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Sensor Module Product List and Ranking from 67 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

Sensor Module Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

  1. サクラテック Kanagawa//Industrial Electrical Equipment
  2. SIRC Osaka//Industrial Electrical Equipment
  3. サカキコーポレーション 本社 Osaka//Industrial Electrical Equipment
  4. 4 ニューロスカイ Tokyo//software
  5. 5 トーケミ Osaka//Industrial Machinery

Sensor Module Product ranking

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

  1. SIRC クラウドパッケージ※展示会出展・資料進呈中 SIRC
  2. 79GHz MIMO millimeter-wave radar sensor unit サクラテック
  3. R290 refrigerant leak detection sensor module <operable in low temperature environments> サカキコーポレーション 本社
  4. 4 Brainwave detection sensor module "TGAM" ニューロスカイ
  5. 5 Water Quality Control Instruments, Sensors, and Units Comprehensive Catalog トーケミ

Sensor Module Product List

151~173 item / All 173 items

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[For Medical Institutions] CO2/Temperature/Humidity/Differential Pressure Sensor Module

Adoption of NDIR method! Monitoring air quality in medical settings.

In infection control at medical institutions, it is important to understand the quality of the indoor air environment and to ensure proper ventilation. An increase in CO2 concentration suggests insufficient ventilation, which may increase the risk of infection. Additionally, managing temperature and humidity also affects the survival duration of viruses and the comfort of patients. The EE895 allows for simultaneous measurement of CO2, temperature, humidity, and differential pressure, enabling the development of appropriate ventilation plans based on this information. 【Usage Scenarios】 - Patient rooms - Waiting rooms - Operating rooms - Intensive care units - Examination rooms 【Benefits of Implementation】 - Improvement of air quality through visualization of CO2 concentration, temperature, humidity, and differential pressure - Reduction of infection risk - Enhanced comfort for patients and staff - Energy savings through optimization of ventilation efficiency

  • Other electronic parts
  • Sensor Module

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Digital sensor module for CO2/temperature/humidity/micro differential pressure for schools

We monitor the air quality in schools to maintain a comfortable environment.

In a school environment, maintaining good air quality is essential for improving the health and learning efficiency of students. Particularly in poorly ventilated classrooms or crowded areas, an increase in CO2 concentration and improper management of temperature and humidity can lead to decreased concentration and health issues. The EE895 accurately measures CO2 concentration, temperature, humidity, and differential pressure, supporting the optimization of ventilation systems. This contributes to creating an environment where students can spend time comfortably and healthily. 【Usage Scenarios】 - Air quality monitoring in various locations within the school, such as classrooms, gyms, and libraries - Control and optimization of ventilation systems - Visualization of air quality data inside and outside classrooms 【Benefits of Implementation】 - Prevention of drowsiness and decreased concentration due to rising CO2 levels - Reduction of infection risk through proper ventilation - Improvement of the learning environment through comfortable temperature and humidity management

  • Other electronic parts
  • Sensor Module

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Office-use CO2/Temperature/Humidity/Differential Pressure Sensor Module

Contributing to the visualization of the office environment and improving comfort!

In an office environment, employee comfort and health are essential for improving productivity. Proper ventilation and air conditioning management are important to prevent health issues caused by rising CO2 levels, discomfort from temperature and humidity, and changes in air pressure, while maintaining concentration. The EE895 addresses these challenges by simultaneously measuring CO2, temperature, humidity, and differential pressure, allowing for the visualization of the office environment and enabling optimal ventilation and air conditioning management. 【Usage Scenarios】 - Office buildings - Conference rooms - Break areas - Laboratories 【Benefits of Implementation】 - Improved comfort through the visualization of CO2 levels, temperature, humidity, and differential pressure - Energy savings through the optimization of ventilation and air conditioning systems - Enhanced employee health and productivity

  • Other electronic parts
  • Sensor Module

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79GHz millimeter-wave radar sensor unit for smart cities

High-precision millimeter-wave radar sensors that contribute to the efficiency of traffic management.

In traffic management within smart cities, accurate understanding of traffic conditions is essential. Particularly, it is important to grasp vehicle speed and location in real-time to help alleviate traffic congestion and prevent accidents. Inaccurate data can lead to malfunctions in traffic management systems, potentially hindering the smooth operation of the city. Our 79GHz millimeter-wave radar sensor unit provides high-precision data to address these challenges. 【Usage Scenarios】 - Monitoring traffic volume - Optimizing signal control - Understanding situations during accidents - Enhancing traffic infrastructure efficiency 【Benefits of Implementation】 - Alleviation of traffic congestion - Reduction in the number of accidents - Efficient operation of traffic infrastructure - Realization of a safer and more comfortable urban environment

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  • Environmental Test Equipment
  • Sensor Module

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Aerospace 79GHz millimeter-wave radar sensor unit

Improving safety during landing with 79GHz millimeter-wave radar technology.

