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ADBMS2950BCCSZ датащи(PDF) 31 Page - Analog Devices

номер детали ADBMS2950BCCSZ
подробное описание детали  Battery Pack Monitor
PDF  97 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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ADBMS2950BCCSZ датащи(HTML) 31 Page - Analog Devices

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Data Sheet
ADBMS2950B
Rev. 0 | Page 31 of 97
ADC MEASUREMENTS
The ADBMS2950B provides various ADC measurement paths
optimized for typical application requirements and are
described in the following chapters. All ADC inputs are
buffered. The Electrical Characteristics lists the available linear
input ranges. The OCxADC is monotonic over the absolute
maximum input voltage range of the IA, IB, and SA pins. The
IxADC is monotonic over the OCxADC input range. The
VxADC and VBxADC are also monotonic, including outside
the linear range of their input buffers. Their output does not
'roll over' or otherwise represents signals of the opposite
polarity.
There are various ways to check for the end of conversion
(EOC) of the various ADCs. In the simplest case, the host waits
for the maximum possible conversion time (typical time +10%)
before reading the result registers.
The conversion result registers can be cleared to the bitwise
inverse (all bits flipped) of their reset values using the clear
commands (CLRI, CLRA, CLRVX, and CLRO), which allows
the host to check for stuck faults of the result registers after
reset. The CLRA command that resets the accumulated result
registers must not be issued during continuous IxADC,
VBxADC operation as it might corrupt the ongoing or next
accumulation cycle. The CLRI, CLRVX, and CLRO commands
can be issued at any time.
Table 39 gives an overview of all ADCs and the related trigger
commands. The ADCs grouped in rows always convert
synchronously. Both IxADC, VBxADC channels convert
synchronously when commanded with ADIx, RD=1. The
OCxADC always operate continuously and the IxADC and
VBxADC depend on the OPT parameter of the ADIx
commands, as indicated in the Continuous column of Table 39.
The VxADC and AUX ADC do not operate continuously but
triggered on demand through ADV or ADX.
Table 39. Overview of ADCs and Related Trigger Commands
ADCs
Inputs
Trigger Command
Continuous
Description
OCxADC
I1A, I1B, I2A, I2B, I3A, I3B, VREF1-VREF2
WRCFGA (OCEN = 1)
Yes
Overcurrent ADCs.
I1ADC, VB1ADC
I1A, I1B, VBATx, SGND
ADI1
Yes (OPT)
Battery current and voltage ADCs channel 1.
I2ADC, VB2ADC
I2A, I2B, VBATx, SGND
ADI2
Yes (OPT)
Battery current and voltage ADCs channel 2.
V1ADC, V2ADC
V1 to V10, VREF2, VREF1P25, SGND
ADV
No
Voltage ADCs.
AUX ADC
See Table 48
ADX
No
Auxiliary ADC.
Battery Current Measurement
The ADBMS2950B features two low-offset measurement paths
to redundantly measure the voltage drop across a shunt resistor.
Both measurement paths contain 18-bits ADCs (I1ADC and
I2ADC) that allow the voltage developed over the shunt resistor
to be resolved down to 1 µV. Measurements are triggered
through the ADI1 and ADI2 commands with the typical
operation of I1ADC running in continuous mode and I2ADC
operating synchronously for redundancy or to execute various
diagnostic measurements. Both ADCs provide a measurement
result every 1 ms. If redundancy is required, the two ADCs run
in a perfectly synchronized lockstep to allow for result
comparison in the host controller. For the representation of the
measurement results, see the Memory Map description in the
respective registers.
If a new ADI1 or ADI2 command is received during
conversions, the ongoing conversions of the concerned ADCs
are stopped and new measurements are started, which allow the
re-synchronization of the ADBMS2950B to ADI battery stack
monitors. The corresponding result registers remain unchanged
upon reception of a new ADI1 or ADI2 and updated with the
new conversion results once the acquisition time (nominally
after 1 ms or ACCN times 1 ms) has elapsed.
Conversion Counters
For single-shot conversions, or in the case of the IxADCs, for
the first conversion after enabling the continuous mode, the
Poll commands (PLADC, PLI1, PLI2, PLV, and PLX) can be
used to determine if a conversion has completed. For
I1ADC/VB1ADC operating in continuous mode, the
Conversion Counter I1CNT that increments with each 1 ms
I1ADC/VB1ADC conversion allows to detect if new
conversions are available. For diagnostic purposes also the
I2ADC/VB2ADC operating in continuous mode provides the
Conversion Counter I2CNT that increments with each 1 ms
I2ADC/VB2ADC conversion. For the I1ADC/VB1ADC, the
I1PHA counter that increments four times per
I1ADC/VB1ADC conversion provides additional conversion
phase information. I1CNT and I1PHA can be treated as on 13-
bit counter I1CNTPHA[12:0] that increments four times for
every I1ADC/VB1ADC conversion.
Initialization Cycle
Upon receiving the first ADI1, ADI2, ADV, or ADX command
from within the REFUP state after power-up or SRST, the IC
enters the MEASURE state, and the IxADC initialization
process is started. The ADI1 or ADI2 commands must be sent
with OPT = 0b0000. Diagnostic measurements on IxADC and
VBxADC are not allowed during the IxADC initialization
phase.



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