Winholt PT34-3036 Cutting Board, 30" x 36" x 3/4", White - Image 1
SKU: 145-PT343036
Brand: Winholt
Model: PT34-3036

Winholt PT34-3036 Cutting Board, 30" x 36" x 3/4", White

The Winholt PT34-3036 is a durable, NSF-certified 30x36 white plastic cutting board designed for commercial kitchens. Dishwasher and high-temp safe, it offers long-lasting performance for busy restaurant environments.

Key Features

  • NSF Certified: Meets strict commercial kitchen sanitation standards for food safety compliance.
  • Dishwasher and High-Temp Safe: Withstands temperatures up to 180°F, ensuring durability and easy cleanup in high-volume environments.
  • Durable Polyethylene Construction: Resists warping, staining, and bacteria growth, extending the board’s lifespan for cost-effective performance.
  • Compact Yet Sturdy: 30" x 36" x 3/4" dimensions provide stable cutting surfaces without taking up excessive counter space.
  • 1-Year Warranty: Backed by Winholt’s warranty against defects in material and workmanship, offering peace of mind for restaurant owners.
Starting from $352.00/unit

Volume discounts available

The Winholt PT34-3036 30" x 36" White Plastic Cutting Board is a versatile and reliable workhorse for commercial kitchens. Made from high-quality polyethylene, this cutting board combines durability with practicality, making it an essential tool for chefs and culinary professionals. Its NSF certification ensures it meets strict sanitary standards, while its dishwasher and high-temperature (180°F) safety make cleanup and maintenance a breeze—critical for high-volume restaurant operations. The 3/4" thickness provides stability for chopping, dicing, and slicing, while the white color helps prevent staining and maintains a clean, professional appearance. Whether you're prepping ingredients for a fine-dining establishment or a fast-casual eatery, this cutting board delivers the performance and longevity that commercial kitchens demand. Its compact size (30" x 36") makes it ideal for countertop space efficiency without sacrificing functionality.