In the aerospace industry, landing assistance requires accurate distance measurement and obstacle detection. Especially during poor visibility or nighttime, high-precision sensor technology is essential to ensure safe landings. The 79GHz millimeter-wave radar sensor unit addresses these challenges and supports safe landings. 【Use Cases】 - Aircraft landing guidance - Obstacle detection on runways - Landing assistance for drones and unmanned aerial vehicles 【Benefits of Implementation】 - Improved safety during landing - Enhanced operational capability in adverse weather conditions - Reduced risk of accidents

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  • Environmental Test Equipment
  • Sensor Module

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79GHz millimeter-wave radar sensor unit for energy equipment

High-precision millimeter-wave radar sensor that enables remote monitoring and anomaly detection.

In energy facility inspections, ensuring safety and efficient operation is essential. Particularly in large-scale facilities such as plants and power stations, it is important to detect abnormalities across a wide range of equipment early to prevent accidents. Traditional inspection methods often require manual visual checks or the introduction of costly specialized equipment, making the efficiency of inspections a challenge. The 79GHz millimeter-wave radar sensor unit can acquire distance, direction, and speed data non-contact, enabling remote monitoring. This enhances the efficiency of inspection work and reduces the risk of working in hazardous locations. 【Use Cases】 - Abnormality detection in plant equipment - Equipment monitoring at power stations - Monitoring of substations - Detection of foreign objects on transmission lines 【Benefits of Implementation】 - Reduction in inspection costs through remote monitoring - Accident prevention through early detection of abnormalities - Reduced risk of working in hazardous locations - Establishment of a 24/7 monitoring system

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  • Environmental Test Equipment
  • Sensor Module

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79GHz millimeter-wave radar sensor unit for retail stores

Visualize customer behavior in stores and support optimal sales strategies!

In the retail industry, it is important to understand customer behavior patterns and link them to increased sales. In particular, accurately grasping the flow of people within the store and their dwell times is essential for optimizing product placement and developing effective promotional strategies. Traditional camera-based analysis has faced challenges such as privacy issues and difficulties in obtaining accurate data due to blind spots. Our 79GHz millimeter-wave radar sensor unit addresses these challenges and enables the acquisition of high-precision customer behavior data. 【Usage Scenarios】 - Analysis of customer flow within the store - Measurement of dwell time at specific product shelves - Counting the number of people entering and exiting - Visualization of congestion levels - Estimation of customer demographics (such as age groups) 【Benefits of Implementation】 - Contributes to increased sales - Enhances customer satisfaction - Improves store operation efficiency - Reduces employee burden - Maximizes cost-effectiveness

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  • Environmental Test Equipment
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79GHz MIMO millimeter-wave radar sensor unit for automobiles

High-precision multi-target detection contributing to autonomous driving assistance.

In the automotive industry, autonomous driving assistance requires the accurate and real-time detection of surrounding vehicles, pedestrians, and obstacles. Particularly, understanding the position and speed of objects with high reliability, even in complex traffic situations or adverse weather conditions, is essential for safe driving. Our 79GHz MIMO millimeter-wave radar sensor unit meets these demands and supports the advancement of autonomous driving systems. ## Use Cases - Monitoring the surrounding environment in autonomous vehicles - Measuring distance and relative speed between vehicles - Detecting pedestrians and bicycles - Obstacle detection and collision avoidance assistance ## Benefits of Implementation - Detailed understanding of surrounding conditions, enhancing safety - Improved driving assistance accuracy in complex traffic environments - Stable detection performance even in adverse weather conditions

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  • Environmental Test Equipment
  • Sensor Module

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Improvement in quality by preventing the outflow of defective products (burrs and sink marks)!

Achieved prevention of defects from flowing out by determining judgment results through waveform comparison and distribution functions of various sensors (pressure, temperature) in injection molding machines!

