CETOP hydraulic manifolds are standardized mounting blocks designed for installing directional, pressure, flow-control, and other hydraulic valves in accordance with CETOP (NG/ISO 4401) interface dimensions. They provide a unified platform for valve integration, simplifying assembly, improving serviceability, and ensuring compatibility across manufacturers.
Mounted either individually or as part of modular systems, CETOP manifolds distribute, route, and regulate hydraulic flow between actuators, pumps, and auxiliary components. Their standardized cavity and port layout ensures consistent hydraulic performance and facilitates quick valve replacement or system reconfiguration.
Depending on the design, CETOP manifolds can include internal channels, pressure galleries, pilot lines, auxiliary ports, or integrated safety elements such as relief, check, or throttle valves. This allows building compact and highly functional hydraulic control nodes for both industrial and mobile machinery.
CETOP manifolds are available for sizes NG04, NG06, NG10, NG16, NG25 , various port types (G, UNF, SAE, metric), and pressure ratings up to 350 bar, depending on the manufacturer and series. They are widely used in machine tools, presses, lifting equipment, injection molding machines, mobile hydraulics, and custom hydraulic systems requiring a modular and service-friendly architecture.

Argo-Hytos CETOP hydraulic manifolds are designed for working pressures up to 350 bar. Compact aluminum and steel constructions ensure reliable integration of CETOP directional and functional valves into hydraulic systems.

Duplomatic CETOP hydraulic manifolds provide a flexible and reliable platform for mounting CETOP directional and functional valves. Their modular design allows compact system layouts and efficient integration into industrial hydraulic systems.

SUN Hydraulics CETOP manifolds provide a compact and robust platform for integrating cartridge valves into hydraulic systems. Designed for operating pressures up to 350 bar, they ensure reliable and efficient performance in demanding applications.