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Get it between 2025-03-11 to 2025-03-18. Additional 3 business days for provincial shipping.
Heavy Duty Float Valves control high-capacity water flow in various applications ideal for use in air conditioning, refrigeration, and irrigation systems
Valves have bronze body construction with flanges on the inlet side; high tensile manganese bronze long and short arms
Serrated arms allow for easy adjustment of water level
These connectors can be tank wall-mounted, replaceable seals, and no-jam single lever action
Maximum Working Pressure: 165psi, Maximum Working Temperature: 180°F
The Watts 2" Heavy Duty Bronze Float Valve is a mechanical float valve that is specifically engineered to control high-capacity water flow in a wide array of demanding applications, making it an ideal choice for use in commercial, industrial, and agricultural applications, especially in air conditioning, refrigeration, and irrigation systems. This float valve's innovative design features replaceable seals and a no-jam single lever action, ensuring smooth and reliable operation even under the most challenging conditions. With a machined flange on the inlet side and a male straight-pipe threaded outlet connection with a locknut, this valve guarantees a secure and leak-free installation. Crafted from durable bronze, the Watts Heavy Duty Bronze Float Valve is built to last. The high tensile manganese bronze long and short arms provide additional strength and resilience. It operates efficiently at a maximum working pressure of 165 psi (11.4 bar) and can handle temperatures up to 180° F (82° C), making it suitable for a variety of high-demand settings. Additionally, these float valves are equipped with serrated arms, which allow for easy and precise adjustment of the water level. This functionality ensures that optimal water levels are maintained with minimal effort, significantly enhancing the efficiency of your water management system. This valve can be conveniently tank wall-mounted as well, providing versatility in installation options and meeting the demands of various systems with ease.