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MIS2DH Datasheet(PDF) 16 Page - STMicroelectronics |
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MIS2DH Datasheet(HTML) 16 Page - STMicroelectronics |
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16 / 49 page ![]() Mechanical and electrical specifications MIS2DH 16/49 DocID027506 Rev 2 2.6 Terminology and functionality Terminology 2.6.1 Sensitivity Sensitivity describes the gain of the sensor and can be determined by applying 1 g acceleration to it. As the sensor can measure DC accelerations, this can be done easily by pointing the axis of interest towards the center of the Earth, noting the output value, rotating the sensor by 180 degrees (pointing to the sky) and noting the output value again. By doing so, ±1 g acceleration is applied to the sensor. Subtracting the larger output value from the smaller one, and dividing the result by 2, leads to the actual sensitivity of the sensor. This value changes very little over temperature and time. The sensitivity tolerance describes the range of sensitivities of a large population of sensors. 2.6.2 Zero-g level The zero-g level offset (TyOff) describes the deviation of an actual output signal from the ideal output signal if no acceleration is present. A sensor in a steady state on a horizontal surface will measure 0 g for the X-axis and 0 g for the Y-axis whereas the Z-axis will measure 1 g. The output is ideally in the middle of the dynamic range of the sensor (content of OUT registers 00h, data expressed as two’s complement number). A deviation from the ideal value in this case is called zero-g offset. Offset is to some extent a result of stress to the MEMS sensor and therefore the offset can slightly change after mounting the sensor on a printed circuit board or exposing it to extensive mechanical stress. Offset changes little over temperature, see Table 3 “Zero-g level change vs. temperature” (TCOff). The zero-g level tolerance (TyOff) describes the standard deviation of the range of zero-g levels of a population of sensors. Functionality 2.6.3 High-resolution, normal mode, low-power mode The MIS2DH provides three different operating modes: high-resolution mode, normal mode and low-power mode. The table below summarizes how to select the different operating modes. Table 9. Operating mode selection Operating mode CTRL_REG1[3] (LPen bit) CTRL_REG4[3] (HR bit) BW [Hz] Turn-on time [ms] So @ ±2 g [mg/digit] Low-power mode (8-bit data output) 1 0 ODR/2 1 16 Normal mode (10-bit data output) 0 0 ODR/2 1.6 4 High-resolution mode (12-bit data output) 0 1 ODR/9 7/ODR 1 Not allowed 1 1 -- -- -- |
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