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Arduino-compatible microSD motion datalogging board with accelerometer, magnetometer, gyroscope, pressure, temperature and real-time clock. Paperduino [196] ATmega168 An ultra low-cost Arduino compatible, built on a printed paper and cardboard substrate, rather than a PCB. Photon [197] STM32F205 [198] Particle
The Arduino processors may sample data from the following sensors : one digital 3-axis magnetometer (MAG3110) one digital 3-axis gyroscope (ITG-3200) one 3-axis accelerometer (ADXL345) one infrared temperature sensor with a wide sensing range (MLX90614) four digital temperature sensors (TMP102) : 2 in the payload, 2 on the bottomplate
Arduino-compatible microSD motion datalogging board with accelerometer, magnetometer, gyroscope, pressure, temperature and real-time clock. Paperduino [183] ATmega168 An ultra low-cost Arduino compatible, built on a printed paper and cardboard substrate, rather than a PCB. Photon [184] Particle STM32F205 [185]
An accelerometer measures proper acceleration, which is the acceleration it experiences relative to freefall and is the acceleration felt by people and objects. [2] Put another way, at any point in spacetime the equivalence principle guarantees the existence of a local inertial frame, and an accelerometer measures the acceleration relative to that frame. [4]
The Inertial Motion Unit (IMU) sensor combines an accelerometer and a gyroscope in one sensor. The sensor has six degrees of freedom, measuring x, y, and z axes for both the gyroscope and the accelerometer. [40] IMU users can create a "Segway" NXT, which enables a robot to stand on its tires and move in 360 degrees around its axis. [41]
Essentially, a gyroscope is a top combined with a pair of gimbals. Tops were invented in many different civilizations, including classical Greece, Rome, and China. [5] Most of these were not utilized as instruments. The first known apparatus similar to a gyroscope (the "Whirling Speculum" or "Serson's Speculum") was invented by John Serson in ...
An inertial reference unit (IRU) is a type of inertial sensor which uses gyroscopes (electromechanical, ring laser gyro or MEMS) and accelerometers (electromechanical or MEMS) to determine a moving aircraft’s or spacecraft’s change in rotational attitude (angular orientation relative to some reference frame) and translational position (typically latitude, longitude and altitude) over a ...
The PIGA was based on an accelerometer developed by Dr. Fritz Mueller, then of the Kreiselgeraete Company, for the LEV-3 and experimental SG-66 guidance system of the Nazi era German V2 (EMW A4) ballistic missile and was known among the German rocket scientists as the MMIA "Mueller Mechanical Integrating Accelerometer". This system used ...
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