Sensors Product List and Ranking from 35 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.

Sensors 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. アーチバック Kanagawa//Building materials, supplies and fixtures manufacturers
  2. ビーイーエージャパン Kanagawa//Building materials, supplies and fixtures manufacturers
  3. GRIFFY Tokyo//others
  4. 4 ムネカタインダストリアルマシナリー 開発事業本部 戦略企画室 Fukushima//Building materials, supplies and fixtures manufacturers
  5. 5 テルウェル西日本  営業部  Osaka//Building Management

Sensors 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. Indoor Air Quality Multi-Sensor 'QNA2700D' アーチバック
  2. Ondroid Temperature and Humidity Measurement System [NETIS Registered] GRIFFY
  3. Millimeter-wave radar monitoring sensor "Care Sherpa" テルウェル西日本  営業部 
  4. 4 3D Laser Sensor for Sheet Shutter "Wide Scan" ビーイーエージャパン
  5. 5 Rectifying function equipped, stationary composite Pitot tube sensor New Aero Eye ウエットマスター

Sensors Product List

2671~2685 item / All 2892 items

Displayed results

KUPO Fuel and Water Tank Sender (Sensor) SFW-04

It is a float-type sender (sensor) compatible with various liquid tanks.

●This is a float-type sender (sensor) compatible with various liquid tanks, made of SUS316 stainless steel shaft and polyethylene float. ●It is available in lengths starting from 250mm, accommodating fuel tanks/water tanks of various depths. (The manufacturer produces up to 1500mm) *The length is measured from the bottom of the flange to the tip of the shaft. ●Ohm values (Empty: 240 ohms, Full: 30 ohms)

  • Weighing scale

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What is a Temperature Power Sensor (TPS)?

It is a world-hit product, the bimetallic control thermostat (TPS).

The Temperature Power Sensor (TPS) is the product name for Matsuo's bimetallic control thermostat. Please refer to it as TPS. It is a globally successful product created by Matsuo. Traditionally, bimetal thermostats were mostly disk-type protectors, and there were very few that could be used as controllers. Matsuo began challenging this difficult field (bimetallic control thermostats) in 1975 and started full-scale sales in 1980. For more details, please download the catalog.

  • Automatic Control Equipment

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Principle of Temperature Power Sensor

This is a control-type thermostat developed with the goal of being small and low-priced.

The principle of the temperature power sensor is the "control-type thermostat," developed with the goal of providing a high-performance bimetal thermostat that can be used as a controller in a compact and low-cost form. It combines a sharp jumping spring with a semi-permanent lifespan and a flat bimetal that does not experience material distortion, using two pieces of bimetal to increase sensitivity. The sharp jumping spring made of beryllium copper, which guarantees the high performance of the small DIFF. thermostat, operates with an extremely small hysteresis (approximately 0.05 m/m), which corresponds to about 3 degrees when converted to temperature. It can withstand over 2 million cycles of repeated operation. For more details, please download the catalog.

  • Automatic Control Equipment

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Comparison of characteristics between temperature power sensors and disk-type thermometers.

We will compare the lifespan of temperature power sensors and disc-type thermostats.

We will compare the characteristics of the temperature power sensor (controller) and the disk-type thermostat (protector). The "temperature power sensor" has a lifespan of 100,000 cycles at rated load (within the range of no temperature change) and 7 million cycles at minimal load (within the range of no temperature change), while the "disk-type thermostat" has a lifespan of 10,000 cycles for use as a protector (within the range of not becoming inoperative). Both have contact configurations that turn OFF with rising temperature and turn ON with rising temperature, but the "temperature power sensor" has transfer contacts. For more details, please download the catalog.

  • Automatic Control Equipment

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About lifespan by load

The mechanical lifespan of the temperature power sensor is constrained when used under heavy load.

This is an explanation about lifespan under different loads. The mechanical lifespan of the temperature power sensor exceeds 2 million cycles, but when used under heavy load, the lifespan is limited due to contact wear. The lifespan indication is based on 100,000 cycles at rated load, so if used below the rated load, the lifespan will be even longer. For more details, please download the catalog.

