{"id":8115303645364,"title":"VR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer\/Gyroscope\/Magnetometer","handle":"vr-imu-breakout-bno086-qwiic-three-axis-accelerometer-gyroscope-magnetometer","description":"\u003ch3\u003eVR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer\/Gyroscope\/Magnetometer\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eOVNSHVN It is an ecosystem of sensors, actuators, and cables that accelerates\nprototype development and makes error prone. All QWIIC-enabled boards use\ncommon 4-pin JST connectors in 1mm pitching. Operating voltage: 2.4 V to 3.6\nV. Normally 3.3 V via Qwiic cable. (Standard): up to 400 kHz. SPI: up to 3\nMHz. UART: 3 Mbps Rotation vector Dynamic error: 3.5°. Static error: 2.0°.\nGame rotation vector Dynamic error: 2.5°. Static error: 1.5°. Dynamic course\ndrift: 0.5°\/min Geomagnetic Rotation Vector Dynamic rotation error: 4.5°.\nStatic rotation error: 3.0°. Gravity angle error: 1.5°. Accuracy linear\nacceleration: 0.35 m\/s². Accelerometer accuracy: 0.\/s². Gyroscope accuracy:\n3.1°\/s Magnetometer accuracy: 1.4µT. 2 Qwiic connection ports. - Address: 0x4B\n(standard), 0x4A. Pull-up resistance (2.2 kΩ). Operating LED. jump throw\nOperating LED. Pull up resistance. Address selection Log Selection 0 Protocol\nOption 1 Board size: 25.4 mm x 30.48 mm. Weight: 3 g. Due to different product\nbatches, words on product may be different, but this does not affect use.\nColor: As picture show Material: PC. Package contents: 1 x Only the above\npackage content, other products are not included. Note: Due to the light\nreflection and monitor settings, the colour of the item in the photos may be\nslightly different. The allowed measurement error is +\/- 1-3 cm.\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eThe IMU splitboard also features -Qwiic connectors to simplify connection to the miniature QFN chassis. It is part of the Qwiic connection system, you can determine the alignment of the elements without welding work. However, if you prefer a breadboard, you will still have pins at a distance of 0.1.\u003c\/li\u003e\n \u003cli\u003eVirtual reality is popular, but the technology behind it shouldn't cost hundreds of dollars. This is exactly where the VR IMU Breakout comes into play. At its heart is the BNO086 from , a combined three-axis acceleration\/gyroscope\/magnetometer package system (SiP) in the 32-bit ARMCortexM0+ processor.\u003c\/li\u003e\n \u003cli\u003eThe BNO086 Inertial Measurement Unit (IMU) produces precise rotation vectors, ideal for VR and other directional applications, with a static rotation error of maximum 2 degrees. The VR IMU is exactly what we've been waiting for. All sensor data is merged and drift corrected to obtain meaningful, accurate IMU information. It is perfect for all projects that require direction or motion detection.\u003c\/li\u003e\n \u003cli\u003eThe BNO080 is designed for use in Android-based smartphones and can perform all the calculations required for virtual reality glasses via the smartphone. For the BNO080 EOL offers a plug-in alternative to the BNO086 with advanced features (14-bit accelerometer fusion, reduced idle power, and interactive calibration). The sensor is very powerful and has a complex interface.\u003c\/li\u003e\n \u003cli\u003eThanks to the one on the board, you can choose between different addresses. If not your preferred communication option, the sensors can also communicate via SPI and UART! We have also developed a -based library that includes rotation vectors (the readings required by most users of an IMU), acceleration, gyroscope and magnetometer values, pedometers and activity classifiers (e.g. cycling).\u003c\/li\u003e\n \u003c\/ul\u003e","published_at":"2026-09-02T11:06:37+10:00","created_at":"2026-09-01T23:56:32+10:00","vendor":"OVNSHVN","type":"Acceleration Sensors","tags":["industrial_DE_Aug2026"],"price":22200,"price_min":22200,"price_max":22200,"available":true,"price_varies":false,"compare_at_price":null,"compare_at_price_min":0,"compare_at_price_max":0,"compare_at_price_varies":false,"variants":[{"id":44375024500916,"title":"Default Title","option1":"Default Title","option2":null,"option3":null,"sku":"de-B0FYLKTVKY","requires_shipping":true,"taxable":true,"featured_image":null,"available":true,"name":"VR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer\/Gyroscope\/Magnetometer","public_title":null,"options":["Default