Displays information from various built-in sensors ("mold cavity pressure" and "mold temperature") along with Murata Machinery's position sensor module, which can be directly attached to injection molding machine molds. It allows viewing data from different sensor manufacturers on the same time axis. Additionally, through a unique big data analysis method, it monitors the molding process for each shot, checks for variations, and prevents continuous production of defective products. ★Videos for each step are currently being distributed on YouTube★ 【Features】 - Easily attachable to molds of injection molding machines, die-casting machines, high-precision presses, precision forging machines, etc. - Accurately grasp the mold opening amount of the core (male mold) and cavity (female mold) during processing. - Reliable high-temperature, high-humidity, shock-resistant, and durable performance. - The detection unit consists solely of a non-contact electromagnetic coil, featuring a simple structure. - Achieves absolute detection through a unique detection method. - Supports various outputs: binary, pulse, analog, serial, and can use standard inductive coder series converters. *For more details, please contact us or refer to the catalog.

  • Injection Molding Machine
  • Other measurement, recording and measuring instruments
  • Sensor Module

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Cost reduction through the reduction of inspection man-hours!

While conducting a full inspection of the injection molding machine, we successfully achieved a 70% reduction in the final results by determining the judgment results through waveform comparison and distribution functions!

The Murata Machinery position sensor module, which can be directly mounted on the mold of an injection molding machine, displays information from various built-in sensors (such as "mold cavity pressure" and "mold temperature") collectively. You can view data from different sensor manufacturers on the same time axis. Additionally, through our unique big data analysis methods, we monitor the molding process for each shot, check for variations, and prevent continuous production of defective products. ★Videos for each step are currently being distributed on YouTube★ 【Features】 - Easily attachable to molds of injection molding machines, die-casting machines, high-precision presses, precision forging machines, etc. - Accurately grasp the mold opening amount of the core (male mold) and cavity (female mold) during processing. - Reliable high-temperature, high-humidity, shock-resistant, and durable performance. - The detection part consists of a simple structure made only of non-contact electromagnetic coils. - Achieves absolute detection through a unique detection method. - Supports various outputs: binary, pulse, analog, serial, and can use standard inductive coder series converters. *For more details, please contact us or refer to the catalog.

  • Injection Molding Machine
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  • Sensor Module

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[Example 2 of Utilizing Short-Wave Infrared] Sorting of Transparent PP and PE Mixed with Waste

Utilizing the differences in transmission rates! Introduction of cases where higher precision sorting has become possible.

A certain industrial waste disposal company was considering whether it could sort transparent PP and PE mixed in with the waste after crushing. Therefore, we proposed the use of "SWIRLED," which can utilize the differences in transmittance. As a result, although PP and PE appear the same to the naked eye, using short-wave infrared in addition to visible light has enabled more precise sorting. [Case Study] ■ Issue: Consideration of sorting transparent PP and PE mixed in with waste after crushing ■ Proposal: Use of "SWIRLED," which can utilize differences in transmittance ■ Result: Achieved more precise sorting *For more details, please refer to the PDF document or feel free to contact us.

  • Other inspection equipment and devices
  • Sensor Module

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How to Utilize Power Sensor Units for Power Reduction in Schools

Visualizing the school's power usage to promote energy-saving education.

In the field of school education, efforts towards the realization of a sustainable society are being demanded. In particular, education that raises awareness of energy issues and encourages energy-saving behavior is important. However, understanding the overall electricity usage of the school and implementing effective energy-saving measures is not easy. The SIRC IoT power sensor unit visualizes the school's electricity usage in real-time and supports energy-saving education. 【Usage Scenarios】 - Understanding electricity usage in various areas such as classrooms, gymnasiums, and laboratories - Raising awareness of energy conservation among faculty and students - Promoting energy-saving actions through visualization of electricity usage 【Effects of Implementation】 - Reduction in electricity usage - Improvement in learning effects related to energy conservation - Increased awareness of environmental issues

  • Company:SIRC
  • Price:Other
  • Sensors
  • Sensor Module

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IoT Power Sensor Unit for Research Institutions (for Universities)

Improve the reliability of experimental data! Visualize power consumption in 15 seconds.

In university research institutions, the accuracy of experimental data is crucial. In particular, power consumption can affect experimental results, so precise measurements are required. Traditional measurement methods have faced challenges such as being time-consuming and labor-intensive. The IoT power sensor unit addresses these issues, contributing to the efficiency of experiments and the improvement of data accuracy. 【Usage Scenarios】 * Measurement of power consumption in various experiments * Understanding the power usage of experimental equipment * Measuring energy-saving effects 【Benefits of Implementation】 * Improved reliability of experimental data * Increased efficiency of experiments * Potential reduction in power costs

  • Company:SIRC
  • Price:Other
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  • Power meter
  • Sensor Module

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IoT Power Sensor Unit for Pharmaceuticals

Visualizing power consumption in temperature management in 15 seconds.

