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This is a magnetic proximity sensor with a separate detection head and detector. It detects the magnetic flux of a dedicated magnet and can obtain an analog signal proportional to the magnetic flux density, which is then used for switching output. With a detection distance of 1 to 3 mm and a repeatability precision of ±1 μm, it enables fine on/off operations, achieving high-precision positioning. Of course, since it uses a magnetic detection method, it can operate stably and accurately even in harsh environments with dirt and dust. 【Main Features】 ■ Type with a separate detection head and detector ■ Power supply voltage: 'LS-106S' supports DC +12V, 'LS-127' supports DC +24V
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This is a magnetic switch designed to detect the center of the origin position of precision moving tables with high accuracy. It outputs a switching signal at the center of the magnetizing body for detection, achieving a high repeatability accuracy of ±0.05 micrometers. Due to its magnetic detection method, it is unaffected by dirt and dust, and it fully complies with the protective structure "IP67," providing excellent environmental resistance such as waterproofing and dustproofing. The 'HS-320' and 'HS-321' models are widely used for thermal expansion compensation in ultra-precision machining equipment. 【Main Features】 - The detection head is compact at Φ3mm×17mm, allowing for flexible installation positions. - Connected by a 500mm long cable from the detection head to the detector. - The 'HS-320' has an output format of NPN transistor open collector output (normally open). - The 'HS-321' has an output format of PNP transistor open collector output (normally open). *For more details, please contact us.
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It detects the magnetic flux from the magnet and operates in on/off mode. It adopts a sealing design case compliant with the protection structure "IP67." The case itself is plated with brass, ensuring stable use in harsh environments and suppressing corrosion due to aging. Our self-developed magnetic detection element is highly sensitive and has excellent noise resistance compared to general Hall ICs and magnetoresistive elements. There are both DC and AC types available. 【Main Features】 - M12 size, DC/AC two-wire N-pole detection type - The sensor body has screw threads, making height adjustment during installation easy - Non-contact detection type eliminates issues such as wear-related degradation and foreign object entrapment - The detection distance can be freely set according to the magnetic force of the magnet, allowing multiple sensors to be used in parallel without mutual interference Evaluation samples are also available. *For more details, please contact us.
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This is an 8-bit output type address sensor (spot mark reader) that identifies the position of an unmanned transport vehicle. It detects address magnets with arbitrary information (0-255) written on them and performs vehicle control (branching, stopping, accelerating, decelerating, etc.) based on the current location information. Since it reads as an absolute value, it is less likely to skip addresses. 【Main Features】 - The address code can identify 256 codes in 8-bit binary. - Adopts a mobile reading method, allowing reading while the unmanned transport vehicle (AGV) is in motion. - Available with N-pole 'SMR-2352H2-N' and S-pole 'SMR-2352H2-S'. - The spot mark reader equipped with reading timing output reads information when positioned directly above the address magnet plate during movement. - The address magnet plate (address marker) can be selected from yellow and green laminates. - Easily usable when a large capacity RFID IC chip is not required. - Suitable for environments where barcodes cannot be used due to dust and other influences. For approximate model numbers like SMR-2352H RB, please inquire. *For more details, please contact us.*
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This is a 6-bit output type spot marker reader that identifies the position of unmanned transport vehicles. It detects address magnets with arbitrary information (0-63) written on them and performs vehicle control (branching, stopping, accelerating, decelerating, etc.) based on the current location information. Since it uses binary code parallel output, signal processing is also easy. Because it uses absolute addressing, there is no skipping like in counting-up methods. *If you are currently using this with your AGV, please consult with each manufacturer. 【Main Features】 - Designed for unmanned transport vehicles (AGVs), it adopts a mobile reading type. - The spot marker reader and address magnet plate are non-contact types. It is equipped with a clock signal to read when the spot marker reader is positioned directly above the address magnet plate while in motion. - Compared to the higher model 'SMR-2352H2', the main body size has been reduced by about 60% in width, making it suitable for cases where the amount of information required is not as high as RFID. *For more details, please download the catalog or contact us.
