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Sensors Product List and Ranking from 1364 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

Sensors Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. シスコム(SysCom) Tokyo//Trading company/Wholesale
  3. HexaCORE Co., Ltd. (formerly Chuo Seisakusho Co., Ltd.) Head Office and Factory Miyagi//Industrial Electrical Equipment
  4. 4 センシリオン Kanagawa//Electronic Components and Semiconductors
  5. 5 MACOME CORPORATION NAGANO TOKYO OSAKA NAGOYA HIROSHIMA Nagano//Industrial Electrical Equipment

Sensors Product ranking

Last Updated: Aggregation Period:Aug 19, 2026~Sep 15, 2026
This ranking is based on the number of page views on our site.

  1. [Basic Knowledge of Humidity Measurement Presented] Ultra-thin Temperature and Humidity Flexible Sensor シスコム(SysCom)
  2. Fujibo "Resistance Change Type Flexible Load Sensor" *Under Development 富士紡ホールディングス 近未来商品開発統括部 (BtoBサイト担当部門)
  3. Clamp-on flow sensor "FD-H series"
  4. 4 Radar Level Sensor "FR Series"
  5. 5 PICLIA Piezo Cable Sensor - High Heat Resistance, High Sensitivity *Evaluation Kit DAIKIN FINETECH, LTD.

Sensors Product List

6691~6720 item / All 7843 items

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Attachable Micro-Raman Sensor for Semiconductor Quality Control

Easy attachment to microscopes! Strongly supports quality control in semiconductor manufacturing.

In the semiconductor industry, quality control requires the rapid and accurate analysis of the fine structures and compositions of products. In particular, foreign matter detection on wafers and chips, as well as material composition analysis, are critical factors that influence product yield and reliability. Our "attachable micro-Raman sensor," which serves as a cost-effective alternative to expensive Raman microscope systems, can be easily attached to your existing microscope in just one minute, achieving overwhelming cost performance. As one of the world's smallest plug-in mini-Raman devices, it instantly transforms your microscope into a Raman device, allowing for immediate Raman spectroscopic measurements using a smartphone or tablet. 【Application Scenarios】 - Foreign matter analysis on wafers - Material composition analysis of chips - Quality control in manufacturing processes 【Benefits of Implementation】 - Increased efficiency in quality control through rapid analysis - Cost reduction - Improved convenience through remote measurement

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Attachment-type micro Raman sensor for materials science

Easily attachable to a microscope, structural analysis of materials anywhere.

In the field of materials science, rapid and accurate structural analysis is required for the evaluation of material properties. Particularly in the development of new materials and quality control, it is important to obtain structural information from micro-regions non-destructively. Our "attachable micro-Raman sensor," which serves as an alternative to expensive large Raman microscope systems, can be easily attached to your existing microscope in just one minute. This facilitates the structural analysis of materials and contributes to the efficiency of research and development. 【Application Scenarios】 - Composition analysis of materials - Foreign substance analysis - Surface analysis - Thin film analysis 【Benefits of Implementation】 - Rapid data acquisition - Cost reduction - Increased convenience due to portability

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Attachment-type micro-Raman sensor for environmental pollutant analysis

Easily attachable to a microscope! Rapidly identify contaminants.

In the field of environmental science, there is a demand for the rapid and accurate identification of contaminants in soil and water quality. In particular, the detection of trace contaminants is crucial for environmental risk assessment. Traditional analytical methods can be time-consuming and costly, potentially hindering prompt responses. Our "Attachable Micro-Raman Sensor" can be easily mounted on your existing microscope, allowing for the swift identification of contaminants. 【Use Cases】 - Soil contamination investigation - Water quality contamination investigation - Analysis of particulate matter in the atmosphere 【Benefits of Implementation】 - Early response through rapid identification of contaminants - Detection of trace contaminants through high-sensitivity analysis - Improved cost performance

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Attachment-type micro Raman sensor for food applications

Easy Raman spectroscopic analysis of foreign substances in food using a microscope.

In the food industry, foreign matter contamination during the manufacturing process is a serious issue that not only compromises product quality but also leads to health hazards for consumers and a loss of trust for companies. Detecting foreign matter is a crucial challenge in ensuring food safety. Traditional foreign matter inspections required specialized knowledge and expensive analytical equipment. Our "attachable micro-Raman sensor" can be easily mounted on your existing microscope, allowing for the rapid and straightforward identification of foreign matter in food products. This reduces the risk of contamination and enhances food safety. 【Usage Scenarios】 - Foreign matter inspection on food production lines - Incoming inspection of raw materials - Quality control of products 【Benefits of Implementation】 - Faster foreign matter detection - Reduced analysis costs - Improved food safety

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Infrared temperature sensor (8-point measurement)

One sensor can measure 8 locations! Measuring the temperature distribution on the tire surface and more.

