with a **lifetime warranty against rust and corrosion**, ensuring long-term durability. Whether used in a bustling bakery, industrial kitchen, or restaurant, the SRS-11 streamlines pan storage while maintaining a professional, organized workspace. Its **full-height design (70"H)** and **swivel stem casters** add mobility, making it a smart investment for commercial kitchens prioritizing both functionality and space optimization.