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This is a 2ch switching type (individual polarity) address sensor that is used in combination with the dedicated address magnet plate 'SMG-100'. It has two output lines, and depending on the polarity of the magnet as the sensor passes over the magnet plate, either the N or S pole output line will turn ON. It is suitable for simple vehicle control such as acceleration, deceleration, and braking of automated guided vehicles (AGVs), providing stable guidance that is not affected by dust or debris. It is very compact, allowing for high flexibility when integrating into AGVs and similar applications. 【Main Features】 ■ Two types: Normal Open 'SMR-100C' and Normal Close 'SMR-100C-P' ■ Completely non-contact type with a detection range of 15 to 40 mm ■ Capable of polarity discrimination, not just the presence of a magnet, but also whether there is an "N pole (or S pole)" ■ Sensitivity adjusted to match the dedicated address magnet plates 'SMG-100 (N)' and 'SMG-100 (S)' ■ There is also a 1-bit information type (detecting either N or S pole) 'SMR-50B' *For more details, please download the catalog or contact us.
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The "Mako Major System" is an incremental magnetic linear encoder system. The "SI-140 System" consists of the magnetic detection head "SIE-140" and the magnetic scale "SIS-140," designed to be compact and lightweight, allowing for a large non-contact detection distance between the head and scale, with a wide tolerance for variations in detection distance. It features AB phase output and line driver output. A display unit is also available. *It can replace optical encoders, contact encoders, wire encoders, etc. *For more details, please download the catalog or contact us.
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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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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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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 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 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 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 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 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 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 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 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 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 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 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 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 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 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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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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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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Magnetic Tape "Sample Available for Loan" Route magnetic tape (guidance tape) for unmanned transport vehicles (AGV) Our "Guide Sensor" is adjusted for sensitivity to match this "Guide Tape (Magnetic Tape)." It is the optimal magnet for route use with our "Guide Sensor." By using our "Guide Sensor" together with this "Guide Tape," you can achieve a significantly larger detection distance. - Being soft, it is resistant to bending and can be easily cut (processed) to fit the travel route. - The surface is covered with a color laminated film, which protects the magnetic layer and prevents wear. - The back side has double-sided adhesive tape, allowing for immediate installation by simply sticking it to the travel route. We offer various shapes to suit different usage conditions. When used in combination with the Makome Laboratory's Guide Sensor, stable guidance is possible. * Occasionally, look-alike guide tapes are sold, but they may have unstable magnetic retention and cause malfunctions. Please use Makome's guide tape with the Makome Guide Sensor.
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◎ "Spot Mark Reader" (Mark Sensor) for Unmanned Transport Vehicles (AGV) 〇 N pole and S pole, each 1ch output type. SMR-100C 〇 N pole or S pole, 1ch output type. SMR-50 〇 6-bit long, 64 code output type. SMR-106/SMR-4550, 6-bit address sensor 〇 8-bit long, 256 code output type. SMR-2352, 8-bit address sensor This is a type of proximity switch that detects magnetic fields (magnets). It detects the magnetic field generated by the magnet, so it is not affected by dirt or dust. 【Features】 ■ The recommended operating distance is large, ranging from 15mm to 40mm, making it suitable for use in unmanned transport vehicles. ■ It can distinguish between the N pole and S pole of a magnet. Separate outputs for N pole detection and S pole detection are provided, allowing for two types of judgments: presence of N pole or presence of S pole. ■ Equipped with a reading timing output to read information when the address sensor "Mark Reader" is positioned directly above the magnet "Address Magnet Plate" while in motion. ■ NPN transistor open collector output (PNP available upon request). *For more details, please contact us or download the materials.
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This is a DC three-wire magnetic proximity switch using a saturable coil that utilizes high-frequency transmission. We offer four models tailored to different applications based on shape and protective structure. The 'SW-252A' and 'SW-272A', compliant with IP68, can be used underwater at all times. Additionally, leveraging the characteristics of magnetic detection type proximity switches, they can distinguish detection magnetic poles (both NS poles, only N pole, only S pole). Main features: Four models available: rectangular case types 'SW-250A' and 'SW-252A', and M9 case types 'SW-270A' and 'SW-272A'. - The 'SW-250A' and 'SW-270A' with protection structure IP67 come with an operation indicator light. - The 'SW-252A' and 'SW-272A' compliant with IP68 can be used underwater at all times. - Output formats (PNP, NPN) can be selected according to PLC input. - The 'SW-270A' and 'SW-272A' have screw threads on the sensor body, making height adjustment easy after installation! Detection distances can be freely set according to the magnetic force of the magnet, allowing multiple units to be used in parallel without mutual interference. Discontinued models: SW-150, SW-170, compatible products. *For more details, please download the catalog or contact us.*
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There are various detection elements such as reed switches, Hall elements, MR elements, and TMR elements, but our company utilizes a unique "saturable coil" for sensing. Since the outputs are generated individually for the N and S poles, the range of applications expands depending on the combination of magnets used. By selecting the appropriate magnets, the detection distance can be extended to over 100mm. It can detect magnets underground. Depending on the application, it can also sense within the soil of golf courses, baseball fields, and various sports venues. For example, if the S pole is detected for positioning, it can decelerate, and if the N pole is detected, it can stop. Normally, it operates under N pole control, and if the S pole is detected, it can perform an unconditional emergency stop with a single switch. By using N and S magnets on tags, binary codes can be created, which can also be utilized for sorting tasks. Since it detects the magnetic field generated by the magnets, it is not affected by dirt or dust. Sample lending is available. Magnet polarity discrimination, non-contact detection, from manufacturing lines to inspection jigs, it can be used in various situations. Custom options, such as a fully submerged type, are also available while maintaining the electrical specifications.
