FREE Delivery to:
This item cannot be returned.
- Shop with confidence knowing you’re getting genuine commercial-grade equipment.
- Save more with our unbeatable prices and exclusive deals.
- Rely on experts for fast, friendly support; experts in front of house, back of house and everything in between.
AERO Manufacturing DC-1560 Dish Cabinet 60"W X 15"D 16 Gauge 300 Series Stainless Steel Top With 1 Rolled Edge
| Manufacturer | AERO Manufacturing |
|---|---|
| Model Number | DC-1560 |
| Manufacturer Part # | DC-1560 |
| Depth (front - back) | 15" |
| Height | 35" |
| Width (side - side) | 60" |
| Height | 35" |
| Width | 60" |
| Depth | 15" |
| Weight | 180 lbs |
About this item
Product Details
Product Details
The AERO Manufacturing DC-1560 Dish Cabinet is a highly resilient and functional unit, ideal for various commercial kitchen environments. This dish cabinet features a top constructed from 16-gauge, 300 series stainless steel, known for its durability and resistance to corrosion, making it suitable for long-term use in demanding settings. The top is designed with a rolled edge, enhancing safety and aesthetics by minimizing sharp edges. With dimensions of 60 inches in width and 15 inches in depth, the cabinet offers ample space for dish storage while maintaining a compact size that fits seamlessly into different kitchen layouts. Additionally, it includes two stainless steel undershelves, providing extra storage capacity and organizational flexibility to accommodate diverse kitchen needs. Supported by robust 6-inch legs, this cabinet maintains stability and can withstand substantial weight. The AERO Manufacturing DC-1560 Dish Cabinet is an essential component for food service operations that require reliable and efficient storage solutions, and its stainless steel construction ensures ease of cleaning and maintenance, promoting high hygiene standards. This cabinet's thoughtful design and quality materials make it a valuable asset for restaurants, catering services, and institutional kitchens, offering exceptional performance and durability in space-conscious environments.
