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In the food industry’s filling process, it is important to prevent foreign matter contamination and maintain product quality. In particular, filling machines that handle liquids and powders require durability and hygiene from their sensors. Magnetic sensors with stainless steel casings are designed for use in food machinery, achieving both high durability and cleanliness. This reduces the risk of foreign matter contamination and contributes to stable product supply. 【Usage Scenarios】 - Position detection for food filling machines - Monitoring liquid levels - Prevention of foreign matter contamination 【Benefits of Implementation】 - Reduced maintenance frequency due to high durability - High reliability from waterproof performance compliant with IP67/68 standards - Compliance with food hygiene standards
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In the medical device industry, obtaining precise location information is essential for improving diagnostic accuracy and treatment precision. Particularly in scenarios that require high accuracy, such as surgical robots and imaging diagnostic devices, the reliability of sensors becomes crucial. Our stainless steel case magnetic sensors have a proven track record in food machinery and the medical field, achieving stable position detection even in hygienic environments. 【Usage Scenarios】 - Position detection for surgical robots - Position detection for imaging diagnostic devices - Accurate position tracking for medical transport systems 【Benefits of Implementation】 - Improved accuracy in diagnosis and treatment through high-precision location information - High hygiene standards due to the stainless steel case - Long lifespan and reduced maintenance frequency
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In the aerospace industry, advanced attitude control is essential. Maintaining accurate orientation in space and within the atmosphere is a critical factor that influences the success of missions. Sensors that can deliver stable performance even in harsh environments such as vibrations, temperature changes, and radiation are required. Our stainless steel case magnetic sensors address these challenges and enable high-precision attitude control. 【Application Scenarios】 * Aircraft attitude control * Satellite attitude control * Rocket attitude control 【Benefits of Implementation】 * Stable attitude control in harsh environments * Increased mission success rates * Long lifespan and reduced maintenance costs
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In the automotive industry, it is important to accurately detect the opening and closing status of doors to ensure safety. In particular, the sensors must withstand vehicle vibrations and temperature changes while maintaining stable operation over long periods. Our stainless steel case magnetic sensors have been developed to meet these requirements. 【Application Scenarios】 - Detection of automobile door opening and closing - Detection of operation for onboard devices - Integration into various safety devices 【Benefits of Implementation】 - High durability and reliability - Long lifespan reducing maintenance frequency - Stable operation in diverse environments
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In power plants, a reliable monitoring system is essential for early detection of equipment anomalies and maintaining safe operations. In particular, sensors used in harsh environments, such as those exposed to temperature changes, vibrations, and corrosive gases, require high durability and stability. Our stainless steel case magnetic sensors address these challenges and support the safe operation of power plants. 【Usage Scenarios】 * Detection of anomalies in turbines and generators * Detection of leaks in cooling water and lubricating oil * Monitoring of equipment operational status 【Benefits of Implementation】 * Reduced risk of equipment failure * Lower maintenance costs * Improved power generation efficiency
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In the water treatment industry, accurate water level measurement is essential for the efficient operation of facilities. Particularly in corrosive environments or places where high hygiene standards are required, durable and reliable sensors are necessary. Inaccurate measurements can lead to equipment overload and decreased efficiency. Our stainless steel case magnetic sensors utilize corrosion-resistant SUS304, addressing the challenges of level measurement in water treatment facilities. 【Application Scenarios】 - Water purification plants - Wastewater treatment facilities - Water storage tanks - Sludge treatment facilities 【Benefits of Implementation】 - Increased longevity due to high durability - Efficient operation through accurate level measurement - Reduced maintenance frequency - Safe for use in food machinery and other applications.
