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Introducing the Anti-Flow Brass Bibcock, a reliable and versatile valve suitable for drinkable water systems, piping water systems, and garden houses.
The Brass Bibcock is designed with a compact size of 1/2″, allowing for easy installation in tight spaces or applications where a smaller valve is required. Its sleek and ergonomic design ensures effortless operation and precise water flow control.
The Brass Bibcock features threads that conform to the ISO 228 standard, which is equivalent to DIN EN ISO 228 and BS EN ISO 228. These standardized threads ensure a secure and leak-free connection, making installation quick and hassle-free.
The Brass Bibcock is designed to operate within a temperature range of 0°C to 80°C. This temperature range ensures optimal performance and reliability regardless of the environmental conditions. With a working pressure of PN16
The Anti-Flow Brass Bibcock is an excellent choice for applications that require a compact valve size of 1/2″. Its chrome-plated brass body not only adds a sleek and visually appealing touch to your plumbing system but also ensures exceptional durability and resistance to corrosion. The T handle, made of brass, offers a comfortable grip for effortless operation and precise water flow control. Whether you’re using it in drinkable water systems, piping water systems, or garden houses, the Brass Bibcock is designed to provide reliable performance.
Equipped with threads that conform to the ISO 228 standard, which is equivalent to DIN EN ISO 228 and BS EN ISO 228, the Anti-Flow Brass Bibcock guarantees a secure and leak-free connection. The standardized threading mechanism ensures compatibility with various fittings and pipes, allowing for easy installation and versatility in different plumbing setups. With a working temperature range of 0°C to 80°C, this bibcock is suitable for a wide range of temperature conditions commonly encountered in water systems. Additionally, its working pressure rating of PN16 demonstrates its ability to handle moderate pressure levels without compromising its performance.