  • Automatic Control Equipment

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Thermal time constant of the temperature power sensor

In air and water, water is more effective at extracting heat from objects, so the thermal time constant is smaller.

In the thermal time constant of temperature power sensors, those with good thermal conductivity become familiar more easily, while those with poor thermal conductivity take longer to become familiar. The degree of familiarity is represented by the thermal time constant. We measured the thermal time constants of the MQT8 series of temperature power sensors. The thermal time constant is expressed as the time it takes to reach 60% of the temperature change range; as shown in the difference table, regardless of whether the temperature change range is large or small, if the object and measurement conditions are the same, the same value is indicated. The thermal time constants measured in air with a wind speed of 1 to 1.5 m are 102 seconds for MQT8, 160 seconds for M2, and 195 seconds for M3. In water, heat is more easily drawn away from the object than in air, so the thermal time constant measured in water is smaller. For more details, please download the catalog.

  • Automatic Control Equipment

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Regional share of temperature power sensors (TPS)

Advanced products like TPS are first adopted in regions with a significant technological accumulation.

I will explain the regional share of Temperature Power Sensors (TPS). It has been over 20 years since Temperature Power Sensors were introduced to the market. During this time, they have gradually penetrated the world with catchphrases such as "high-performance thermos that can replace electronic thermos at a fraction of the price." It is natural for advanced products like TPS to be adopted first in regions with significant technological accumulation. In developing regions, the manufacturing stage involves receiving blueprints from advanced regions, so it will take time before they reach the level of creating unique products using TPS. For more details, please download the catalog.

  • Automatic Control Equipment

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List of specifications obtained

This is an introduction to the acquisition of standards for temperature power sensors and disc-type thermostats.

The specifications list includes the specifications for the Temperature Power Sensor (TPS) and disk-type thermostats. For example, in the specifications list for disk-type thermostats, we present a table that includes [03EN, 03EP, 05EN, 05EP (Phenol)] with [UL: (Standard Number) UL873 (Certification Number) E43274], [CSA: (Standard Number) CSA C22.2 No.24 (Certification Number) LR67165 LR67166], and more. For more details, please download the catalog.

  • Automatic Control Equipment

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Thermistor, characteristics of thermistor control (advantages and disadvantages)

If the resistance value is known at a certain temperature, the temperature can be determined from the resistance value.

This is an introduction to thermistors and the characteristics of thermistor control (advantages and disadvantages). ● Advantages: They are used as sensors for temperature measurement. The temperature range is approximately from -50°C to 350°C. If the resistance value is known for a certain temperature, the temperature can be determined from the resistance value. An advantage is that when used in large quantities, they can be produced cheaply with a circuit board, electronic circuits, and power supply. ● Disadvantages: When used in small quantities, the cost increases, and the appeal of thermistors diminishes. Additionally, electrical components may not function properly due to cold, heat, or noise, making it necessary to be very careful about the installation environment. For more details, please download the catalog.

  • Automatic Control Equipment

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Water Quality Measurement Handheld VOC Sensor

We will comply with the revised air pollution prevention regulations with a handy VOC measurement sensor.

As a self-management device for VOC regulations that started on April 1, 2006, it allows for easy and quick measurement of VOC concentration at work sites. The regulated facilities include those related to painting, adhesives, printing, solvent manufacturing, cleaning, and petroleum storage, specifically facilities with a blower capacity above a certain threshold. ● Simple, quick, and low-cost "Power ON - Zero calibration - Measurement - Result display - Cleaning" can be completed in 1 to 2 minutes. ● High correlation with GC method (Gas Chromatography) Toluene equivalent values from ppm to several thousand ppm. ● Automatic monitoring function Automatic measurement is possible using a valve head (optional).

  • Water quality/pH measuring device

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Non-contact angular tilt sensor ESC1020ZA

A small resin case measuring 58×42×21! It is a two-axis inclinometer using MEMS technology.

