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Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units

Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units

  • Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units
  • Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units
Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units
Product Details:
Place of Origin: China (Mainland)
Brand Name: Kacise
Certification: certificate of explosion-proof, CE
Model Number: KSIMU01D
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
Pitch: ±90deg Vibration: 6 G @ 20~2000 Hz
Operating Temperature: -40℃~+70℃ Update Rate(user Settable): 200 Hz@460800
Weight: ≤100g Heading: ±180deg
Pitch Accuracy: 0.3deg Storage Temperature: -55℃~+85℃
MTBF: 10Kh MTBF
High Light:

10Kh Electronic Gyroscope Sensor

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Inertial Measurement Units Gyro Sensor

Product Description:

Inertial Measurement Device for Navigation and Control: KSIMU01D

The KSIMU01D inertial measurement unit is a device that provides a high-performance and low-cost solution for navigation, control, and dynamic measurement. Designed with a sealed structure, this series of products can accurately measure the angular velocity and acceleration information of a moving carrier in harsh environments.

What makes the KSIMU01D stand out is its low power consumption, wide operating temperature range, wide bandwidth, small size, and fast startup. This device is perfect for various systems, such as automotive electronics, aircraft guidance and control, attitude reference system, platform stabilization, robot, antenna stabilization, and other applications.

Features:

● Low cost, small size

● Operating temperature -40°C ~ +85°C

● Wide power input, digital output

● Strong structure and reliability

 

Technical Parameters:

Parameter KSIMU01D
Power supply parameter
Supply voltage 5DC±5%V
Power consumption ≤0.5W @5V DC
Product performance
Size

Ф39.5×22mm

Ф39.5×28.5mm

26.5×26.5×23.5mm

Attitude Weight ≤100g
Heading ±180deg
Roll ±180deg
Pitch ±90deg
Pitch Accuracy 0.3deg
Gyroscope Full Scale ±200(optional)deg/s
bias ≤±0.1deg/s
bias stability ≤10deg/s
bias repeatability ≤0.3deg/s
Nonlinearity ≤0.1%
Accelerometer Full Scale ≤0.3°/h
bias ≥500Hz
bias stability 170g±10g
Nonlinearity ≤0.1%
MTBF 10Kh MTBF
Output Interface Digital RS422
Update rate(user settable) 200 Hz@460800
Environment
Operating temperature -40℃~+70℃
Storage temperature -55℃~+85℃
Vibration 6 g @ 20~2000 Hz
Shock 8000 g , 0.5 ms, 1/2 Sine
 

Dimensions:

Electronic Gyroscope Sensor -55℃~+85℃ MTBF 10Kh MTBF for Inertial Measurement Units 0
 

Applications:

Automotive Electronics
When we talk about automotive electronics, we are referring to the electronic systems that are integrated into our cars and other motor vehicles. These systems can include anything from GPS navigation and entertainment systems to safety features such as automatic braking and parking assistance. With modern advances in technology, automotive electronics have become increasingly sophisticated, helping to make driving safer, more efficient, and more comfortable for everyone on the road.
Aircraft Guidance and Control
Aircraft guidance and control systems are essential to the safe and efficient operation of modern planes. These systems help to ensure that aircraft remain stable in the air, even in turbulent conditions, and can be used to guide planes during takeoff and landing. Advanced guidance and control systems can also be used to automate many aspects of flight, allowing pilots to focus on other tasks and reducing the risk of human error.
Attitude Reference System
An attitude reference system is a critical component of many guidance and control systems. This system helps to determine the aircraft's position and orientation in the air, allowing the pilot or automated system to make adjustments to maintain stability and control. Modern attitude reference systems can use a variety of sensors and technologies to provide accurate and reliable data, including accelerometers, gyroscopes, and GPS.
Platform Stabilization
Platform stabilization is a technique used to keep a system or device steady, even when subject to external forces or movements. This technique can be applied to a wide range of systems, from cameras and telescopes to military weapons systems and radar installations. Advanced platform stabilization technologies can compensate for movements in real-time, helping to ensure that the device remains focused and accurate even in challenging conditions.
Robot, Antenna Stabilization
Robot and antenna stabilization systems are specialized applications of platform stabilization technology. In these systems, the stabilization is designed to keep a robot or antenna steady and in position, even as it moves or experiences vibrations and jostling. This can be especially important in applications such as space exploration or satellite communications, where the stability of the antenna or robot can directly impact the success of the mission.

Support and Services:

Welcome to our Technical Support and Services for the Gyroscope Sensor. Our dedicated team is here to assist you with any technical issues or inquiries you may have regarding the use, installation, or maintenance of your gyroscope sensor. We are committed to providing you with the best possible support to ensure your product functions optimally.

 

Our support includes detailed product documentation, frequently asked questions (FAQs), and troubleshooting guides designed to help you resolve common issues quickly. For more complex or specific concerns, our technical support team is ready to provide personalized assistance.

 

If you require further assistance, please refer to the 'Contact Us' section of our website (contact information excluded as per request) where you can find additional resources and support channels to get in touch with our professional technical support team.

 

Thank you for choosing our Electronic Gyroscope Sensor. We look forward to serving you and ensuring the success of your projects

 

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

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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.