KERICK
KERICK is a manufacturer of float valves and float valve assemblies, primarily serving industrial and sanitary applications that require reliable liquid-level control. The brand is known for producing components that manage water media in tanks, reservoirs, and process vessels. KERICK’s product line includes general service float valve assemblies, food-grade and sanitary float valve assemblies, float valve bodies, and replacement rods. These components are designed for use with water and are available in configurations that support bulkhead mounting or horizontal piping. The valves feature angle valve bodies, cylindrical floats, and adjustable or fixed arms, depending on the model. Materials include PVC for the valve body and stainless steel for rods, with seal materials such as Santoprene rubber. Flow rates across the range vary from 1.3 gpm at 40 psi for smaller assemblies to 90 gpm at 30 psi for larger units. Many models comply with Standard 169, which is a recognized standard for float valve performance and dimensions. KERICK components are typically supplied with NPT (National Pipe Thread) connections, making them compatible with standard piping systems. 3G Electric stocks a selection of KERICK float valves and assemblies, including both general service and sanitary models, as well as replacement rods in multiple lengths. This inventory supports maintenance and new-installation requirements for plant engineers and procurement specialists who need consistent, specification-driven components for water-level control. The availability of separate rods and valve bodies allows for modular replacement, reducing downtime. KERICK’s focus on water media and standardized mounting options makes its products suitable for a range of industries, including food processing, water treatment, and general manufacturing. By offering these components through 3G Electric, buyers can source KERICK products with global logistics support, ensuring that replacement parts or new assemblies are accessible for facilities worldwide.
