We will reply to your message within an hour.
These are the most commonly used pressure gauges. Use them with pumps, filters, regulators, and in process lines to measure and display pressure.
These gauges fit into square cutouts in your instrument panel.
A digital display allows for easy reading of measurements.
Read your pressure from a distance with these large-dial gauges.
Keep tabs on liquid levels in pump and tank applications with these gauges—a dual scale displays pressure in feet of H2O and psi.
Gauges come in a variety of colors so you can identify an important spot in your process line.
A liquid-filled dial reduces needle flutter for precise readings in high-vibration applications.
These gauges have a unique case design that eliminates the air bubble on the dial face, which can distort readings. They have a liquid-filled dial that reduces needle flutter for precise readings in high-vibration applications.
These gauges have a red needle that indicates the highest pressure reached since the last setting. They have a liquid-filled dial that reduces needle flutter for precise readings in high-vibration applications.
The case material and connection threads are stainless steel for protection in corrosive environments, plus the dial is glycerin-filled to reduce needle flutter in high-vibration applications.
Gauges have an accuracy of ± 0.5% to ± 1%. They are suitable for critical processes that require high accuracy, such as hydraulic and laboratory applications.
These gauges have a unique case design that eliminates the air bubble on the dial face, which can distort readings.
Gauges have an accuracy of ± 1% to ± 1.5%. They are suitable for critical processes that require high accuracy, such as hydraulic and laboratory applications.
Gauges have an accuracy of ± 2%.
These gauges can withstand both extremely cold and extremely hot temperatures.
Check the pressure on your drinking water system with these gauges—they meet NSF/ANSI Standard 61 for safe use with potable water.
Clearly read pressure levels in your drinking water system, even with heavy vibration. The dial face is filled with glycerin, which absorbs shock and keeps the needle steady.
These gauges have a liquid-filled dial that reduces needle flutter in high-vibration applications reaching 2,000 psi.
Use in low-pressure applications up to 160 psi.
Use these gauges to monitor the pressure of compressed gas.
These gauges are 3-A certified for sanitary design in dairy and other food processing applications.
A liquid-filled dial reduces needle flutter in high-vibration food-processing applications.
Designed for harsh environments prone to vibration, these gauges pair a corrosion-resistant 304 stainless steel case with a glycerin-filled dial that reduces needle flutter.
Also known as compound gauges, these measure both pressure and vacuum.
A 304 stainless steel case coupled with 316 stainless steel connection threads provide protection from corrosive environments.
A glycerin-filled dial reduces needle flutter for precise readings in high-vibration applications.
A band of green, yellow, and red provides a clear indication of changes in differential pressure.
Gauges have a digital display for easy reading of measurements.
Use in high-pressure applications up to 3,000 psi.
Remotely monitor pressure in general purpose applications such as pumping and compressing systems.
At least four times as accurate as standard pressure transmitters, these transmitters are ideal for use in laboratories and analytical testing applications.
These transmitters automatically compensate for error introduced by vibration as well as temperature fluctuations, so you do not need to program your receiving device to correct for these factors. They convert pressure to an electrical signal that can be interpreted by receiving devices, such as remote displays, programmable logic controllers, and motor speed controls to monitor pressure or control equipment.
Choose these transmitters when you need reliable pressure monitoring but not high accuracy.
Monitor and control pressure in portable HVAC systems, hydraulics, and oil and gas equipment. Unlike other pressure transmitters that measure the difference between your system and the atmosphere, these transmitters give measurements relative to zero pressure—regardless of altitude or temperature.
Adhere to safety standards and monitor pressure when working with high concentrations of oxygen.
Safely monitor liquid, gas, and steam pressure in hazardous locations with these transmitters. They meet NEC safety standards, so they protect against an explosion where flammable gases and vapors are present.
For use in sanitary applications such as food processing, these transmitters are 3-A certified.
Fine-tune the pressure range on these transmitters to account for changes in pressure readings over time.
Convert both pressure and vacuum into an electrical signal that can be interpreted by receiving devices, such as remote displays, programmable logic controllers, and motor speed controls to monitor pressure or control equipment.
With an accuracy of ±0.25%, use these transmitters in applications that require highly accurate measurement of both pressure and vacuum, such as activating vacuum pumps.
