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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.

Linear encoder with 0.1mm display for textile machinery

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

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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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 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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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 working time

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Non-contact rotary encoder for robots

Detecting the joint angles of a robotic arm non-contact!

In the robotics industry, precise positioning and motion control of arms are required. Especially for robotic arms with many movable parts, durable and reliable angle detection is crucial. Conventional contact-type encoders have risks of malfunction due to wear and vibration, but our non-contact rotary encoders solve these issues as they have no mechanical connections. 【Application Scenarios】 * Detection of joint angles in robotic arms * Rotating parts of construction machinery * Tension control for films and paper 【Benefits of Implementation】 * Resistant to vibration and shock, with a long lifespan * Easy installation without couplings * Stabilization of motion through high-precision angle detection

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Rotary Encoder for Textile Machinery MACOME

Detecting the rotation angle of thread feeding non-contact! Rotary encoder

In the yarn feeding process of textile machinery, accurately controlling the tension and speed of the yarn is a crucial factor that affects product quality. Variations in yarn supply can lead to weaving and knitting inconsistencies, potentially resulting in defects in the final product. Our rotary encoders detect rotational angles without contact, enabling precise control of yarn feeding. This contributes to the stable production of high-quality products. 【Application Scenarios】 - Detection of yarn feeding roller rotation - Monitoring of yarn supply amount - Tension control 【Benefits of Implementation】 - Prevention of yarn breakage and sagging - Improvement in product quality - Enhancement of production efficiency

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Magnetic Rotary Encoder for Aerospace Applications

Strong against vibration and shock, contributing to rotational angle detection in harsh environments.

In the aerospace industry, high safety and reliability are required, and accurate operation under harsh conditions is essential. In particular, durable components that are resistant to vibration and shock are crucial. Our magnetic rotary encoders, which have no mechanical connections, are strong against vibration and shock, contributing to the accurate position detection of rotating parts in aerospace applications. 【Usage Scenarios】 * Aircraft control systems * Spacecraft attitude control systems * Rocket engine RPM measurement 【Benefits of Implementation】 * Ensured long-term reliability due to high durability * Reduced wear and improved maintainability due to non-contact design * Enhanced safety through accurate rotation angle detection

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Rotary Encoder for Wind Power Generation MACOME

Magnetic non-contact rotary encoder for wind turbine blade angle detection!

In the wind power generation industry, accurately measuring the angle of the blades is essential for the efficient use of wind energy. Measurement errors in blade angles can lead to decreased power generation efficiency and, in the worst case, damage to the equipment. Our rotary encoders can detect rotational angles non-contactly and measure blade angles with high precision. 【Application Scenarios】 - Angle detection of wind power generation blades - Control systems for wind turbines 【Benefits of Implementation】 - Improved power generation efficiency through accurate measurement of blade angles - Stable operation of equipment - Reduced maintenance costs

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Non-contact rotary encoder for elevators

Non-contact rotary encoders that support the safe operation of elevators.

In the elevator industry, safety is the top priority, and accurate position detection and control are essential. In particular, accurately understanding the speed and position of the elevator is crucial for accident prevention. Traditional contact-type encoders carry risks of wear and failure, which can lead to increased maintenance frequency. Our non-contact rotary encoders achieve high reliability and long lifespan due to the absence of mechanical contact, contributing to the safe operation of elevators. 【Application Scenarios】 - Elevator speed control - Door open/close position detection - Emergency brake operation confirmation 【Benefits of Implementation】 - Reduced maintenance costs due to high reliability - Improved safety through accurate position detection - Decreased replacement frequency due to longer lifespan

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Non-contact rotary encoder for medical devices

Detecting rotation angles without contact! Supporting precise operations of medical devices.

In the medical device industry, precise positioning and control are required. Particularly in surgical robots and precision inspection equipment, accurate detection of rotation angles is essential for safe and efficient operation. Conventional contact-type encoders carry risks of wear and failure, which can lead to maintenance costs. Our non-contact rotary encoders achieve high durability and reliability due to the absence of mechanical connections, contributing to the performance improvement of medical devices. 【Application Scenarios】 - Detection of arm angles in surgical robots - Rotation position control in precision inspection equipment - Angle adjustment in medical imaging diagnostic devices 【Benefits of Implementation】 - Reduction in maintenance costs due to high durability - High reliability due to non-contact operation - Improved operability through precise angle detection

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Non-contact rotary encoder for food processing

Non-contact rotary encoder that contributes to hygiene management in food processing.