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In the electronics industry, the precision of board mounting affects product quality. Especially as miniaturization progresses, accurate positioning is essential to prevent misplacement of components and contact failures. Conventional contact-type sensors have risks of malfunction due to dirt and wear. Our compact magnetic switch achieves non-contact, high-precision positioning, contributing to improved product reliability. 【Usage Scenarios】 - Board mounting robots - Assembly processes for electronic components - Precision measuring instruments 【Benefits of Implementation】 - Quality improvement through high-precision positioning - Increased longevity due to non-contact design - High environmental resistance compliant with IP67 standards
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In the logistics industry, conveyor systems require precise transportation and efficient process management. Particularly in the sorting and movement of goods, the accuracy of location information greatly affects work efficiency. By accurately controlling the speed and stopping position of the conveyor, it is important to achieve smooth logistics and reduce troubles caused by malfunctions. Our compact magnetic switches and sensors provide stable operation even in harsh environments, thanks to a repeatability accuracy of ±0.05μm and an IP67 protection structure, thereby enhancing the reliability of conveyor systems. 【Usage Scenarios】 - Product position detection on conveyors - Sorting control of transported items - Conveyor speed control 【Benefits of Implementation】 - Improved transportation efficiency through high-precision position detection - Reduced maintenance frequency due to high durability - Flexibility in installation due to space-saving design
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In the robotics industry, accurate detection of joint angles is essential for ensuring the operational precision and safety of robots. Particularly in narrow spaces or areas with many moving parts, small and highly precise sensors are required. Traditional contact-type sensors have risks of malfunction due to wear and dirt, but our compact magnetic switch sensors achieve high reliability and long lifespan because they are non-contact. 【Application Scenarios】 - Detection of joint angles in robotic arms - Origin detection for robots requiring precise positioning - Position detection in confined spaces 【Benefits of Implementation】 - Improved operational precision of robots through high-accuracy positioning - Increased lifespan and reduced maintenance costs due to non-contact design - High durability against dust and water due to IP67 compliance
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In the printing industry, the accuracy of paper positioning significantly affects print quality. Accurate positioning is essential to prevent image misalignment and color unevenness, leading to high-quality printed materials. Conventional sensors have faced challenges due to their susceptibility to dirt and dust, making stable detection difficult. Our compact magnetic switch sensors boast a repeatability accuracy of ±0.05μm and allow for non-contact detection. Complying with the protective structure "IP67," they ensure stable operation even in environments with high levels of dirt and dust, contributing to improved quality in printing machines. 【Application Scenarios】 - Paper transport position detection in printing machines - Head position detection in inkjet printers - Positioning in cutting machines 【Benefits of Implementation】 - Improved print quality through high-precision positioning - Enhanced maintainability through non-contact detection - Stable operation in harsh environments
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In the machine tool industry, the positioning accuracy of tools greatly affects product quality and production efficiency. Especially in situations where high-precision machining is required, tool misalignment can lead to the occurrence of defective products and increased machining time. Our small magnetic switches and sensors achieve a repeatability accuracy of ±0.05μm, enabling precise detection of tool positions. 【Application Scenarios】 - Tool position detection for machine tools - Origin position detection for precision machining machines - Thermal expansion compensation 【Benefits of Implementation】 - Improved quality through high-precision positioning - Reduction of defective products - Shortened machining time
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In the semiconductor manufacturing industry, particularly in wafer transport, high precision in positioning is required. Accurate positioning of wafers is a crucial factor that affects the quality and yield of the manufacturing process. Even slight misalignments can lead to product defects or performance degradation. Our compact magnetic switches and sensors achieve high-precision positioning in wafer transport with a repeatability of ±0.05μm. 【Application Scenarios】 - Position detection for wafer transport robots - Manufacturing equipment requiring precise positioning - Use in clean rooms 【Benefits of Implementation】 - Improved quality through high-precision positioning - Enhanced yield - Realization of a stable manufacturing process
