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  3. MACOME CORPORATION NAGANO TOKYO OSAKA NAGOYA HIROSHIMA
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MACOME CORPORATION NAGANO TOKYO OSAKA NAGOYA HIROSHIMA

EstablishmentOctober 28, 1971
capital5400Ten thousand
number of employees95
addressNagano/Minowa-cho, Kamiina-gun/10800-11 Nakaminowamachi
phone0265-79-8154
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last updated:Jan 29, 2026
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MACOME CORPORATION Product Lineup

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Linear encoder "Linear scale system" Linear encoder "Linear scale system"
Potentiometer Potentiometer
Instruction manual Instruction manual
Non-destructive testing Non-destructive testing
Magnetic proximity switch Magnetic proximity switch
Inclinometer - Tilt Angle Detector Inclinometer - Tilt Angle Detector
Guide Sensor for Automated Guided Vehicles (AGV) Guide Sensor for Automated Guided Vehicles (AGV)
Small magnetic switch/magnetic sensor Small magnetic switch/magnetic sensor
Sleeve sensor Sleeve sensor
Spot Mark Reader for Automated Guided Vehicles (AGV) Spot Mark Reader for Automated Guided Vehicles (AGV)
Positioning sensor Positioning sensor
Magnetic rotary potentiometer Magnetic rotary potentiometer
Linear

Linear encoder "Linear scale system"

The linear encoder from Makome Research Institute is a measurement system that reads a scale marked with repeating N-pole and S-pole stripes using a head, detects displacement, and outputs measurement values electrically. Due to magnetic detection, it is possible to perform measurements without being affected by dust and debris. Additionally, because it uses Makome Research Institute's unique high-sensitivity magnetic detection elements, it can achieve complete non-contact between the scale and the head, preventing wear even during repeated operations, which significantly reduces maintenance. It is sometimes referred to as the Makome scale by long-time users.

We will borrow your space to hold an exhibition!

We will respond to customer requests such as 'not all employees can attend the exhibition' and 'we want to share the product internally.' You can trust us anywhere in the country!

Our company is a specialized manufacturer of magnetic application sensors. 【Do you have any of these thoughts?】 - We can't send all our employees to the exhibition. - We went to the exhibition, but we couldn't take our time to look around. - We want to share product information with all our employees because it seems useful! In response to such voices, we will hold a "mobile exhibition." 【What is a mobile exhibition?】 We will hold a mini-exhibition in your company's conference room, cafeteria, or other space. A space for 1 or 2 long tables is sufficient. The duration can be discussed, ranging from half a day to several days. (It can also be held during lunch breaks or after working hours.) As a company that values sincere interactions with our customers, we have created an opportunity for you to talk with us at your leisure. If you have any concerns regarding sensing, please feel free to consult us. *For more details, please download the catalog or contact us. Products we handle: - Magnetic linear encoders (magnetic scales) - Incremental and absolute - Guide sensors for automated guided vehicles (AGVs) - Magnetic tape (guide tape) for automated guided vehicles - Various magnetic sensors, magnetic induction sensors - Magnetic proximity switches, inclinometers

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Mako Major (Linear Encoder) Magnetic Type

It is a compact and lightweight linear encoder. Being magnetic, it is not affected by dust and other contaminants. It has a large detection distance and is easy to install. IoT.

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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Absolute (absolute value) completely non-contact magnetic linear encoder

[Sample loan available!] Standard set of absolute type with a compact head of 65mm width, resolution 0.01mm.

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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Linear encoder incremental magnetic scale: Makome Research Institute

Linear encoder magnetic incremental scale system maximum clearance 26mm completely non-contact! Effective length infinite.

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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Linear encoder (linear scale) SI-140 magnetic scale

Linear encoder, suitable for replacement from lightweight magnetic incremental scales such as optical types (VP-90 Easy Scale, etc.).

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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Linear encoder package with 0.1mm display - video available

Ready to use right after purchase! Comes with a display, magnetic encoder "SI-140 Package" length measurement system, also for Kaizen proposals.

