.Industrial-grade 9-Axis MEMS IMU Module with EtherCAT Output for AGV Robots 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 product attitude information.
Industrial-Grade 9-Axis MEMS IMU Inertial Measurement Module with UART CAN Output
The U2600 MEMS inertial measurement module is a highly reliable and cost-effective 9-axis MEMS inertial measurement module, widely used in navigation, control, and measurement applications such as robots, vehicles, ships, and drones.
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Vehicle-Grade MEMS Inertial Measurement Module IMU with CAN FD and UART for Pose
Reference System
U2300 vehicle-grade MEMS IMU is a universal, miniature inertial component of the IMU box, 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 cross-coupling between two axes, its measurement accuracy is improved.
U4930 MEMS IMU Six-Axis Inertial Measurement Module (Can be compatible with HG4930)
The U4930 series MEMS inertial measurement module is a highly reliable and cost-effective six-axis MEMS inertial measurement module, widely used in navigation, control, and measurement applications such as vehicles, ships, and drones.
The U4930 series inertial measurement module integrates high-performance MEMS gyroscopes and MEMS accelerometers in a single structure.
U4500 Tactical Grade MEMS IMU AHRS INS Sensor for Marine UAVs and Robot Navigation
The U4500 series sensors are composed of high-performance tactical-grade dynamic noise analysis systems (IMU/VRU/MRU/AHRS/INS) and feature independently developed adaptive extended Kalman filtering, IMU dynamic noise analysis algorithms, weight estimation algorithms, carrier motion state analysis algorithms, and GNSS fusion algorithms, providing users with accurate location, attitude, velocity, and other information.
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Application of the Quartz Flexural Accelerometer
The AC-5 quartz accelerometer is suitable for engineering applications requiring moderate accuracy and high reliability, such as bridge and dam tilt monitoring, oil well and coal mining drilling, high-speed rail control, and ship stability monitoring.
C90-C High-Performance Self-Calibration Electronic Compass Sensor
The C90-C is a high-precision 3D electronic compass that uses advanced hard and soft iron calibration algorithms to provide high-precision setting information within a range of 360° roll and +/-90° full tilt angle. It features small size and low power consumption, making it ideal for power-sensitive measurement systems.
The product's precise attitude output vector can be used in systems with full attitude rotation. This product features magnetic, soft, and tilt compensation, and the compass produces high-precision measurement values after calibration.
High Stability Fiber Optic Gyro for Multi Source Aviation Multi-Casing Positioning
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IF 3700 Auto-Sensing Tech Auto-Sensing Unmanned Vessel & Drone
The IF3700 uses a high-precision closed-loop fiber optic gyroscope with a full-scale temperature of 0.01°/h and a high-precision 20μg quartz accelerometer, achieving high-precision pure inertial orientation measurement
UF500 Fog + Quartz Accelerometer Combination Fiber Optic Gyroscope & Quartz Accelerometer High-Precision Inertial Sensor
The UF500 is a high-performance, cost-effective IMU-based fiber optic gyroscope combined with a flexible quartz accelerometer or MEMS accelerometer, which can be used for navigation, control, and dynamic measurement.
North Finder NF3000-A, NF3000-B, and NF3000-C high-precision north finder for precision
North Finder NF3000-A, NF3000-B, and NF3000-C High-precision north finder for precision mapping in harsh environments. The NF3000G north finder is used for azimuth reference measurement for ground equipment.
U503 High-Precision Six-Axis IMU Module
The U503 MEMS inertial measurement module is a high-precision six-axis MEMS inertial measurement module that can be widely used in navigation, control, and measurement applications such as vehicles, ships, and drones.
The U503 series of inertial measurement modules integrates high-performance MEMS gyroscopes and high-performance accelerometers in a single structure
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The G800-B series angle sensor adopts MEMS technology and magnetoelectric induction technology. It uses differential array magnetic sensitive elements and non-contact measurement of the rotating shaft.
It senses the parallel magnetic field intensity of the permanent magnet installed at one end of the rotating shaft and performs linearity correction through MCU processing, temperature compensation, output signal standardized digital filtering, zero point setting, programmable intelligent control of multiple different slope settings, to achieve the absolute angular position of the output sensor within the range of 0 ~ 360°. Accuracy 0.2°, output RS232, RS485, CAN, 0-5V, 0.5-4.5V, 0-10V, 4-20mA, 0-20mA optional.