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In the robotics industry, precise positioning and motion control are required. Particularly in manufacturing lines, the transportation and assembly of parts demand high accuracy and reliability. Traditional contact-type sensors carry risks of wear and failure, which can lead to maintenance costs. The ET series reduces the risks of wear and failure through its non-contact structure, achieving stable operation. 【Application Scenarios】 - Position detection of robotic arms - Detection of the presence or absence of workpieces - Control of the opening and closing of robotic hands 【Benefits of Implementation】 - Improved work efficiency through high-precision positioning - Increased lifespan and reduced maintenance costs due to the non-contact structure - High environmental resistance compliant with IP-67 standards
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In the aerospace industry, it is crucial to detect structural anomalies early to ensure the safety and reliability of aircraft. Particularly in harsh environments and during long-term operations, it is necessary to accurately measure even slight displacements or deformations of structures to capture signs of abnormalities. The ET series non-contact displacement sensors reduce the risk of deterioration and failure due to friction through their non-contact design, enabling stable measurements over extended periods. 【Application Scenarios】 - Displacement measurement of aircraft wings and fuselage - Structural monitoring of rockets and satellites - Structural integrity assessment of space stations and probes 【Benefits of Implementation】 - High reliability through non-contact measurement - Long-term stable operation in harsh environments - Improved safety through early anomaly detection
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In the automotive industry's suspension systems, accurate measurement of stroke length is essential to balance driving performance and ride comfort. To accurately understand the vehicle's movements over road irregularities and curves, high-precision displacement sensors are required for appropriate damping control. Traditional contact-type sensors have risks of malfunction due to wear and foreign material adhesion, but the ET series solves these problems with its non-contact structure. 【Usage Scenarios】 - Measurement of suspension stroke length - Feedback for height adjustment systems - Body posture control during driving 【Benefits of Implementation】 - Improved driving performance through high-precision position measurement - High durability due to non-contact structure - Stable operation in harsh environments
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In hospitals, safe and efficient transportation of medical waste is required. It is particularly important to minimize infection risks and maintain a clean environment. Improper transportation can increase the risk of hospital-acquired infections and decrease work efficiency. Our magnetic induction AGV guide sensors address these challenges. 【Usage Scenarios】 - Transportation on dedicated routes for medical waste - Collection of waste from operating rooms and patient rooms - Automated transportation to waste disposal sites 【Benefits of Implementation】 - Improved work efficiency through automation of transportation routes - Reduced infection risks - Lower labor costs
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In the automotive manufacturing industry, precise positioning and stable transport are essential for parts supply. Particularly, the reliability of AGVs (Automated Guided Vehicles) is crucial for improving production line efficiency and quality control. Inaccurate guidance or stopping can lead to delays in parts supply and decreased production efficiency. Our magnetic guidance AGV sensor provides stable guidance performance, contributing to the efficiency of parts supply. 【Usage Scenarios】 - Parts supply lines in automotive manufacturing plants - Transporting parts to assembly lines - Moving parts within warehouses 【Benefits of Implementation】 - Improved efficiency of parts supply through stable AGV operation - Cost reduction through optimization of production lines - Decreased defect rates due to enhanced quality control
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In the warehouse and logistics industry, automatic transport systems require precise positioning and stable operation. Especially in efficient transport within limited spaces and handling diverse cargo, the reliability of AGVs is crucial. Inaccurate guidance can lead to decreased work efficiency and potential accidents. Our magnetic guidance AGV sensor demonstrates stable detection performance even in harsh environments, supporting the safe and efficient operation of AGVs. 【Usage Scenarios】 - Automatic transport systems within warehouses - Picking operations at logistics centers - Parts supply within factories 【Benefits of Implementation】 - Improved stability of AGV operation - Enhanced work efficiency - Increased safety
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In theme park cleaning operations, it is essential to efficiently clean the vast grounds. Particularly in high-traffic areas and during operating hours, safe and swift cleaning work is crucial. Automated Guided Vehicles (AGVs) are an effective means to address these challenges, but precise guidance is indispensable. Our magnetic-guided AGV sensor contributes to the efficiency of cleaning operations in theme parks. 【Usage Scenarios】 - Cleaning of pathways within the theme park - Cleaning of attraction areas - Waste collection 【Benefits of Implementation】 - Increased efficiency of cleaning operations - Reduction in labor costs - Improved safety