The "Infrared Temperature Sensor (8-point measurement)" is a temperature sensor capable of measuring 8 locations with a single sensor, allowing for the measurement of temperature distribution on surfaces such as tires. It features 8-point measurement, CAN output, compact size, lightweight, and block type. The 1 CAN ID, emissivity, baud rate, response speed, and response frequency can be configured using a CAN communication tool (sold separately). It has been adopted for measuring surface temperature and temperature distribution of tires in top categories of motorsports, experiments, and development. The main applications are in motorsports, general industry, and experiments. 【Features】 ○ Compact size, lightweight, CAN output ○ 8-point measurement ○ 1 CAN ID, emissivity, baud rate, response speed, and response frequency can be configured using a CAN communication tool (sold separately) ○ Body color: red ○ Measurement examples: surface temperature of tires, surface temperature of industrial tanks, exterior walls ○ Product lineup → Measurement range: -20 to 140℃, -20 to 200℃ For more details, please contact us or refer to the catalog.

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POSITEK SENSORS for Mining

Inclination sensor that responds to harsh environments

In the mining industry, accurate tilt detection is essential for monitoring the operating status of heavy machinery and the slope of the ground. Reliable sensors that can withstand harsh environments and support safe operations are required. POSITEK SENSORS assist in safety management and efficient operations in mining. 【Application Scenarios】 - Tilt detection of mining machinery - Monitoring of ground slope - Safety management during excavation work 【Benefits of Implementation】 - Reduced risk of heavy machinery overturning - Improved work efficiency - Realization of a safe working environment

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【Shipbuilding】POSITEK SENSORS

Linear, rotational, and tilt sensors designed to withstand harsh environments.

In the shipbuilding industry, structural monitoring is crucial for accurately measuring hull distortion and tilt to ensure safety. In harsh marine environments, the durability of sensors and the accurate acquisition of data are essential, as failures or malfunctions can lead to serious accidents. POSITEK SENSORS are designed for use in extreme conditions, meeting the needs of structural monitoring in shipbuilding. 【Usage Scenarios】 - Measurement of hull distortion - Measurement of hull tilt - Detection of structural anomalies 【Benefits of Implementation】 - Improved safety through high-precision measurements - Long-term use in harsh environments - Reduced risk of failure

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POSITEK SENSORS for Wind Power Generation

Wind turbine blade angle measurement sensor for harsh environments.

In the wind power generation industry, it is essential to accurately measure the angle of the blades to maximize the efficiency of wind energy. Particularly in harsh environments such as strong winds and low temperatures, the durability and precision of sensors are crucial. Errors in angle measurement can lead to decreased power generation efficiency and potential damage to the blades. POSITEK SENSORS is designed for use in harsh environments, achieving high durability and accuracy. 【Application Scenarios】 - Blade angle measurement at wind power plants - Performance evaluation of wind turbines - Abnormality detection in blades 【Benefits of Implementation】 - Optimization of power generation efficiency - Reduction of blade damage risk - Decrease in maintenance costs

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High-Resolution Capacitive Sensors for Nanotechnology D-050・D-100

Achieving nano displacement measurement with sub-nanometer resolution. An optimal non-contact displacement sensor for nano material evaluation and nano positioning.

In the field of nanotechnology, it is important to accurately measure minute displacements and deformations of materials and structures at the nanometer level. In particular, sensors capable of detecting slight changes in displacement with high resolution are required for nanomaterial evaluation, nanomeasurement, and nanopositioning. The D-050 / D-100 is a high-resolution sensor that employs a capacitive method for non-contact displacement measurement. With a maximum resolution of 0.01 nm, it enables nanometer-scale displacement measurement and high-precision position control, facilitating high-accuracy measurements in nanotechnology research and nanomeasurement systems. 【Application Scenarios】 - Evaluation of nanomaterial properties - Measurement of thin film thickness - Precise measurement of surface shapes 【Benefits of Implementation】 - Enables high-precision measurements at the nanometer scale - Minimizes the impact on materials through non-contact measurement - Allows real-time correction through multi-axis control

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Sub-nanometer resolution capacitive displacement sensor D-510 for precision machinery

Non-contact displacement measurement with sub-nanometer resolution. Contributing to position control and improved machining accuracy of precision processing equipment.

