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ZSC31150GEG2-R 数据表(PDF) 13 Page - Renesas Technology Corp

部件名 ZSC31150GEG2-R
功能描述  Fast Automotive Sensor Signal Conditioner
PDF  27 Pages
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制造商  RENESAS [Renesas Technology Corp]
网页  http://www.renesas.com
标志 RENESAS - Renesas Technology Corp

ZSC31150GEG2-R 数据表(HTML) 13 Page - Renesas Technology Corp

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ZSC31150 Datasheet
© 2016 Integrated Device Technology, Inc.
13
December 6, 2016
Figure 2.2 Measurement Cycle
Start Routine
1
Temperature auto-zero
n
Bridge sensor measurement
1
Temperature measurement
n
Bridge sensor measurement
1
Bridge sensor auto-zero
n
Bridge sensor measurement
1
CMV
n
Bridge sensor measurement
1
SSC/SCC+
n
Bridge sensor measurement
1
SSC/SCC-
n
Bridge sensor measurement
2.3.4 Analog-to-Digital Converter
The ADC is an integrating analog-to-digital converter in full differential switched capacitor technique.
Programmable ADC resolutions are rADC=<13, 14> or with segmentation, rADC=<15, 16> bit.
The ADC can be used as a first or second order converter. In the first order mode, it is inherently monotone and insensitive to short and
long-term instability of the clock frequency. The conversion cycle time depends on the desired resolution and can be roughly calculated by the
following equation where rADC is the ADC resolution and tADC_1 is the conversion cycle time in seconds in first-order mode:
2
2
t
ADC_1
OSC
r
f
ADC
In the second order mode, two conversions are stacked with the advantage of a much shorter conversion cycle time but the drawback of a
lower noise immunity caused by the shorter signal integration period. The approximate conversion cycle time tADC_2 in second-order mode is
calculated by the following equation:
2
2
t
2
/
)
3
(
ADC_2
OSC
r
f
ADC
The calculation formulas for tADC give an overview of conversion time for one AD conversion. Refer to the ZSC31150 Bandwidth Calculation
Spreadsheet for detailed calculations for sampling time and bandwidth.



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