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In the food manufacturing industry, precise management of filling quantities is required to ensure product quality and safety. Particularly in the process of filling liquid or powdered foods into containers, even slight errors in filling amounts can lead to degradation of product quality or increased costs. The non-contact linear displacement sensor MP-4731 accurately measures the position of the filling machine's nozzle, allowing for fine adjustments of the filling quantity. 【Application Scenarios】 - Detection of filling machine nozzle position - Monitoring of liquid level - Position control of packaging machinery - Position control of slicers 【Benefits of Implementation】 - Improved accuracy of filling quantities - Stabilization of product quality - Reduction of material waste
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In the robotics industry, accurate position detection is required. Particularly, millimeter-level precision is important for the movement of arms and the arrangement of parts. Contact-type sensors carry the risk of wear and damage, but our MP-4731 measures a range of 15mm non-contact, supporting the precise operation of robots. 【Application Scenarios】 - Position detection of robotic arms - Confirmation of part placement - Fine-tuning of positioning 【Benefits of Implementation】 - Long sensor lifespan due to non-contact design - Easy installation with a small and compact design - Absolute output allows for position detection upon power-up
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In the automotive industry's suspension systems, precise stroke measurement of the suspension is essential to balance ride comfort and driving performance. Particularly, high-precision displacement measurement is crucial for accurately capturing the vehicle's movement over uneven surfaces and curves, enabling appropriate damping control. Traditional contact-type sensors posed risks of malfunction due to wear and foreign object adhesion. Our non-contact linear displacement sensor MP-4731 accurately measures a range of 15mm without contact, contributing to vehicle performance improvement by capturing suspension movement in real-time. [Application Scenarios] - Stroke measurement of automotive suspensions - Performance evaluation of shock absorbers - Feedback control for height adjustment systems [Benefits of Implementation] - High reliability through non-contact measurement - Ease of installation due to compact and lightweight design - Accurate position information acquisition through absolute output
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In the energy industry, equipment monitoring is crucial for early detection of abnormalities and maintaining stable operation. Particularly in environments with significant temperature changes and vibrations, accurate location information is required. Traditional contact-type sensors carry risks of wear and failure, but the MP-4731 can measure linearly within a 15mm range without contact, allowing for early detection of equipment abnormalities. The absolute output also facilitates easy initial position detection upon power-up. 【Usage Scenarios】 * Turbine monitoring at power plants * Transformer monitoring at substations * Valve position monitoring in plant equipment 【Benefits of Implementation】 * Early detection of equipment abnormalities, reducing downtime * Longer lifespan and reduced maintenance costs through non-contact measurement * Easier initial position detection upon power-up due to absolute output
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In the medical device industry, accurate positioning and fine displacement measurement are crucial elements that influence diagnostic accuracy and treatment effectiveness. Particularly in situations where precise operations are required while ensuring patient safety, non-contact high-precision measurement is essential. The MP-4731 achieves accurate position measurement within a range of 15mm while minimizing the impact on the equipment through non-contact measurement. 【Application Scenarios】 - Precision inspection devices - Surgical support robots - Biometric measurement devices 【Benefits of Implementation】 - Reduced impact on equipment through non-contact measurement - High-precision positioning and measurement - Increased installation flexibility due to compact and small design
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In the food processing industry, hygiene management of the manufacturing process is extremely important. In particular, equipment that may come into direct contact with food requires ease of cleaning and a reduction in the risk of foreign matter contamination. Conventional rotary encoders have mechanical contact parts, making them difficult to clean and posing a risk of contamination. Our non-contact rotary encoders have no mechanical connections, making cleaning easy and reducing the risk of foreign matter contamination. This enhances food safety and improves the reliability of the manufacturing process. 【Application Scenarios】 - Food filling machines - Packaging machines - Conveyor systems - Environments requiring cleaning 【Benefits of Implementation】 - Realization of a hygienic environment - Reduction of foreign matter contamination risks - Shortening of cleaning time - Improvement of product quality
