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Data Memory Interface
6.1.3 SEALING and UNSEALING Data Memory Access
The fuel gauge implements a key-access scheme to transition from SEALED to UNSEALED mode. Once
SEALED via the associated subcommand, a unique set of two keys must be sent to the fuel gauge via the
Control()
command to return to UNSEALED mode. The keys must be sent consecutively, with no other
data being written to the
Control()
register in between.
When in the SEALED mode, the
CONTROL_STATUS [SS]
bit is set; but when the
Sealed to Unsealed
keys are correctly received by the fuel gauge, the
[SS]
bit is cleared. The
Sealed to Unsealed
key has
two identical words stored in ROM with a value of 0x8000 8000. Then
Control()
should supply 0x8000 and
0x8000 (again) to unseal the part.
6.2
Data Types Summary
Table 6-1. Data Type Decoder
Type
Min Value
Max Value
F4
±9.8603 × 10
–39
±5.707267 × 10
37
H1
0x00
0xFF
H2
0x00
0xFFFF
H4
0x00
0xFFFF FFFF
I1
–128
127
I2
–32768
32767
I4
−
2,147,483,648
2,147,483,647
Sx
1-byte string
X-byte string
U1
0
255
U2
0
65535
U4
0
4,294,967,295
6.3
bq27441 Data Memory Summary Tables
Table 6-2. Data Memory Summary–Configuration Class
Subclass
Subclass
Offset
Name
Type
Value
Unit
ID
Min
Max
Default
Safety
2
0
Over Temp
I2
–1200
1200
550
0.1°C
2
Under Temp
I2
–1200
1200
0
0.1°C
4
Temp Hys
U1
0
255
50
0.1°C
Charge
36
3
TCA Set %
I1
–1
100
99
%
Termination
4
TCA Clear %
I1
–1
100
95
%
5
FC Set %
I1
–1
100
–1
%
6
FC Clear %
I1
0
100
98
%
7
DODatEOC Delta T
I2
0
1000
50
0.1°C
Data
48
2
Initial Standby
I1
–128
0
–3
mA
3
Initial MaxLoad
I2
–32768
0
–200
mA
Discharge
49
0
SOC1 Set Threshold
U1
0
100
10
%
1
SOC1 Clear Threshold
U1
0
100
15
%
2
SOCF Set Threshold
U1
0
100
2
%
3
SOCF Clear Threshold
U1
0
100
5
%
Registers
64
0
OpConfig
H2
0x00
0xFFFF
0x25F8
Flag
2
OpConfigB
H1
0x00
0xFF
0x0F
Flag
Power
68
7
Hibernate I
I2
0
8000
3
mA
9
Hibernate V
I2
0
5000
2200
mV
29
SLUUAC9A – December 2013 – Revised May 2015
Data Memory
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