MEMS Accelerometer
A total of30pages
  • T3G300NT-3
    The three-axis non-magnetic turntable, made of non-magnetic materials, is a specialized measuring device designed and produced to meet the calibration needs of attitude sensors during research and development, use, and maintenance. It can be used to calibrate the angular parameters of attitude sensors. The device primarily consists of a turntable body, a non-magnetic digital encoder, a connecting cable, and integrated display software. The three-axis system of the turntable body employs a worm gear and worm structure for axis rotation. The preliminary indication of the three-axis angles is read using a dial and vernier, while precise angular position information is displayed digitally. The integrated display software can display the three-axis angle values in real time and plot the three-axis attitude change curve in real time. The three-axis data can be saved separately in txt files
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  • T2V150TM-2
    The dual axis tracking turntable is composed of a bearing frame, an inner diameter pitching shaft system, an outer ring azimuth shaft system, a platform base and a measurement and control system circuit. The measurement and control circuit is installed in the base of the platform, with external DC power supply and external serial interface. Connect inertial navigation, satellite navigation, image aiming and other equipment, send control commands through the serial port, control the rotation of pitch axis and azimuth axis, and track and lock flying moving targets such as UAVs.
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  • T1G200V
    The single axis angular vibration turntable consists of two main parts: a mechanical platform and a measurement and control system. It adopts a vertical structure and a precision mechanical shaft system, and has position and vibration functions. It is used for vibration testing and calibration of inertial systems.
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  • T1G800CF
    Precision centrifuges can be applied to dynamic and static research tests, production commissioning, maintenance and calibration of accelerometers, fiber optic gyroscopes, MEMS gyroscopes and IMUs, providing high acceleration excitation for inertial navigation platforms. The precision of accelerometers and gyroscopes exerts a significant impact on the accuracy of inertial navigation platforms. The centrifuges developed by our team generate an acceleration field inside the instrument cabin through high-speed rotation of the main shaft, so as to simulate the acceleration environment during the operation of inertial devices. They feature stable performance, reliable operation, simple operation and low procurement cost.
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  • U16495-C
    The U16495-C is equipped with built - in three - axis gyroscopes and three - axis accelerometers, which are used to measure the three - axis angular rates and three - axis accelerations of the carrier. The data from the gyroscopes and accelerometers, which have undergone error compensation (including temperature compensation, installation misalignment angle compensation, nonlinear compensation, etc.), are output through a serial port according to the agreed communication protocol. They can be used for precise navigation, control, and dynamic measurement of the carrier. This product uses high - precision MEMS inertial devices, featuring small size, strong overload resistance, high reliability, and high hardness, and it is capable of accurately measuring the angular rate and acceleration information of a moving carrier even in harsh environments.
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  • NF1400
    NF1400 north finder is mainly used to determine true north orientation and horizontal attitude, and has the function of short-term dynamic orientation and attitude maintenance. It is mainly composed of high-precision MEMS gyroscope and accelerometer, micro servo motor, solution processing unit, etc. The true north is determined by multiple positioning method. It has the characteristics of high precision, small size and low cost, and is suitable for mining, field survey and other applications. The main characteristics are as follows:  Small size, easy to carry;  The multi position north finding algorithm is adopted, and the north finding accuracy is up to 0.2 °, without binding coordinate values;  The north seeking time is better than 3 minutes;  The horizontal attitude accuracy is up to 0.06 °;  The working temperature is -40 ℃~60 ℃;  The size is only 58mm × 44mm × 58mm
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  • M-XDR-D2
    M-XDR series is a Z-axis MEMS angular rate sensor (gyroscope) with a maximum range of up to ±2000°/s, and its digital output interface complies with the SPI slave protocol. The angular rate data is in 24-bit two's complement format. M-XDR series is suitable for high-performance industrial applications. It uses an advanced differential MEMS design, which can eliminate the effects of linear acceleration and can operate in harsh environments with extreme shock and vibration. The specially designed package can be soldered through the bottom or the front to simplify the system's structural design. When mounted on the bottom, the sensitive axis is perpendicular to the main circuit board. When mounted on the front, the sensitive axis is parallel to the main circuit board.
    $604.00 $604.00
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  • MHZ-102
    The MHZ-XXXX silicon-based MEMS gyroscope adopts a compact 48-pin ceramic package and advanced MEMS sensing technology. This ultra high precision single-axis gyroscope features high accuracy, excellent stability, low noise performance, wide temperature adaptability, and reliable digital output, providing precise angular velocity measurement for advanced inertial applications.
    $2687.00 $2687.00
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  • MGZ-XXXX
    The MGZ-XXXX silicon-based MEMS gyroscope adopts a compact 48-pin ceramic package and advanced MEMS sensing technology. This high precision single-axis gyroscope features high accuracy, excellent stability, low noise performance, wide temperature adaptability, and reliable digital output, providing accurate angular velocity measurement for demanding inertial applications.
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  • XDA-205
    The XDA-205 silicon-based MEMS accelerometer adopts a compact CLCC-14 ceramic package and advanced MEMS sensing technology. This industrial grade dual-axis accelerometer features high stability, low noise, low temperature drift, excellent long-term stability, and reliable digital output performance for demanding industrial applications.
    $33.00 $33.00
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  • AD-950
    The AD-590 silicon-based MEMS accelerometer adopts a compact CLCC-14 ceramic package and advanced MEMS sensing technology. This industrial grade dual-axis accelerometer features high stability, low noise, low temperature drift, wide measurement range, and excellent long-term reliability, making it suitable for high-precision inertial measurement applications.
    $364.00 $364.00
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  • AC-MAD210
    The AC-MAD210 silicon-based MEMS accelerometer adopts a compact 48-pin ceramic package design and advanced MEMS sensing technology. It is a high-performance dual-axis accelerometer featuring high precision, excellent stability, wide environmental adaptability, and reliable digital output performance.
    $368.00 $368.00
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