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ZSSC3136 датащи(PDF) 13 Page - Integrated Device Technology

номер детали ZSSC3136
подробное описание детали  Sensor Signal Conditioner for Safety Switch Applications
PDF  24 Pages
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производитель  IDT [Integrated Device Technology]
домашняя страница  http://www.idt.com
Logo IDT - Integrated Device Technology

ZSSC3136 датащи(HTML) 13 Page - Integrated Device Technology

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ZSSC3136 Datasheet
© 2016 Integrated Device Technology, Inc.
13
January 22, 2016
2.3.4.
Analog-to-Digital Converter
The A/D converter is implemented using full-differential switched-capacitor technique.
Programmable ADC resolutions are rADC=<13, 14>bit.
The A/D conversion is integrating, inherently monotone, and insensitive to short and long term instability of the
clock frequency. The conversion time tADC depends on the desired resolution and can be roughly calculated by
equation (1):
=
2
f
2
t
OSC
r
ADC
ADC
(1)
Where
rADC
Resolution of A/D conversion
fOSC
Frequency of internal oscillator (refer to 1.3.1)
Refer to the ZSSC313x Bandwidth Calculation Sheet for a detailed calculation of sampling time and bandwidth.
The result of the A/D conversion is a relative counter result Z corresponding to the following equation:
)
RS
V
V
(
2
Z
ADC_REF
ADC_DIFF
rADC
=
(2)
Where
rADC
Resolution of A/D conversion
VADC_DIFF
Differential ADC input voltage
VADC_REF
ADC reference voltage (VVBR_T-VVBR_B or VVDDA-VVSSA, if BRREF=1)
RS
Digital ADC Range Shift (RS = 1/16, 1/8, 1/4, 1/2; controlled by the EEPROM contents)
With the RS value, a sensor input signal can be shifted in the optimal input range of the ADC.
The condition required for ensuring the specified accuracy, stability, and non-linearity parameters of the analog
front-end is that the differential ADC input voltage VADC_DIFF does not exceed the range of 10% to 90% of the ADC
reference voltage VADC_REF. This requirement must be met for the whole temperature range and for all sensor
tolerances.



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