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ADBMS1818ASWZ-R7 数据表(PDF) 38 Page - Analog Devices

部件名 ADBMS1818ASWZ-R7
功能描述  18-Cell Battery Monitor with Daisy Chain Interface
PDF  92 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADBMS1818ASWZ-R7 数据表(HTML) 38 Page - Analog Devices

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Data Sheet
ADBMS1818
THEORY OF OPERATION
analog.com
Rev. B | 38 of 92
Accuracy Check
Measuring an independent voltage reference is the optimal
means to verify the accuracy of a data acquisition system. The
ADBMS1818 contains a 2nd reference for this purpose. The ADAX
command initiates the measurement of the 2nd reference. The
results are placed in Auxiliary Register Group B. The range of
the result depends on the ADC1 measurement accuracy and the
accuracy of the 2nd reference, including thermal hysteresis and
long term drift. Readings outside the 2.992 V to 3.012 V range
indicate the system is out of its specified tolerance. ADC2 is verified
by comparing it to ADC1 using the ADOL command. ADC3 is
verified by comparing it to ADC2 using the ADOL command.
Mux Decoder Check
The diagnostic command DIAGN ensures the proper operation
of each multiplexer channel. The command cycles through all
channels and sets the MUXFAIL bit to 1 in Status Register Group
B if any channel decoder fails. The MUXFAIL bit is set to 0 if the
channel decoder passes the test. The MUXFAIL bit is also set to 1
on a power-on reset (POR) or after a CLRSTAT command.
The DIAGN command takes approximately 400 μs to complete if
the core is in the REFUP state and about 4.5 ms to complete if the
core is in the standby state. The polling methods described in the
Polling Methods section can be used to determine the completion of
the DIAGN command.
ADC Clear Commands
ADBMS1818 has 3 clear ADC commands: CLRCELL, CLRAUX,
and CLRSTAT. These commands clear the registers that store all
ADC conversion results.
The CLRCELL command clears Cell Voltage Register Groups A, B,
C, D, E, and F. All bytes in these registers are set to 0xFF by the
CLRCELL command.
The CLRAUX command clears Auxiliary Register Groups A, B, C,
and D. All bytes in these registers, except the last four registers of
Group D, are set to 0xFF by the CLRAUX command.
The CLRSTAT command clears Status Register Groups A and
B, except for the REV and RSVD bits in Status Register Group
B. A read back of the REV bits returns the revision code of the
part. RSVD bits always read back 0s. All overvoltage (OV) and
undervoltage (UV) flags, MUXFAIL bit, and THSD bit in Status
Register Group B and Auxiliary Register Group D are set to 1
by the CLRSTAT command. The THSD bit is set to 0 after the
RDSTATB command. The registers storing SC, ITMP, VA, and VD
are all set to 0xFF by the CLRSTAT command.
Open Wire Check (ADOW Command)
The ADOW command is used to check for any open wires between
the ADCs of the ADBMS1818 and the external cells. This command
performs ADC conversions on the C pin inputs identically to the
ADCV command, except for two internal current sources sink or
source current into the two C pins while they are being measured.
The pull-up (PUP) bit of the ADOW command determines whether
the current sources are sinking or sourcing 100 μA.
The following simple algorithm can be used to check for an open
wire on any of the 19 C pins:
1. Run the 18-cell command ADOW with PUP = 1 at least twice.
Read the cell voltages for cells 1 through 18 once at the end
and store them in array CELLPU(n).
2. Run the 18-cell command ADOW with PUP = 0 at least twice.
Read the cell voltages for cells 1 through 18 once at the end
and store them in array CELLPD(n).
3. Take the difference between the pull-up and pull-down meas-
urements made in Step 1 and Step 2 for cells 2 to 18: CELL∆(n)
= CELLPU(n) – CELLPD(n).
4. For all values of n from 1 to 17: If CELL∆(n+1) < –400 mV,
then C(n) is open. If CELLPU(1) = 0.0000, then C(0) is open. If
CELLPD(18) = 0.0000, then C(18) is open.
The above algorithm detects open wires using normal mode con-
versions with as much as 10 nF of capacitance remaining on the
ADBMS1818 side of the open wire. However, if more external
capacitance is on the open C pin, then the length of time that
the open wire conversions run in Step 1 and Step 2 must be
increased to give the 100 μA current sources time to create a large
enough difference for the algorithm to detect an open connection.
This action can be accomplished by running more than two ADOW
commands in Step 1 and Step 2, or by using filtered mode conver-
sions instead of normal mode conversions. Refer to Table 31 to
determine how many conversions are necessary.
Table 31. Number of ADOW Commands Required
External C Pin
Capacitance
Number of ADOW Commands Required in Step 1
and Step 2
Normal Mode
Filtered Mode
≤10 nF
2
2
100 nF
10
2
1 μF
100
2
C
1 + ROUNDUP (C/10 nF) 2
Auxiliary Open Wire Check (AXOW Command)
The AXOW command is used to check for any open wires between
the GPIO pins of the ADBMS1818 and the external circuit. This
command performs ADC conversions on the GPIO pin inputs identi-
cally to the ADAX command, except internal current sources sink or
source current into each GPIO pin while it is being measured. The
pull-up (PUP) bit of the AXOW command determines whether the
current sources are sinking or sourcing 100 μA.



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