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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 aerospace industry, the precise placement of components is a crucial factor that affects the safety and performance of products. Particularly in environments with significant vibrations and temperature changes, high precision in positioning is required. Inaccurate placement can lead to product malfunctions and decreased safety. Our small magnetic switches and sensors provide stable performance even in harsh environments, with a repeatability of ±0.05μm and an IP67 protection structure, enhancing the reliability of component placement. 【Application Scenarios】 - Positioning of components in the manufacturing of aircraft and spacecraft - Assembly processes of precision instruments - Position detection of components in inspection equipment 【Benefits of Implementation】 - Improved product quality through high-precision positioning - Stable operation in harsh environments - Reduced risk of failure
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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 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 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 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 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 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 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 tunnel excavation industry, accurate measurement of excavation distance is essential for safe operations and efficient progress management. Even in environments where laser measurement and wire encoders cannot be used, precise measurement is required. Our non-contact linear encoders support long-distance measurement and strongly assist in the management of tunnel excavation progress. 【Use Cases】 - Position measurement of tunnel boring machines - Monitoring of excavation distance - Measurement of excavation surface shape 【Benefits of Implementation】 - Shortened construction period through accurate progress management - Improved safety - Cost reduction
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In the railway industry, accurate train position detection is essential for safe operations. In particular, accurately understanding the vehicle's position information and its relationship with the platform is crucial for accident prevention and improving operational efficiency. Even in locations where laser measurement or wire encoders cannot be installed, our non-contact linear encoders achieve long-distance measurement, enhancing the safety and reliability of railway systems. 【Use Cases】 - Vehicle position detection - Detection of the relationship with the platform - Monitoring the operation of railway equipment 【Benefits of Implementation】 - Improved safety through accurate position information acquisition - Reduced maintenance frequency - Flexible installation due to long-distance measurement - Increased reliability through stable operation
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In the management of sluice gate opening, accurate location information is essential for safe operation and efficient water resource management. Traditional contact-type encoders have risks of failure due to corrosion and foreign matter adhesion specific to water environments. Additionally, laser distance measurement may have limitations based on measurement range and installation conditions. Our non-contact linear encoders address these challenges. 【Application Scenarios】 - Measurement of sluice gate openings - Water management for rivers, dams, canals, etc. - Long-distance measurement in harsh environments 【Benefits of Implementation】 - Reduced maintenance frequency due to non-contact operation - Capability for long-distance measurement - Stable measurement even in harsh environments - Optimal management of water resources through accurate opening information
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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 measurement technology is indispensable. Traditional laser distance measurement and wire-based encoders can sometimes make measurements difficult due to distance and environmental factors. Our non-contact linear encoders support long-distance measurements and are maintenance-free due to their magnetic design. They contribute to the efficiency of wind power generation. 【Application Scenarios】 - Measuring the angle of wind turbine blades - Position control of wind turbines - Position measurement in harsh environments 【Benefits of Implementation】 - Improved power generation efficiency through accurate blade angle measurement - Reduced maintenance costs - Lower operational costs due to increased lifespan
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In the aerospace industry, accurate position information acquisition is essential for attitude control systems. High-precision measurement is required even in environments where laser distance measurement or wire-based encoders cannot be used. Our non-contact linear encoders support long-distance measurement and demonstrate stable performance even in harsh environments. This contributes to the attitude control of aircraft and the accurate positioning of spacecraft. 【Application Scenarios】 - Aircraft attitude control - Spacecraft position measurement - Rocket attitude control 【Benefits of Implementation】 - Acquisition of high-precision position information - Stable operation in harsh environments - Improved system reliability