In the field of precision machining, high-precision displacement measurement at the nanometer level is required to improve machining accuracy and equipment performance. Even slight vibrations or positional shifts can significantly impact machining accuracy and product quality. The D-510 is a high-resolution sensor that employs non-contact displacement measurement using capacitive methods. With sub-nanometer resolution, it can perform high-precision position feedback and vibration measurement in precision machining equipment, contributing to the stabilization of the machining process and improvement of accuracy. [Application Scenarios] - Position feedback for precision machining equipment - Position control in micro-machining processes - Precision positioning systems - Semiconductor manufacturing equipment - Precision vibration measurement [Benefits of Implementation] - High-precision displacement measurement at the nanometer level - Reduced impact on the object being measured due to non-contact measurement - Improved machining accuracy - High-precision monitoring of equipment vibrations

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Capacitance Sensor D-510 for Semiconductor Device Nano Displacement Measurement

Sub-nanometer resolution and a maximum bandwidth of 10 kHz. Non-contact capacitive sensor ideal for wafer position control.

In semiconductor manufacturing, even slight displacements or vibrations of the wafer stage and precision positioning mechanisms can significantly impact processing accuracy and product yield. As semiconductor processes continue to miniaturize, it is crucial to measure displacements at the nanometer level with high precision. The D-510 PISeca is a high-resolution sensor that employs capacitive non-contact displacement measurement. With sub-nanometer resolution and high-bandwidth measurements of up to 10 kHz, it accurately detects minute displacements of the wafer stage and equipment vibrations, contributing to enhanced position control accuracy and process stabilization in semiconductor manufacturing equipment. 【Application Scenarios】 - Position feedback for wafer stages - Nano position control for semiconductor manufacturing equipment - Vibration measurement of wafer surfaces - Precision alignment systems - Semiconductor inspection equipment 【Benefits of Implementation】 - High-precision displacement measurement at the nanometer level - Reduced impact on wafers through non-contact measurement - High-precision monitoring of equipment vibrations - Stabilization of semiconductor processes and improvement of yield

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Honeywell Micro Pressure Sensor HSC Series Analog Output

Our company, as a distributor of Honeywell, will meet your needs.

Honeywell Micro Pressure Sensor Trustability HSC Series High Accuracy ±1% Total Error Band Built-in amplifier with analog output, enhanced output with ASIC Long-term stability ±2.5mbar to 40mbar (±1 inH2O to ±30 inH2O) Power supply 3.33Vdc, 5.05Vdc (maximum 6Vdc) Compensation temperature 0° to 50° Operating temperature -20° to 85° Output 0.03% FSS Supports DIP, SIP, and SMT mounting options Compact package with various types of packages and port selections Liquid/liquid differential pressure and flow-through type port connection (20PC) Compliant with RoHS and WEEE directives

  • Pressure Control
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Introduction of contracted development examples for microcontroller peripheral device driver development.

Introducing case studies of embedded system development by MicroNet Co., Ltd.

Our company has various examples of contracted development for embedded systems, and as one example, we will introduce a case of contracted development for microcontroller peripheral device driver development. We received a request from a circuit board design and manufacturing company for a driver for the SH2A microcontroller's peripheral devices, as well as an inquiry about whether the peripheral device control routines could be turned into a library. Based on our previous development achievements, we proposed that it was possible to create a library for the device drivers. We designed and delivered a driver library for the SH2A microcontroller peripherals and also provided the interface specifications for the library. [Requests] ■ We want a driver for the SH2A microcontroller's peripheral devices. ■ Is it possible to turn the peripheral device control routines into a library? *For more details, please refer to our catalog or feel free to contact us.

  • Other contract manufacturing
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Semiconductor Gas Sensor Spraying Type BS-ALC-EEK400C

Portable semiconductor alcohol checker.

With the expansion of the obligation for alcohol checks, alcohol management in companies and for individuals is becoming increasingly important. Our alcohol checker is equipped with the latest semiconductor sensor, allowing for high-precision measurements. It is the perfect device for driving tasks such as commuting by car, taking taxis, buses, or trucks. This product complies with the specifications set by the National Public Safety Commission. The measurement method is simple: just press the power button and blow into it. It is a portable mobile type, making it easy to store. It displays measurement values within a range of 0.000 to 1.000 mg/L (200 levels, with a resolution of 0.005 ml/L). If alcohol is detected at a concentration above the standard value in the breath components, it will issue a warning through an alarm sound. The device also has a function that displays the number of measurements taken.

