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BQ76PL536APAPR датащи(PDF) 25 Page - Texas Instruments

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номер детали BQ76PL536APAPR
подробное описание детали  Cell Lithium-Ion Battery Monitor and Secondary Protection IC
PDF  74 Pages
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производитель  TI1 [Texas Instruments]
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BQ76PL536APAPR датащи(HTML) 25 Page - Texas Instruments

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SLUSAD3B – JUNE 2011 – REVISED JANUARY 2016
7.3.1.11.1
Ratiometric Sensing
The OT protector circuits use ratiometric inputs to sense fault conditions. The REG50 output is applied internally
to the divider which forms the reference voltages used by the comparator circuit. The REG50 output is also used
externally as the excitation source for the temperature sensor. This allows the REG50 output to vary over time or
temperature (within data-sheet limits) and have virtually no effect on the correct operation of the circuit. Any
change seen by the sensor is also seen by the divider, and therefore, changes proportionally. Although it is valid
to represent the trip set points as voltages, if you assume that REG50 is at exactly 5 V, in practice, this is not the
case. In Table 2, the correct ratios [RB/(RB + RT + RTH)] are shown, along with the equivalent voltage points when
REG50 is assumed to be 5 V.
Table 2. Overtemperature Trip Set Points
OT THRESHOLDS
CONFIG_OT
TNOM °C
(1)
VTS RATIO SET
VTS RATIO CLEAR
VSET
(2)
VCLEAR
(2)
0
Disabled
Disabled
Disabled
Disabled
Disabled
1
40
0.2000
0.1766
1.000
0.883
2
45
0.2244
0.2000
1.122
1.000
3
50
0.2488
0.2270
1.244
1.135
4
55
0.2712
0.2498
1.356
1.249
5
60
0.2956
0.2750
1.478
1.375
6
65
0.3156
0.2956
1.578
1.478
7
70
0.3356
0.3162
1.678
1.581
8
75
0.3556
0.3368
1.778
1.684
9
80
0.3712
0.3528
1.856
1.764
10
85
0.3866
0.3688
1.933
1.844
11
90
0.4000
0.3824
2.000
1.912
(1)
TNOM depends on thermistor selection
(2)
Assumes REG50 = 5.000 V
7.3.1.11.2
Thermistor Power
To minimize power consumption, the thermistors are not powered ON by default. Two bits are provided in
IO_CONTROL to control powering the thermistors, TS1 and TS2. The TSn– input is only connected to VSS when
the corresponding bit is set. The user firmware must set these bits to 1 to enable both temperature measurement
and the secondary protector functions. When the thermistor functions are not in use, the bits may be
programmed to 0 to remove current through the thermistor circuits.
7.3.1.11.3
Thermistor Input Conditioning
A filter capacitor is recommended to minimize noise in to the ADC and protector. The designer should insure that
the filter capacitor has sufficient time to charge before reading the thermistors. The CONFIG_OTT value should
also be set to >5t, the time delay introduced by the RC network comprising CF, RTH, RT, and RB, to avoid false
triggering of the PROTECTOR function and ALERT signal when the TS1 and/or TS2 bits are set to 1 and the
inputs enabled.
On exit from the SLEEP state, the OT fault comparators are disabled for approximately 200 µs to allow internal
circuitry to stabilize and prevent false error-condition detection.
7.3.1.12 Fault and Alert Behavior
When the FAULT_N pin is asserted by the next higher bq76PL536A in the stack, then the FAULT_S is also
asserted, thereby passing the signal down the array of stacked devices if they are present. FAULT_N should
always be connected to the FAULT_S of the next higher device in the stack. If no higher device exists, it should
be tied to VBAT of this bq76PL536A, either directly or via a pullup resistor from approximately 10 kΩ to 1 MΩ. The
FAULT_x pins are active-high and current flows when asserted. The ALERT_x pins behave in a similar manner.
If the FAULT_N pin of the base device (HSEL = 0) becomes asserted, it asserts its FAULT_H signal to the host
microcontroller. This signal chain may be used to create an interrupt to the CPU, or drive other compatible logic
or I/O directly. See Table 3 for further details.
Copyright © 2011–2016, Texas Instruments Incorporated
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