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In the aerospace industry, attitude control systems require high precision and reliability. Accurate positioning in space and within the atmosphere is essential for mission success. Malfunctions in attitude control systems can lead to equipment damage or mission failure. Our high-precision positioning small magnetic sensor HA-120 and switch HS-120 achieve a repeatability of ±0.1μm, meeting the stringent demands of aerospace applications. 【Use Cases】 - Satellite attitude control - Rocket attitude control - Aircraft attitude control 【Benefits of Implementation】 - Stabilization of attitude control through high-precision position detection - High durability in harsh environments - Increased mission success rate
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In the field of robotics, accurate detection of joint angles is essential to achieve precise movements of robots. Particularly in robots that perform repetitive tasks or require high-precision positioning, even slight errors in joint angles can lead to operational failures or a decline in product quality. Our high-precision positioning small magnetic sensor HA-120 and switch HS-120 accurately detect the joint angles of robots with a repeatability of ±0.1μm. 【Application Scenarios】 - Detection of joint angles in robotic arms - Positioning of precision assembly robots - Safe operation of collaborative robots 【Benefits of Implementation】 - Improved operational accuracy of robots - Enhanced product quality - Increased productivity
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In the semiconductor manufacturing industry, high-precision control in the positioning of wafers and substrates is essential due to the advancement of manufacturing processes. Particularly in fine processing and assembly stages, even slight misalignments can significantly impact product quality and yield. Our high-precision positioning small magnetic sensor HA-120 and switch HS-120 achieve a repeatability accuracy of ±0.1μm, enabling precise position control in semiconductor manufacturing. 【Application Scenarios】 - Position detection in wafer transport equipment - Stage position control in exposure equipment - Positioning in bonding equipment - Precise alignment in inspection equipment 【Benefits of Implementation】 - Improved yield through high-precision positioning - Stabilization of product quality - Increased efficiency in manufacturing processes - Enhanced performance of equipment
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"Sample available for loan" This is a compact magnetic detection sensor and switch that can be used for applications requiring high precision and repeatability. It provides an analog voltage output relative to the center position. It provides a switching output relative to the center position. Long-selling product. It is the successor to the HS-12.
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In the logistics industry, accurate inventory management and swift inbound and outbound operations are essential. Particularly, understanding the movement of products in real-time is crucial for optimizing inventory and reducing losses. Our positioning sensors accurately measure the number of times a magnetic body passes, allowing for real-time tracking of inventory movement. This leads to improved accuracy and efficiency in inventory management. 【Use Cases】 - Counting product movements within the warehouse - Detection of passage at inbound and outbound gates - Detection of elevator basket positions 【Benefits of Implementation】 - Real-time understanding of inventory levels - Increased efficiency in inbound and outbound operations - Reduction in inventory management costs
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One target (magnetic material or magnet) switches output three or four signals. Detection of the rotation direction of the rotating body. Detection of the rotation speed of the rotating body; it can also perform addition and subtraction, which helps prevent chattering. All outputs are individual transistor outputs, making them easy to handle. I think you can grasp the concept by watching the YouTube video.