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In the steel industry, accurate measurement of plate thickness is essential to ensure the quality of the manufactured steel products. Particularly in high-temperature environments or under harsh conditions, laser measurement and contact encoders may not be usable. If accurate plate thickness measurement cannot be achieved, it may lead to a decline in product quality and reduced yield. Our non-contact linear encoders utilize magnetic technology, allowing for stable measurement even in harsh environments. 【Application Scenarios】 - Plate thickness measurement in hot rolling lines - Plate thickness measurement in cold rolling lines - Quality inspection of steel plates 【Benefits of Implementation】 - Non-contact measurement enables stable performance even in harsh environments - Supports long-distance measurement, providing flexibility in installation locations - High repeatability ensures accurate plate thickness measurement - Maintenance-free, reducing running costs
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In the logistics industry, accurate position measurement is essential for efficient operations. Particularly in automated warehouses and conveyor systems, obtaining precise location information over long distances is required. Even in environments where laser distance measurement and wire encoders struggle, our non-contact linear encoders achieve long-distance measurement and enhance the reliability of conveyor systems. 【Application Scenarios】 * Automated warehouses * Conveyor systems * Automated guided vehicles (AGVs) 【Benefits of Implementation】 * Accurate position measurement over long distances * Reduced maintenance frequency * Improved system reliability
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In the automotive industry, accurate detection of the accelerator pedal's position is essential for safe and efficient driving. Particularly in hybrid and electric vehicles, precise control of the accelerator opening significantly affects energy efficiency and driving performance. Traditional potentiometers can face issues with signal instability due to wear and poor contact. Our linear potentiometer rod type offers non-contact operation, providing high durability and reliability, thereby improving the accuracy of accelerator operation. 【Application Scenarios】 - Accelerator pedal position detection - Automotive driving control systems - Accelerator opening control for hybrid and electric vehicles 【Benefits of Implementation】 - High durability due to non-contact operation - Improved driving performance through accurate position detection - Reduced maintenance costs due to long-term stable operation
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In the ceramics industry, accurate temperature management and product position detection in high-temperature environments are crucial during the firing process. The interior of the kiln is exposed to high temperatures, which limits the types of sensors that can be used. Inappropriate sensor selection can lead to malfunctions or failures, potentially resulting in decreased production efficiency and quality issues. Our heat-resistant magnetic proximity sensors enable stable operation even in environments of 150°C, allowing for product position detection during the firing process. By separating the detection unit and the circuit unit (up to 10 meters), they can be used continuously even in a 150°C environment. Aside from the heat resistance, there are no significant differences in specifications compared to our standard sensors. In any case, since there are many custom elements, we will ask for your desired specifications and propose sensors suitable for your operating environment. Please feel free to inquire about low-temperature specifications as well. 【Application Scenes】 - Product position detection inside the kiln - Use of sensors in high-temperature environments - Automation of the firing process 【Benefits of Implementation】 - Stable detection in high-temperature environments - Improved production efficiency - Stabilization of product quality
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In the automotive engine industry, the durability of parts in the high-temperature environment of the engine compartment is essential. Particularly for engine control and exhaust system components, reliable sensors that can withstand temperature changes and vibrations are indispensable. Traditional sensors have risks of malfunction or failure in high-temperature environments, but our high-temperature resistant magnetic proximity sensors achieve stable operation even at 150°C. This contributes to improved engine performance and reliability. By separating the detection unit and the circuit unit (up to 10 meters), it can be used continuously even in environments of 150°C. Aside from the heat resistance temperature, there are no significant differences in specifications compared to our standard sensors. In any case, since there are many custom elements, we will ask for your desired specifications and propose sensors suitable for the operating environment. Please feel free to inquire about low-temperature specifications as well. 【Application Scenarios】 - Temperature management of engine control systems - Abnormal detection of exhaust system components - Position detection in high-temperature environments 【Benefits of Implementation】 - Stable operation in high-temperature environments - Improved engine performance - Enhanced system reliability
