9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU
9 Degrees of Freedom - MPU-9150 Breakout | IMU

9 Degrees of Freedom - MPU-9150 Breakout

9 Degrees of Freedom - MPU-9150 Breakout

The MPU-9150 is the world’s first 9-axis MotionTracking MEMS device designed for the low power, low cost, and high performance requirements of consumer electronics equipment including smartphones, tablets and wearable sensors.

PTR002095
38,13 €
Com IVA

Descrição

9 Degrees of Freedom - MPU-9150 Breakout

The MPU-9150 is the world’s first 9-axis MotionTracking MEMS device designed for the low power, low cost, and high performance requirements of consumer electronics equipment including smartphones, tablets and wearable sensors. And guess what? You get to play with it.

This breakout board makes it easy to prototype with the InvenSense MPU-9150 by breaking out all the pins you need to standard 0.1" spaced headers. The board also provides I2C pullup resistors and a solder jumper to switch the I2C address of the device.

The MPU-9150 is a System in Package (SiP) that combines two chips: the MPU-6050, which contains a 3-axis gyroscope, 3-axis accelerometer, and an onboard Digital Motion Processor (DMP) capable of processing complex 9-axis MotionFusion algorithms; and the AK8975, a 3-axis digital compass. The part’s integrated 9-axis MotionFusion algorithms access all internal sensors to gather a full set of sensor data. The part is offered in a 4x4x1mm LGA package and is upgrade-compatible with the MPU-6050 integrated 6-axis MotionTracking device, providing a simple upgrade path and making it easy to fit on space constrained boards.

Features:

  • Digital-output 9-axis MotionFusion data in rotation matrix, quaternion, Euler Angle, or raw data format
  • Tri-Axis angular rate sensor (gyro) with a sensitivity up to 131 LSBs/dps and a full-scale range of ±250, ±500, ±1000, and ±2000dps
  • Tri-Axis accelerometer with a programmable full scale range of ±2g, ±4g, ±8g and ±16g
  • Tri-axis compass with a full scale range of ±1200µT
  • Reduced settling effects and sensor drift by elimination of board-level cross-axis alignment errors between accelerometer, gyroscope, and compass
  • VDD Supply voltage range of 2.4V–3.46V; VLOGIC of 1.8V±5% or VDD
  • Gyro operating current: 3.6mA (full power, gyro at all rates)
  • Gyro + Accel operating current: 3.8mA (full power, gyro at all rates, accel at 1kHz sample rate)
  • Gyro + Accel + Compass + DMP operating current: 4.25mA (full power, gyro at all rates, accel at 1kHz sample rate, compass at 8Hz rate)
  • Accel low power mode operating current: 10uA at 1Hz, 20uA at 5Hz, 70uA at 20Hz, 140uA at 40Hz
  • Full Chip Idle Mode Supply Current: 8µA
  • 400kHz Fast Mode I²C serial host interface
  • On-chip timing generator with ±1% frequency variation over full temperature range
  • 10,000g shock tolerant
  • I2C Pullup Resistors populated on board.
  • All Pins Broken Out to Standard 0.1" Spaced Headers
  • Solder Jumper for Switching LSB of I2C Address

Documents:

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