MEMS Accelerometer
A total of10pages
  • TD9
    The TD9-DI is a digital three-axis X, Y, and Z tilt angle sensor (referred to as the "tilt angle sensor") developed domestically by Micro-Magic Inc for high-precision tilt angle measurement modules. It integrates industrial standard RTU Modbus and 0x68 hexadecimal protocols; The accompanying computer analysis software can display and record measurement data in real-time for analysis. Domestic components account for over 85%, with internal core components including MCU microcontrollers, high-precision 16 bit A/D modules, temperature sensors, signal processors, power circuits, output circuits, etc. To manufacture domestically produced equipment and overcome barriers to independent research and development technology.
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  • TD7
    The TD7-DI is a new generation high-performance tilt sensor launched by Micro-Magic Inc, which can maintain high precision in complex movements with a small size. It has a dynamic measurement accuracy of 0.3°, a stable accuracy of 0.05°, and a temperature drift of 0.01°/℃. The output interfaces RS232, RS485, RS422, Modbus, TTL, and CAN buses are optional, making it easy to integrate into user control systems.
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  • TD6
    The TD6-DI is a new generation MEMS dynamic tilt sensor that can measure tilt data of moving carriers or strong vibration states. Dynamic measurement accuracy of 0.5°, static accuracy of 0.06°, small size, low power consumption, high consistency and stability, output RS232, RS485, RS422, Modbus, TTL, CAN optional; Built in MCU control system, vertical gyroscope and accelerometer, integrated attitude solver, using optimal digital filtering algorithm to reduce noise, combined with N-order Kalman filtering algorithm, eliminating error sources and improving measurement accuracy through various compensations such as nonlinear compensation, orthogonal compensation, temperature drift, etc.
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  • TD5
    The TD5-DI is a digital three-axis X, Y, Z direction tilt angle sensor (referred to as "tilt angle sensor") developed domestically by Micro-Magic Inc for component tilt angle measurement module. It integrates industrial standard RTU Modbus and 0x68 hexadecimal protocols; Domestic components account for over 85%, with internal core components including MCU microcontrollers, AD modules, signal processors, power circuits, output circuits, etc. To manufacture domestically produced equipment and overcome barriers to independent research and development technology.
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  • TDI-A
    The TDI-A is an inclinometer developed by Micro-Magic Inc that integrates angle measurement, control, and display. It has a built-in high-precision 16-bit A/D converter. Through the n-order filtering algorithm, it can measure the inclination and pitch angle of the sensor output relative to the horizontal plane. The product has built-in ADI's high-precision digital sensor, which can correct the temperature drift of the sensor according to the temperature change monitored by the built-in temperature sensor, ensuring the repeatability of the product in low-temperature and high-temperature environments. Output the corresponding frequency 100Hz. The products are truly industrial-grade products with reliable and stable performance and good scalability, and are suitable for various industrial control environments. The product is simple to operate and provides a zero setting function. The relative zero setting function can be completed with a single click, which facilitates practical application and industrial reliability.
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  • T7000-N
    The T7000-N is a domestically developed dual axis tilt angle measuring instrument (referred to as the "inclinometer") and temperature measuring module for high-precision tilt angle measurement of components by Micro-Magic Inc. Range ± 60°, accuracy 0.002°, resolution 0.0006°, output RS232, TTL, RS485, RS422 optional, integrated with industrial standard RTU Modbus and 0x68 hexadecimal protocols; The accompanying computer analysis software can display and record measurement data in real-time for analysis. Domestic components account for over 85%, with internal core components including MCU microcontrollers, high-precision 24 bit A/D modules, temperature sensors, signal processors, power circuits, output circuits, etc. To manufacture domestically produced equipment and overcome barriers to independent research and development technology.
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  • T7000-M
    The T7000-M Modbus protocol is a wireless tilt sensor independently developed by Micro-Magic Inc, which features ultra-low power consumption, small size, and high performance. It is designed for Industry applications where users have no power supply conditions or real-time dynamic measurement of object posture angles. Powered by lithium batteries and based on IoT technology Bluetooth, Zigbee (optional) wireless transmission technology. All internal circuits are optimized with industrial-grade MCUs, triple-protection PCB boards, imported cables, wide-temperature metal casings, and other measures to enhance the product's industrial-grade performance, ensuring long-term stability, minimal zero drift, and automatic entry into low-power sleep mode, thereby reducing dependency on usage environments.
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  • T7-D
    T7-D-DI is a newly upgraded next-generation digital small volume MEMS tilt sensor launched by Micro-Magic Inc. It has a built-in dual channel earth gravity tilt unit and measures static gravity acceleration and dynamic angular velocity through a combination of accelerometers and dynamic gyroscopes, converting them into tilt angle changes. Thus, the tilt and pitch angles of the sensor output relative to the horizontal plane can be measured. Output modes RS232, RS485, RS422, or TTL level interface standards are optional. Built in MCU control system enables secondary correction of sensor output linearity, compensating for the accuracy decline caused by insufficient correction in analog models. This product adopts non-contact measurement of raw materials and can output the current posture inclination angle in real time. It is easy to use and does not require retrieving the installation of two surfaces with relative changes. It is an ideal choice for industrial automation control and platform posture measurement. It has strong resistance to external electromagnetic interference and can adapt to long-term work in harsh industrial environments.
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  • U2650
    The U2650 MEMS Inertial Measurement Module is a highly reliable and cost-effective 9-axis MEMS inertial measurement module, widely applicable to fields such as humanoid robots, underwater robots, and AGVs. The U2650 series of inertial measurement modules integrates high-performance MEMS gyroscopes, MEMS accelerometers, and magnetic sensors within a single structure, and incorporates attitude algorithms to provide real-time output of angular velocity, acceleration, and attitude information of the product.
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  • U2600
    The U2600 series MEMS inertial measurement module is a highly reliable and cost-effective 9-axis MEMS inertial measurement module, which can be widely used in navigation, control, and measurement fields represented by robots, vehicles, ships, and drones. The U2600 series inertial measurement module integrates high-performance MEMS gyroscopes, MEMS accelerometers, and magnetic sensors within an independent structure, and incorporates attitude algorithms to provide real-time output of angular velocity, acceleration, and attitude information of the product.
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  • U2500
    The U2500 high-dynamic MEMS attitude and heading reference unit is a highly reliable and cost-effective six-axis MEMS inertial attitude and heading reference unit, widely applicable to navigation, control, and measurement fields represented by robotics. The U2500 series attitude and heading reference units integrate high-performance MEMS gyroscopes and MEMS accelerometers within an independent structure. The devices undergo compensation for full temperature parameters, zero-point, scale factor, non-orthogonal error, and acceleration-related terms, ensuring high measurement accuracy over an extended period. The three-axis MEMS gyroscopes of the attitude and heading reference unit sense the angular motion of the carrier, while the three-axis MEMS accelerometers sense the linear acceleration of the carrier, outputting the carrier's attitude information through navigation solution.
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  • U2300
      The U2300 vehicle-grade MEMS IMU is a universal and miniaturized IMU BOX inertial component, incorporating information from three-axis gyroscopes and three-axis accelerometers. By performing temperature compensation on the zero bias and scale of each axis, as well as compensating for the cross-coupling between any two axes, its measurement accuracy is improved.    
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