Sensor unit, cable length 6m, BS-6N
Sensor unit, cable length 6m, BS-6N
For more details, please refer to the basic information.
- Company:セキュリティハウス
- Price:Other
Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.
121~135 item / All 143 items
Sensor unit, cable length 6m, BS-6N
For more details, please refer to the basic information.
An embedded module developed in response to the desire to easily incorporate temperature measurement using thermal imaging. A rich lineup ranging from 64 to 10,000 pixels and narrow to wide viewing angles.
SSC Corporation has released the 'SSV Series' module to make the integration of temperature measurement devices easier. This product is a temperature measurement module that uses a thermopile array sensor, outputting temperature-converted measurement values. In addition to the listed lineup, you can choose from a wide range of pixel counts (from 64 to 10,000 pixels) and field angles (from narrow to wide field of view). We not only sell standard products but also accept custom products and OEM requests tailored to customer needs, so please feel free to consult with us. [To make temperature measurement easier] - Easily measure temperature with temperature-converted output - Non-contact temperature measurement using infrared from the object being measured - No damage to the measured object, ensuring hygiene - Achieves high cost performance using thermopile array sensors *For more details, please refer to the related links or feel free to contact us.
Optional service for "miRadar 8"! Design services available!
In the "miRadar 8 Optional Services," we offer "custom design services for GUI and signal processing software" and "custom design services for hardware (antennas, enclosures, etc.)." Our services include the development of specialized signal processing and application software, modifications to specialized antennas and FPGA circuits, and the development of new architecture hardware. 【Optional Service Details】 ■ Custom design services for GUI and signal processing software - Development of specialized signal processing and application software ■ Custom design services for hardware (antennas, enclosures, etc.) - Modifications to specialized antennas, FPGA circuits, and development of new architecture hardware - Development of modules that increase the number of antenna elements from 4ch to 8ch and 16ch *For more details, please refer to the PDF document or feel free to contact us.
High-speed model capable of measurement at intervals of 0.2 seconds.
We have achieved measurement at intervals of 0.2 seconds through a wired connection. This enables the collection of power data that changes rapidly over short periods, which was previously difficult, allowing for more accurate data acquisition and improved anomaly detection in equipment that involves precise operations, such as processing machines. 【Product Features】 By connecting to a PLC, it can be integrated into existing data collection systems. High-speed data acquisition is possible through connection with devices that support RS-232C communication, contributing to quality stabilization through processing condition analysis, as well as the detection of previously missed anomalies and the diagnosis of equipment degradation for predictive maintenance.
The world's first! Visualizing power consumption in just 15 seconds with one touch.
The IoT power sensor unit is a "retrofit" power sensor that requires no electrical work or equipment downtime and can be installed in just 15 seconds. It can measure the power consumption of each piece of equipment in real-time, and it also non-contact measures the "power factor," which indicates how effectively the supplied power is being used. It simplifies the visualization of previously hard-to-see power waste and imbalances. Its ease of installation and high measurement accuracy without power factor errors have been recognized, earning it the 2024 Energy Conservation Award. 【Features】 ■ Easy installation in 15 seconds Simply clamp it onto two of the three wires of a single-phase system or two wires of a single-phase system. It can be installed without stopping the equipment. ■ Non-contact measurement of "power factor" With a unique algorithm, it can accurately grasp the power factor, which cannot be determined by CT. ■ Wireless and no construction required With Bluetooth transmission and energy-saving design, it operates for about three years on a standard battery. *Based on a communication interval of 10 seconds. ■ Real-time "visualization" It allows for understanding the power consumption of each piece of equipment, leading to the discovery of energy-saving opportunities. *For more details, please refer to the PDF or feel free to contact us.
Visualizing electricity without the need for construction, achieving energy conservation in office buildings.
In office buildings, optimizing electricity usage is essential for reducing operational costs. Particularly for equipment that consumes a lot of power, such as air conditioning and lighting, accurately understanding electricity usage is crucial. Improper power management can lead to unnecessary cost increases. SIRC's IoT power sensor unit can be easily installed without construction and visualizes electricity usage in real-time. 【Usage Scenarios】 - Office floors - Common areas - Tenant spaces - Air conditioning equipment - Lighting equipment 【Benefits of Implementation】 - Increased energy-saving awareness through visualization of electricity usage - Identification of waste through understanding power usage for each piece of equipment - Cost reduction through decreased electricity usage
Contributing to the maintenance of food processing quality! Visualizing power consumption in 15 seconds.
In the food processing industry, accurate temperature management and understanding of equipment operating conditions are required to maintain product quality. In particular, the power consumption of refrigeration and freezing equipment is a crucial factor that directly affects the preservation of food quality. However, traditional measurement methods have faced challenges such as being labor-intensive and time-consuming. The IoT power sensor unit addresses these issues and contributes to maintaining quality and efficient energy management in food processing. 【Usage Scenarios】 * Measuring the power consumption of refrigeration and freezing equipment * Understanding the power usage of manufacturing lines * Monitoring the power consumption of temperature management systems 【Benefits of Implementation】 * Maintaining food quality * Potential reduction in energy costs * Detection of equipment anomalies
Visualize power consumption in 15 seconds and support power cost reduction.
Hospitals consume a lot of electricity for medical equipment and air conditioning systems. Optimizing electricity costs is an important challenge for improving management efficiency. However, it is not easy to accurately grasp the electricity usage of each piece of equipment. The IoT power sensor unit visualizes the power consumption of equipment in real-time and supports energy-saving measures. 【Usage Scenarios】 * Understanding the power consumption of medical equipment * Monitoring the power usage of air conditioning systems * Raising energy-saving awareness through visualization of power consumption 【Benefits of Implementation】 * Visualization of power consumption * Discovery of energy-saving opportunities * Potential reduction in electricity costs
A module that can divide the field of view and measure temperature.
SSC Corporation has released the 'SSV Series' module to make the integration of temperature measurement devices easier. This product is a temperature measurement module that uses a thermopile array sensor, outputting temperature-converted measurement values. In addition to the listed lineup, you can choose from a wide range of pixel counts (from 64 to 10,000 pixels) and field angles (from narrow to wide angles). We not only sell standard products but also accept custom and OEM requests tailored to customer needs, so please feel free to consult with us. 【To make temperature measurement easier】 ■ Easily measure temperature with temperature-converted output ■ Non-contact temperature measurement using infrared from the target object ■ No damage to the measured object, ensuring hygiene ■ Achieves high cost performance using thermopile array sensors *For more details, please refer to the related links or feel free to contact us.
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.
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.
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.
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
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