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Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005

Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005

  • Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005
  • Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005
Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005
Product Details:
Place of Origin: China (Mainland)
Brand Name: Kacise
Certification: certificate of explosion-proof, CE
Model Number: KQ3GY
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
Working Temperature: -40℃~+65℃ Scale Factor Nonlinearity: ≤200
Random Vibration: 6.06g Rms Threshold: ≤0.005
Random Walk: ≤0.25 Measurement Range: ±100
Input Voltage: 5±0.2 Vdc Bandwidth: ≥140
High Light:

Wide Temperature Range MEMS Gyroscope Sensor

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Threshold 0.005 MEMS Gyroscope Sensor

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Precision MEMS Gyroscope Sensor

Product Description:

The KQ3GY gyroscope is a cutting-edge device developed using quartz MEMS technology. This innovative technology allows the device to sense the angular velocities of multiple axes at the same time. The axes can be configured according to customer needs. The device uses a serial port to output digital information.

MEMS technology is an incredible technology that integrates various micro-devices and systems. These systems include micro-sensors, micro-actuators, micro-mechanical structures, micro-power and micro-energy, signal processing and control circuit, high-performance electronic integrated device, interface, and communication. MEMS technology allows the development of independent intelligent systems that can be mass-produced. The systems are small in size, with a system size of a few millimeters or even smaller. The internal structures of these systems are generally in the order of microns or even nanometers.

MEMS technology has various applications, including MEMS accelerometers, MEMS optical sensors, MEMS pressure sensors, MEMS gyroscopes, MEMS humidity sensors, MEMS gas sensors, and their integration products. These products have revolutionized the way we live and interact with technology.

Features:

● Large-scale production

● Short startup time

● Wide operating temperature range

● Low power consumption

● High reliability

● Small size and light weight

● Serial output

 

Technical Parameters:

Parameter KQ3Gy
Power Requirements
Input Voltage 5±0.2 Vdc
Input Current < 50 mA
Performance
Measurement range ±100
Bias ≤0.03
Bias stability ≤20
Bias repeatability ≤20
Scale factor nonlinearity ≤200
random walk ≤0.25
Threshold ≤0.005
Bandwidth ≥140
Acceleration correlation ≤0.01
Cross coupling ≤1
Environments
Working temperature -40℃~+65℃
Random vibration 6.06g rms
 

Dimensions:

Unit:mm

Wide Temperature Range MEMS Gyroscope Sensor Working temperature -40℃~+65℃Measurement Precision,Threshold ≤0.005 0

 

Applications:

Airborne instrument measurement

Airborne instrument measurement refers to the measurement of various parameters such as temperature, pressure, speed, and altitude of an aircraft during flight. This process is essential to ensure that the aircraft is flying safely and efficiently.

Robot

A robot is a machine that can carry out tasks automatically, often with the help of artificial intelligence. They can be used in various industries such as manufacturing, healthcare, and even aerospace. In the aerospace industry, robots can be used for tasks such as assembly, maintenance, and inspection of aircraft components.

Automated testing

Automated testing refers to the use of software tools to execute tests and compare actual results with expected results. This method helps to save time and reduce the risk of human error, making it ideal for testing complex systems. In the aerospace industry, automated testing can be used to test various components and systems of an aircraft, ensuring that they are functioning correctly.

Attitude reference system

An attitude reference system is a device that measures and maintains the orientation of an aircraft in flight. This system is essential for navigation, control, and stability during flight and is often used in conjunction with other systems such as the control system and flight test equipment.

Control system

A control system is a system that manages the behavior of another system, often with the help of feedback. In the aerospace industry, control systems are used to manage the behavior of aircraft components such as engines, wings, and flaps, allowing for safe and efficient flight.

Flight test

Flight test refers to the process of testing an aircraft in flight to gather data on its performance and safety. This process is essential to ensure that an aircraft can fly safely and efficiently, and can include testing various systems such as the control system and attitude reference system.

Platform stability

Platform stability refers to the ability of an aircraft to maintain a stable position during flight. This is essential for safe and efficient flight and can be achieved through the use of various systems such as the control system and attitude reference system.

Support and Services:

Our Electronic Gyroscope Sensor is designed with precision to provide reliable performance for your applications. Our support includes detailed product documentation, an extensive online knowledge base, and troubleshooting guides to help you resolve any issues you may encounter.

We are committed to the satisfaction of our customers and strive to provide exceptional after-sales support. Should you have any feedback or suggestions, we welcome your input as it helps us to continuously improve our products and services.

Packing and Shipping:

Product Packaging:

The Electronic Gyroscope Sensor product will be packaged in a sturdy cardboard box with foam inserts to ensure safe transport. The product will be sealed in a plastic bag to protect it from moisture and dust. The box will be labeled with the product name, brand, and barcode for easy identification.

Shipping:

The product will be shipped via standard ground shipping. We will ensure that the product is shipped within 2 business days after receiving the order. The shipping cost will be calculated based on the weight and destination of the package. Customers will receive a tracking number via email once the product has been shipped.

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.