These transmitters automatically compensate for error introduced into both pressure and vacuum measurements by vibrations as well as temperature fluctuations, so you do not need to program corrections for these factors into your receiving device. They convert pressure and vacuum to an electrical signal that can be interpreted by receiving devices, such as remote displays, programmable logic controllers, and motor speed controls to monitor pressure or control equipment.
Used in hazardous locations, these transmitters safely convert pressure and vacuum into an electrical signal to measure liquids, gases, and steam. NEC rated for safety, these transmitters are explosion proof, so they can be used in environments containing flammable gases and vapors.
View readings at the source with the dial indicator or remotely using a receiver—these transmitters measure the difference in pressure between two inputs in liquid applications.
Convert vacuum into an electrical signal that can be interpreted by receiving devices, such as remote displays, programmable logic controllers, and motor speed controls to monitor vacuum or control equipment.
Test and calibrate transmitters, gauges, and other equipment that measures pressure.
Gauges have an accuracy of ±0.25%.
With an accuracy of ±0.05%, these have the highest accuracy of all our test gauges.
These gauges have a glycerin-filled dial to reduce needle flutter for precise readings in high-vibration applications.
All-stainless steel construction makes these gauges suitable for testing and calibrating in corrosive environments.
With an accuracy of ±0.25%, these gauges are designed for critical processes that require precision.
These valves automatically reduce a high, variable inlet pressure to a lower, stable outlet pressure.
A cast iron body absorbs vibration from pressure changes to reduce wear and noise in your pipeline.
Often used in wet conditions and harsh environments, these valves have a 316 stainless steel body for excellent corrosion resistance.
For a longer service life than brass and cast iron valves, these have a durable bronze body.
Rated for more than double the temperature of standard pressure-regulating valves, these can withstand temperatures up to 550° F.
For easy panel mounting in your water system, these valves have threads below the adjustment knob and come with a panel-mount nut.
Regulate pressure in air and inert gas systems from your instrument panel—these valves have threads below the adjustment knob and come with a panel-mount nut.
Reduce contaminants in gases used in research sample systems, emission monitoring systems, chromatography, and other high-purity applications. These valves have a 316 stainless steel and brass body with a smooth finish to reduce dust collection and internal components designed to protect the seal and diaphragm from contamination.
Install these valves directly in gas distribution pipelines.
For use with acetylene, hydrogen, methane, propane, or propylene gas.
Designed to reduce contaminants in high-purity applications using hydrogen and methane gas, these valves have a stainless steel and brass body with a smooth finish to reduce dust collection and internal components designed to protect the seal and diaphragm from contamination.
Body is cast iron.
For a longer service life than cast iron valves, these have a durable bronze body.
A 316 stainless steel body provides exceptional corrosion resistance in wet conditions and harsh environments.
For a longer service life than standard valves for cryogenic liquids, these have a durable bronze body. They’re for use with liquid argon, liquid carbon dioxide, liquid nitrogen, and liquid oxygen.
It's like getting four regulators in one—each comes with four springs so you can change between regulating pressure ranges of 2-30, 10-50, 30-90, and 100-180 psi.
Use these valves in pipelines.
Threads below the adjustment knob and an included panel-mount nut allow you to add these valves to your instrument panel.
For a longer service than cast iron valves, these have a durable bronze body and a 303 stainless steel seal.
Designed to meet 3-A sanitary standards, these valves regulate liquid, gas, and air pressure in hygienic zones of food and beverage plants.
Convenient for one-handed liquid sampling and extraction, these pumps are often used for vacuum filtration and bleeding hydraulic and liquid lines.
Adjust and maintain the pressure of your compressed air.
A lower profile than our other compressed air regulators makes these regulators a better fit in tight spots.
Fit these regulators in tight spaces to adjust and maintain air pressure in sensitive applications where constant, consistent pressure is important.
With a greater flow capacity than our standard precision compressed air regulators, use these regulators to adjust and maintain air pressure in sensitive high-flow applications where constant, consistent pressure is important.
Mount these regulators to a 35 mm DIN rail or a wall with one of the two included brackets.
Mount these regulators to a 35 mm DIN rail with the included bracket.
Designed for control applications that require high reliability and repeatability, these regulators translate electrical signals to output pressure.
Connect two or more of these manifold regulators to meet multiple pressure requirements from a single air supply—set a different output pressure with each regulator.