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In the medical device industry, precise positioning and control are required. Particularly in surgical robots and precision inspection equipment, accurate detection of rotation angles is essential for safe and efficient operation. Conventional contact-type encoders carry risks of wear and failure, which can lead to maintenance costs. Our non-contact rotary encoders achieve high durability and reliability due to the absence of mechanical connections, contributing to the performance improvement of medical devices. 【Application Scenarios】 - Detection of arm angles in surgical robots - Rotation position control in precision inspection equipment - Angle adjustment in medical imaging diagnostic devices 【Benefits of Implementation】 - Reduction in maintenance costs due to high durability - High reliability due to non-contact operation - Improved operability through precise angle detection
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In the elevator industry, safety is the top priority, and accurate position detection and control are essential. In particular, accurately understanding the speed and position of the elevator is crucial for accident prevention. Traditional contact-type encoders carry risks of wear and failure, which can lead to increased maintenance frequency. Our non-contact rotary encoders achieve high reliability and long lifespan due to the absence of mechanical contact, contributing to the safe operation of elevators. 【Application Scenarios】 - Elevator speed control - Door open/close position detection - Emergency brake operation confirmation 【Benefits of Implementation】 - Reduced maintenance costs due to high reliability - Improved safety through accurate position detection - Decreased replacement frequency due to longer lifespan
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In the wind power generation industry, accurately measuring the angle of the blades is essential for the efficient use of wind energy. Measurement errors in blade angles can lead to decreased power generation efficiency and, in the worst case, damage to the equipment. Our rotary encoders can detect rotational angles non-contactly and measure blade angles with high precision. 【Application Scenarios】 - Angle detection of wind power generation blades - Control systems for wind turbines 【Benefits of Implementation】 - Improved power generation efficiency through accurate measurement of blade angles - Stable operation of equipment - Reduced maintenance costs
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In the aerospace industry, high safety and reliability are required, and accurate operation under harsh conditions is essential. In particular, durable components that are resistant to vibration and shock are crucial. Our magnetic rotary encoders, which have no mechanical connections, are strong against vibration and shock, contributing to the accurate position detection of rotating parts in aerospace applications. 【Usage Scenarios】 * Aircraft control systems * Spacecraft attitude control systems * Rocket engine RPM measurement 【Benefits of Implementation】 * Ensured long-term reliability due to high durability * Reduced wear and improved maintainability due to non-contact design * Enhanced safety through accurate rotation angle detection
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In the yarn feeding process of textile machinery, accurately controlling the tension and speed of the yarn is a crucial factor that affects product quality. Variations in yarn supply can lead to weaving and knitting inconsistencies, potentially resulting in defects in the final product. Our rotary encoders detect rotational angles without contact, enabling precise control of yarn feeding. This contributes to the stable production of high-quality products. 【Application Scenarios】 - Detection of yarn feeding roller rotation - Monitoring of yarn supply amount - Tension control 【Benefits of Implementation】 - Prevention of yarn breakage and sagging - Improvement in product quality - Enhancement of production efficiency
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In the robotics industry, precise positioning and motion control of arms are required. Especially for robotic arms with many movable parts, durable and reliable angle detection is crucial. Conventional contact-type encoders have risks of malfunction due to wear and vibration, but our non-contact rotary encoders solve these issues as they have no mechanical connections. 【Application Scenarios】 * Detection of joint angles in robotic arms * Rotating parts of construction machinery * Tension control for films and paper 【Benefits of Implementation】 * Resistant to vibration and shock, with a long lifespan * Easy installation without couplings * Stabilization of motion through high-precision angle detection
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In the logistics industry, accurate position detection of transported items is crucial for conveyor systems. Contamination by foreign objects or misalignment of transported items can lead to system stoppages or decreased efficiency. Our magnetic sensors contribute to the stable operation of conveyor systems by accurately identifying the type and position of transported items by individually detecting the North and South poles. 【Application Scenarios】 - Detection of the presence or absence of products on the conveyor - Product position detection in sorting systems - Foreign object detection 【Benefits of Implementation】 - Reduced risk of system stoppage due to accurate position detection of transported items - Decreased maintenance frequency due to high durability - Ability to meet diverse detection needs through individual output of North and South poles
