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ZSC31150FAB-R 数据表(PDF) 16 Page - List of Unclassifed Manufacturers

部件名 ZSC31150FAB-R
功能描述  Fast Automotive Sensor Signal Conditioner
PDF  24 Pages
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制造商  ETC2 [List of Unclassifed Manufacturers]
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ZSC31150FAB-R 数据表(HTML) 16 Page - List of Unclassifed Manufacturers

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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.
16 of 24
ulation
t
2.6.
Analog Output AOUT
n
ut the analog signal conditioning result and for “End of Line” communication
ication is enabled
ation is disabled
500ms in maximum,
indow
WIANA:
in maximum,
indow,
ed)
The a
output p
a 12.4bit
2.7.
Serial Digital Interface
S
igital interface (SIF), which is used for communication with the circuit to
C31150 Functional Description' for a detailed description of the serial interfaces and communication
2.8.
Failsafe Features, Watchdog and Error Detection
alized by changing the internal status
hdog oversees the continuous working of the CMC and the running measurement loop. The operation
mparators watching the input
M- and register content - are watched
the sensor up to 90%. The temperature calibration includes first and second order correction and
should be fairly sufficient in all relevant cases. ADC resolution influences also calibration
possibilities – 1 bit more resolution reduces calibration range by approximately 50%. Calc
input data width is in maximum 14bit. 15 & 16bit ADC resolution mode uses only a 14 bit segmen
of ADC range.
The a alog output is used for outp
via the ZACwire
TM interface (one wire communication interface - OWI). The ZSC31150 supports four different
modes of the analog output in combination with OWI behavior:
OWIENA:
analog output is deactivated, OWI commun
OWIDIS:
analog output is active (~2ms after power on), OWI communic
OWIWIN:
analog output will be activated after time window,
OWI communication is enabled in time window of ~
transmission of “START_CM” command has to be finished during time w
O
analog output will be activated after ~2ms power on time,
OWI communication is enabled in time window of ~500ms
transmission of “START_CM” command has to be finished during time w
to communicate the internal driven potential at AOUT has to be overwritten
by the external communication master (AOUT drive capability is current limit
nalog
otential is driven by a unity gain output buffer, those input signal is generated by
resistor string DAC. The output buffer (BAMP) – a rail-to-rail OPAMP - is offset compensated and current
limited. So a short circuit of analog output to ground or power supply does not damage the ZSC31150.
The Z C31150 includes a serial d
realize calibration of the sensor module. The serial interface is able to communicate with two communication
protocols – I²C
TM and ZACwireTM (a one wire communication interface – also called OWI). The OWI can be
used to realize an “End of Line” calibration via the analog output AOUT of the complete assembled sensor
module.
Refer 'ZS
protocols.
The ZSC31150 detects various possible errors. A detected error is sign
in diagnostic mode (DM). In this case the analog output is set to LOW (minimum possible output value = lower
diagnostic range – LDR) and the output registers of the digital serial interface are set to a significant error
code.
A watc
of the internal clock oscillator is verified continuously by oscillator fail detection.
A check of the sensor bridge for broken wires is done permanently by two co
voltage of each input (sensor connection and short check). Additionally the common mode voltage of the
sensor and sensor input short is watched permanently (sensor aging).
Different functions and blocks in digital part - like RAM-, ROM-, EEPRO
continuously. Refer 'ZSC31150 Functional Description' for a detailed description of safety features and
methods of error messaging.



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