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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[Case Study] Eliminating Losses During Line Changeovers

Various losses occur during the changeover on a line that handles multiple varieties! Here is a case study on how we improved monetary losses in about 13 operational days!

We have adopted the "Kanban production system" and produce 15 varieties of products on one line, but on busy days, up to 8 "changeovers" are required. After recording the changeovers on video and analyzing the situation, it was found that the "overall equipment efficiency" and "net operating rate" were declining. Therefore, we held discussions with the maintenance design team and automated the changeover process. We installed Makome Research Institute's linear encoders "SIE-140 (incremental)" and "SAE-200 (absolute)" on the motor-driven thickness adjustment machine. As a result of the improvements, the operating time rate increased, and changeover losses were transformed into production that generates revenue. The initial investment was 4,852,600 yen, but the cost-effectiveness improved the monetary loss in about 13 operating days. *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Eliminating Variability in Work Cutting Machines

The repeat accuracy of the work cutting machine is not as expected! Here is an example of the introduction of a linear encoder system!

The accuracy of the aluminum work cutting machine was unstable, leading to unnecessary work due to the need for accuracy checks every time. We are considering the introduction of a photoelectric system, but it was mentioned that "there is a possibility of false detection due to aluminum dust." We received requests such as "we want a scale that is not affected by aluminum dust" and "we don't mind an accuracy of about 0.1mm, but we want to keep the introduction costs low." Therefore, we installed the "SI-140PAC (Incremental)" made by Makome Research Institute on the aluminum cutting machine. As a result of the improvements, we reduced unnecessary inspection time and achieved zero in inspection time, inspection downtime, and inspection line downtime. *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Measuring the steering wheel rotation angle of a car non-contactly.

Frequent "skipping" errors with optical sensors! How can we prevent interference from factors like stray reflections and dust?

At an automotive safety inspection company, the steering wheel rotation angle of vehicles was measured using optical sensors. However, due to issues such as light scattering and dust accumulation, "missed reading" errors occurred, leading to an increase in the number of tests and a significant decrease in work efficiency. There were requests for "sensors that are not affected by external disturbances" and "keeping the introduction costs as low as possible." The linear encoder system "SI-140 series" that we recommend consists of the magnetic detection head "SIE-140" and the magnetic scale "SIS-140." Installation is simply a matter of wrapping the "SI-140" around the steering axis of the vehicle. The number of measurement tests, which previously took 5 times, has been reduced to just 2, less than half. This has compressed the testing work and time, decreased "missed reading" errors, and improved testing accuracy. *For more details, please refer to the PDF document or feel free to contact us.

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Non-contact small magnetic linear displacement sensor MP-4731

Non-contact linear measurement over a range of 15mm. Absolute output voltage 1-5V. Also suitable for fine adjustments in positioning.

15mm stroke, non-contact detection from a position 8mm away Not affected by non-magnetic obstacles Achieves waterproof and dustproof performance with protection rating "IP67" Compact and space-saving design, providing high flexibility during installation and mounting Used magnets: MG-620, MG-620-1 (shape can be changed upon special order) There is also the MP-620 series with an effective length of 100mm or more Linear potentiometer (potentiometer) Displacement measurement and measurement

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MakoMe Laboratory Product CAD Data List Released All at Once!

We will publish the latest CAD data all together. 2D and 3D.

Makome Research Institute is releasing publicly available CAD data. dxf (DXF), igs (IGS), stp (STP) 3D data will be added and released as needed. If it is not listed, we will respond on a case-by-case basis, so please let us know. We will create and provide it as quickly as possible. (Please note that some products may not be available for specific users.) While the CAD data is created with the utmost care, we make no guarantees regarding its content. In the event of any omissions or errors in the CAD data information, Makome Research Institute cannot provide any guarantees. *For more details, please contact us.

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Non-contact linear encoder for long-distance measurement support ∞: Makome Research Institute

Length measurement can be performed even at distances and environments where laser measurement cannot reach. Maintenance-free with a magnetic system. The measurement distance can be extended infinitely by adding more.

