Pressure Measurements Instruments

PRESSURE MEASUREMENT

PRESSURE MEASUREMENT

We are a leading Supplier of latest range of differential pressure measuring instrument , differential pressure meter, handy differential pressure measurement instruments differential pressure transmitter, digital pressure transmitter switch and pressure switch Etc.


OEM Pressure Transmitter

OEM Pressure Transmitters are most commonly used Pressure Ttransmitters. They are widely used in many Industrial applications. They can vary depending upon the Range and the applications. Thuis is the most basic type of Pressure Transmitter.

OEM Pressure Transmitter

OEM Pressure Transmitter

Feature
  • Most commonly used.
  • Available in wide range.
  • Easily available for Installation.

Application

Pressure transmitters are used in a wide variety of applications. They are used in machinery to warn machine operators of high pressure levels before a disaster takes place. Pressure transmitters also ensure that machines do not apply too much or too little pressure during production. Pressure transmitters can be used in conjunction with other devices to measure depth, altitude, water flow, and even pressure loss in order to prevent leaks in a system.

High Pressure Transmitter

We are a leading Supplier of latest range of differential pressure measuring instrument , differential pressure meter, handy differential pressure measurement instruments differential pressure transmitter, digital pressure transmitter switch and pressure switch Etc.

High Pressure Transmitter

High Pressure Transmitter

Feature

Good for High pressure applications. Specially designed for High Pressure Opearting Conditions.


Application

Autofrettage , Test Benches, Water Jet Cutting, High Pressure Processing (HPP)

Differential Pressure Transmitter

Differential pressure measurement is largely used in domestic and industrial applications. It is often the basis of other measurements such as flow, level, density, viscosity and even temperature. The most common being level and flow.DP Flow rate measurement (Fig-5) is one of the most common applications for differential pressure transmitters. By measuring the difference in fluid pressure while the fluid flows through a pipe it is possible to calculate the flow rate.Differential pressure flow meters have a primary and a secondary element. Generally speaking , the primary element is designed to produce a difference in pressure as the flow increases. There are many different types of primary element, the most common being the orifice plate, venturi, flow nozzle and pitot tube.

Differential Pressure Transmitter

Differential Pressure Transmitter

Feature
  • Can be used to measure differential Pressure where required.
  • Can be universally used for measuring Level and Flow.
  • Differential Pressure Transmitter can be used for a wide range of Pressure Application.

Application

Measuring Positive Gauge Pressure, Measuring Absolute Pressure, Measuring Vacuum, Measuring Liquid Level, Measuring Gas and Liquid Flow, Measuring Vessel Clogging

Ceramic Pressure Transmitter

When process protection and reliability are paramount for pressure applications, there is a wide choice of sensor materials and styles for pressure transmitters. For flush mounted installations, oil filled pressure cells are frequently the first choice, sometimes they are integrated into the sensor and most often they are used in conjunction with capillary’s and ‘chemical seals’.

They are adaptable, well engineered and plentiful in supply. However, using a dry, oil free ceramic cell is now a real alternative for a wide range of measurements, offering major benefits to users. The ceramic substrate technology is now widely used by a wide number of pressure sensor manufacturers.

Ceramic Pressure Transmitter

Ceramic Pressure Transmitter

Feature
  • Abrasion resistance
  • Longer-lasting dry cells
  • Reduced hydrogen permeation
  • Minimal drift
  • Minimal product compatibility issues
  • High overload resistance
  • Detection of small pressure changes

Application

High abrasive Application, High Temperature application, High Pressure pplication

Wireless Pressure Transmitter

Traditional wired pressure transmitters require a supporting infrastructure including wire, cabling, conduit, junction boxes, marshalling cabinets, and I/O to transmit the pressure signal back to the control system. This infrastructure sometimes makes it too difficult or expensive to install pressure transmitters in certain locations.Installing and implementing wireless devices can take up to 75 percent less time than traditional wired devices with the elimination of wiring and construction labor, and the capital costs associated with wireless technology can be up to 40 percent less. In addition, the insights gained from added pressure monitoring points can help extend the life of assets, creating an even greater return on investment. With a battery-powered wireless pressure transmitter, measurements can be made and transmitted anywhere a pressure transmitter can be installed in a pipe, tank, or steam line for flexibility in a variety of applications.

Wireless Pressure Transmitter

Wireless Pressure Transmitter

Feature
  • Easy to use.
  • Easy to install at any location without wires.
  • Readings can be easily transmitted wirelessly.
  • Repeaters can be installed in case of long distance transmitting.

Application

Pressure transmitters are used in a wide variety of applications. They are used in machinery to warn machine operators of high pressure levels before a disaster takes place. Pressure transmitters also ensure that machines do not apply too much or too little pressure during production. Pressure transmitters can be used in conjunction with other devices to measure depth, altitude, water flow, and even pressure loss in order to prevent leaks in a system.

Level Probe Pressure Transmitter

Level Probe Pressure Transmitter

Level Probe Pressure Transmitter

Level Probe Pressure Transmitter

Feature
  • Robust
  • Reliable
  • Economical

Application

Level measurement in rivers and lakes Level measurement in vessel and storage systems Control of sewage lift and pumping stations Monitoring of sewage, settling and stormwater retention basins

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