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resources:eval:user-guides:inertial-mems:imu:adis1646x [06 Oct 2014 22:46]
Scott Hutchens [EXAMPLE EXERCISES]
resources:eval:user-guides:inertial-mems:imu:adis1646x [28 Mar 2015 01:11]
Mark Looney [ADIS1646x/PCB BREAKOUT BOARD]
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 ===== OVERVIEW ===== ===== OVERVIEW =====
  
-The [[adi>​ADIS16460|ADIS16460]] ​ iSensor® device is a complete inertial system that includes a triaxial gyroscope and a triaxial accelerometer. Each sensor in the [[adi>​ADIS16460|ADIS16460]] combines industry-leading iMEMS® technology ​with signal conditioning that optimizes dynamic performance. The factory calibration characterizes each sensor for sensitivity,​ bias and alignment. As a result, each sensor has its own dynamic compensation formulas that provide accurate sensor measurements.+Insert product picture, ​with key feature annotations
  
-The ADIS1646x is a low-profile,​ compact IMU that uses a serial peripheral interface (SPI) for data communications. This interface enables direct connection with a large variety of embedded processor products. This electrical connection typically only requires 5 I/O lines for synchronous data collection, as shown in the following figure: 
  
-{{:​resources:​eval:​user-guides:​inertial-mems:​imu:​460-spi-lines.png?​400|}} +===== SUMMARY ​===== 
- +Brief description of the parts required ​to evaluate product with a PC
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-===== ADIS1646x/​PCB BREAKOUT BOARD ===== +
-For those who are on a tight timeline, connecting ​the [[adi>​ADIS16460|ADIS16460]] ​to an embedded controller will provide the most flexibility in developing application firmware and will more closely reflect the final system design. The [[adi>​en/​evaluation/​eval-adis16imu3/​eb.html#​buy|ADIS16IMU3/​PCBZ]] is the breakout board for the [[adi>​ADIS16460|ADIS16460]] and may provide assistance in the process of hooking it up to an existing embedded processor system. ​  +
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-{{:​resources:​eval:​user-guides:​inertial-mems:​imu:​adis16imu3-parts.png?​400|}}+
  
  
resources/eval/user-guides/inertial-mems/imu/adis1646x.txt · Last modified: 09 Jan 2021 00:39 by Robin Getz