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Mems gyrosensor can be used in intelligent car, robot, Zero-bias stability is ≤0.2deg/h, Operating temperature -40~+80°C

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Mems gyrosensor can be used in intelligent car, robot, Zero-bias stability is ≤0.2deg/h, Operating temperature -40~+80°C

Country/Region china
City & Province Shaanxi
Categories Glove Making Machinery Parts
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Product Details

Product Description:

KS3ARG03D Series Solid State Angular Rate Sensor (Gyro)

The KS3ARG03D series solid-state angular rate sensors , also known as gyros, are designed to precisely measure angular rotation rates. These high-performance sensors are built with advanced micromechanical electronic system (MEMS) technology chips , utilizing the sophisticated bipolar metal oxide semiconductor (BIMOS) technology production process , and a unique spherical grid technique for current carrier welding, ensuring exceptional reliability and durability.

A standout feature of these sensors is their Self-Test functionality , which permits Built-In Testing (BIT) for in-device diagnostics, contributing to their reliability within operational systems.

Operating Principle

The KS3ARG03D series angular rate sensors operate on the basis of resonator gyro technology . The heart of the sensor is composed of two polysilicon-sensitive structures. Each structure contains a high-frequency vibrating frame, which is set into oscillation electrostatically. These frames resonate to provide the necessary velocity elements for the measurement.

The ends of these frames are equipped with a capacitance-sensitive structure that is keenly attuned to the Coriolis forces that come into play during angular motion. This sensitivity allows the device to convert the detected motion into an electrical signal, which, after amplification and modulation stages, results in an electrical output directly correlated to the angular rate .

Features:

● zero bias calibration

● temperature drift compensation

● wide measurement range

● wide bandwidth

● non-linear correction

● wide operating temperature range

● small size, light weight

● high impact acceleration resistance

 

Dimensions

 

 

Technical Parameters:

ParameterKS3ARG03D
Power supply parameter
powerDC5(V)
power dissipation≤1.1(W @5V DC)
Product performance
range±500(triaxial)(deg/s)
Zero-bias≤±0.05(In 500°/s)(deg/s)
Zero-bias stability≤0.2(deg/h)
Zero-bias repeatability≤1(deg/s)
nonlinearity≤0.02(%FR)
Mean time between failures10(Kh MTBF)
electrical interfaceRS422
data updating rate(can set)2000(Hz@460800)
Size45×39×20(mm)
Weight≤50(g)
Environment
Operating temperature-40~+80℃
Storage temperature-55~+85℃
Vibration6.06(g @ 20~2000 Hz)
Shock5000(g , 0.1 ms, 1/2 Sine)
 
 

Applications:

Intelligent Automobiles Revolutionizing Transportation

The advent of intelligent automobiles marks a significant leap in vehicular technology. These smart vehicles incorporate advanced computing capabilities, connecting seamlessly with their environment and operating with a high degree of autonomy. With innovations in artificial intelligence, machine learning, and sensor technology, intelligent automobiles not only promise enhanced safety but also a transformative driving experience.

Breakthroughs in Geological Exploration

Modern geological exploration relies heavily on sophisticated devices that allow researchers to probe deep into the Earth's crust. Innovative technologies facilitate the analysis of rock formations, mineral deposits, and the assessment of geological hazards. Through a combination of remote sensing, seismic methods, and deep-drilling techniques, exploration has become more efficient and precise, paving the way for sustainable natural resource management.

The Rise of Robotic Automation

Robots have transcended the realms of science fiction and have been integrated into our everyday lives. Industrial, medical, and even domestic settings have seen an increase in the use of robots that perform tasks ranging from complex assembly lines to surgical assistance. These robots boast a combination of mobility, dexterity, and cognitive abilities that enhance productivity and reduce human error.

Advancements in Missile Guidance Systems

Missile guidance and control systems are critical in defense technologies, ensuring the accuracy and effectiveness of missiles. These sophisticated systems utilize a blend of inertial navigation, satellite positioning, and terrain mapping to achieve unparalleled targeting precision.

Aircraft Stability Control Innovations

Aircraft manufacturers continue to innovate in the area of aircraft stability control . By employing advanced aerodynamics, control algorithms, and gyroscopic sensors, modern aircraft maintain stability even under turbulent conditions. This not only improves the safety of air travel but also enhances passenger comfort.

Strapdown Inertial Navigation: The Backbone of Modern Guidance Systems

Strapdown inertial navigation systems are integral to the latest transportation and defense mechanisms. Unlike traditional gimballed systems, strapdown versions directly mount inertial sensors to the vehicle's frame, increasing reliability and reducing the need for moving parts. This technology is vital for accurate navigation in submarines, spacecraft, and unmanned aerial vehicles.

Enhancing Precision in Antenna and Camera Stability

Ensuring the stability of antennas and cameras is crucial, particularly in windy or moving environments. Advanced stabilization systems counteract external movements to provide a steady signal and clear imagery, which are essential for communications, broadcasting, surveillance, and high-quality photography.

Conclusion: These technological breakthroughs continue to push the boundaries of what is possible, offering smarter, safer, and more precise applications across various fields. The future beckons with the promise of further improvements and innovative solutions that will continue to transform our world. Please note that using pure HTML for this task is not feasible since the platform may not allow direct implementation of HTML. However, the structure has been designed to be HTML-friendly, so you should be able to easily convert the text into actual HTML code if needed.

Support and Services:

Our Electronic Gyroscope Sensor is designed for high-performance applications and is backed by our comprehensive technical support and services.

Technical Documentation: Access detailed product manuals, installation guides, and specifications to assist with the correct usage of the

 

Electronic Gyroscope Sensor. Our documentation is constantly updated to provide you with the most current and relevant information.

 

FAQs and Troubleshooting: Our Frequently Asked Questions (FAQs) section addresses common concerns and provides quick solutions.

 

For more in-depth issues, our troubleshooting guide can help you diagnose and resolve problems effectively.

 

Customer Service: Our dedicated customer service team is available to assist with non-technical inquiries, such as order status, shipping, and billing questions.

 

For further assistance or specialized support needs, please refer to our contact page to reach out to our technical support representatives who are ready to assist you.

 

Packing and Shipping:

The Electronic Gyroscope Sensor is meticulously packaged in an anti-static bag to ensure protection against electrostatic discharge (ESD). The sensor is then securely encased in a custom-fit, high-density foam mold, which provides superior shock absorption during transit. This foam is placed within a durable, branded cardboard box that shields the sensor from environmental factors and potential damage while in transit.

The exterior of the box features clear labeling with the product name, handling instructions, and a barcode for easy tracking. All our packages are sealed with tamper-evident tape, offering an additional layer of security.

For shipping, the Electronic Gyroscope Sensor is dispatched via a trusted courier service to ensure timely and safe delivery. We include insurance for the full value of the product, offering peace of mind and protection for your investment. Tracking information is provided as soon as the package is dispatched, allowing for real-time monitoring of the shipment until it arrives at its destination.

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