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Brand Name : Kacise
Model Number : KSIMU01D
Place of Origin : China (Mainland)
Certification : certificate of explosion-proof, CE
MOQ : 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
Storage temperature : -55℃~+85℃
Vibration : 6 G @ 20~2000 Hz
Shock : 8000 G , 0.5 Ms, 1/2 Sine
Power consumption : ≤0.5W @5V DC
Pitch : ±90deg
Heading : ±180deg
bias : ≤±0.1deg/s
Supply voltage : 5DC±5%V
The KSIMU01D inertial measurement unit is a top-of-the-line device designed for navigation, control, and dynamic measurement. It is also relatively affordable despite its high level of performance. The product series is built with a seal design, which allows it to accurately measure the angular velocity and acceleration of the moving carrier in harsh and challenging environments.
One of the key features of the KSIMU01D is its low power consumption, which contributes to its energy efficiency, making it ideal for devices and systems that require low power consumption. Additionally, the device also has a wide operating temperature range and bandwidth, a small size, and fast startup.
The KSIMU01D can be used in various applications such as automotive electronics, aircraft guidance and control, attitude reference systems, platform stabilization, robot operations, antenna stabilization, and other systems that require high-precision measurement. With its features and capabilities, the KSIMU01D can help in the accurate measurement of angular velocity and acceleration information.
● Low cost, small size
● Operating temperature -40°C ~ +85°C
● Wide power input, digital output
● Strong structure and reliability
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 |
Automotive electronics refers to the application of electrically controlled systems and devices in automobiles, such as engine management systems, driver assistance systems, and entertainment systems. With increasing demand for enhanced safety, comfort, and fuel efficiency, automotive electronics have become essential components in modern vehicles.
Aircraft guidance and control systems are responsible for the navigation, guidance, and stability of aircraft during flight. These systems include autopilots, flight management systems, and navigation aids. They are critical for ensuring the safety and efficiency of modern air travel.
The attitude reference system is a crucial component of aircraft guidance and control systems. It provides information on the orientation and position of an aircraft relative to the earth's horizon. This information is used by autopilots and other guidance systems to maintain stable flight.
Platform stabilization systems are used to maintain the stability of a moving platform, such as a camera or sensor platform on a boat or aircraft. These systems use motion sensors, gyroscopes, and algorithms to reduce vibration and maintain stability, ensuring high- quality data and images.
Robot and antenna stabilization systems use similar technology as platform stabilization to maintain stability and accuracy in specialized applications. These systems are commonly used in robotics applications, such as industrial robots and drones, as well as in the operation of satellite antennas.
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.
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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Inertial Measurement Unit High Accuracy and Stability with bias ≥500Hz Images |