SCC2130-D08-05 Allicdata Electronics
Allicdata Part #:

490-12143-2-ND

Manufacturer Part#:

SCC2130-D08-05

Price: $ 43.61
Product Category:

Sensors, Transducers

Manufacturer: Murata Electronics North America
Short Description: IMU ACCEL/GYRO 3-AXIS SPI
More Detail: Accelerometer, Gyroscope, 3 Axis Sensor SPI Output
DataSheet: SCC2130-D08-05 datasheetSCC2130-D08-05 Datasheet/PDF
Quantity: 100
50 +: $ 39.64270
100 +: $ 38.32140
Stock 100Can Ship Immediately
$ 43.61
Specifications
Series: --
Part Status: Active
Sensor Type: Accelerometer, Gyroscope, 3 Axis
Output Type: SPI
Operating Temperature: -40°C ~ 125°C (TA)
Description

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Motion sensors play an important role in sophisticated navigation systems and wider safety applications. Inertial Measurement Units (IMUs) are one type of motion sensor, and the SCC2130-D08-05 is considered one of the most advanced IMUs on the market. This article explores the application field and working principle of the SCC2130-D08-05 IMU.

The SCC2130-D08-05 is an ultra-small, low-cost, high-precision, six-axis motion sensor that can measure both angular and linear motion. The IMU measures the inertial forces of acceleration, rotation, and magnetic fields on all six axes, and can be used in robotics, drones, autopilots, and other motion capture applications. It has an ultra-low power consumption, a sleep working current of 0.3uA, an operating temperature range of -40 to 85 degrees Celsius, and a signal output rate of up to 400Hz.

The SCC2130-D08-05 integrates several components. At its core is a dual-axis low-noise gyroscope, which measures angular velocity, and a three-axis low-noise accelerometer, which measures linear acceleration. The IMU also includes a three-axis magnetometer, which measures the direction of Earth’s magnetic field. Finally, the SCC2130-D08-05 includes a 16-bit Cortex-M0 CPU that computes and filters the raw data from the sensors to output a clean, consistent signal.

At the application level, the SCC2130-D08-05 can be used to build spacecraft attitude control systems, track and store autonomous navigation trajectories, and monitor the orientation and movement of drones, robots, and other autonomous robotic systems. It can be used for position and velocity feedback to control the movement of motors for robotics applications. Additionally, the SCC2130-D08-05 is often used in virtual reality headset tracking, motion capture systems, and to monitor the motion of vehicles for improved safety.

The working principle behind the SCC2130-D08-05 involves two main steps: measuring the physical characteristics of the environment and making sense of the measurements. The IMU uses its accelerometer, gyroscope, and magnetometer to measure acceleration, angular velocity, and magnetic field strength on all six axes. It then uses tri-axial amalgamation to combine these signals to create a reliable overall motion picture.

Next, the SCC2130-D08-05’s onboard Cortex-M0 CPU uses advanced algorithms to process the raw data from the sensors and convert them into a reliable digital signal. This signal is then used to monitor the orientation and movements of the device, track navigation trajectories, and control robotic systems. The final output signal provides accurate readings of angular rate, acceleration, and magnetic field strength.

In summary, the SCC2130-D08-05 is a high-precision, low-cost, and low-power IMU that can measure acceleration, angular velocity, and magnetic field strength in all six axes. Its wide range of applications make it suitable for a variety of industrial and consumer devices, from robotics and virtual reality headsets to drones and autonomous vehicles. The working principle behind the device involves combining readings from the accelerometer, gyroscope, and magnetometer into a usable digital signal.

The specific data is subject to PDF, and the above content is for reference

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