  • Odor Testing
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Test video (1) by miRadar(tm)8《VSM》.

[Video of heart rate and breathing detection while driving now available] Using radar technology, biometric information (heart rate and breathing) of multiple individuals can be detected non-contact!

The 24GHz radar-based vital sign monitoring (VSM) system is realized through Sakura Tech's proprietary MIMO FMCW radar module and software for VSM, allowing for long-term monitoring of multiple subjects' heart rates and breathing without physical contact. ■ Features - Vital information detection system using 24GHz MIMO radar "miRadar8" - Non-contact detection of vital information (heart rate and breathing) for multiple individuals. - Measurement through clothing and bedding without privacy invasion. - Simultaneous measurement of multiple targets possible due to MIMO-FMCW method (covers a range of ±45 degrees) - High sensitivity measurement enabled by the use of high-performance chipsets (from Analog Devices) (measurable distance up to 5m) ● Advantages of radar method - Measurement possible without contact - Penetrates clothing and bedding - No brightness restrictions during measurement - No privacy invasion (as it does not use camera images) - Follows the movement of measurement targets For more details, please download the catalog or contact us.

  • Safety Sensors
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Comprehensive lineup of various sensors <pressure, vacuum, hydraulic> [with usage examples]

A specialized manufacturer of pressure, vacuum, and hydraulic sensors! We can also respond quickly to special fittings and more!

As an expert in pressure and vacuum measurement and control, we are a dedicated manufacturer of pressure and vacuum control sensors with over half a century of achievements and accumulated experience and know-how. 【Features】 ■ Planning, design, production, and improvement of our own unique production line ■ Consistent in-house production from component processing to shipping ■ Providing high-quality products to customers in a short delivery time 【Main Target Industries】 - Train vehicles - Machine tools - Medical-related - Food-related, etc. *We are capable of accommodating various specifications across all industries. We also have many special specifications available, so please consult with us. ◆ For those interested in our comprehensive lineup, please check [Download] ◆

  • Pneumatic Equipment
  • Hydraulic Equipment
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【For Sports】PICLIA Piezoelectric Wire Sensor

Thin and highly sensitive. A wire sensor that precisely captures grip movements and vibrations.

In the fields of sports and skilled movements, accurately understanding form, force application, and the state of contact with tools leads to improved performance and the acquisition of highly reproducible techniques. Particularly in golf, fishing, racket sports, and various work movements, it is important to capture the subtle vibrations, impacts, and changes in grip that are transmitted to the hands and fingertips. The PICLIA piezoelectric wire sensor is thin and flexible like a thread, making it easy to integrate into curved surfaces such as gloves and protective gear, making it suitable for sensing hand movements and vibrations during gripping. This contributes to visualizing movements, improving form, and understanding load conditions. 【Usage Scenarios】 - Impact and contact analysis, vibration monitoring during swings in golf/baseball/tennis rackets - Bite and vibration detection during fishing movements Capturing slight vibrations and changes in pulls for sensitivity measurement - Monitoring grip state of power tools and work tools Detecting grip, vibration, and reaction force during the use of drills, impacts, grinders, etc. - Form analysis using glove-type devices Understanding the movements of the palm, fingertips, and thumb for analysis of sports and skilled movements - Datafication of skill transmission and operational training Quantifying the hand movements and sensations of skilled practitioners.

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【環境モニタリング向け】PICLIA 圧電ワイヤーセンサー

微細な振動を捉え、環境変化を可視化。広範囲をセンシング。

環境モニタリングの分野では、設備の異常や環境変化を早期に検知するために、微小な振動や歪みを高精度に捉えることが重要です。特に、構造物の健全性評価や、機器の予兆保全においては、わずかな異変も見逃さない高い感度が求められます。PICLIA圧電ワイヤーセンサーは、これらのニーズに応えるべく開発されました。 【活用シーン】 * 橋梁や建物の微細な振動監視 * プラント設備の異常検知 * 地盤や土壌の微細な動きのモニタリング 【導入の効果】 * 早期の異常検知による事故防止 * 設備の長寿命化 * データに基づいた的確なメンテナンス計画の策定

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PICLIA Piezoelectric Wire Sensor for Cultural Properties

Unnoticed, it embraces cultural assets. PICLIA piezoelectric wire sensor.