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In the steel industry, accurate position detection in high-temperature environments is required. In harsh conditions, sensor failures or malfunctions can lead to decreased production efficiency. Our high-temperature resistant magnetic proximity sensors achieve stable operation even in environments of 150°C by separating the detection unit from the circuit unit. This allows for precise monitoring of the conditions inside the furnace and contributes to improved production efficiency. By separating the detection unit and the circuit unit (up to 10 meters), it can be used continuously even in environments of 150°C. Aside from the heat resistance temperature, there are no significant differences in specifications compared to our standard sensors. In any case, since there will be many custom elements, we will ask for your desired specifications and propose sensors suitable for the operating environment. Please feel free to inquire about low-temperature specifications as well. 【Application Scenarios】 - Temperature management inside the furnace - Position detection of metallic materials - Monitoring the operational status of equipment 【Benefits of Implementation】 - Stable detection in high-temperature environments - Reduction of equipment downtime - Improvement in production efficiency
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In the educational field, experiments to understand the properties of magnets are important. Accurately distinguishing between the North (N) and South (S) poles is essential for deepening basic knowledge of magnets. However, traditional methods of identification often make it difficult to judge visually, which can lead to misunderstandings. This product detects magnetism and lights up an LED: red for the N pole and blue for the S pole, allowing for intuitive differentiation. It can be widely used from elementary school experiments to more advanced learning. 【Usage Scenarios】 - Science classes in schools - Independent research projects - Crafts using magnets 【Effects of Implementation】 - Visual understanding of magnetic polarity - Increased efficiency in experiments - Enhanced motivation for learning
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In the logistics industry, accurate sorting of products is required. Particularly in the sorting of products and parts that utilize magnets, misidentification of the North and South poles can lead to decreased work efficiency and potential shipping errors. Our North and South pole identification machine for magnets supports the efficiency of sorting operations by quickly and accurately distinguishing between the North and South poles of magnets. 【Usage Scenarios】 * Sorting of magnet-equipped parts * Inspection of products utilizing magnetism * Integration into manufacturing lines 【Benefits of Implementation】 * Reduction in sorting operation time * Decrease in the risk of shipping errors * Alleviation of worker burden
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In manufacturing process management, the management of magnet polarity is crucial for ensuring product quality and safety. In particular, incorrect placement of magnets during assembly or inspection processes can lead to product malfunctions or accidents. Our N-pole and S-pole discrimination machine contributes to the efficiency of process management by quickly and accurately distinguishing between the N-pole and S-pole of magnets. 【Usage Scenarios】 * Assembly process of magnetic components * Inspection process of products * Quality control department 【Benefits of Implementation】 * Reduction in work time * Improvement in quality * Decrease in defective products
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The "SA-200 System" is an absolute linear encoder system that employs a compact dedicated head. It comes as a set with a dedicated scale measuring 65mm in width, 20mm in height, and 25mm in depth. The detection distance of the head can achieve 0.3 to 1.6mm when the material of the mounting base is magnetic. Due to its absolute detection capability, it can be re-measured without returning to the origin after power is restored. 【Features】 ■ It is a non-contact absolute scale system that allows for a large distance between the scale and the head. ■ Measurements are unaffected by dust and debris due to magnetic detection. ■ The system is available with varying detection distances and resolutions. *Sample lending available *For details, please contact us or download the PDF materials.
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It is a non-contact incremental scale system that allows for a large distance between the scale and the head. Measurements can be taken without being affected by dust, dirt, etc., due to magnetic detection. 【Features】 - It is a non-contact incremental scale system that allows for a large distance between the scale and the head. - Measurements can be taken without being affected by dust, dirt, etc., due to magnetic detection. - The system is prepared based on detection distance and resolution. *Sample lending is available. *For details, please contact us or download the PDF materials. Also familiar as the Makome Scale.
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This is a non-contact incremental magnetic scale system that allows for a large distance between the head and the scale. It can measure length without being affected by dust or debris for magnetic detection. It features the smallest head among our magnetic detection scales. The detection head is compact, measuring 30mm in width and 32mm in height. By combining it with a dedicated scale, a compact length measurement system can be constructed. The large detection distance between the head and the scale, along with the tolerance for variations in detection distance, increases design flexibility. 【Features】 - Non-contact incremental scale system that allows for a large distance between the head and the scale. - Length measurement is possible without being affected by dust or debris for magnetic detection. It can detect through non-magnetic materials such as brass, aluminum, plastic, and stainless steel (e.g., SUS303). - Waterproof structure (IP-67), with proven applications in food processing machinery. *Sample loans available. *For more details, please contact us or download the catalog. CAD data is available. There are many successful replacements from discontinued optical encoders! *VP-90 Easy Scale.