In the pharmaceutical industry, temperature management is crucial for maintaining product quality. Particularly in the storage and manufacturing processes of pharmaceuticals and reagents, accurate monitoring of power consumption in a temperature-controlled environment is required. However, traditional measurement methods have faced challenges such as being cumbersome and time-consuming. The IoT power sensor unit addresses these issues and contributes to the visualization of power consumption in temperature management. 【Use Cases】 * Measurement of power consumption in temperature management equipment * Understanding power usage of refrigerators and air conditioning systems * Measuring energy-saving effects of temperature management systems 【Benefits of Implementation】 * Increased efficiency in temperature management * Potential reduction in power costs * Implementation of data-driven improvement measures

  • Company:SIRC
  • Price:Other
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  • Power meter
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Energy saving using IoT power sensor units for the manufacturing industry.

Consistently delivering results! Introducing energy-saving ideas for factories.

In manufacturing factories, reducing energy costs and improving production efficiency are important challenges. In particular, it is necessary to understand the operational status of equipment and reduce unnecessary power consumption. IoT power sensor units help visualize power consumption by line or device, aiding in the discovery of energy-saving points. 【Usage Scenarios】 - Visualization of power usage in production lines - Understanding standby power of equipment - Monitoring power consumption during nights and holidays 【Benefits of Implementation】 - Reduction in power usage - Reduction in energy costs - Increased awareness of energy conservation

  • Company:SIRC
  • Price:Other
  • Sensors
  • Sensor Module

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Energy saving using IoT power sensor units for logistics warehouses.

Consistently achieving results! Introducing energy-saving ideas for logistics warehouses.

In logistics warehouses, a significant amount of electricity is used for storage and transportation equipment, air conditioning, lighting, and more. In inventory management, it is important to understand the operational status of these facilities and reduce unnecessary electricity consumption. The IoT power sensor unit helps visualize the power consumption of each device and discover energy-saving opportunities. 【Usage Scenarios】 - Visualization of electricity usage for lighting, air conditioning, and transportation equipment within the warehouse - Identification of unnecessary electricity consumption during nighttime and holidays - Optimization of electricity usage based on the operational status of the equipment 【Benefits of Implementation】 - Reduction in electricity usage - Cost savings on electricity bills - Increased awareness of energy conservation

  • Company:SIRC
  • Price:Other
  • Sensors
  • Sensor Module

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IoT Power Sensor Unit for Commercial Facilities

Visualize power usage in 15 seconds! Optimize electricity consumption in commercial facilities.

In commercial facilities, the rise in electricity costs and efforts for energy conservation are important issues. In particular, there are many systems that consume a lot of electricity, such as air conditioning and lighting, so the visualization of power usage and efficient operation are required. If you cannot grasp the power usage situation, it becomes difficult to notice unnecessary power consumption and to implement improvement measures. The IoT power sensor unit can be installed in just 15 seconds and can measure the power usage of each device in real time. This allows for the discovery of wasted electricity and the rapid implementation of energy-saving measures. [Usage Scenarios] - Understanding power usage by tenant - Monitoring power usage of air conditioning and lighting systems - Peak cut measures [Effects of Implementation] - Increased awareness of energy conservation through the visualization of power usage - Reduction in electricity costs through optimization of power usage for each device - Potential reduction in electricity bills through power factor improvement

  • Company:SIRC
  • Price:Other
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  • Power meter
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DDS33 Series Three-Phase Type for Logistics Warehouses

Visualize power in 15 seconds! Streamlining power management in logistics warehouses.

In the management department of logistics warehouses, it is essential to understand the power consumption of various equipment within the warehouse and implement cost reduction and energy-saving measures. Particularly for equipment that consumes a lot of power, such as air conditioning systems, lighting, and conveyor systems, visualizing power usage is crucial. If it is difficult to grasp power consumption, it becomes hard to notice unnecessary power usage, which can lead to increased costs. The IoT power sensor unit 'DDS33 Series Three-Phase Type' can be installed in just 15 seconds and measures the power consumption of each piece of equipment in real-time. This allows for the discovery of wasted power and enables efficient power management. 【Usage Scenarios】 - Measuring power consumption of air conditioning systems, lighting, and conveyor systems within the warehouse - Energy-saving measures through the visualization of power consumption - Comparative analysis of power consumption for each piece of equipment 【Benefits of Implementation】 - Cost reduction through the visualization of power consumption - Increased awareness of energy conservation - Implementation of improvement measures based on data regarding power usage

  • Company:SIRC
  • Price:Other
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  • 電力センサ_他製品との比較.png
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  • Power meter
  • Sensor Module

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[DDS33 Series for Hotels] Three-Phase Type

Visualize power consumption in 15 seconds! Contributing to cost reduction in hotel operations.