Automated warehouses, elevators in high-rise buildings, conveyors, etc. are suitable for long-distance measurement where laser measurement and wire-type or contact-type encoders cannot be used. Additionally, scales can be attached to curved surfaces for measurement (there are limitations on the radius that can be measured). Non-contact displacement sensors.

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Rotary encoder, magnetic type, completely isolated, non-contact.

Magnetic type, complete separation, non-contact (up to 10 mm) for detecting rotation angle! Rotary encoder.

This product was born from our company's linear encoder detection technology. It detects the magnetic field of the N and S poles and outputs the rotational movement as pulses. Using a two-pole magnet, it achieves a detection distance (the gap between the sensor and the magnetic body) of 8mm ± 2mm. It allows for eccentricity within Φ1mm (±0.5mm). Due to the lack of mechanical connections, it is resistant to vibration and shock, making it suitable for use in rotating parts of robotic arms and construction machinery without coupling. Additionally, due to the absence of resistance, it can also be applied to tension control for films and paper. Please consult us regarding the shape of the magnetic body and the number of pulses per rotation. Sister product: Rotary potentiometer We also have the MRP-5026 with a voltage output of 1-5V and a current output of 4-20mA. *Linear sensor, linear rotary sensor We have evaluation samples available, so please feel free to contact us.

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Rotary potentiometer, magnetic type, complete separation, non-contact.

Magnetic type, complete separation, non-contact (up to 10 mm) for detecting rotation angle! Rotary potentiometer (rotational potentiometer)

This product was born from our company's linear encoder detection technology. It detects the magnetic field of the N and S poles and outputs the rotational displacement in analog form. By using a two-pole magnet, a detection distance (the gap between the sensor and the magnetic body) of 8mm ± 2mm is achieved. Eccentricity is allowed up to Φ1mm (±0.5mm). Due to the lack of mechanical connections, it is resistant to vibration and shock, making it suitable for use in rotating parts of robotic arms and construction machinery without coupling. Additionally, due to the absence of resistance, it can also be applied to tension control for films and paper. Please consult us regarding changes to the shape of the magnetic body. Sister product: Rotary encoder We also have the MRE-5049 with transistor AB phase output. *Linear sensor, linear rotary sensor We have evaluation samples available, so please feel free to contact us.

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Magnetic rotary potentiometer for automobiles

Non-contact angle detection! Ideal for automotive accelerators.

In the automotive industry, accurate angle detection of the accelerator pedal is essential for safe driving and improving fuel efficiency. Conventional contact-type sensors carry the risk of failure due to wear and vibration, making durability a challenge. Our magnetic rotary potentiometer detects angles without contact, achieving high reliability and long lifespan. 【Application Scenarios】 - Accelerator pedal angle detection - Accelerator opening detection for hybrid and electric vehicles - Accelerator operation for construction machinery and special vehicles 【Benefits of Implementation】 - Reduced risk of failure due to wear because of non-contact operation - High durability and reliability - Improved driving performance through accurate angle detection

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Magnetic Rotary Potentiometer for Industrial Robots

Detecting rotation angles without contact! Contributing to position control in industrial robots.

In the industrial robot industry, precise position control is required. The accurate operation of robotic arms is a crucial factor that affects production efficiency and quality. Conventional contact-type sensors carry the risk of wear and failure, which can lead to maintenance costs. Our magnetic rotary potentiometer detects rotational angles without contact, providing high durability and reliability. This contributes to the stable operation and longevity of industrial robots. 【Application Scenarios】 - Joints of robotic arms - Processes requiring positioning accuracy - Use in harsh environments 【Benefits of Implementation】 - Non-contact design reduces the risk of failure due to wear - High durability decreases maintenance frequency - Effective angle of ±180° accommodates a wide range of applications - IP67 protection structure ensures dust and water resistance

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Magnetic Rotary Potentiometer for Solar Power Generation

Accurately detect the angle of solar panels! Improve reliability with non-contact.