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The SI-140PAC is a packaged linear encoder that comes with a display unit and can be used immediately with a power supply of AC100V. It is equipped with a standard 2-meter magnetic scale, which can be extended later (maximum length ∞). The counter display has a minimum display value of 0.1mm. You can easily measure with digital display where you previously used tape measures or gauges. Suitable for cutting aluminum and woodworking materials. Detection is non-contact. It has been widely adopted in in-house jigs (contributing to improvement proposals). Please also use it for DIY projects. Since it is magnetic, there are no miscounts due to dirt. Available on YouTube. *Sample lending is possible. *For more details, please contact us or download the PDF materials.
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In research and development, the accurate acquisition of experimental data is crucial. Particularly in measuring fine movements and dimensions, high precision measurements are required. Traditional measuring tapes and gauges are prone to measurement errors, which can compromise the reliability of the data. The SI-140PAC enables accurate measurements with a digital display in 0.1mm increments. As it measures non-contact, it has minimal impact on the measurement subject, contributing to the efficiency of experiments. 【Application Scenarios】 - Prototyping and evaluation of precision instruments - Material testing - Production of research jigs 【Benefits of Implementation】 - Reduction in measurement time - Improvement in measurement accuracy - Enhanced reliability of experimental data
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In the packaging industry, accurate sealing operations are required to maintain product quality and improve work efficiency. In particular, excess or insufficient content can lead to quality issues and increased costs. Additionally, manual sealing carries the risk of increased worker burden and human error. The SI-140PAC improves work efficiency by accurately measuring sealing position and length through digital display. 【Usage Scenarios】 - Integration into packaging machines - Content volume adjustment - Measurement of product dimensions 【Benefits of Implementation】 - Improved accuracy of sealing operations - Reduced work time - Decreased defective products
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In the 3D printer industry, accurate dimensions and high layering precision of printed objects are required. Especially when manufacturing complex shapes or precise parts, even slight errors can significantly impact product quality. To achieve accurate layering, it is necessary to precisely control the material supply and the position of the head. The SI-140PAC facilitates measurements to improve the layering precision of 3D printers with its digital display in 0.1mm increments. 【Usage Scenarios】 - Adjusting the platform height of 3D printers - Measuring the dimensions of printed objects - Checking the layering pitch 【Benefits of Implementation】 - Improved layering precision - Reduction of defective products - Shortened work time
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In the measurement equipment industry, accurate measurements affect product quality. Measurements using tape measures and gauges tend to depend on the skill of the measurer and can be time-consuming. The SI-140PAC can be used immediately with a display and power supply, contributing to the efficiency and accuracy of measurements by digitizing the measurement process. 【Usage Scenarios】 * Cutting aluminum and wood materials * Measuring in-house jigs * Use in DIY projects 【Benefits of Implementation】 * Reduction in measurement time * Improvement in measurement accuracy * Enhancement of work efficiency
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In the food processing industry, accurate measurement and management of filling quantities in the filling process are crucial factors that influence product quality and yield. Especially when filling liquid or powdered foods into containers, even a slight error in filling quantity can lead to product non-compliance and increased costs. The SI-140 package features a linear encoder capable of displaying measurements in 0.1mm increments, enabling digital display of filling quantities. This allows for significantly more accurate filling operations compared to manual measurements. 【Usage Scenarios】 - Position measurement for food filling machines - Adjustment of filling quantities in packaging machines - Precision management of weighing systems 【Benefits of Implementation】 - Reduction of variability in filling quantities - Improvement in product quality - Reduction in work time - Decrease in material waste
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In the medical device industry, precise positioning and operation are required. Particularly in situations where accuracy below the millimeter level is demanded, such as in surgical assistance robots and inspection devices, obtaining accurate positional information is essential. Conventional measurement methods may lead to measurement errors and operational issues. Our linear encoder package, equipped with a 0.1mm display, can be used immediately with an AC100V power supply. Non-contact measurement minimizes the impact of dirt and provides accurate positional information in a digital display. 【Application Scenarios】 - Position control for surgical assistance robots - Precise position adjustment for inspection devices - Management of molding accuracy for medical 3D printers 【Benefits of Implementation】 - Improved operability through high-precision position measurement - Enhanced reliability through non-contact measurement - Improved visibility through digital display
