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ZSC31150FEB-R Datasheet(PDF) 14 Page - Zentrum Mikroelektronik Dresden AG |
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ZSC31150FEB-R Datasheet(HTML) 14 Page - Zentrum Mikroelektronik Dresden AG |
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14 / 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. 14 of 24 Table 2.3: Analog Output Resolution Versus Sample Rate ADC Adjustment Approximated Output Resolution 15 Sample Rate fCON 16 Averaged Bandwidth @ Order Digital Analog fCLK=3MHz fCLK=3MHz fCLK=4MHz rADC fCLK=4MHz [Bit] [Bit] [Bit] OADC [Hz] [Hz] [Hz] [Hz] 13 13 12 345 460 130 172 14 14 12 178 237 67 89 Remark: ADCs reference voltage ADCVREF is defined by the potential between <VBR_T> and <VBR_B> (or <VDDA> to <VSSA>, if CFGAPP:BREF=1). The theoretically input range ADCRANGE_INP of the ADC is equivalent to ADCs reference voltage. In practice ADCs input range should be used in maximum from 10% to 90% of ADCRANGE_INP - a necessary condition for abiding specified accuracy, stability and nonlinearity parameters of AFE. This condition is also valid for whole temperature range and all applicable sensor tolerances. Inside of ZSC31150 is no failsafe task implemented, which verifies abiding of this condition. 2.4. Temperature Measurement The ZSC31150 supports four different methods for temperature data acquiring needed for calibration of the sensor signal in temperature range. Temperature data can be acquired using: an internal pn-junction temperature sensor, an external pn-junction temperature sensor connected to sensor top potential (VBRTOP), an external resistive half bridge temperature sensor and the temperature coefficient of the sensor bridge at bridge current excitation. Refer 'ZSC31150 Functional Description' for a detailed explanation of temperature sensor adaptation and adjustment. 15 ADC resolution should be one bit higher then applied output resolution, if AFE gain is adjusted in such manner, that input range is used more than 50%. Otherwise ADC resolution should be more than one bit higher than applied output resolution. 16 The sampling rate (AD conversion time) is only a part of the whole cycle, refer “ZSC31150 bandwidth calculation sheet” for detailed information 15 14 12 90 120 34 45 1 16 14 12 45 61 17 23 13 13 12 5859 7813 2203 2937 14 14 12 3906 5208 1469 1958 15 14 12 2930 3906 1101 1468 2 16 14 12 1953 2604 734 979 |
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