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High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate

High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate

  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
  • High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate
Product Details:
Place of Origin: China (Mainland)
Brand Name: Kacise
Certification: certificate of explosion-proof, CE
Model Number: KS3ARG03D
Payment & Shipping Terms:
Minimum Order Quantity: 1pcs
Packaging Details: each unit has individual box and all boxes are packed in standard packages or customers requests available
Delivery Time: 5-8 working days
Payment Terms: T/T, Western Union, MoneyGram
Supply Ability: 1000 Pieces per Week
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Detailed Product Description
Mean Time Between Failures: 10(Kh MTBF) Zero-bias Repeatability: ≤1(deg/s)
Power: DC5(V) Weight: ≤50(g)
Data Updating Rate(can Set): 2000(Hz@460800) Zero-bias: ≤±0.05(In 500°/s)(deg/s)
Operating Temperature: -40~+80(°C) Zero-bias Stability: ≤0.2(deg/h)

Product Description:

KS3ARG03D Series Solid State Angular Rate Sensor (Gyro)

The KS3ARG03D series consists of state-of-the-art solid state angular rate sensors, also known as gyroscopes, designed specifically to measure angular rates. These sensors incorporate advanced micromechanoelectronic system (MEMS) technology chips. The chips are produced using a specialized bipolar metal oxide semiconductor (BIMOS) technology production process, complemented by a spherical grid arrangement of current carrier welding technology.

Renowned for their high reliability and exceptional package ruggedness, these sensors also feature a Self-Test capability. This allows for in-machine detection, known as Built-In Test (BIT), which ensures operational integrity without the need for external equipment.

Operating Principle

The KS3ARG03D series angular rate sensors operate on the principle of resonator gyroscopes. Within these sensors are two polysilicon sensitive structures. Each structure houses a high-frequency vibrating frame, which is set into motion electrostatically, achieving resonance, and thus forming the vital components for speed measurement.

The frames' two external ends are engineered to form a capacitance-sensitive structure. This structure detects the Coriolis motion that arises due to angular rate changes. As a result of this detection, an electrical signal is generated. Following the initial generation, the signal is transmitted through an amplifying stage and then a modulating stage. The final output from the sensor is an electrical signal that is proportional to the measured angular rate, providing an accurate depiction of rotation dynamics.

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

 

High performance power DC5V MEMS gyroscope sensor reliability 10Kh MTBF and 2000(Hz@460800)data updating rate 0

 

Technical Parameters:

Parameter KS3ARG03D
Power supply parameter
power DC5(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 failures 10(Kh MTBF)
electrical interface RS422
data updating rate(can set) 2000(Hz@460800)
Size 45×39×20(mm)
Weight ≤50(g)
Environment
Operating temperature -40~+80℃
Storage temperature -55~+85℃
Vibration 6.06(g @ 20~2000 Hz)
Shock 5000(g , 0.1 ms, 1/2 Sine)
 
 

Applications:

Intelligent Automobiles

Intelligent automobiles represent a leap forward in vehicular technology, imbued with advanced features that promise enhanced safety, efficiency, and comfort. These vehicles are engineered with superior artificial intelligence that enables them to learn from their environment and make autonomous decisions, revolutionizing the way we commute and reducing incidents on the road.

 

Geological Exploration

In the domain of geological exploration, cutting-edge tools and methodologies are being employed to probe the Earth's subsurface. This pursuit uncovers critical data for resource exploitation, natural disaster prediction, and understanding the planet's past. The precise instruments being used are pivotal in expanding our resource base and safeguarding our environment.

 
Robotics

Robotics has emerged as a cornerstone of modern industrial and domestic spheres, with robots now performing tasks ranging from mundane to highly complex, with precision and reliability. These mechanical marvels are optimizing production processes, aiding in disaster relief, and even performing intricate surgeries, marking a new epoch in human-machine collaboration.

 
Missile Guidance and Control

Advancements in missile guidance and control systems have significantly improved precision and impact. Such sophisticated technology ensures the accurate delivery of payloads and the safeguarding of global security. These systems embody the integration of aerodynamics, electronics, and advanced computing to navigate through challenging scenarios.

 
Aircraft Stability Control

The integrity and safety of flight depend substantially on aircraft stability control systems. These systems maintain the equilibrium of aircraft amidst the diverse atmospheric conditions encountered during flight. Modern control technologies allow for smoother flights and rapid response to any perturbations, boasting increased safety for passengers and crew alike.

 
Strapdown Inertial Navigation

Strapdown inertial navigation systems present a breakthrough in motion tracking technology. By directly mounting sensors to the object of interest, these systems offer real-time navigation information, crucial for applications such as aerospace, marine travels, and land-based navigation. Their reliability and accuracy are pivotal in contexts where external reference systems can fail.

 
Antenna and Camera Stability

Whether it's for communication or imagery, the stability of antennas and cameras is vital for capturing clear and uninterrupted signals and visuals. Stabilization technologies dampen vibrations and compensate for motion, providing consistently high-quality outputs even in adverse conditions. Such advancements are critical in fields ranging from broadcasting and photography to security and surveillance.

 
Conclusion

As we embrace these technological strides, individual sectors benefit from enhanced capabilities and efficiency. The synergy of intelligent automobiles, geological exploration techniques, robotics, guidance systems, stability controls, and navigation technologies is charting a course towards a future that is increasingly interconnected, safer, and more efficient. Reflecting on these developments, it is clear that we stand on the cusp of a new era of innovation and progress.

 

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.

Contact Details
Xi'an Kacise Optronics Co.,Ltd.

Contact Person: Ms. Evelyn Wang

Tel: +86 17719566736

Fax: 86--17719566736

Send your inquiry directly to us (0 / 3000)

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Contact

Address: i City, No11, TangYan South road, Yanta District, Xi'an,Shaanxi,China.

Factory Address:i City, No11, TangYan South road, Yanta District, Xi'an,Shaanxi,China.