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Barbs grip onto tubing, providing a secure hold. These valves are for use with water, oil, air, and inert gas. Turn the handle to adjust flow in small increments for metering, sampling, and other applications requiring fine flow control.
With a low-profile body and a narrow port-to-port length, these valves fit in tight spots. Barbs grip onto tubing, providing a secure hold. These valves are for use with water, oil, air, and inert gas. Turn the handle to adjust flow in small increments for metering, sampling, and other applications requiring fine flow control.
Barbs grip onto tubing, providing a secure hold. To withstand aggressive and corrosive solutions in chemical-processing applications, these valves have a PTFE seal and a PVDF body. Turn the handle to adjust flow in small increments for metering, sampling, and other applications requiring fine flow control.
These valves have barbed fittings that grip onto tubing, providing a secure hold. They’re often used in food and beverage tubing lines to adjust flow in small increments for metering, sampling, and other applications requiring fine flow control.
Add fine flow control to tubing lines for oil, butane, diesel fuel, fuel oil, gasoline, kerosene, natural gas, and propane. These valves have a barbed fitting that grips onto tubing, providing a secure hold. Turn the handle to adjust flow in small increments.
Barbs grip onto tubing, giving these valves a secure hold. Made of plastic, they won’t pit or corrode on the inside like metal valves, and they’re lighter in weight for easy handling.
These valves have barbs that grip onto tubing, providing a secure hold. Because they’re made of metal, they are more durable than plastic valves and withstand higher temperatures.
Install these valves in tight spaces—they have a short body length and low profile. A barbed end grips onto tubing for a secure hold.
With just a half turn or a light push, these valves connect to luer lock fittings on your line.
For chemical-processing applications in confined areas, these valves have a low-profile handle to fit in tight spots. A rubber seal and a plastic body stand up to aggressive, corrosive solutions.
Barbs grip onto tubing, providing a secure hold. To withstand aggressive and corrosive solutions in chemical-processing applications, these valves have a plastic body and a chemical-resistant seal.
Connect these valves to tubing with a ring and a crimping tool. They meet the strict standards of NSF/ANSI 61, so they’re safe to use with drinking water.
Barbs grip onto tubing to give these valves a secure hold. These valves meet NSF/ANSI 61, so they’re safe to use with drinking water.
Push tubing into the fittings on these valves and an internal gripping ring and O-ring hold it tight—no heat, solder, or flux required. They meet either NSF/ANSI standards or are FDA compliant for use with food.
To prevent leaks, these valves have barbed fittings that grip onto tubing to create a strong hold. They meet NSF/ANSI standards or are FDA compliant for use with food.
Barbs grip onto tubing, providing a secure hold.
For more durability than plastic barbed check valves, these have a stainless steel body.
With internal components that resist wear from frequent operation, these valves can cycle as often as once per second.
Insert the barbed ends of these orifices into rubber and soft plastic tubing, and secure them with a clamp.
To prevent contaminating your oxygen line, these flowmeters are specially cleaned and bagged.
Lighter in weight than their metal counterparts, these quick-disconnect couplings are made of acetal plastic. They are moisture resistant, so they won’t absorb water and lose strength, even in high-humidity environments.
With no latch, these couplings have a compact design to fit in small spaces. They can handle pressures up to 700 psi.
A spring-free flow path allows more air or water to pass through these tube couplings at lower line pressures than other quick-disconnect couplings.
Prevent mixing the wrong high-pressure lines—these couplings are designed to only connect with a plug or socket of the same color.
Not only are these chrome-plated brass couplings corrosion resistant, they’re also durable enough to handle pressures up to 250 psi and can be used with vacuum.
A built-in shut-off valve stops the flow when you separate these couplings, so air or water won’t leak from your line. Made of nylon, these couplings are lightweight and have good impact and abrasion resistance.
These quick-disconnect couplings meet NSF/ANSI 169 for food equipment.
Quick-disconnect couplings consist of a plug and a socket that join with a latch so you can easily connect and disconnect your line.
A spring-free flow path allows more chemicals to pass through these tube couplings at lower line pressures than other quick-disconnect couplings.
Also known as Schrader valves, these valves rapidly fill or empty compressed air tanks or pneumatic tires.
The industry standard for quick-disconnect couplings, these are also known as industrial interchange couplings. Compatible with Industrial-shape plugs and sockets.
Plugs and sockets are color coded by shape so you can't mix hose lines. Only plugs and sockets of the same color will fit together.
Made of acetal, these couplings are lighter in weight than metal quick-disconnect couplings. Compatible with Plastic-shape plugs and sockets.
Sockets accommodate five common plug shapes: Industrial, ARO, Lincoln, Tru-Flate, and European.
Compatible with ARO-shape plugs and sockets.
Also known as automotive couplings. Compatible with Tru-Flate-shape plugs and sockets.
Compatible with Schrader-shape plugs and sockets.
A slim body allows these couplings to fit into tight spaces. Compatible with Compact-shape plugs and sockets.
Compatible with Lincoln-shape plugs and sockets.
With an unobstructed air path, these couplings have better airflow than other coupling shapes of the same size. Compatible with European-shape plugs and sockets.
Compatible with Japanese-shape plugs and sockets.
Reduce the risk of spills near electronics when connecting and disconnecting liquid cooling lines. Also known as double shut-off couplings, these couplings have a shut-off valve on both sides that stops the flow of coolant if they’re separated.
Use these couplings at pressures up to 6,500 psi. They consist of a plug and socket that connect and disconnect quickly. Use them if you need frequent access to a line. They are compatible with Snap-Tite H-Shape plugs and sockets.
Couplings consist of a plug and a socket that connect and disconnect quickly. Use them if you need frequent access to a line. They are designed for coolant applications up to 200 psi. Also known as coolant-line mold couplings.