Accelerometer Sensor
GSACC102M MEMS Accelerometer with ±10 g Range ≤ 1500 Hz Bandwidth and 100±30 mV/g Sensitivity for Vibration Monitoring
GSACC102M MEMS Accelerometers Product Features Analog voltage output Magnetic suction installation Small size, light weight Applications Mechanical vibration monitoring equipment Linear acceleration measurement Technical Specifications Electrical Characteristics Input voltage 5±0.25 VDC Input current ≤2 mA Output Mode 0.5~4.5V Performance Index Axial direction Z Range ±10 g Bandwidth ≤ 1500 Hz Sensitivity 100±30 mV / g Resolution ≤ 0.002 g Nonlinear ≤ 0.5% Fs Bias 2.5±0.1 V
GSACC302M MEMS Accelerometer with ±2 g Range ≤ 0.01g Bias and ≤ 0.5% Fs Nonlinear for Water Quality Sensing
GSACC302M MEMS Accelerometers Key Features Digital RS422 output Wide measuring range with nonlinear correction Whole temperature range compensation High impact resistance Applications Petroleum drilling machines Seismic detection systems Technical Specifications Electrical Characteristics Input voltage 10~30 VDC Input current ≤ 70 mA Output Mode RS 422 Baud Rate 115200 bps Output Data Rate 200 Hz Output Data format 16-bit twos complement Performance Index Parameter X Y Z
Quartz Flexible Accelerometer Sensor with Wide Load Resistance Range Triangle Precision Mounting Flanges and Bias Stability ≤100μg
GSACC131Q Quartz Flexible Accelerometer Quartz Flexure Accelerometers are precision instruments composed of quartz crystals and advanced inertia-based servo circuitry. When subjected to acceleration, the accelerometer's output is directly proportional to the input acceleration with high precision. Featuring a TTL output, our accelerometers enable users to read acceleration values directly. Compared to traditional I/F (current-to-frequency) circuits, this design eliminates
High Stability Inertial Navigation Accelerometer with ±70g Scope and 5μg Threshold for Precision Applications
High precision inertial navigation accelerometers for large number of applications have high stability KSJB2 series quartz flexible accelerometer is a high-precision, inertial navigation level accelerometer for a large number of applications (up to 100g), the product has excellent long-term stability, repeatability, start-up performance, environmental adaptability and high reliability characteristics, can be used for static testing can be used for dynamic testing, is also a
Miniaturized High Precision Quartz Flexible Accelerometer with ±60g Scope for Inertial Navigation Systems
Miniaturized, high precision, a large number of inertial pilot accelerometers for use KSJB3 series quartz flexible accelerometer is a small, high precision, a large number of inertial navigation level accelerometer, the product has excellent long-term stability, repeatability, starting performance, environmental adaptability and high reliability and other characteristics, can be used for static testing can be used for dynamic testing, is also a standard vibration sensor and
GSRBA500D Quartz Flexible Accelerometer with ±70g Range, Small Size 22mm×22mm×14mm, and High Reliability for Aerospace and Applications
GSRBA500D Quartz Flexible Accelerometer Product Overview The GSRBA500D quartz vibration beam accelerometer is a new solid-state digital output acceleration sensor featuring large range, compact size, high precision, low power consumption, rapid start-up time, shock vibration resistance, and exceptional reliability. This quartz vibration beam accelerometer offers significant advantages over traditional analog output accelerometers. Key Features Digital output Wide bandwidth
GSACC115Q Quartz Flexible Accelerometer Sensor with ±30g Range 1.0~1.6mA/g Scale Factor and ≤50ug Bias Stability
GSACC115Q Quartz Flexible Accelerometer Product Introduction The 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 is precisely proportional to the input acceleration. Our accelerometer features current output with high output impedance, allowing users to select sampling resistance according to requirements
GSACC204M MEMS Accelerometer with ±1 g Range ≤ 0.005 s Start-Up Time and 2.5±0.1 V Bias for Precision Sensing
GSACC204M MEMS Accelerometers Key Features Analog voltage output Compact size and lightweight design High frequency with magnetic suction installation Excellent impact resistance and vibration performance Applications Mechanical vibration monitoring equipment Seismic surveillance systems Technical Specifications Type: GSACC204M Electrical Characteristics Input voltage 6±0.25 VDC Input current ≤6mA Output Mode 0.5~4.5 V Performance Index Axial direction Y | Z Range ±1 g
GSACC117Q Quartz Flexible Accelerometer Sensor with ±10g Range ≤60ug Bias Stability and 100ug/°C Bias Temperature Sensitivity
GSACC117Q Quartz Flexible Accelerometer Product Introduction The 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 is precisely proportional to the input acceleration. Our accelerometer features current output with high output impedance, allowing users to select sampling resistance according to requirements
