Halsey Taylor HTHBHVR-NF Wall Mount Drinking Fountain w/ Bottle Filler - Non Refrigerated, Non Filtered - Image 1
SKU: 189-HTHBHVRNF
Brand: Halsey Taylor

Halsey Taylor HTHBHVR-NF Wall Mount Drinking Fountain w/ Bottle Filler - Non Refrigerated, Non Filtered

The Halsey Taylor HTHBHVR-NF is a durable, wall-mounted commercial bottle filler that dispenses non-refrigerated water with vandal-resistant features and a sustainability tracker. Ideal for restaurants and kitchens.

Key Features

  • Vandal-resistant HydroBoost® bottle filler with dual-level activation (electronic + mechanical) for reliable, high-flow hydration (1.5 GPM).
  • Non-refrigerated and non-filtered design for cost-effective water dispensing without chilling or filtration requirements.
  • Stainless steel construction with a sleek silver finish, built to withstand commercial environments and high usage.
  • Green Counter™ sustainability display tracks plastic bottles saved, reinforcing eco-friendly credentials for restaurants.
  • Wall-mount configuration with indoor/outdoor compatibility, compact dimensions (18.06" W x 18.63" D x 38.81" H).
Starting from $3934.00/unit

Volume discounts available

The Halsey Taylor HTHBHVR-NF is a high-performance, wall-mounted commercial water fountain designed for restaurants, kitchens, and foodservice establishments. Part of their HydroBoost® line, this non-refrigerated, non-filtered bottle filler delivers 1.5 GPM output with a vandal-resistant design, ensuring durability in high-traffic areas. Its stainless steel construction and dual-level design (electronic bottle filler + mechanical front bubbler) provide convenience and reliability, while the Green Counter™ display promotes sustainability by tracking plastic bottles saved from waste. Perfect for indoor and outdoor applications, this unit is ideal for commercial settings that prioritize functionality, efficiency, and eco-friendly solutions. The 1-year limited warranty adds peace of mind, making it a smart investment for businesses looking to streamline hydration while reducing waste.