In the solar power generation industry, it is essential to accurately track the angle of solar panels in accordance with the movement of the sun to maximize their power generation efficiency. Particularly in outdoor environments, issues such as temperature changes, vibrations, and dust can lead to failures or performance degradation of angle detection sensors. Our magnetic rotary potentiometer detects rotational angles without contact, and due to the absence of mechanical connections, it achieves high reliability even in harsh environments. 【Application Scenarios】 - Solar panel tracking systems - Devices requiring angle adjustment 【Benefits of Implementation】 - Improved power generation efficiency through high-precision angle detection - Increased lifespan and maintenance ease due to the non-contact design - Stable operation in harsh environments

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Magnetic Rotary Potentiometer for Aerospace Applications

Detects rotation angles without contact! Ideal for aerospace applications.

In the aerospace industry, accurate angle detection of the control stick is essential for safe flight and precise control. It must withstand harsh environments and require high reliability and durability. Traditional contact-type potentiometers carry the risk of failure due to wear and poor contact, posing challenges for aerospace applications. Our magnetic rotary potentiometer detects rotational angles without contact, achieving high reliability and long lifespan. 【Application Scenarios】 - Aircraft control sticks - Helicopter control systems - Spacecraft control systems 【Benefits of Implementation】 - Reduced risk of failure due to wear since it is non-contact - High durability and reliability - Improved safety through precise angle detection - Reduced maintenance costs due to longer lifespan Our Strengths: Utilizing our original technology of saturable coils, we provide a fundamentally simple magnetic detection element technology that remains highly accurate and stable even under adverse conditions. All products are developed and manufactured 100% in Japan, with over 80% of our product lineup being custom-made based on individual customer requests. We also offer many custom options such as waterproof, explosion-proof, heat-resistant, water-resistant, and radiation-resistant specifications. If you have any issues related to sensing or measurement, please feel free to consult us.

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Magnetic Rotary Potentiometer for Wind Power Generation

Non-contact detection of wind turbine blade angle!

In the wind power generation industry, it is essential to accurately measure the angle of the blades to efficiently utilize wind energy. Measurement errors in blade angles can lead to decreased power generation efficiency and, in the worst case, damage to the equipment. Our magnetic rotary potentiometer detects the rotation angle of the blades non-contactly, contributing to the performance improvement of wind power generation systems. 【Application Scenarios】 - Angle detection of wind power generation blades - Angle control of wind power generation equipment 【Benefits of Implementation】 - High reliability through non-contact measurement - Stable operation in harsh environments - Optimization of power generation efficiency

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Non-contact linear encoder for theme parks

For accurate positioning measurement of attractions. Long-distance and curved surface compatible non-contact encoders.

In theme park attractions, accurate position measurement is essential for safe operation and maximizing the effects of the performance. Particularly in large-scale attractions or vehicles with complex movements, there are cases where laser distance measurement or wire-based and contact-type encoders cannot be used. Our non-contact linear encoders support long-distance measurement, are maintenance-free, and enhance the design flexibility of attractions. 【Application Scenes】 - Position measurement for large coasters - Angle detection for rotating attractions - Position control in special effects performances 【Benefits of Implementation】 - Improved safety through accurate position measurement - Reduced maintenance costs - Enhanced design flexibility of attractions

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Linear encoder with 0.1mm display for research and development.

Digitizing experimental measurements! Supporting accurate measurements.

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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Linear encoder with 0.1mm display for the packaging industry

Contributing to the efficiency of packaging engineering! Achieving accurate sealing with digital displays.

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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Linear encoder with 0.1mm display for 3D printers

Improve the layering accuracy of 3D printers! Easy measurement with digital display.

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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Gate opening management using a non-contact linear encoder.

Accurately measure the opening degree of the sluice gate non-contactly. Maintenance-free and supports long-distance measurement.