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In the solar panel manufacturing industry, precise placement of solar cells is required to consistently supply high-quality products. The accuracy of cell placement directly affects the panel's power generation efficiency, and even slight misalignments can lead to a decrease in product performance. The SI-140PAC is a packaged product with a digital display that can be used immediately with an AC100V power supply. It comes standard with a 2m magnetic scale, which can be extended later. By digitizing processes that previously used measuring tapes and gauges, it improves the accuracy of cell placement and enhances work efficiency. 【Usage Scenarios】 - Cell placement measurement on solar panel production lines - Inspection processes for cell placement - Integration into jigs 【Benefits of Implementation】 - Improved cell placement accuracy - Reduced work time - Decreased defective products
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In the 3D printer industry, the precision of the printed objects greatly influences the quality of the products. In particular, the accurate control of layer pitch affects the dimensional accuracy and surface smoothness of the printed objects, ultimately determining the finish of the product. Accurate position measurement is essential. The SI-140PAC is a packaged linear encoder that comes with a 0.1mm display and can be used immediately with an AC100V power supply. It measures position non-contactly, contributing to the improvement of layer accuracy in 3D printers. 【Usage Scenarios】 - Measuring layer pitch of 3D printers - Measuring dimensions of printed objects - Precision management of 3D printers 【Benefits of Implementation】 - Improved layer accuracy - Reduction of defective products - Enhanced product quality
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In the printing industry, precise alignment is essential for achieving high-quality printed materials. Especially in cases requiring multi-color printing or intricate processing, even slight misalignments can significantly affect the quality of the product. Manual alignment is time-consuming and labor-intensive, and it is also prone to human error, which can lead to decreased work efficiency and an increase in defective products. Our linear encoder package enables accurate measurement of the position of printed materials through digital display, streamlining the adjustment process. 【Usage Scenarios】 - Position adjustment of printing machines - Positioning of cutting machines - Position confirmation in inspection processes 【Benefits of Implementation】 - Increased efficiency in alignment tasks - Quality improvement through enhanced precision - Reduction in defective products
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In the yarn feeding process of the textile machinery industry, the accurate feeding of yarn affects the quality of the product. To properly manage the tension and speed of the yarn, high-precision measurement is essential. Conventional measurement methods can present challenges such as measurement errors and the burden on operators. Our linear encoder package allows for precise measurement of yarn feeding distance with digital display in 0.1mm increments. This is expected to stabilize quality and improve work efficiency. 【Usage Scenarios】 - Measuring the yarn feeding distance of yarn feeding machines - Adjusting yarn density in weaving machines - Monitoring yarn supply amounts in knitting machines 【Benefits of Implementation】 - Improved measurement accuracy - Reduced work time - Decreased defective products - Increased productivity
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In the food processing industry, accurate measurement and management of filling quantities in the filling process are crucial factors that influence product quality and yield. In particular, preventing foreign matter contamination and maintaining a hygienic environment are essential. Traditional measurement methods often require visual checks and manual adjustments, which can lead to human errors and time losses, potentially resulting in decreased work efficiency and variations in quality. Our linear encoder packaged products achieve non-contact and precise position measurement, and by providing a digital display of filling quantities, they address these challenges. 【Usage Scenarios】 - Position measurement for food filling machines - Filling quantity management for packaging machines - Improvement of accuracy in weighing systems 【Benefits of Implementation】 - Enhanced accuracy of filling quantities - Improved work efficiency - Stabilization of product quality - Reduced risk of foreign matter contamination
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In the packaging industry, accurate filling operations are required to maintain product quality and improve work efficiency. In particular, excess or insufficient content can lead to quality issues and increased costs. Additionally, manual filling operations require time and effort, which can result in decreased productivity. Our linear encoder package enables precise measurement of filling amounts through digital display, enhancing work efficiency. 【Usage Scenarios】 - Integration into packaging machines - Content adjustment - Product quality management 【Benefits of Implementation】 - Quality improvement through accurate management of filling amounts - Increased productivity by reducing work time - Cost reduction by minimizing defective products