Quartz Flexible Accelerometer with ±20g Range 1.2~1.6mA/g Scale Factor and ≤30ug Bias Stability for Precision Inertial Navigation
GSACC114Q Quartz Flexible Accelerometer The 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 accelerometer 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 to their requirement
Quartz Flexible Accelerometer Sensor with Ø25.4×29 Size Bias <5mg and Bias Stability ≤10ug for Precision Applications
GSACC111Q Quartz Flexible Accelerometer 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 output precisely proportional to input acceleration. With high output impedance current output, users can select sampling resistance without compromising system stability. Our product line ranges from high-precision μg GSACC111Q models
KSIMU008C Inertial Navigation System Specification
KSIMU008C Inertial Navigation System Specification Introduction KSIMU008C series inertial navigation system is a typical shelf product. With high-performance fiber optic gyro and accelerometer, KSIMU008C series inertial navigation can meet the needs of autonomous navigation in complex environments, and can integrate satellite, Doppler, odometer and other information to achieve high-precision integrated navigation. Series products have been widely used in defense,
KSIMU010M High-Performance 6-Axis IMU Sensor 100Hz Output
KSIMU010M High-performance IMU Product Attributes Attribute Value Operating voltage 5 VDC Power consumption 0.5 W Size 22.4 * 22.4 * 9mm Weight < 10g Operating temperature -40°C~ +85°C Product Description The KSIMU010M is a durable, industrial-grade high-performance Inertial Measurement Unit (IMU) based on MEMS accelerometers and gyroscopes, offering a highly cost-effective solution for various applications. Key Features Precision-calibrated 6-axis inertial system 3-axis
KSIMU005M Three Axis Quartz IMU MEMS Accelerometer Sensor
KSIMU005M Three Axis Quartz IMU Product Overview The KSIMU005M is an advanced inertial measurement module utilizing MEMS technology to accurately measure angular velocity and acceleration across three axes. MEMS (Micro-Electro-Mechanical Systems) integrates micro-sensors, actuators, mechanical structures, power systems, and signal processing into compact, intelligent systems with micron-scale components. Common applications include accelerometers, gyroscopes, pressure sensors
KSIMU004M Inertial Measurement Unit ±2000°/s Gyroscope AHRS
KSIMU004M Inertial Measurement Unit Product Overview The KSIMU004M is a self-contained Attitude Heading and Reference System (AHRS) module. This compact, fully functional unit requires minimal additional hardware components for integration. Featuring an industry-standard communication protocol with customizable data messages, it processes signals onboard while consuming minimal host resources, making it ideal for simple MCU operating environments. Key Specifications Attribute
KSIMU003M Inertial Measurement Unit with MEMS Gyroscope Accelerometer
KSIMU003M Inertial Measurement Unit Product Introduction The KSIMU003M 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), this unit is designed for precise navigation, control, and dynamic measurement in weapon systems. This product series utilizes high-precision MEMS inertial
KSIMU001M Digital Inertial Measurement Unit 5V DC ±200°/s
KSIMU001M Universal Digital Inertial Measurement Unit Key Specifications Attribute Value Supply voltage 5V DC±5% Power consumption ≤0.5W @5V DC Full Scale ±200(optional)°/s Bias ≤±0.1°/s Bias stability ≤10°/s Product Overview The KSIMU001M 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
KSINS010C Laser Strapdown Inertial Navigation System with 0.5nmile/h Position Accuracy <0.003° Pitch & Roll Accuracy and <5min Initialization Time
KSINS010C Laser Strapdown Inertial Navigation System Product Overview The KSINS010C laser strapdown inertial navigation system is a compact, high-precision solution featuring small size, light weight, high accuracy, and excellent reliability. Designed to meet autonomous navigation requirements in complex environments, it is suitable for various applications in navigation, integrated navigation, guidance, and control systems. The system integrates with satellite, radio,
KSINS014C Dual-Axis Fiber Optic Inertial Navigation System 1nmile/12h Accuracy
KSINS014C Dual-Axis Fiber Optic Rotating Inertial Navigation System Key Specifications Attribute Value Position Accuracy 1nmile/12h Pitch & Roll Accuracy
KA2000 Inertial Grade Accelerometer Aerospace Inertial Navigation Input Range ±60 [g]
Product I ntroduction: The KA2000 inertial-grade accelerometer produced by KACISE has long-term repeatability and excellent reliability. It is mainly used in core navigation components in the aerospace field, while-drilling measurement in oil and gas exploration and other scenarios. The integral electronics develops an acceleration-proportional output current providing both static and dynamic acceleration measurement. By use of customer supplied output load resistor,