MPU-6050 3-Axis Accelerometer and Gyro Sensor

  1. Inbuilt 16-bit AD converter and 16-bit data output in the chip
  2. Chip Set: MPU6050
  3. DC 3-5V operating voltage
  4. Protocol for I2C/IIC communication
  5. ± 250, 500, 1000, 2000 °/s is the Gyro Range.
  6. Range of Accelerometer: ± 2 ± 4 ± 8 ± 16 g

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129.00

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Free

  • Delivery Charges: Tamil Nadu

₹75 for parcels below 1 Kg and ₹100 for parcels weighing between 1 Kg to 2 Kg.

2-3 Days

₹75

  • Delivery Charges: Other South India

₹125 for parcels below 1 Kg and ₹175 for parcels weighing between 1 Kg to 2 Kg.

2-3 Days

₹125

  • Delivery Charges: North India

₹250 for parcels below 1 Kg and ₹325 for parcels weighing between 1 Kg to 2 Kg.

2-3 Days

₹250

  • Courier delivery

Our courier will deliver to the specified address

2-3 Days

Rs. 99

  • Warranty 1 year
  • Free Returns Policy

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Description

MPU-6050 is a little piece of motion processing technology that is used by the MPU-6050 3-Axis Accelerometer and Gyro Sensor module.

A variety of magnetometer kinds are available. The following are the main variations between MPU6000, MPU6050, and MPU6500:

MPU6000MPU6050MPU6500
1. A sampling rate of 8 kHz.1. A sampling rate of 8 kHz.1. A sampling rate of 32 kHz.
2. Supports SPI and I2C interface. But I2C is too slow to handle 8 kHz gyro update.2. Supports I2C interface communication protocol.2. Supports both I2C and SPI interface.
3. Vibration Sensitivity is better than MPU6500.3. Vibration Sensitivity is better than MPU6500 but the speed of operation is less than MPU6000.3. It is more susceptible to vibrations, so the need for some vibration isolation methods.

It is faster than both MPU.

 

The MPU6050 devices have an integrated Digital Motion Processor (DMP) that can perform intricate 9-axis MotionFusion algorithms in addition to a 3-axis accelerometer and gyroscope combined on the same silicon.

Features: 

  • 16-bit data output and an integrated 16-bit AD converter in the chip.
  • I2C digital output of MotionFusion data in six or nine axes, in formats such as rotation matrix, quaternion, Euler Angle, or raw data.
  • FSYNC, AD0, and CLK Selectable Solder Jumpers.
  • Complex MotionFusion, sensor timing synchronisation, and gesture detection are offloaded by the Digital Motion ProcessingTM (DMPTM) engine.
  • Compass calibration and run-time bias are handled via embedded algorithms. User intervention is not necessary.
  • Digital temperature sensor with an output.

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