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In the elevator industry, ensuring safety is the top priority, and precise control of door opening and closing is required. Malfunctions of the door can lead to serious accidents, making sensors with high reliability and durability essential. Our magnetic sensors are equipped with separate outputs for the north and south poles, enabling accurate detection of door positions. 【Usage Scenarios】 - Detection of elevator door opening and closing - Detection of door abnormalities - Position confirmation during maintenance 【Benefits of Implementation】 - Supports safe opening and closing of doors - Improved maintainability - Longer lifespan due to high durability
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In the medical device industry, ensuring the safety of patients and healthcare professionals is the top priority. To prevent equipment malfunctions and unauthorized access, a highly reliable safety locking mechanism is required. Our magnetic sensors operate non-contact, reducing the risk of wear and degradation, and providing stable performance over a long period. The individual outputs for the North and South poles enable more advanced safety management. 【Application Scenarios】 - Locking mechanism for medical beds - Door locks for MRI rooms - Access control for maintenance of medical devices 【Benefits of Implementation】 - Reduces the risk of accidents due to misoperation - Prevents unauthorized use of equipment - Enhances safety during maintenance
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In the logistics industry, accurate position measurement is essential for efficient transportation in automated warehouses and conveyor systems. In environments where laser distance measurement or wire-based encoders cannot be used, or when long-distance measurements are required, reliable distance measurement solutions are needed. Our non-contact linear encoders address these challenges and contribute to the performance improvement of transportation systems. 【Application Scenarios】 - Automated warehouses - Conveyor systems - Long-distance transportation 【Benefits of Implementation】 - Reduced maintenance frequency due to non-contact operation - Capability for long-distance measurement - Installation on curved surfaces is also possible (with R limitations)
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In the robotics industry, precise position control is required. Especially for robots that operate in a wide range of motion and harsh environments, durable and reliable length measurement methods are crucial. Even in cases where laser measurement and wire-based encoders cannot be used, our non-contact linear encoders can achieve long-distance measurement, thereby improving the operational accuracy of robots. 【Application Scenarios】 - Position detection of robotic arms - Position control of mobile robots - Positioning in manufacturing lines 【Benefits of Implementation】 - Non-contact operation reduces the risk of failure due to wear - Enables long-distance measurement, expanding the robot's range of motion - Allows installation on curved surfaces, enhancing design flexibility
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In the railway industry, accurate train position detection is essential for safe operations. In particular, understanding the vehicle's position information and its relationship with the platform is crucial for accident prevention. Even in locations where laser distance measurement or wire encoders cannot be installed, our non-contact linear encoders can provide accurate position measurement over long distances. 【Usage Scenarios】 - Detection of railway vehicle positions - Understanding the relationship with the platform - Control of level crossings - Detection of door opening and closing movements 【Benefits of Implementation】 - Improved safety through accurate position information acquisition - Reduced maintenance frequency - Capability for long-distance measurement
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In the bridge engineering industry, it is important to accurately monitor the expansion and contraction caused by temperature changes and loads in order to maintain the safety and durability of structures. Traditional measurement methods have faced challenges such as site constraints and high maintenance burdens. Our non-contact linear encoders support long-distance measurements and are maintenance-free due to their magnetic design. By accurately grasping the expansion and contraction of bridges and detecting structural anomalies early, we contribute to safety management. 【Application Scenarios】 - Monitoring bridge expansion and contraction - Measuring structural changes due to temperature variations - Aging diagnosis 【Benefits of Implementation】 - Improved safety through non-contact measurement - Reduced maintenance costs - Long-term maintenance of structural integrity
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In the logistics industry, accurate position measurement is essential for efficient operations. Particularly in long-distance transport systems such as automated warehouses and conveyor systems, it can be challenging to rely on laser distance measurement or wire-based encoders. These systems also require high durability and ease of maintenance. Our non-contact linear encoders utilize magnetic technology, enabling long-distance measurement. They are maintenance-free and contribute to improved transport efficiency. 【Usage Scenarios】 - Automated warehouses - Conveyor systems - Unmanned transport vehicles 【Benefits of Implementation】 - Capability for long-distance measurement - Reduction in maintenance frequency - Stable operation of the system