- Product characteristics (FULL TECHNICAL DATA SHEET SEND ON REQUEST)
The G801-B series angle sensor adopts MEMS technology and magnetoelectric induction technology. It uses differential array magnetic sensitive elements and non-contact measurement of the rotating shaft. It senses the parallel magnetic field intensity of the permanent magnet installed at one end of the rotating shaft and performs linearity correction through MCU processing, temperature compensation, output signal standardized digital filtering, zero point setting, programmable intelligent control of multiple different slope settings, to achieve the absolute angular position of the output sensor within the range of 0 ~ 360°. Accuracy 0.2°, output RS232, RS485, CAN, 0-5V, 0.5-4.5V, 0-10V, 4-20mA, 0-20mA optional.
- Product characteristics
G802 series magnetic angle sensor uses MEMS technology to integrate the nanomagnetic beam thin film material and the differential array magnetic sensitive element to non-contact sense changes in the magnetic field.
The system integrates (microcomputer) with the current transmitter and various protection circuits. Through DSP processing, it realizes simple intelligent control of linearity correction, temperature compensation, standardization of output signals according to the range, digital filtering, zero point setting, and multi-stage different slope settings. Realize the measurement of absolute position output at user set angles within the range of 0-360 °
Whatsapp: +8618151836753 Young ( for technicals info)
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Product characteristics (FULL TECHNICAL DATASHEET ON REQUEST)
G803 low-cost series magnetic angle sensor uses MEMS technology to integrate the nanomagnetic focusing film material and the differential array magnetic sensitive element to non-contact sense changes in the rotating magnetic field.
The system integrates a microprocessor (micro-computer), a current transmitter and a variety of protection circuits. Through DSP processing, it can perform linearity correction, temperature compensation, standardization of output signals according to the range, digital filtering, zero point setting, and multi-segment different slope settings. Programmed intelligent control enables measurement of absolute position output at user-set angles within the range of 0 to 360°.
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G810 series angle sensor combines an embedded microprocessor with a CNC anc-second level calibration device, programmed calibration and conversion, 0.1° high-precision measurement, multiple outputs RS232, TTL, RS485, RS422, CAN, 0-5V, 0.5-4.5V, 0-10V, 4-20mA, 0-20mA optional.
The magnetic angle sensor uses MEMS technology to integrate the nanomagnetic focusing thin film material and the differential array magnetic sensitive element to non-contact sense changes in the rotating magnetic field.
The system integrates micro-computer, voltage and current transmitters and various protection circuits. Through DSP processing, programmable intelligent control can be achieved for linearity correction, temperature compensation, standardization of output signals based on range, digital filtering, zero point setting, and multiple different slope settings.
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Product characteristics ( FULL TECHNICAL DATASHEET ON REQUEST )
The G820 series high-precision angle sensor is integrated with MEMS technology, low power consumption;
By using magneto electric induction technology, precision bearings, differential array magnetic sensing elements, and non-contact measurement of the shaft, the parallel magnetic field strength of a permanent magnet installed at one end of the shaft is sensed and processed by MCU to achieve programmable intelligent control of linearity correction, temperature compensation,
N-order digital filtering algorithm, zero point setting, and multiple different slope settings. The absolute angular position of the output sensor is achieved within the range of 0-360 °. Accuracy of 0.05 °, output RS232, TTL, RS485, CAN, 0-5V, 0.5, 4.5V, 0-10V, 4-20mA, 0-20mA optional.
Whatsapp: +8618151836753 Young ( for technicals info)
Whatsapp: +393331472162 Robert (for comercial info)
- Product characteristics (FULL TECHNICAL DATA SHEET SEND ON REQUEST )
The G830 series is high precision angle sensor, with an accuracy of 0.02°, supporting setting range and adopting integrated MEMS technology, low power consumption, built-in high-precision 16 bit A/D converter, multiple outputs RS232, TTL, RS485, RS422, CAN, 0-5V, 0-10V, 4-20mA, 0-20mA and 0-24mA are optional.
By utilizing magneto electric induction technology, precision bearings, differential array magnetic sensitive components, and non-contact measurement of the shaft, the parallel magnetic field strength of a permanent magnet installed at one end of the shaft is sensed and processed by MCU. Linear correction, temperature compensation, self-developed filtering algorithm, and programmable intelligent control with multiple different slope settings are implemented to improve measurement accuracy.


