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In the ferry industry, it is important to accurately grasp the tilt of the hull caused by waves to maintain safe operations. In particular, the stability of the hull is essential for the safety of passengers and the protection of cargo. Inaccurate tilt detection increases the risk of capsizing and can lead to serious accidents. Our inclinometer CM-961A utilizes MEMS accelerometers to achieve high-precision tilt angle detection. With a protective structure of IP-67 provided by a metal case, it delivers stable performance even in harsh environments, supporting the safe operation of ferries. 【Usage Scenarios】 - Vessel attitude control - Maintaining horizontal stability during crane operations - Monitoring rolling and pitching 【Benefits of Implementation】 - Improved safety through high-precision tilt angle detection - Reliability in harsh environments - Enhanced operational efficiency through hull stabilization
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On ocean survey vessels, it is important to accurately grasp the tilt of the hull to ensure the accuracy of observation data. In particular, the stability of the hull is essential for the precise operation of observation equipment and the reliability of the data. Inaccurate tilt detection can lead to errors in observation data and undermine the reliability of research. Our inclinometer CM-961A employs MEMS accelerometers to achieve high-precision tilt angle detection. With a protective structure of IP-67 provided by a metal case, it demonstrates stable performance even in harsh environments, supporting accurate observations. 【Usage Scenarios】 - Monitoring the hull posture in ocean surveys - Maintaining the horizontal position of observation equipment - Monitoring the rolling and pitching of the hull due to waves 【Benefits of Implementation】 - Improved reliability of observation data through high-precision tilt angle detection - Stable operation in harsh environments - Enhanced observation efficiency through hull stabilization
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In the offshore platform industry, the stability of the platform is essential for the safety of workers and the protection of equipment. It is necessary to accurately monitor the tilt of the platform caused by waves and wind to maintain a safe working environment. Inaccurate tilt detection increases the risk of accidents and can lead to operational shutdowns. Our inclinometer CM-961A utilizes MEMS accelerometers to achieve high-precision tilt angle detection. With a protective structure of IP-67 provided by a metal case, it delivers stable performance even in harsh environments, supporting the safe operation of the platform. 【Usage Scenarios】 - Platform attitude control - Maintaining level during crane operations - Monitoring rolling and pitching 【Benefits of Implementation】 - Improved safety through high-precision tilt angle detection - Reliability in harsh environments - Enhanced operational efficiency through platform stabilization
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In dredging operations, accurately understanding the tilt of the hull is essential for ensuring safety and efficiency. Particularly during the loading and unloading of sediment, the balance of the hull can easily be disrupted, and inaccurate tilt detection can increase the risk of delays and accidents. Our inclinometer CM-961A utilizes MEMS accelerometers to achieve high-precision tilt angle detection. With its protective structure IP-67 made of a metal case, it delivers stable performance even in harsh environments, supporting the safe execution of dredging operations. 【Usage Scenarios】 - Hull posture control during dredging operations - Maintaining horizontal stability during crane operations - Monitoring rolling and pitching 【Benefits of Implementation】 - Improved safety of operations through high-precision tilt angle detection - Reliability in harsh environments - Enhanced operational efficiency through hull stabilization
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In the tugboat industry, it is important to accurately understand the tilt of the hull during towing operations to maintain safe navigation. In particular, the stability of the hull while being towed is essential for the safety of the crew and the protection of the towed object. Inaccurate tilt detection increases the risk of capsizing and can lead to serious accidents. Our inclinometer CM-961A utilizes MEMS accelerometers to achieve high-precision tilt angle detection. With a protective structure of IP-67 from a metal case, it demonstrates stable performance even in harsh environments, supporting the safe operation of tugboats. 【Usage Scenarios】 - Attitude control of the hull during towing - Maintaining horizontal stability during crane operations - Monitoring rolling and pitching 【Benefits of Implementation】 - Improved safety through high-precision tilt angle detection - Reliability in harsh environments - Enhanced operational efficiency through hull stabilization
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In yacht navigation, accurately understanding the tilt of the hull is essential for safe sailing and comfortable cruising. Especially in yachts that are easily affected by wind and waves, it is important to accurately detect the hull's inclination and perform appropriate steering. Inaccurate tilt detection can compromise the stability of the hull and threaten the safety of the crew. Our inclinometer CM-961A employs MEMS accelerometers to achieve high-precision tilt angle detection. With a protective structure of IP-67 from a metal case, it demonstrates stable performance even in harsh environments, supporting the safe operation of yachts. 【Usage Scenarios】 - Yacht attitude control - Maintaining hull balance while sailing - Monitoring rolling and pitching 【Benefits of Implementation】 - Improved safety through high-precision tilt angle detection - Reliability in harsh environments - Easier steering due to hull stabilization
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