The PICLIA piezoelectric wire sensor is a sensing solution designed to quietly monitor the preservation environment and condition changes of cultural properties. It enables unobtrusive monitoring with minimal installation burden, ensuring that the value of delicate structures and exhibits is not compromised. By capturing vibrations and subtle changes, it supports the preservation work of cultural properties by allowing for early detection of signs of abnormalities. It delivers a sense of security without excessive human intervention—this is the role of the PICLIA piezoelectric wire sensor. 【Usage Scenarios】 - Detection of subtle vibrations in the ground surrounding cultural properties - Vibration monitoring during restoration and reinforcement work - Safety confirmation through monitoring ground movement during nearby construction 【Benefits of Implementation】 - Real-time acquisition of extensive vibration data - Early detection of abnormalities in cultural properties and surrounding ground - Increased efficiency and cost reduction in investigation and monitoring tasks - Provision of decision-making materials to advance preservation plans with peace of mind while minimizing impact on cultural properties.

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PICLIA Piezoelectric Wire Sensor for Resin Parts

Capturing invisible vibrations from resin parts. PICLIA wire sensor.

The PICLIA wire sensor is a piezoelectric wire-type sensor that is easy to install in narrow spaces and curved shapes, where it is difficult to use traditional acceleration sensors that are fixed with screws or magnets. Additionally, it can be embedded in resin components, allowing it to capture fine vibrations and changes by being placed near the vibration source, even in resin materials that tend to dampen vibrations. This enables a more direct understanding of the internal state of components and facilitates monitoring in areas that were previously difficult to detect. It can be utilized as a new monitoring method that reliably captures invisible changes without compromising the design freedom of products. 【Application Scenarios】 Monitoring internal vibrations through embedding in resin components Placing sensors near the vibration source to detect fine changes before they are dampened Condition monitoring of resin products with narrow spaces or curved shapes Embedded monitoring in areas that are difficult to access with traditional fixed sensors 【Benefits of Implementation】 Ensures sensing accuracy through measurements near the vibration source, even when resin tends to dampen vibrations Allows for understanding of internal conditions by incorporating sensors within components Improves design flexibility by accommodating shapes where screws or magnets are difficult to use Captures fine vibrations and changes, contributing to early detection of anomalies

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PICLIA Piezoelectric Wire Sensor for Resin Products

In the resin and on the surface. The PICLIA wire sensor captures invisible changes.

The PICLIA wire sensor is a piezoelectric wire-type sensor that is easy to install in narrow spaces and curved shapes, where it is difficult to use conventional acceleration sensors that are fixed with screws or magnets. In addition to being embedded in resin products, it can also be mounted on the product surface, enabling flexible sensor placement according to application and design conditions. Generally, resin has a tendency to dampen vibrations, but by embedding it near the vibration source or mounting it appropriately on the surface, it is possible to capture fine vibrations and changes. This allows for a broad understanding of the condition of resin products, from monitoring internal states to confirming surface behavior. 【Usage Scenarios】 - State monitoring through embedding in the interior of resin products - Vibration and change detection through surface mounting on resin products - Flexible sensor installation in resin products with narrow spaces or curved shapes - Integration and external monitoring in areas difficult for conventional sensors 【Benefits of Implementation】 - Supports both embedding and surface mounting, enhancing design and operational flexibility - Ensures sensing accuracy even when resin tends to dampen vibrations through appropriate placement - Captures fine vibrations and changes, contributing to early detection of anomalies - Provides insights from both internal states and surface behavior, contributing to quality stabilization and improved reliability.

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  • Other machine elements
  • Other cable related products
  • Other polymer materials
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Analog Circuit Design Know-How: From Basics to Applications

★ The most important thing in analog circuits is preprocessing! ★ Instead of focusing on how to use the system, we will teach you all the know-how!!

