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ZSC31015EIG1-R 数据表(PDF) 31 Page - Integrated Device Technology |
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ZSC31015EIG1-R 数据表(HTML) 31 Page - Integrated Device Technology |
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31 / 52 page ![]() © 2016 Integrated Device Technology, Inc 31 November 14, 2016 ZSC31015 Datasheet Command Byte Data Description 80HEX YYHEX Program Gain_B upper 7-bits (Set the MSB to 0.) 90HEX YYHEX Program Gain_B lower 8-bits A0HEX YYHEX Program Offset_B upper 6-bits (Set the two MSBs to 0.) B0HEX YYHEX Program Offset_B lower 8-bits C0HEX YYHEX Program Gain_T D0HEX YYHEX Program Offset_T E0HEX YYHEX Program Tco F0HEX YYHEX Program Tcg 08HEX YYHEX Program Upper Clipping Limit (Set the MSB to 0.) 18HEX YYHEX Program Lower Clipping Limit (Set the MSB to 0.) 28HEX YYHEX Program Cust_ID0 38HEX YYHEX Program Cust_ID1 48HEX YYHEX Program Cust_ID2 3.4. Calibration Sequence Although the ZSC31015 can work with many different types of resistive bridges, assume a pressure bridge is being used for the following discussion on calibration. Calibration essentially involves collecting raw bridge and temperature data from the ZSC31015 for different known pressures and temperatures. This raw data can then be processed by the calibration master (typically a PC) to compute the coefficients, and the calculated coefficients can then be written to the ZSC31015. IDT can provide software and hardware with samples to perform the calibration. There are three main steps to calibration: 1. Assigning a unique identification to the ZSC31015. This identification is programmed in EEPROM and can be used as an index into the database stored on the calibration PC. This database will contain all the raw values of bridge readings and temperature readings for that part, as well as the known pressure (for this application) and temperature the bridge was exposed to. This unique identification can be stored in a concatenation of the following EEPROM registers: Cust_ID0, Cust_ID1, Cust_ID2. These registers can also form a permanent serial number. 2. Data collection. Data collection involves getting raw data from the bridge at different known pressures and temperatures. This data is then stored on the calibration PC using the unique identification of the ZSC31015 as the index to the database. 3. Coefficient calculation and write. Once enough data points have been collected to calculate all the desired coefficients then the coefficients can be calculated by the calibrating PC and written to the ZSC31015. |
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