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ZSC31150FAB-R 数据表(PDF) 13 Page - List of Unclassifed Manufacturers |
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ZSC31150FAB-R 数据表(HTML) 13 Page - List of Unclassifed Manufacturers |
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13 / 24 page ![]() ZSC31150 Fast Automotive Sensor Signal Conditioner Data Sheet August 31, 2010 © 2010 Zentrum Mikroelektronik Dresden AG — Rev. 1.07 All rights reserved. The material contained herein may not be reproduced, adapted, merged, translated, stored, or used without the prior written consent of the copyright owner. The information furnished in this publication is subject to changes without notice. 13 of 24 Figure 2.2: Measurement Cycle 2.3.4. Analog-to-Digital Converter The ADC is an integrating AD-Converter in full differential switched capacitor technique. Programmable ADC-resolutions are rADC=<13, 14> and with segmentation <15, 16> bit. It can be used as first or second order converter. In the first order mode it is inherently monotone and insensitive against short and long term instability of the clock frequency. The conversion cycle time depends on the desired resolution and can be roughly calculated by: tCYC_1 = 2 r / 2 / f CLK In the second order mode two conversions are stacked with the advantage of much shorter conversion cycle time and the drawback of a lower noise immunity caused by the shorter signal integration period. The conversion cycle time at this mode is roughly calculated by: tCYC_2 = 2 (r+3)/2 / 2 / f CLK The calculation formulas give an overview about conversion time for one AD-conversion. Refer Calculation sheet 'ZSC31150 Bandwidth Calculation Sheet' for detailed calculation of sampling time and bandwidth. The result of the AD conversion is a relative counter result corresponding to the following equation: ZADC = 2 r * (V ADC_DIFF / VADC_REF - RSADC) ZADC: number of counts (result of the conversion) r: adjusted resolution in bit VADC/REF_DIFF: differential input/reference voltage of ADC RSADC: digital ADC Range Shift (RSADC = 1/ 16, 1/ 8, 1/ 4, 1/ 2, controlled by the EEPROM content) With the RSADC value a sensor input signal can be shifted in the optimal input range of the ADC. Start routine 1 Temperature Auto Zero n Pressure measurement 1 Temp measurement n Pressure measurement 1 Pressure auto zero n Pressure measurement 1 CMV n Pressure measurement 1 SSC/SCC+ n Pressure measurement 1 SSC/SCC- n Pressure measurement |
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