The non-contact type tilt angle sensor ESC1000ZA series is a sensor that is strong against vibration and shock, making it suitable for automotive applications, and it also has excellent temperature characteristics, allowing for stable use even at high temperatures. It is a compact design using MEMS technology, housed in a small resin case measuring 58×42×21 mm. The specifications have been modified from the conventional ESC1030Z (±30° detection) and a variety of detection angles have been added to the lineup. 【Features】 ○ Effective tilt angle ±20° (for both X and Y axes) ○ Base linearity ±1.0% FS (for both X and Y axes) ○ Ratio output ○ EMS resistance significantly improved to 100V/m ○ Output characteristics are reversed compared to the conventional ESC1030Z For more details, please contact us or download the catalog.

  • others

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Non-contact angular tilt sensor ESC1030ZA

Strong in vibration resistance and impact resistance! Excellent temperature characteristics, stable for use even at high temperatures.

The non-contact tilt angle sensor ESC1000ZA series is a sensor that is strong against vibration and shock, making it suitable for automotive applications, and it also has excellent temperature characteristics, allowing for stable use even at high temperatures. It is a compact design using MEMS technology, housed in a small resin case measuring 58×42×21 mm. The specifications have been modified from the conventional ESC1030Z (±30° detection) and a variety of detection angles have been added to the lineup. 【Features】 ○ Effective tilt angle ±30° (for both X and Y axes) ○ Base point linearity ±1.5% FS (for both X and Y axes) ○ Ratio output ○ EMS resistance significantly improved to 100V/m ○ Output characteristics are reversed compared to the conventional ESC1030Z For more details, please contact us or download the catalog.

  • others

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Non-contact angular tilt sensor ESC1045ZA

EMS resistance has significantly improved to 100V/m! An inclination sensor that is strong in vibration resistance and impact resistance.

The non-contact type tilt angle sensor ESC1000ZA series is a sensor that is strong in vibration resistance and shock resistance, making it suitable for automotive applications, and it also has excellent temperature characteristics, allowing for stable use even at high temperatures. It is a compact design using MEMS technology, housed in a small resin case measuring 58×42×21 mm. The specifications have been modified from the conventional ESC1030Z (±30° detection) and a variety of detection angles have been added to the lineup. 【Features】 ○ Effective tilt angle: ±45° (for both X and Y axes) ○ Base point linearity: ±2.5% FS (for both X and Y axes) ○ Ratio output ○ EMS resistance has significantly improved to 100V/m ○ Output characteristics are reversed compared to the conventional ESC1030Z For more details, please contact us or download the catalog.

  • others

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CP-2FxxJ Series/CP-2FBxJ-6

Contact-type (conductive plastic resistance element) rotation angle sensor

- Contact rotary type - Effective electrical angle: 340° - Standalone linearity: ±1% - Ratio output - Bushing mount installation - Bearing: Metal - Option: Bearing O-ring included CP-2FBGJ-6 【Series Name】 ● CP-2FB(x)J Type: CP-2FB(m)J/CP-2FB(b)J/CP-2FBJ-6 Mounting method: Bushing ● CP-2FK(x)J Type: CP-2FK(m)J/CP-2FK(b)J Mounting method: Servo ● CP-2FC Type: CP-2FCB(m)/CP-2FC-6/CP-2FCG-6 Mounting method: Bushing built-in connector For more details, please download the catalog or contact us.

  • others

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CP-2FxxJ Series/CP-2FCB(m)

Contact-type (conductive plastic resistance element) rotation angle sensor

- Contact rotary type - Effective electrical angle: 340° - Standalone linearity: ±1% - Ratio output - Bushing mount installation - Metal bearing 【Series Name】 ● CP-2FB(x)J Model: CP-2FB(m)J/CP-2FB(b)J/CP-2FBJ-6 Mounting method: Bushing ● CP-2FK(x)J Model: CP-2FK(m)J/CP-2FK(b)J Mounting method: Servo ● CP-2FC Model: CP-2FCB(m)/CP-2FC-6/CP-2FCG-6 Mounting method: Bushing built-in connector For more details, please download the catalog or contact us.

  • others

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