Accelerometer Sensor
GSGYR312F Three Axis Fiber Optic Gyroscope with Digital Output, Instant Start, and Low Bias Magnetic Sensitivity
GSGYR312F Three Axis Fiber Optic Gyroscope This product is an inertial angle rate sensor based on the optical Sagnac effect for measuring the rotational angular velocity of the carrier along the sensitive axis. The digital closed-loop detection circuit extracts the optical path difference of the clockwise light caused by external physical angular speed, modulates and demodulates the voltage signal of the optical path signal, and implements closed-loop feedback and control to
Shock Resistant Quartz Flexible Accelerometer Sensor with Wide Temperature Range and Bias ≤20mg for Extreme Environments
Product Description: The Quartz Flexible Accelerometer is a highly precise instrument that consists of a quartz glass flexible support and an advanced servo circuit based on the principle of inertia. When the carrier experiences acceleration, the accelerometer output is precisely proportional to the input acceleration. Our accelerometer has a high output impedance and a current output form. Users can choose the sampling resistance as per their requirement without affecting
Quartz Flexible Accelerometer with ±20g Input Range ≤5μg Threshold and 15g Vibration Peak Sine for Aerospace
Product Description: The Quartz Flexible Accelerometer is a highly precise instrument that is composed of quartz glass flexible support and advanced servo circuit based on the principle of inertia. This results in an output that is precisely proportional to the input acceleration when the carrier experiences acceleration. The output form of our accelerometer is a current output with high output impedance. Users have the flexibility to choose the sampling resistance according
Universal Digital Inertial Measurement Unit with ±200°/s Full Scale ≤0.1% Nonlinearity and ≤0.3°/s Bias Repeatability
GSIMU001M Universal Digital Inertial Measurement Unit The GSIMU001M Inertial Measurement Unit is a high-performance, cost-effective solution for navigation, control, and dynamic measurement applications. Featuring a sealed design, this unit delivers precise angular velocity and acceleration measurements even in demanding environmental conditions. Key Features Low cost with compact dimensions Wide operating temperature range (-40°C to +85°C) Broad power input compatibility
Mini Size Ø18.8×21 Quartz Flexible Accelerometer with Scale Factor 2.2~3.5mA/g and Bias Repeatability ≤100ug
GSQAMini125 Quartz Flexible Accelerometer Product Introduction The quartz flexible accelerometer is a precision instrument featuring quartz glass flexible support and advanced servo circuitry based on inertia principles. When subjected to acceleration, it delivers an output precisely proportional to the input acceleration. With high output impedance in current output form, users can select sampling resistance according to requirements without compromising system stability.
GSACC202M MEMS Accelerometer with ±2g Range 1000±30 mV/g Sensitivity and ≧ 50 Hz Bandwidth for Aircraft Stability Control
GSACC202M MEMS Accelerometers Key Features Analog voltage output Compact size and lightweight design Wide measuring range Excellent impact resistance and vibration performance Applications Aircraft stability control systems Seismic detection equipment Technical Specifications Electrical Characteristics Input voltage 5±0.25 VDC Input current ≤2mA Output Mode 0.5~4.5 V Performance Index Axial direction X,Y Range ±2g Bandwidth ≧ 50 Hz Sensitivity 1000±30 mV / g Resolution (°/s)
Quartz Flexible Accelerometer Sensor with Wide Temperature Range Bias ≤10mg for Precise Vibration Monitoring Data
Product Description: The Quartz flexible accelerometer The Quartz flexible accelerometer is an extremely precise instrument that is composed of a quartz glass flexible support and an advanced servo circuit that is based on the principle of inertia. In other words, when the carrier is subjected to acceleration, the output of the accelerometer is precisely proportional to the input acceleration.Our accelerometer has a current output form of high output impedance, which is very
GSACC304M MEMS Accelerometer with ±20g Range High Frequency Response and Small Size for Vibration Monitoring
GSACC304M MEMS Accelerometers Key Features Analog voltage output Wide measuring range High frequency response, up to 22 KHz Small size, light weight Impact resistance, excellent vibration performance Applications Power conductor breeze vibration monitoring Mechanical vibration monitoring equipment Technical Specifications Type GSACC304M Electrical Characteristics Input voltage 12±0.5 VDC Input current ≤12 mA Output Mode 0.5~4.5V Performance Index Axial direction X Y Z Range
GSACC103M MEMS Accelerometer with ±2000 g Range ≤ 5000 Hz Bandwidth and 0.15mV/g Sensitivity
GSACC103M MEMS Accelerometers Key Features Analog voltage output High g value and bandwidth Compact size and lightweight design Piezoelectric accelerometer technology Excellent impact resistance and vibration performance Applications Measurement of overload value g Linear acceleration measurement Technical Specifications Electrical Characteristics Input voltage 10±0.1 VDC Input current ≤10mA Output Mode ±1 V Performance Index Axial direction Z Range ±2000 g Bandwidth ≤ 5000
500g Shock 25g Vibration Peak Sine Analog Accelerometer with Wide Temperature Range
Product Description: The Quartz flexible accelerometer is a highly precise instrument that comprises quartz glass flexible support and advanced servo circuit based on the principal of inertia. This accelerometer produces an output that is precisely proportional to the input acceleration. In other words, when the carrier is subjected to acceleration, the output of the accelerometer changes accordingly. The accelerometer has a current output form of high output impedance. Users
GSACC303M MEMS Accelerometer with ±10 g Range ≤ 0.01 g Bias and ≤ 0.2% Fs Nonlinear for Precision Measurement