Instructor Chiyoda Seiji, Representative of Chiyoda Electric Co., Ltd. - Responsibilities: Electronics, Mechanics, Production Technology, Contract Work - Past Positions: - Toshiba Corporation, Production Technology Research Institute, Semiconductor Division, LCD Division - Hyundai Electronics, Tokyo Research Institute - Sanko Machinery Co., Ltd., Headquarters Development Office Target Audience: Those who want to learn analog circuit design from the basics or review it. Venue: Kawasaki City Industrial Promotion Hall, Room A, 3rd Training Room [Kanagawa, Kawasaki Station] Date and Time: May 26, 2011 (Thursday) 13:00-16:00 Capacity: 20 people. *Please apply early as there may be a rush of applications. Participation Fee: 49,350 yen (including tax and textbook costs) for up to 2 people from the same company. *New members who apply for the first time by May 12 will receive an early bird discount price of 44,100 yen. ◆ Early Bird Discount: Please select "1 slot for 2 people: Early Bird Discount" when registering. ◆ If additional applications are made from the same corporation, an additional 12,600 yen will be charged per person.

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Technical Seminar
  • Technical Seminar
  • Sensors

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Introduction to Automotive Sensor Technology in Q&A Format - Basics, Market, Reliability Evaluation

★ Ensuring durability and reliability even in harsh environments!! ★ What is driving environment recognition using onboard sensors? What is ISO/TS16949?

Lecturer Mr. Tomo Shimada, Ph.D. Koga Research Institute Co., Ltd. / Part-time Lecturer at Ibaraki University / Industry-Academia-Government Collaboration Coordinator Target Audience: Personnel involved in automotive and sensor-related technologies Venue: Kawasaki City Industrial Promotion Hall, 11th Floor, Room 5 [Kanagawa, Kawasaki City] 8-minute walk from JR Kawasaki Station West Exit Date and Time: November 24, 2011 (Thursday) 13:30-16:30 Capacity: 20 people *Registration will close once full. Please apply early. Participation Fee: [Early Bird Discount Price] 46,200 yen (tax included, including text costs) for up to 2 people per company *Limited to Tech-Zone members who apply by November 10. Membership registration is free. *After November 10, the [Regular Price] will be 49,350 yen (tax included, including text costs) for up to 2 people per company.

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Technical Seminar
  • Sensors

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Advanced Safety Technology Course for Automotive Systems/Sensors in Q&A Format

~Foundation, Latest Trends, Technical Initiatives, Outlook on Autonomous Driving and Next-Generation HMI~

☆Detailed explanation of the evolution, design philosophy, implementation, and operating principles of sensors and systems used in automobiles, incorporating the latest information! ★What are range sensors like radar and image sensors? ☆What are the driving assistance systems and sensor, operation, and display technologies that work during normal driving? ☆What are the trends in autonomous driving technology? 【Instructor】 DENSO Corporation, Technology Development Center, Technical Human Resource Development Department, Department Manager 【Venue】 Kawasaki City Industrial Promotion Hall, 9th Floor, Room 1 【Date and Time】 May 20, 2014 (Tuesday) 12:30 PM - 4:30 PM

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Technical Seminar
  • Sensors

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Automatic door infrared sensor / doorway monitoring, no installation required HA-430

A design that suppresses protrusions and minimizes presence! An automatic door sensor that enables safe and comfortable passage even with tall doors.

The "HA-430" is an infrared sensor designed to be installed under automatic doors. Its design minimizes protrusion and presence, allowing for an ideal entrance that feels open. It supports installation up to 4.0 meters for the under-mount type, maintaining a stable high-density area of 60 spots even with tall doors. Additionally, it allows for adjustments in width and depth by one row each, enabling precise detection ranges tailored to the site while maintaining high density. It also features a doorway monitoring function, making it suitable for entrances in industrial facilities. For more details, please contact us or download the catalog.

  • Sensors
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  • Sensors
  • Sensors

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赤外反射方式を用いた離床センサー『置くだけポール君』

赤外線だから目に見えないので対象者様に気づかれることなく見守ります!

『置くだけポール君』は、自動ドアセンサーの技術を活用した 高精度な赤外反射方式の離床センサーです。 赤外線で検出するため、マットセンサーのように、対象者が気づき避けようとして転倒してしまう危険を削減します。 また、置くだけで設置完了なので、どなたでも簡単にご利用いただけます。 【特長】 ■柱頭部の矢印の向きにあわせて置くだけの簡単設置 ■スイッチが2つだけのシンプル設計 ■センサーが無線のため非接触で衛生的 ■汚れにくい高さの操作部、ベース部が抗菌仕様 ■誤報低減機能(カーテンの揺れ、布団のはみ出しが検出されにくい) ※詳しくはカタログをご覧下さい。お問い合わせもお気軽にどうぞ。

  • Safety Sensors
  • Sensors

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