Allicdata Part #: | ADXRS624BBGZ-ND |
Manufacturer Part#: |
ADXRS624BBGZ |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | Analog Devices Inc. |
Short Description: | IC GYROSCOPE YAW RATE 32CBGA |
More Detail: | Gyroscope Z (Yaw) ±50 1Hz ~ 1kHz Analog Voltage 32... |
DataSheet: | ADXRS624BBGZ Datasheet/PDF |
Quantity: | 31 |
Specifications
Series: | -- |
Packaging: | Tray |
Part Status: | Active |
Type: | Analog |
Axis: | Z (Yaw) |
Range °/s: | ±50 |
Sensitivity (LSB/(°/s)): | -- |
Sensitivity (mV/°/s): | 25 |
Bandwidth: | 1Hz ~ 1kHz |
Output Type: | Analog Voltage |
Voltage - Supply: | 4.75 V ~ 5.25 V |
Current - Supply: | 3.5mA |
Features: | Adjustable Bandwidth, Temperature Sensor |
Operating Temperature: | -40°C ~ 105°C (TA) |
Package / Case: | 32-BFCBGA |
Base Part Number: | ADXRS624 |
Description
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ADXRS624BBGZ motion sensorADXRS624BBGZ is a type of motion sensor that is designed to detect angular rate changes to measure and report yaw, pitch and roll of the system to which it is attached. This type of motion sensor is categorized under the gyroscopes family as a gyroscope can measure angular rate of rotational motion of an object with respect to an inertial reference frame.
The ADXRS624BBGZ motion sensor is widely used in applications that require stabilized performance and accurate angular rate measurements over a wide temperature range. Such applications include stabilizers and guidance systems in Unmanned Aerial Systems, airborne stabilization platforms, and remote-controlled devices like enthusiast drones. This sensor is used to improve the maneuvering of the associated system by accurately measuring and reporting angle changes with respect to the inertial reference frame, thus enabling the system to be more responsive and efficient in its actions.
The working principle of the ADXRS624BBGZ motion sensor is based on the Coriolis effect (or Coriolis acceleration). This effect states that due to the Earth\'s rotation, there is a force or acceleration that is generated, which results in a rotation in the opposite direction. This Coriolis acceleration is produced when a body is set in motion and its direction and magnitude depend upon the angular velocity and linear acceleration of the body in its reference frame. The ADXRS624BBGZ motion sensor is designed to detect this Coriolis acceleration and is sensitive enough to detect even a slight angular rate change. Consequently, the sensor generates an electrical signal that gets amplified and sent to the associated system.
The amplified signal generated by the sensor is processed and used to report the exact angular rate change. The information is then used to guide the allied system in order to stabilize the position and optimally respond to a potential disorientation. The ADXRS624BBGZ has a hypersensitive MEMS gyroscope with improved performance over a large dynamic range. This helps it to detect angular rate change with extreme precision. The wide temperature range in which the ADXRS624BBGZ operates further adds to its superior performance. This enables it to be used in various applications that require accurate angular rate measurements over a wide temperature range.
The ADXRS624BBGZ is very easy to install and use. It comes with a digital interface, toggle switches, and a variety of user configurations. This allows the users to easily configure the settings for different applications. The output signal from the ADXRS624BBGZ motion sensor is analog and digital, which makes it very easy to integrate into existing systems.Overall, the ADXRS624BBGZ motion sensor is accurate, reliable, and easy to use. Its wide operating temperature range makes it suitable for applications that require precise angular rate measurements in harsh environments. It has been widely adopted for applications like unmanned aerial systems, airborne stabilization platforms, and radio-controlled devices. Its MEMS gyroscope configuration, digital interface, and user configurations make it an excellent choice for users looking for a reliable and accurate motion sensor.
The specific data is subject to PDF, and the above content is for reference
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