We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Pressure Transducers.
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Pressure Transducers Product List and Ranking from 13 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Pressure Transducers Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. ティアック 本社、大阪営業所、名古屋営業所 Tokyo//Testing, Analysis and Measurement
  3. ジャパンマシナリー Tokyo//Trading company/Wholesale
  4. 4 null/null
  5. 4 グローバル電子 Tokyo//Electronic Components and Semiconductors

Pressure Transducers Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Pressure-resistant explosion-proof pressure transducer E-10 [No explosion-proof barrier required]
  2. This is a catalog of pressure sensors ideal for automotive and aerospace development experiments. ティアック 本社、大阪営業所、名古屋営業所
  3. Pressure transducer
  4. Pressure/Temperature Switch and Pressure Transducer ジャパンマシナリー
  5. 4 Pressure Transducer | Configurable Pressure Transducer FP5000

Pressure Transducers Product List

46~53 item / All 53 items

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[Market Report] Global Pressure Transducer Market

The global pressure transducer market is rapidly growing and is expected to reach 21.4 billion USD by 2031.

The global pressure transducer market is poised for significant growth, with revenues reaching approximately $8.2 billion in 2022. Recent market analysis indicates that the market is expected to experience a robust compound annual growth rate (CAGR) of 11.29% during the forecast period. It is projected to be valued between 2023 and 2031, ultimately reaching an estimated valuation of $21.4 billion by 2031. Pressure transducers play a crucial role in various industries by converting applied pressure into electrical signals. These devices utilize piezoresistive technology, where the electrical resistance of the piezoresistive element changes with variations in pressure. As a result, pressure transducers enable accurate detection, measurement, and transmission of data, facilitating the monitoring and control of equipment performance across various applications. For application methods, please check the [PDF download] button or apply directly through the related links.

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Is differential pressure measurement necessary for aircraft de-icing operations?

Is differential pressure measurement necessary for aircraft de-icing operations?

You are likely familiar with the task of removing snow that has accumulated on a car or ice that has formed on the windows. The same task is necessary for aircraft when it starts to snow or ice forms. The process of removing ice or snow from an aircraft is known as de-icing. De-icing is performed in specially designated de-icing areas and is scheduled just before the aircraft takes off. This is because ice and snow not only increase the weight of the aircraft but can also impair its aerodynamic characteristics. De-icing is carried out using a liquid that contains at least 50% glycol mixed with water, and there are a total of four types of liquids that can be used for de-icing. At Amsterdam's Schiphol Airport, the mixture used for de-icing is stored in large heated tanks and is pumped into what is known as "Safeaeros" before being used on the aircraft. Safeaeros is a type of spray vehicle specially developed for this purpose. At Schiphol Airport, four Safeaeros vehicles are used per aircraft (two in front of the main wings and two behind the tail).

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The pillar of the third industrial revolution - it is hydrogen!

The pillar of the third industrial revolution - it is hydrogen!

The industrial, energy, and mobility markets are undergoing significant transformation, but at the same time, they face many challenges. Keller will contribute to solving these issues with pressure sensors! Challenge 1: Permeation → Gold-plated diaphragm Challenge 2: Hydrogen embrittlement → Special stainless steel with increased nickel content Challenge 3: Gas leakage → Metal seal connections Challenge 4: Intrinsic safety explosion protection → Obtaining ATEX and IECEx certification

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Types of pressure and their meanings

What are absolute pressure, gauge pressure, sealed gauge pressure, and differential pressure?

In the field of pressure measurement technology, the type of pressure varies depending on the reference point (reference pressure). 【Absolute Pressure】 In absolute pressure, the process pressure is measured with a vacuum as the reference. In the manufacturing process, the back side (reference side) of the diaphragm within the sensor element is set to vacuum and sealed in that state. When atmospheric pressure is applied to the diaphragm, the sensor measures the atmospheric pressure (meteorological atmospheric pressure). All fundamental physical formulas related to pressure are based on absolute pressure data. 【Gauge Pressure】 In gauge pressure, the process pressure being measured is referenced against atmospheric pressure. In other words, it measures the difference between the process pressure and the current atmospheric pressure. Since atmospheric pressure is affected by altitude and weather, it constantly fluctuates. Therefore, for processes where variations from atmospheric pressure are significant, gauge pressure measurement is appropriate. The back of the measurement cell in gauge pressure sensors always has a vent hole, allowing the sensor element to reference atmospheric pressure within the housing. Gauge pressure is the most common type of pressure measured by pressure sensors and is used in nearly all applications and industries. For shielded gauge pressure and differential pressure, please refer to the related links below!

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