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FXLS8964AF 数据表(PDF) 35 Page - NXP Semiconductors |
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FXLS8964AF 数据表(HTML) 35 Page - NXP Semiconductors |
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35 / 98 page ![]() NXP Semiconductors FXLS8964AF 3-Axis Low-g Accelerometer Bit 7 6 5 4 3 2 1 0 Name — — — — VECM[11:8] Reset 0 0 0 0 0 0 0 0 Access R R R R R R R R Table 26. VECM_MSB register (address 03h) bit allocation Field Description 3 to 0 VECM[11:8] MSB of the 12-bit unsigned acceleration vector modulus result Table 27. VECM_MSB register (address 03h) bit description 15.5 OUT_X_LSB, OUT_X_MSB, OUT_Y_LSB, OUT_Y_MSB, OUT_Z_LSB, OUT_Z_MSB registers (addresses 04h to 09h) These registers contain the 12-bit X-axis, Y-axis, and Z-axis output acceleration data in 2's complement format. The output data is latched into the OUT_X/Y/Z registers along with the assertion of the SRC_DRDY event flag. When SENS_CONFIG2[F_READ] = 1, the auto-increment mechanism skips the MSB registers in a burst read transaction. This operation shortens the output data size from 6 bytes to 3 bytes per XYZ sample read. The byte order of the output data is programmable via SENS_CONFIG2[LE_BE] and defaults to little-endian mode. When SENS_CONFIG2[F_READ] = 1, the MSB of each axis's data is stored at the LSB address, regardless of the setting made in SENS_CONFIG2[LE_BE]. In little-endian mode, the output data registers are arranged with the LSB of each axis's data stored at the lower address. The upper nibble (MSB) is stored at the next address, in right justified format. In little-endian mode, the MSB is sign extended to form a 16-bit 2's complement value. In big-endian mode ( SENS_CONFIG2[LE_BE] = 1), the output data registers are arranged with the MSB of each axis's data stored at the lower register address. The lower nibble is stored at the next address, and is left justified. The big-endian option allows a big-endian processor to directly read the output data into an array without the need to perform byte swaps. The host software must right shift the data by 4 bits (or divide by 16) in order to obtain the correct scaling of the output data. The sign extension of the data must be done explicitly, depending on the C compiler used. Notes: • There is a ~40 µs delay between the ADC acquisitions of the accelerometer X,Y,Z, and temperature data. The temperature data is acquired first, followed by the X, Y, and Z axes acceleration data. All data is latched into the output registers at the same time instant, coincident with the SRC_DRDY event flag being asserted. Whenever any of the OUT_X/Y/Z registers is read the SRC_DRDY event flag is cleared. • SX means sign extension, which is the logic level of the most significant bit of the 12-bit OUT_X/Y/Z register data, also known as OUT_X/Y/Z[11]. FXLS8964AF All information provided in this document is subject to legal disclaimers. © NXP B.V. 2021. All rights reserved. Product data sheet Rev. 3.4 — 7 December 2021 35 / 98 |
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