Send Message
Home ProductsElectronic Gyroscope Sensor

Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance

Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance

  • Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance
  • Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance
Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance
Product Details:
Place of Origin: China (Mainland)
Brand Name: Kacise
Certification: certificate of explosion-proof, CE
Model Number: KQ6IMU100
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
Contact Now
Detailed Product Description
Scale Factor: 1000±30LSB/g Bias: 0±0.02g
Scale Factor Nonlinearity: ≤200ppm Random Vibration: 6.06 G
Input Current: ≤100mA Inner Data Update Speed: ≤2.5ms
Operating Temperature: -40~+65℃ Interface: RS422(1-bit Start +8-bit Data +1-bit Even Parity Check +1-bit Stop)
High Light:

Harsh Environments Electronic Gyroscope Sensor

,

RS422 Electronic Gyroscope Sensor

,

Precision Electronic Gyroscope Sensor

Product Description:

KQ6IMU100 is a highly advanced inertial measurement module that has been developed using the latest MEMS technology. With its exceptional measurement capabilities, this module can accurately measure the angular velocity and acceleration of the carrier in three different directions.

MEMS technology is a revolutionary micro-device system that integrates various micro-components such as micro-sensors, micro-actuators, micro-mechanical structures, power and energy sources, and signal processing circuits. MEMS devices are capable of performing high-performance functions such as communication interfaces and electronic devices in electronics applications. Furthermore, the size of these MEMS systems is usually a few millimeters or even smaller with their internal structures in the order of microns or nanometers.

MEMS sensors are widely used in different applications such as accelerometers, optical sensors, pressure sensors, gyroscopes, humidity sensors, and gas sensors. In addition, integrated MEMS products are also available that combine multiple functionalities to offer a highly efficient and capable system.

 
 
Features:

● Small Size,27mmX27mmX10mm

● Easy to be integrated by connect the digital interface RS422.

● Dual redundancy design to sets of gyro and accelerator integrated.

● Bias < 0.05°

 

Technical Parameters:

 

Parameter KQ6IMU100
Power supply parameter
Input Voltage 5±0.2 V DC
Input Current ≤100mA
Product performance
GYRO Range ±400°/s
Bias 0±0.05°/s
Bias stability ≤30°/h
Scale factor 70±3LSB/°/s
Scale factor nonlinearity ≤200ppm
Vibration error ≤0.03°/s
Bandwidth ≥100Hz
Accelerometer Range ±10g
Bias 0±0.02g
Bias stability ≤0.002g
Scale factor 1000±30LSB/g
Bandwidth ≥400Hz
Interface RS422(1-bit start +8-bit data +1-bit even parity check +1-bit stop)
Baud rate 460800bps
Inner Data update speed ≤2.5ms
Environment
Operating temperature -40~+65℃
Random vibration 6.06 g
 

Dimensions:

 

Precision Electronic Gyroscope Sensor for Harsh Environments with RS422 Interface and 6.06 G Vibration Tolerance 0

 

 

 

Applications:

Robotics is the field of study that deals with the design, construction, and operation of robots. It involves a combination of mechanical engineering, electrical engineering, and computer science. Robotics has numerous applications ranging from manufacturing and transportation to healthcare and space exploration.

Flight Testing is the process of evaluating an aircraft's performance and functionality in real-world conditions. It involves a series of ground and flight tests conducted by a team of skilled engineers and pilots. The results obtained during flight testing are used to ensure that the aircraft operates safely and efficiently.

Guidance & Control Systems is a branch of aerospace engineering that deals with the development of technologies used to navigate and control aircraft and spacecraft. These systems are responsible for ensuring that the vehicle follows the desired trajectory and maintains stability throughout the flight. Guidance & Control Systems are critical for the successful operation of any aerospace vehicle.

Short Term Navigation is the process of determining an aircraft or spacecraft's current position and its intended destination over short distances. This information is used to ensure that the vehicle remains on course and avoids collisions with other objects in its path. Short Term Navigation is critical for the safe operation of all types of vehicles, especially those that operate at high speeds and altitudes.

Aerospace refers to the branch of engineering that deals with the design, development, testing, and production of aircraft, spacecraft, and related technologies. It encompasses a wide range of disciplines, including aerodynamics, materials science, and propulsion systems. Aerospace plays a critical role in many aspects of modern life, from commercial air travel to national defense.

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:

The Electronic Gyroscope Sensor is housed in a robust, anti-static packaging to ensure the device remains secure and undamaged during transit. The interior of the packaging is lined with a cushioning material that absorbs shocks and vibrations, providing additional protection for the sensitive components of the sensor.

Prior to shipment, each package is sealed and subjected to a thorough inspection to guarantee that the sensor is securely enclosed. The exterior of the packaging is clearly labeled with handling instructions and the package contents to facilitate careful handling and to inform the recipient about the enclosed device.

For shipping, the packaged Electronic Gyroscope Sensor is placed in a larger, durable cardboard box designed to withstand the rigors of transport. This box is further secured with packing tape and, if necessary, additional cushioning materials are added to prevent movement within the box during shipment.

Each shipment includes a detailed packing slip with product information and a unique serial number for inventory tracking and quality control purposes. The package is then dispatched through a reliable courier service with options for tracking and insurance to ensure the Electronic Gyroscope Sensor arrives at its destination promptly and in pristine condition.

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)

Other Products

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.