In the hotel industry, the rising costs of utilities have become a significant challenge for management. Particularly in hotels that have equipment consuming a lot of electricity, such as air conditioning and kitchen facilities, visualizing electricity usage and efficient operation are essential. It is necessary to accurately grasp electricity usage and reduce waste to achieve cost savings. The IoT power sensor unit 'DDS33 Series Three-Phase Type' can be installed in just 15 seconds and can measure the electricity usage of each piece of equipment in real-time. This allows for the identification of electricity waste and the rapid implementation of energy-saving measures. 【Usage Scenarios】 - Understanding electricity usage for guest rooms, common areas, kitchens, etc. - Reviewing contracted power based on visualizing peak electricity usage - Measuring the effectiveness of energy-saving equipment implementation 【Benefits of Implementation】 - Increased awareness of energy conservation through visualizing electricity usage - Implementation of effective energy-saving measures based on the electricity usage of each piece of equipment - Cost reduction and realization of sustainable hotel operations

  • Company:SIRC
  • Price:Other
  • 設置画像_電力センサ.jpg
  • 補足資料_クランプ.png
  • 電力センサ_他製品との比較.png
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  • DXソリューション.png
  • Power meter
  • Sensor Module

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Object Detection by Sensors [Measurement System Development Case Study]

Introducing a case study of a system developed for disaster prevention equipment manufacturers that performs audio output for proximity and withdrawal judgment and warnings!

To the disaster prevention equipment manufacturers, we would like to introduce a case study of a system developed for object detection using sensors. The company expressed a desire to detect the intrusion and movement of objects using a Doppler module for demonstration purposes. Therefore, we developed a system using Raspberry Pi that determines proximity and withdrawal, and provides audio output for warnings. 【Case Overview】 ■ Request: To detect the intrusion and movement of objects using a Doppler module for demonstration purposes ■ Proposal: Development using the well-established Raspberry Pi ■ Results - Developed using Raspberry Pi - Constructed a system that determines proximity/withdrawal and provides audio output for warnings *For more details, please refer to the PDF materials or feel free to contact us.

  • Embedded system design service
  • Sensor Module

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[SIRC for Retail Stores]: IoT Power Sensor Unit that Requires No Electrical Work

Visualize the power consumption of stores and support energy-saving measures!

In the retail industry, reducing utility costs in store operations is an important challenge. Particularly, due to the presence of equipment that consumes a lot of electricity, such as lighting, air conditioning, and refrigerators, accurate monitoring of electricity usage and efficient operation are required. SIRC supports the first step in energy-saving measures by allowing easy installation without electrical work and visualizing electricity consumption for each store. 【Usage Scenarios】 - Understanding the overall electricity usage of the store - Monitoring the electricity consumption of major equipment such as lighting, air conditioning, and refrigerators - Analyzing electricity usage by time of day 【Benefits of Implementation】 - Increased awareness of energy conservation through visualization of electricity usage - Identification and improvement of unnecessary electricity consumption - Reduction in electricity costs - Contribution to carbon neutrality

  • Other electric meters
  • Sensor Module

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IoT Power Sensor Unit That Does Not Require Electrical Work for Offices

Visualize office power consumption and take the first step towards carbon neutrality.

In the office, understanding the daily power consumption is the first step towards energy-saving measures. In particular, accurately grasping the power consumption of devices that consume a lot of electricity, such as air conditioning systems and office automation equipment, helps reduce unnecessary power usage and leads to cost savings. SIRC visualizes the power usage in offices and supports efforts towards carbon neutrality. 【Usage Scenarios】 - Measuring power consumption in office buildings - Understanding power consumption by floor - Measuring the effectiveness of energy-saving measures 【Benefits of Implementation】 - Increased awareness of energy conservation through visualization of power usage - Discovery and reduction of unnecessary power consumption - Contribution to carbon neutrality

  • Other electric meters
  • Sensor Module

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