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In the medical device industry, precise positioning and operation are required. Particularly in situations where accuracy below the millimeter level is demanded, such as in surgical assistance robots and inspection devices, accurate position measurement is essential. Conventional measurement methods may lead to measurement errors and operational issues. Our linear encoder package, equipped with a 0.1mm display, can be used immediately with an AC100V power supply. Non-contact measurement minimizes the influence of dirt and provides accurate position information in digital format. 【Application Scenarios】 - Position control for surgical assistance robots - Position adjustment for precision inspection devices - Shape accuracy management for medical 3D printers - Position control for cell culture devices 【Benefits of Implementation】 - Improved operability through high-precision position measurement - Enhanced reliability through non-contact measurement - Improved visibility through digital display - Increased work efficiency
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In the textile machinery industry, accurate measurement of yarn feeding is a crucial factor that affects product quality and production efficiency. By properly managing the tension and speed of the yarn, it is possible to maintain uniform product quality and suppress the occurrence of defects. Traditional measurement methods often lead to measurement errors and increased labor, which can result in decreased productivity. Our linear encoder package achieves high-precision measurements in 0.1mm increments, making the digitalization of yarn feeding easier. 【Application Scenarios】 - Measurement of yarn feeding speed - Adjustment of yarn tension - Management of yarn position in weaving machines 【Benefits of Implementation】 - Improved measurement accuracy - Reduced working time - Stabilization of product quality - Decreased defect rate
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In the printing industry, precise alignment is essential for producing high-quality printed materials. Especially in cases requiring multi-color printing or intricate processing, even a slight misalignment can significantly affect the product's quality. Manual alignment is time-consuming and labor-intensive, and it is also prone to human error, which can lead to decreased work efficiency and an increase in defective products. Our linear encoder package products facilitate accurate alignment through digital displays, contributing to improved work efficiency and quality. 【Usage Scenarios】 - Position adjustment of printing machines - Positioning of cutting machines - Alignment in inspection processes 【Benefits of Implementation】 - Increased efficiency in alignment tasks - Quality improvement through enhanced precision - Reduction in defective products
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In the 3D printer industry, accurate dimensions and high layering precision of printed objects are required. Especially when manufacturing complex shapes or precise parts, even slight errors can significantly impact product quality. To achieve accurate layering, it is necessary to precisely control the material supply and the position of the head. The SI-140PAC facilitates measurements to improve the layering precision of 3D printers with its digital display in 0.1mm increments. 【Usage Scenarios】 - Adjusting the platform height of 3D printers - Measuring the dimensions of printed objects - Checking the layering pitch 【Benefits of Implementation】 - Improved layering precision - Reduction of defective products - Shortened working time
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The detection body consists of two components: a "sleeve" and a "probe" for the detection part. A high-frequency magnetic field is generated on the probe side, creating electromagnetic induction coupling between the sleeve and the probe. When the sleeve displaces relative to the probe, changes occur in the electromagnetic induction coupling, and this change is converted into voltage output (the relative position of the sleeve and probe is output as a displacement amount in a voltage range of 1-5V). Since the sleeve and probe have a completely non-contact structure, there is no deformation or failure due to friction. We also accept various customizations such as mounting brackets and connectors. Please feel free to consult us. 【Main Features】 ■ Two models available: the integrated detector 'ET-850' and the separated type 'ET-851A' ■ The probe is made of stainless steel, ensuring both robustness and durability ■ The protective structure complies with IP-67, providing high dust and waterproof performance ■ Power supply voltage: DC 10-30V *For more details, please download the catalog or contact us.
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The GS-315 type has top-class features among all historical guide sensors. It enables stable induction that is not affected by dust, dirt, etc., to detect the magnetism from the "guide tape." Since it uses a unique detection element developed by Makome Research Institute, it allows for a significant operational distance from the "guide tape." The waterproof GS-515 has also joined the lineup!! *For more details, please contact us or download the PDF materials. *Sample loans are available!
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