In managing the opening degree of sluice gates, accurate position information is essential for safe operation and efficient management. Traditional contact-type encoders and wire-based measurement systems can encounter issues such as corrosion, wear, and installation constraints in water environments and long-distance measurements. These problems can lead to decreased measurement accuracy and increased risk of failure, potentially disrupting the operation of sluice gates. Our non-contact linear encoders have been developed to address these challenges. 【Application Scenarios】 * Measurement of sluice gate opening degree * Gate control for dams, canals, and irrigation facilities * Valve position monitoring in water treatment facilities 【Benefits of Implementation】 * High reliability through non-contact measurement * Reduced maintenance frequency * Capability for long-distance measurement * Provision of accurate opening degree information

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Non-contact linear encoder for tunnels

For long-distance measurement in tunnels. Magnetic type, maintenance-free, infinite measurement.

In tunnel construction, accurate distance measurement is essential for displacement measurement. Tunnels may experience slight displacements due to ground movement and external factors. Accurately understanding these displacements is crucial for ensuring the safety of structures. Even in environments where laser distance measurement or wire encoders cannot be used, our non-contact linear encoders support long-distance measurement and contribute to tunnel safety management. 【Application Scenarios】 - Displacement measurement during tunnel excavation and construction - Monitoring structural displacement in tunnel maintenance and management - Investigating the impact of ground subsidence and crustal movement on tunnels 【Benefits of Implementation】 - Reduced maintenance costs through non-contact measurement - Extensive displacement measurement through long-distance measurement - Improved safety due to high accuracy and reliability

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Non-contact linear encoder for steelmaking

Achieves high-precision thickness measurement over long distances. Maintenance-free magnetic type.

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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Linear encoder with 0.1mm display for measuring instruments

Digitizing measurement tasks! Improving efficiency with a linear encoder with a display.

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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Non-contact linear encoder for wind power generation

For measuring the angle of wind power generation blades. Achieves stable length measurement even in long distances and harsh environments.

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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Linear encoder with 0.1mm display for food processing.

Digitalizing the measurement of food filling engineering! Towards improved work efficiency and quality.

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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Linear encoder with 0.1mm display for medical devices

Supports precise operation of medical devices. Achieves accurate position measurement without contact.

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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Non-contact linear encoder for wind power generation

For measuring the angle of wind turbine blades. Long-distance measurement, magnetic type and maintenance-free.

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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Non-contact linear encoder for water gates

Non-contact measurement of the sluice gate opening degree with long distance and high precision.

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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Non-contact linear encoder for railways

For position detection of railway vehicles. Magnetic encoders that can withstand long distances and harsh environments.

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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Non-contact linear encoder for steelmaking

Achieving high-precision thickness measurement even in environments where laser length measurement is difficult.

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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Non-contact linear encoder for logistics

Long-distance measurement is also supported by a magnetic system. Maintenance-free with an infinite measurement range.

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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Non-contact linear encoder for bridges

Non-contact measurement of bridge expansion and contraction over long distances with high precision.

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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Non-contact linear encoder for railways

A non-contact linear encoder capable of long-distance measurement. Maintenance-free with an infinite measuring range.

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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Non-contact linear encoder for robots

Long-distance measurement and installation on curved surfaces are also possible. Maintenance-free magnetic encoders.

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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Non-contact linear encoder for logistics

For distance measurement in long-distance transportation. Magnetic type, maintenance-free, infinite length measurement.

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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Linear encoder with 0.1mm display for 3D printers

Improving the layer accuracy of 3D printers! Achieving precise position measurement without contact.

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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Linear encoder with 0.1mm display for the printing industry

Digitize the alignment of printed materials! Improve work efficiency and accuracy.

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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Linear encoder with 0.1mm display for textile machinery

Digitalizing thread feeding measurement! Contributing to improved productivity and stable quality.

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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Linear encoder with 0.1mm display for food processing.

Contributing to the improvement of precision in food filling engineering! Non-contact, hygienic, and digital display.

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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Linear encoder with 0.1mm display for the packaging industry

Contributing to the efficiency of packaging engineering! Achieving accurate sealing with digital displays.

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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Linear encoder with 0.1mm display for medical devices

Supports precise operation of medical devices. Achieves accurate position measurement without contact.

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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