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SI9731 Fiches technique(PDF) 5 Page - Vishay Siliconix

No de pièce SI9731
Description  uP Controlled Battery Charger for 1-Cell Li-ion or 1-Cell to 3-Cell NiCd/NiMH Batteries
Download  11 Pages
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Fabricant  VISHAY [Vishay Siliconix]
Site Internet  http://www.vishay.com
Logo VISHAY - Vishay Siliconix

SI9731 Fiches technique(HTML) 5 Page - Vishay Siliconix

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Document Number: 71321
S09-2249-Rev. C, 26-Oct-09
www.vishay.com
5
Vishay Siliconix
Si9731
Notes:
a. "OK to Charge" is a flag signal that is enabled by satisfying all the following conditions:
1. Battery voltage is below 5 V
2. Charger voltage is greater than 3 V but below 12.8 V
3. If MAINCHARGEEN = Logic Low, VCHARGER > VBAT + 40 mV,
If MAINCHARGEEN = Logic High, VCHARGER > VBAT - 40 mV
4. ON/OFF pin is at logic high.
b. Q1 drive is determined by the error amplifier during constant voltage mode.
Q1 drive is a combination of Q1 drive (digital) and the output of the error amplifier using the analog adder. The combinations are:
TABLE 1: BATTERY CHARGING CONTROL LOGIC Nominal Voltage Values
VCHARGER
TRICKLE
CHARGEEN
CVMODE
MAIN
CHARGEEN
ON/OFF
Q1b
Q2
Mode
Not Present
X
X
X
X
OFF
OFF
Not Charging
Not Present
OK to Chargea
X
X
X
X
OFF
OFF
Not Charging
Over Voltage
VCHARGER > 12.8 V
X
X
X
X
OFF
OFF
Not Charging
Present
OK to Chargea
X
X
X
LOW
OFF
OFF
Not Charging (Shutdown)
LOW
LOW
LOW
HIGH
OFF
ON
Trickle Charge
HIGH
LOW
LOW
HIGH
OFF
OFF
Not Charging
(Current pulse off during Constant
Current Charge)
LOW
LOW
HIGH
HIGH
ON
OFF
Constant Current Charge
(current pulse on)
HIGH
LOW
HIGH
HIGH
ON
OFF
LOW
HIGH
LOW
HIGH
OFF
OFF
Not Charging
(Current pulse off during Constant
Current Charge with output limited
to 4.1 V/4.2 V or end of charge in Li-Ion
charging)
HIGH
HIGH
LOW
HIGH
OFF
OFF
LOW
HIGH
HIGH
HIGH
ON
OFF
Constant Current Charge
(Output Limited to 4.1 V/4.2 V or
Constant Voltage Charge)
HIGH
HIGH
HIGH
HIGH
ON
OFF
TABLE 2
Q1 Drive (Digital)
Output of Error Amplifier
Q1 Drive
LOW
LOW
LOW (fully off)
LOW
Intermediate
Intermediate (linear mode)
HIGH
LOW
HIGH (fully on)
HIGH
HIGH
Should Never Happen


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