Title"],"price":22200,"weight":5,"compare_at_price":null,"inventory_management":"shopify","barcode":null,"requires_selling_plan":false,"selling_plan_allocations":[],"quantity_rule":{"min":1,"max":null,"increment":1}}],"images":["\/\/auspowers.com\/cdn\/shop\/files\/de-B0FYLKTVKY.jpg?v=1788270994","\/\/auspowers.com\/cdn\/shop\/files\/41qGYPlHksL.jpg?v=1788270995","\/\/auspowers.com\/cdn\/shop\/files\/51bRb1WWT_L.jpg?v=1788270994","\/\/auspowers.com\/cdn\/shop\/files\/51J3-he8oLL.jpg?v=1788270995","\/\/auspowers.com\/cdn\/shop\/files\/413QMB-2oML.jpg?v=1788270995","\/\/auspowers.com\/cdn\/shop\/files\/51VANiVyrKL.jpg?v=1788270994"],"featured_image":"\/\/auspowers.com\/cdn\/shop\/files\/de-B0FYLKTVKY.jpg?v=1788270994","options":["Title"],"media":[{"alt":null,"id":33273346719924,"position":1,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/de-B0FYLKTVKY.jpg?v=1788270994"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/de-B0FYLKTVKY.jpg?v=1788270994","width":500},{"alt":null,"id":33273346752692,"position":2,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/41qGYPlHksL.jpg?v=1788270995"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/41qGYPlHksL.jpg?v=1788270995","width":500},{"alt":null,"id":33273346785460,"position":3,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/51bRb1WWT_L.jpg?v=1788270994"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/51bRb1WWT_L.jpg?v=1788270994","width":500},{"alt":null,"id":33273346818228,"position":4,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/51J3-he8oLL.jpg?v=1788270995"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/51J3-he8oLL.jpg?v=1788270995","width":500},{"alt":null,"id":33273346850996,"position":5,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/413QMB-2oML.jpg?v=1788270995"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/413QMB-2oML.jpg?v=1788270995","width":500},{"alt":null,"id":33273346883764,"position":6,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/auspowers.com\/cdn\/shop\/files\/51VANiVyrKL.jpg?v=1788270994"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/51VANiVyrKL.jpg?v=1788270994","width":500}],"requires_selling_plan":false,"selling_plan_groups":[],"content":"\u003ch3\u003eVR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer\/Gyroscope\/Magnetometer\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eOVNSHVN It is an ecosystem of sensors, actuators, and cables that accelerates\nprototype development and makes error prone. All QWIIC-enabled boards use\ncommon 4-pin JST connectors in 1mm pitching. Operating voltage: 2.4 V to 3.6\nV. Normally 3.3 V via Qwiic cable. (Standard): up to 400 kHz. SPI: up to 3\nMHz. UART: 3 Mbps Rotation vector Dynamic error: 3.5°. Static error: 2.0°.\nGame rotation vector Dynamic error: 2.5°. Static error: 1.5°. Dynamic course\ndrift: 0.5°\/min Geomagnetic Rotation Vector Dynamic rotation error: 4.5°.\nStatic rotation error: 3.0°. Gravity angle error: 1.5°. Accuracy linear\nacceleration: 0.35 m\/s². Accelerometer accuracy: 0.\/s². Gyroscope accuracy:\n3.1°\/s Magnetometer accuracy: 1.4µT. 2 Qwiic connection ports. - Address: 0x4B\n(standard), 0x4A. Pull-up resistance (2.2 kΩ). Operating LED. jump throw\nOperating LED. Pull up resistance. Address selection Log Selection 0 Protocol\nOption 1 Board size: 25.4 mm x 30.48 mm. Weight: 3 g. Due to different product\nbatches, words on product may be different, but this does not affect use.\nColor: As picture show Material: PC. Package contents: 1 x Only the above\npackage content, other products are not included. Note: Due to the light\nreflection and monitor settings, the colour of the item in the photos may be\nslightly different. The allowed measurement error is +\/- 1-3 cm.\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eThe IMU splitboard also features -Qwiic connectors to simplify connection to the miniature QFN chassis. It is part of the Qwiic connection system, you can determine the alignment of the elements without welding work. However, if you prefer a breadboard, you will still have pins at a distance of 0.1.\u003c\/li\u003e\n \u003cli\u003eVirtual reality is popular, but the technology behind it shouldn't cost hundreds of dollars. This is exactly where the VR IMU Breakout comes into play. At its heart is the BNO086 from , a combined three-axis acceleration\/gyroscope\/magnetometer package system (SiP) in the 32-bit ARMCortexM0+ processor.\u003c\/li\u003e\n \u003cli\u003eThe BNO086 Inertial Measurement Unit (IMU) produces precise rotation vectors, ideal for VR and other directional applications, with a static rotation error of maximum 2 degrees. The VR IMU is exactly what we've been waiting for. All sensor data is merged and drift corrected to obtain meaningful, accurate IMU information. It is perfect for all projects that require direction or motion detection.\u003c\/li\u003e\n \u003cli\u003eThe BNO080 is designed for use in Android-based smartphones and can perform all the calculations required for virtual reality glasses via the smartphone. For the BNO080 EOL offers a plug-in alternative to the BNO086 with advanced features (14-bit accelerometer fusion, reduced idle power, and interactive calibration). The sensor is very powerful and has a complex interface.\u003c\/li\u003e\n \u003cli\u003eThanks to the one on the board, you can choose between different addresses. If not your preferred communication option, the sensors can also communicate via SPI and UART! We have also developed a -based library that includes rotation vectors (the readings required by most users of an IMU), acceleration, gyroscope and magnetometer values, pedometers and activity classifiers (e.g. cycling).\u003c\/li\u003e\n \u003c\/ul\u003e"}

