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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 Macome 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 Macome 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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"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 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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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 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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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 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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The inclinometer detects using a MEMS accelerometer (MEMS: Micro-Electro-Mechanical Systems). Additionally, due to the use of a metal case, it is designed to have shock resistance and vibration resistance. It is compact (compared to our products). The output is available in two types: voltage output type 1-5V and current output type 4-20mA. As an additional feature, a switch function is provided, allowing for transistor output at any desired incline position (specified at the time of order). It has a function to correct installation errors, enabling correction to 0° within a range of ±1°. There is a YouTube video available. Within the CM-900 series, there is also the "CM-936," which outputs a rotation angle of 360° linearly. It outputs the rotation angle of 0-360° as voltage DC 1-5V or current 4-20mA (specified at the time of order). For more details, please search for "CM-936" on the Ipros site. *For more information, please contact us or download the PDF materials.
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In the construction industry, horizontal management requires precise angle measurements. Even slight inclinations can affect the overall quality during foundation work for buildings or the installation of heavy machinery. The CM-961A utilizes a MEMS accelerometer and is protected by a metal case, ensuring high reliability even in harsh environments. It contributes to improving the accuracy of horizontal management. 【Usage Scenarios】 - Foundation work for buildings - Installation of heavy machinery - Civil engineering work - Bridge construction 【Benefits of Implementation】 - Improved quality through accurate angle measurements - Enhanced work efficiency - Increased safety - Cost reduction
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In measuring the behavior of bridges, it is important to accurately grasp even slight tilts and displacements of the structure. To detect deformations of bridges caused by earthquakes, wind, and aging deterioration early and ensure safety, a high-precision inclinometer is essential. The CM-961A employs a MEMS accelerometer and can detect tilt angles with high precision in a range from ±5° to ±45°. With a metal case, it excels in shock resistance and vibration resistance, making it suitable for use in harsh environments. 【Usage Scenarios】 - Monitoring bridge tilt - Measuring behavior during earthquakes - Measuring displacements due to wind loads 【Benefits of Implementation】 - Strengthening safety management of bridges - Accident prevention through early abnormal detection - Reducing maintenance costs
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In the solar power generation industry, tracking systems that adjust the angle of solar panels to align with the movement of the sun are crucial for maximizing the power generation efficiency of solar panels. If the angle of the panels is misaligned, the power output decreases, impacting revenue. The CM-961A is an inclination sensor that utilizes a MEMS accelerometer, enabling accurate angle detection of the panels. 【Usage Scenarios】 - Angle management of solar panels - Angle feedback for tracking systems - Maximizing solar radiation exposure 【Benefits of Implementation】 - Improved power generation efficiency - Enhanced maintainability - Long-term stable operation
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In the civil engineering industry, accurately capturing slight inclinations and fluctuations in the ground is essential for ensuring the safety of structures. Ground subsidence and slope instability can lead to serious accidents. The CM-961A utilizes a MEMS accelerometer to achieve high-precision tilt angle detection within a range of ±5° to ±45°. Its protective structure with an IP67 metal case allows for stable measurements even in harsh outdoor environments. It also features a function to correct installation errors, supporting accurate data acquisition. 【Usage Scenarios】 * Ground movement monitoring at construction sites * Tilt monitoring of civil engineering structures * Stability assessment of slopes and retaining walls 【Benefits of Implementation】 * Early detection of ground anomalies to prevent accidents * Implementation of safety measures based on accurate data * Assurance of long-term stability of structures
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In the shipping industry, it is important to accurately understand the tilt of the hull caused by rough seas and uneven cargo distribution to maintain safe navigation. In particular, the stability of the hull is essential for the safety of the crew 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 from a metal case, it demonstrates stable performance even in harsh environments, supporting the safe operation of the hull. 【Usage Scenarios】 - Ship attitude control - Maintaining horizontal position 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 the tanker industry, it is crucial to accurately understand the tilt of the hull caused by rough weather or uneven cargo loading to maintain safe navigation. The stability of the hull is essential for the safety of the crew and the protection of the 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 from a metal case, it delivers stable performance even in harsh environments, supporting the safe operation of tankers. 【Usage Scenarios】 - Tanker attitude control - Monitoring of 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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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 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 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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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 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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The tilt angle detector is detected with high precision by our unique magnetic sensor. Originally developed for construction machinery (impact pile drivers), it is robust. The pendulum is supported by bearings, providing a design that is resistant to shock and vibration. By controlling the position of the pendulum with a servo circuit, stable output can be achieved. Vertical output (detection) Anyway, it's durable! Please consult us about waterproof measures.
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"Sample available for loan" The MRP-510 is a magnetic non-contact rotary potentiometer that provides an analog voltage output proportional to the rotation angle of the magnetizing body, using a magnet with a permanent magnet installed inside a cylinder and a highly sensitive magnetic sensor placed between the magnetic field of that magnet.
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Our unique technology enables high-sensitivity transmission, allowing the distance between the transmitter and receiver to be extended up to 170mm. Additionally, due to the electromagnetic induction method, it is not affected by non-metallic obstacles between the transmitter and receiver. There is also no issue with dirt on the equipment. 【Features】 - The ST-3726E is an electromagnetic induction signal transmission device that uses the transmitter STT-3726E and receiver STR-3726E as a pair. - It can transmit up to 4 channels of switching (ON/OFF) signals or contact signals. - It has 4 outputs with NPN transistor open collector output. Operation with separate power supplies for the transmitter and receiver is possible.
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