Steelite WL9232AW 21 Oz Coffee Server Without Base Stainless Steel 6 Packs -
- Corrosion-resistant 18/10 stainless steel construction
- 21 oz. capacity reduces refill frequency
- Argon Weld™ ensures leak-proof assembly
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The Steelite WL9232AW Coffee Server is a commercial beverage service vessel designed for high-volume hospitality and foodservice environments. Made from durable 18/10 stainless steel, this 21 oz. coffee server offers exceptional resistance to corrosion and impact, ensuring long-term performance in busy café, hotel, or restaurant settings. Its precise craftsmanship and material composition support consistent temperature retention and hygienic cleanliness, making it suitable for professional use in high-traffic foodservice operations. The absence of a base allows for versatile placement and easy cleaning, optimizing workflow efficiency while maintaining a sleek, restaurant-ready presentation.
The Steelite WL9232AW coffee server features a robust stainless steel construction designed to withstand rigorous daily use in commercial kitchens. Its 21 oz. capacity is ideal for serving medium-sized portions, and the Argon Weld™ assembly ensures strong, leak-proof joints. Easy to clean and maintain, this server facilitates seamless integration into various beverage service workflows, whether in buffets, self-serve stations, or front-of-house presentation. Its lightweight design simplifies handling, while compatibility with standard storage units enhances operational convenience.
Ideal for high-traffic restaurants, cafeterias, and catering services requiring reliable beverage presentation.
Constructed from high-quality stainless steel, the Steelite WL9232AW beverage server weighs 0.8 lbs and features a 21 oz. capacity suited for moderate-duty service. Its dimensions support easy handling and storage, with a focus on maximizing kitchen space. Designed with chemical resistance and food-safe materials, this unit withstands frequent cleaning and sanitization protocols, including dishwashing compatibility. The absence of a base allows for straightforward placement on various surfaces and simplifies cleaning routines. It operates effectively within standard kitchen environments, making it suitable for coffee, tea, or other hot beverage service. The welded argon joints guarantee long-lasting, leak-proof integrity, supporting continuous operation in busy foodservice settings.
Electrical Requirements: Not applicable
Cooling Method: Not applicable
Food Safety: Food-grade stainless steel, compatible with sanitation procedures
Temperature Resistance: Suitable for hot beverage service, operating safely within typical kitchen temperature ranges
Assembly Required: No, ready for immediate use
A commercial beverage server is a high-capacity, professionally crafted container designed for dispensing hot or cold beverages in foodservice environments. It typically features durable materials like stainless steel for longevity and food safety, with precise construction to prevent leaks and facilitate cleaning. Used in cafes, hotels, and catering operations, the Steelite WL9232AW beverage server offers a 21 oz. capacity suited for medium throughput settings, installed on counters or buffet lines for efficient beverage presentation and service. Its sturdy build supports continuous operation, making it a reliable component of high-volume foodservice workflows.
Designed for high-volume foodservice operations, the Steelite WL9232AW offers reliable construction, functional capacity, and seamless workflow integration, ideal for busy restaurants and catering services requiring durable beverage presentation equipment.
Compared to standard beverage servers, the Steelite WL9232AW combines rugged stainless steel durability with precision Argon Weld™ craftsmanship, ensuring leak-proof performance and easy maintenance. Its lightweight design and versatile form factor support seamless workflow integration in diverse foodservice settings, enhancing presentation and operational efficiency while providing long-term value for high-volume operations.
Product Description
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