{"product_id":"gy-bmi160-module-bmi160-6dof-6-axis-acceleration-gyro-gravity-sensor-3-5v-iic-spi-pin-spacing-2-54mm-for-arduino-pack-of-3","title":"GY-BMI160 Module BMI160 6DOF 6-Axis Acceleration Gyro Gravity Sensor 3-5v IIC SPI Pin Spacing 2.54mm for Arduino (Pack of 3)","description":"\u003ch3\u003eGY-BMI160 Module BMI160 6DOF 6-Axis Acceleration Gyro Gravity Sensor 3-5v IIC SPI Pin Spacing 2.54mm for Arduino (Pack of 3)\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eProduct description: The BMI160 is a 6-axis inertia sensor with integrated\n16-bit 3-axis accelerometer and 3-axis gyroscope. Functions: Extremely low\npower consumption and high accuracy. The smallest housing of a 6-axis inertia\nmeasuring unit allows always-on applications in portable devices. Technical\ndata: Name: GY-BMI160 Module (3-Axis Gyroscope + 3-Axis Accelerometer) Chip:\nBMI160. Power supply: 3-5V Communication: Standard IIC\/SPI protocol Built-in\n16-bit A\/D converter, 16-bit data output Gyroscope range: ±125°, ±250°, ±500°,\n±1000°, ±20,000°\/s; Acceleration range: ±2±4±8±16g; Pin Pitch:2.54mm; Module\nsize: 13mm x 18mm; Wiring instructions: INT2: Interrupt Pin 2 INT1: Interrupt\nPin 1 SCX: magnetometer interface SDX: magnetometer interface I2C wiring\nmethod: (Connect SAO pin to GND, i.e. standard I2C address 0x68) VIN: 5 V. SCL\n--- A5. SAO --- GND GND --- GND SDA --- A4. INT1 --- D2. SPI wiring method:\nVIN: 5 V. SCL --- SCK. SAO – MISO. INT1 --- D2. GND --- GND SDA --- MOSI. CS\n--- D10. Note: 1. Pay attention to correct wiring. Avoid incorrect\nconnections. 2. For address selection of the two 120 pins, SA0 is short-\ncircuited on the BMI160 module with GND. This results in the address 0x68. SA0\nwith VCC short-circuited results in the address 0x69. Select the appropriate\nI2C address in the program. Box contents: 3 x GY-BMI160 BMI160 6-Axis\nAcceleration and Gravity Sensor\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n  \u003cul class=\"a\"\u003e\n         \u003cli\u003eProduct overview: The BMI160 is a 6-axis inertia sensor with integrated 16-bit 3-axis acceleration sensor and 3-axis gyroscope that provides acceleration and rotation rate measurement data (gyroscope).\u003c\/li\u003e\n         \u003cli\u003eProduct FeaturesCompatible with 3.3V and 5V microcontrollers, it can communicate with microcontrollers via I2C or SPI and read data in real time. The GY-BMI160 module is a small, low-noise 16-bit inertia measuring unit for mobile applications that require high-precision real-time sensor data, such as Augmented reality and indoor navigation.\u003c\/li\u003e\n         \u003cli\u003eTechnical dataChip used: BMI160; Power supply: 3-5V; Communication method: standard I2C\/SPI communication protocol; Built-in 16-bit A\/D converter, 16-bit data output; Gyroscope range: 0000\/s; Acceleration igigingrange: 2 4816g; Pin Pitch:2.54mm; Module Size:13mm x 18mm;\u003c\/li\u003e\n         \u003cli\u003eInterface definitionVI: connect to the positive 5V supply; 3V3: connect to the positive 3V3 supply; GND: connect to the negative supply voltage; SCL: SPI serial clock (SCL is the serial I2C clock); SDA: SPI serial data (MOSI is the serial I2C data); CS: SPI mode\/protocol. Customchoice choice pin (Chip selection); SAO: SPI serial data output (address selection in I2C mode); DCS: OIS interface;\u003c\/li\u003e\n         \u003cli\u003eApplications: Widely used in pedometers, intelligent remote controls, air mice, head-mounted displays, sports and fitness equipment and more.\u003c\/li\u003e\n  \u003c\/ul\u003e","brand":"DEWOTHV","offers":[{"title":"Default Title","offer_id":44374957228212,"sku":"de-B0GR93DCQJ","price":108.0,"currency_code":"AUD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0595\/9906\/1172\/files\/de-B0GR93DCQJ.jpg?v=1788269444","url":"https:\/\/auspowers.com\/products\/gy-bmi160-module-bmi160-6dof-6-axis-acceleration-gyro-gravity-sensor-3-5v-iic-spi-pin-spacing-2-54mm-for-arduino-pack-of-3","provider":"AusPower Australia","version":"1.0","type":"link"}