GSACC303M MEMS Accelerometers Key Features Digital RS422 output Wide measuring range Nonlinear correction and cross coupling correction Whole temperature range compensation Impact resistance with excellent vibration performance High resolution and stability Applications Aircraft stability control Inertial navigation systems Technical Specifications Type: GSACC303M Electrical Characteristics Input voltage 10~30 VDC Input current ≤50 mA Output Mode RS 422 Baud Rate 115200 bps
GSACC203M MEMS Accelerometer with ±10 g Range ≤ 0.05 g Bias and ≥50 Hz Bandwidth for Precision Measurement
GSACC203M MEMS Accelerometers Key Features Digital RS485 output Wide measuring range with nonlinear correction Compact size and lightweight design Full temperature range compensation Excellent impact resistance and vibration performance Applications Aircraft stability control systems Seismic detection equipment Technical Specifications Electrical Characteristics Input voltage 6-8 VDC Input current ≤60 mA Output Mode RS485 Baud Rate 115200 bps Output Data Rate 200 Hz Output
GSACC113Q Quartz Flexible Accelerometer with 0.9~1.3mA/g Scale Factor, 30ug/°C Bias Temperature Sensitivity, and <5mg Bias for Precision Measurement
GSACC113Q Quartz Flexible Accelerometer Product Introduction The quartz flexible accelerometer is a precision instrument comprising quartz glass flexible support and advanced servo circuitry based on the principle of inertia. When the carrier experiences acceleration, the accelerometer's output is precisely proportional to the input acceleration. Our accelerometer features a current output form with high output impedance, allowing users to select sampling resistance according
GSACC101M MEMS Accelerometer with ±1 g Range ≥50 Hz Bandwidth and 1000±30 mV/g Sensitivity for Aircraft Stability Control
GSACC101M MEMS Accelerometers Product Features Analog voltage output Wide measuring range Impact resistance with excellent vibration performance Compact size and lightweight design High linearity output Applications Aircraft stability control systems Seismic detection equipment Technical Specifications Electrical Characteristics Input voltage 5±0.25 VDC Input current ≤2 mA Output Mode 0.5~4.5V Performance Index Axial direction X Range ±1 g Bandwidth ≥50 Hz Sensitivity 1000±30
GSQAT160 Quartz Flexible Accelerometer Sensor with Bias <20 mg Scale Factor 2.75 mA/g ± 1.8% and Bias Repeatability 1mg
GSQAT160 Quartz Flexible Accelerometer Product Introduction The quartz flexible accelerometer is a precision instrument comprising quartz glass flexible support and advanced servo circuitry based on the principle of inertia. When subjected to acceleration, the output is precisely proportional to the input acceleration. Featuring a current output form with high output impedance, users can select sampling resistance according to requirements without affecting system stability.
GS16488 Inertial Measurement Unit with 1 Channel SPI, Bias Repeatability −40°C ≤ TA ≤ +85°C, and Scale Factor Nonlinearity FS=450 º/s
GS16488 Inertial Measurement Unit Product Introduction The GS16488 Inertial Measurement Unit is a high-performance domestic inertial measurement device featuring compact size and exceptional overload resistance. With gyroscope zero bias stability of 0.5°/h (Allan) and accelerometer zero bias stability of 10µg (Allan), it is designed for precise navigation, control, and dynamic measurement in weapon systems. This product series utilizes high-precision MEMS inertial devices,
GSACC112Q Quartz Flexible Accelerometer with ±20g Range, ≤10ug Bias Stability, and Analog Output for Precision Inertial Navigation
GSACC112Q Quartz Flexible Accelerometer Quartz flexible accelerometer is a precision instrument comprising quartz glass flexible support and advanced servo circuit based on the principle of inertia. When the carrier is subjected to acceleration, the output of the accelerometer is precisely proportional to the input acceleration. Our accelerometer has a current output form of high output impedance, and users can choose the sampling resistance according to their requirement
GSACC104M MEMS Accelerometer with ±100 g Range 12±0.1 mA Bias and ≤ 1% Fs Nonlinearity for Linear Acceleration Measurement
GSACC104M MEMS Accelerometers Key Features High g value and frequency response Compact size and lightweight design 4~20mA output signal Excellent impact resistance and vibration performance Applications Measurement of overload g values Linear acceleration measurement Technical Specifications Electrical Characteristics Input voltage 10~30 VDC Input current ≤20mA Output Mode 4~20 mA Performance Specifications Axial direction Z Range ±100 g Bandwidth ≤ 400 Hz Sensitivity 0.08±0
25mm Mounting Diameter KSJB5 Series Quartz Flexible Accelerometer Sensor with <5µg Resolution and Long-Term Stability
Product Description The KSJB5 series quartz flexible accelerometer is a medium-precision sensor featuring a unique compact design. It stands out for its excellent long-term stability, repeatability, dynamic response performance, robust vibration shock resistance, and high reliability. This versatile sensor is ideal for both static and dynamic testing and serves as a standard vibration and inclination sensor. This product features a distinctive structural design and employs a
GSACC116Q Quartz Flexible Accelerometer with ±80g Range ≤40ug Bias Repeatability and 40ug/°C Bias Temperature Sensitivity for Precision Inertial Measurement
GSACC116Q Quartz Flexible Accelerometer Product Introduction The quartz flexible accelerometer is a precision instrument featuring quartz glass flexible support and advanced servo circuitry based on inertia principles. When subjected to acceleration, it produces an output precisely proportional to the input acceleration. With high output impedance current output, users can select sampling resistance according to requirements without affecting system stability. Our product