MEMS Accelerometer
18 results found for "MEMS Accelerometer"
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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.
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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.
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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.
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  • XDA-315
    The XDA-315 silicon-based MEMS accelerometer adopts a compact CLCC-14 ceramic package and advanced MEMS sensing technology. It is a high-performance industrial grade 3-axis accelerometer featuring low noise, low temperature drift, excellent long-term stability, and reliable digital output performance.
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  • AT-950
    The AT-950 industrial grade MEMS tri-axis accelerometer adopts advanced silicon-based MEMS technology and a compact ceramic package design, featuring high stability, low noise, low temperature drift, wide measurement range, and excellent long-term reliability. 
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  • AC-MAX5200
    The AC-MAX5200 silicon-based MEMS accelerometer adopts a compact 48-pin ceramic package design, featuring large measurement range, high reliability, strong impact resistance, wide temperature adaptability, and fully digital output. It is a high-performance single-axis MEMS accelerometer designed for demanding industrial and precision measurement applications.
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  • AC-MAF599
    The AC-MAF599 Ultra High Precision MEMS Single-axis Accelerometer adopts advanced silicon-based MEMS technology and a compact ceramic package design. It features high precision, excellent stability, wide measurement range, strong impact resistance, and wide temperature adaptability for demanding industrial applications.
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  • AC-SMA
    The AC-SMA-XXD series accelerometer is a single-axis capacitive MEMS accelerometer, consisting of a fully silicon MEMS sensing structure and a low-power signal processing ASIC composition. AC-SMA-XXD is powered by a single power supply (5V) and features low typical power consumption (11mA). Its output is either a digital signal in SPI protocol or a fully differential analog signal (common mode voltage at 2.5V), and the analog output voltage ranges from 0.5V to 4.5V.
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  • ACM-1700
    The ACM-1700 series is a high-performance single axis MEMS accelerometer designed specifically for high-precision and high reliability acceleration measurement applications. This series offers four different range models, covering a wide measurement range of ±10g to ±200g, and supports customization according to customer needs. The sensor adopts 24 bit binary complement data output and communicates through SPI digital interface to ensure stable and accurate data acquisition even under complex working conditions. The ACM-1700 series has excellent performance, including high zero bias stability, low nonlinear error, and strong shock resistance. Its integrated temperature sensor further supports system level temperature compensation, improving measurement consistency across the entire temperature range. This series of products is suitable for multiple high demand fields such as aerospace, industrial control, navigation systems, mechanical monitoring, attitude measurement, structural health monitoring, etc. It is an ideal choice for inertial measurement, vibration analysis, and motion perception applications.
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  • M3G-230
    The M3G-230 MEMS three-axis gyroscope assembly is a highly reliable and cost-effective 3-axis MEMS gyroscope, suitable for navigation, control, and other fields of low- and medium-orbit satellites. The M3G-230 series three-axis gyroscope assembly integrates high-performance MEMS gyroscopes within an independent structure. The gyroscopes used in the system represent the leading level of domestically produced MEMS technology inertial devices. All electronic components within the system are 100% domestically produced. The three-axis MEMS gyroscopes sense the angular motion of the carrier, and the system internally compensates for zero position, scale factor, and non-orthogonal errors across all temperature parameters, maintaining high measurement accuracy over a long period of time.
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  • M3G-220
    The M3G-220 MEMS three-axis gyroscope assembly is a highly reliable and cost-effective 3-axis MEMS gyroscope assembly, specifically designed for navigation and control applications in low- and medium-orbit satellites. The M3G-220 series of three-axis gyroscope assemblies integrates high-performance MEMS gyroscopes within an independent structure. The gyroscopes used in the system represent the leading level of domestically produced MEMS technology inertial devices. All electronic components within the system are 100% domestically produced. The three-axis MEMS gyroscopes sense the angular motion of the carrier, and the system internally compensates for zero position, scale factor, and non-orthogonal errors across all temperature parameters, maintaining high measurement accuracy over extended periods.
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  • M3G-210
    The M3G-210 MEMS three-axis gyroscope is a highly reliable and cost-effective 3-axis MEMS gyroscope assembly, widely applicable in navigation, control, and other fields represented by stability control. The M3G-210 series three-axis gyroscope assembly integrates high-performance MEMS gyroscopes within an independent structure. The gyroscopes selected for the system represent the advanced level of domestic MEMS technology inertial devices. All electronic components within the system are 100% domestically produced. The system internally compensates for the zero bias, scale factor, and non-orthogonal error of the three-axis MEMS gyroscopes across all temperature parameters, maintaining high measurement accuracy over a long period of time.
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