VR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer/Gyroscope/Magnetometer

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VR IMU Breakout - BNO086 (Qwiic) Three-Axis Accelerometer/Gyroscope/Magnetometer

OVNSHVN It is an ecosystem of sensors, actuators, and cables that accelerates prototype development and makes error prone. All QWIIC-enabled boards use common 4-pin JST connectors in 1mm pitching. Operating voltage: 2.4 V to 3.6 V. Normally 3.3 V via Qwiic cable. (Standard): up to 400 kHz. SPI: up to 3 MHz. UART: 3 Mbps Rotation vector Dynamic error: 3.5°. Static error: 2.0°. Game rotation vector Dynamic error: 2.5°. Static error: 1.5°. Dynamic course drift: 0.5°/min Geomagnetic Rotation Vector Dynamic rotation error: 4.5°. Static rotation error: 3.0°. Gravity angle error: 1.5°. Accuracy linear acceleration: 0.35 m/s². Accelerometer accuracy: 0./s². Gyroscope accuracy: 3.1°/s Magnetometer accuracy: 1.4µT. 2 Qwiic connection ports. - Address: 0x4B (standard), 0x4A. Pull-up resistance (2.2 kΩ). Operating LED. jump throw Operating LED. Pull up resistance. Address selection Log Selection 0 Protocol Option 1 Board size: 25.4 mm x 30.48 mm. Weight: 3 g. Due to different product batches, words on product may be different, but this does not affect use. Color: As picture show Material: PC. Package contents: 1 x Only the above package content, other products are not included. Note: Due to the light reflection and monitor settings, the colour of the item in the photos may be slightly different. The allowed measurement error is +/- 1-3 cm.

Product Features

  • The IMU splitboard also features -Qwiic connectors to simplify connection to the miniature QFN chassis. It is part of the Qwiic connection system, you can determine the alignment of the elements without welding work. However, if you prefer a breadboard, you will still have pins at a distance of 0.1.
  • Virtual reality is popular, but the technology behind it shouldn't cost hundreds of dollars. This is exactly where the VR IMU Breakout comes into play. At its heart is the BNO086 from , a combined three-axis acceleration/gyroscope/magnetometer package system (SiP) in the 32-bit ARMCortexM0+ processor.
  • The BNO086 Inertial Measurement Unit (IMU) produces precise rotation vectors, ideal for VR and other directional applications, with a static rotation error of maximum 2 degrees. The VR IMU is exactly what we've been waiting for. All sensor data is merged and drift corrected to obtain meaningful, accurate IMU information. It is perfect for all projects that require direction or motion detection.
  • The BNO080 is designed for use in Android-based smartphones and can perform all the calculations required for virtual reality glasses via the smartphone. For the BNO080 EOL offers a plug-in alternative to the BNO086 with advanced features (14-bit accelerometer fusion, reduced idle power, and interactive calibration). The sensor is very powerful and has a complex interface.
  • Thanks to the one on the board, you can choose between different addresses. If not your preferred communication option, the sensors can also communicate via SPI and UART! We have also developed a -based library that includes rotation vectors (the readings required by most users of an IMU), acceleration, gyroscope and magnetometer values, pedometers and activity classifiers (e.g. cycling).