In the food processing industry, hygiene management of the manufacturing process is extremely important. In particular, equipment that may come into direct contact with food requires ease of cleaning and a reduction in the risk of foreign matter contamination. Conventional rotary encoders have mechanical contact parts, making them difficult to clean and posing a risk of contamination. Our non-contact rotary encoders have no mechanical connections, making cleaning easy and reducing the risk of foreign matter contamination. This enhances food safety and improves the reliability of the manufacturing process. 【Application Scenarios】 - Food filling machines - Packaging machines - Conveyor systems - Environments requiring cleaning 【Benefits of Implementation】 - Realization of a hygienic environment - Reduction of foreign matter contamination risks - Shortening of cleaning time - Improvement of product quality

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Non-contact Linear Displacement Sensor MP-4731 for Medical Devices

Precise measurement of a 15mm range without contact. For fine adjustment of positioning.

In the medical device industry, accurate positioning and fine displacement measurement are crucial elements that influence diagnostic accuracy and treatment effectiveness. Particularly in situations where precise operations are required while ensuring patient safety, non-contact high-precision measurement is essential. The MP-4731 achieves accurate position measurement within a range of 15mm while minimizing the impact on the equipment through non-contact measurement. 【Application Scenarios】 - Precision inspection devices - Surgical support robots - Biometric measurement devices 【Benefits of Implementation】 - Reduced impact on equipment through non-contact measurement - High-precision positioning and measurement - Increased installation flexibility due to compact and small design

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MP-4731 Non-contact Displacement Sensor for Energy Equipment

Non-contact linear measurement over a range of 15mm. Contributes to improved accuracy in equipment monitoring.

In the energy industry, equipment monitoring is crucial for early detection of abnormalities and maintaining stable operation. Particularly in environments with significant temperature changes and vibrations, accurate location information is required. Traditional contact-type sensors carry risks of wear and failure, but the MP-4731 can measure linearly within a 15mm range without contact, allowing for early detection of equipment abnormalities. The absolute output also facilitates easy initial position detection upon power-up. 【Usage Scenarios】 * Turbine monitoring at power plants * Transformer monitoring at substations * Valve position monitoring in plant equipment 【Benefits of Implementation】 * Early detection of equipment abnormalities, reducing downtime * Longer lifespan and reduced maintenance costs through non-contact measurement * Easier initial position detection upon power-up due to absolute output

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Non-contact linear displacement sensor for automotive suspension

Precision measurement of suspension movement without contact. For fine-tuning positioning.

In the automotive industry's suspension systems, precise stroke measurement of the suspension is essential to balance ride comfort and driving performance. Particularly, high-precision displacement measurement is crucial for accurately capturing the vehicle's movement over uneven surfaces and curves, enabling appropriate damping control. Traditional contact-type sensors posed risks of malfunction due to wear and foreign object adhesion. Our non-contact linear displacement sensor MP-4731 accurately measures a range of 15mm without contact, contributing to vehicle performance improvement by capturing suspension movement in real-time. [Application Scenarios] - Stroke measurement of automotive suspensions - Performance evaluation of shock absorbers - Feedback control for height adjustment systems [Benefits of Implementation] - High reliability through non-contact measurement - Ease of installation due to compact and lightweight design - Accurate position information acquisition through absolute output

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[For Robots] MP-4731 Non-contact Displacement Sensor

Accurate positioning of the robot. Measuring 15mm non-contact.

In the robotics industry, accurate position detection is required. Particularly, millimeter-level precision is important for the movement of arms and the arrangement of parts. Contact-type sensors carry the risk of wear and damage, but our MP-4731 measures a range of 15mm non-contact, supporting the precise operation of robots. 【Application Scenarios】 - Position detection of robotic arms - Confirmation of part placement - Fine-tuning of positioning 【Benefits of Implementation】 - Long sensor lifespan due to non-contact design - Easy installation with a small and compact design - Absolute output allows for position detection upon power-up

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Non-contact Linear Displacement Sensor MP-4731 for Food Manufacturing

Solving the challenges of food filling engineering! Measuring 15mm non-contact and fine-tuning positioning.

In the food manufacturing industry, precise management of filling quantities is required to ensure product quality and safety. Particularly in the process of filling liquid or powdered foods into containers, even slight errors in filling amounts can lead to degradation of product quality or increased costs. The non-contact linear displacement sensor MP-4731 accurately measures the position of the filling machine's nozzle, allowing for fine adjustments of the filling quantity. 【Application Scenarios】 - Detection of filling machine nozzle position - Monitoring of liquid level - Position control of packaging machinery - Position control of slicers 【Benefits of Implementation】 - Improved accuracy of filling quantities - Stabilization of product quality - Reduction of material waste

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