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In the steel industry, accurate thickness measurement is essential to ensure the quality of the manufactured steel products. Especially in high-temperature environments or under harsh conditions, traditional contact sensors and laser length measurement can face challenges in terms of accuracy and durability. Our non-contact linear encoders utilize magnetic technology, enabling stable length measurement even in severe environments. This enhances product quality control and contributes to yield improvement. 【Application Scenarios】 - Thickness measurement of steel plates in hot rolling lines - Thickness measurement of steel slabs in continuous casting lines - Wall thickness measurement of pipes in pipe manufacturing lines 【Benefits of Implementation】 - Non-contact design ensures long lifespan even in harsh environments - High measurement accuracy improves product quality - Cost reduction through decreased maintenance frequency
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In the railway industry, accurately grasping the location information of vehicles is essential for safe operation and efficient management. Particularly in environments where laser measurement is difficult, such as inside tunnels or under severe weather conditions, and in situations requiring long-distance position detection, reliable measurement technology is necessary. Our non-contact linear encoders utilize a magnetic system to achieve stable measurement even in harsh environments. 【Application Scenarios】 - Position detection of railway vehicles - Position control of platform doors - Position management within vehicle depots - Switch control 【Benefits of Implementation】 - Capability for long-distance measurement - Reduced maintenance frequency - Stable operation in harsh environments - Improved safety
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In the management of sluice gate opening, accurate position information is essential for safe operation. Traditional contact-type encoders and laser measurement systems have faced challenges such as installation location constraints and susceptibility to water and dust. Our non-contact linear encoder addresses these issues and achieves stable measurement over long distances. By accurately grasping the opening of the sluice gate, it contributes to appropriate water volume adjustments and early detection of anomalies. 【Usage Scenarios】 * Measurement of sluice gate openings * Water level management for rivers and dams * Data integration into remote monitoring systems 【Benefits of Implementation】 * Reduced maintenance frequency due to non-contact operation * Capability for long-distance measurement * Achieves high-precision opening management
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In the wind power generation industry, accurately measuring the angle of the blades and efficiently utilizing wind energy is essential. Particularly in operations under strong winds or harsh environments, reliable measurements are crucial. Even when laser measuring or wire encoders cannot be used, our non-contact linear encoders provide long-distance measurement and high durability, contributing to the performance improvement of wind power generation systems. 【Application Scenarios】 - Measuring the angle of wind turbine blades - Long-distance measurement in harsh environments - Measurement in hard-to-maintain locations 【Benefits of Implementation】 - Improved power generation efficiency through accurate blade angle measurement - Reduced operational costs due to decreased maintenance frequency - Stable operation of the system through increased longevity
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In the wind power generation industry, it is essential to accurately measure the angle of the blades and efficiently utilize wind energy. Particularly in harsh environments such as strong winds, vibrations, and temperature changes, reliable measurements are crucial. Traditional contact encoders and laser distance measurement have faced challenges such as maintenance issues, installation location constraints, and environmental impacts. Our non-contact linear encoders address these challenges and contribute to the efficiency of wind power generation. [Application Scenarios] - Measuring the angle of wind turbine blades - Pitch control of wind turbines - Maintenance of wind power plants [Benefits of Implementation] - Reduced maintenance frequency due to non-contact operation - Capability for long-distance measurement - Stable measurements even in harsh environments
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In the steel industry, accurate thickness measurement is essential for quality control of manufactured steel products. Stable measurement accuracy is required even under harsh conditions such as high temperatures, vibrations, and scale adhesion. Traditional laser length measurement and contact encoders have limitations for use in these environments. Our non-contact linear encoder employs a magnetic system, achieving stable thickness measurement even in harsh conditions. 【Application Scenarios】 * Thickness measurement of steel plates in hot rolling lines * Thickness measurement of steel slabs in continuous casting lines * Pipe thickness measurement in pipe manufacturing lines 【Benefits of Implementation】 * Non-contact measurement allows for stable readings even in high-temperature environments * Magnetic design reduces maintenance frequency * Supports long-distance measurements, accommodating diverse measurement needs
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