s-8211dat-i6t1g Seiko Instruments Inc., s-8211dat-i6t1g Datasheet - Page 14

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s-8211dat-i6t1g

Manufacturer Part Number
s-8211dat-i6t1g
Description
Battery Protection Ic For 1-cell Pack
Manufacturer
Seiko Instruments Inc.
Datasheet
14
BATTERY PROTECTION IC FOR 1-CELL PACK
S-8211D Series
(16) Discharge Overcurrent Detection Delay Time
(17) Load Short-circuiting Detection Delay Time
(18) 0 V Battery Charge Starting Charger Voltage (Products with 0 V Battery Charging Function Is “Available”)
(19) 0 V Battery Charge Inhibition Battery Voltage (Products with 0 V Battery Charging Function Is
(Test Condition 9, Test Circuit 5)
Discharge overcurrent detection delay time (t
momentarily increases (within 10
0 V.
(Test Condition 9, Test Circuit 5)
Load short-circuiting detection delay time (t
momentarily increases (within 10
0 V.
(Test Condition 10, Test Circuit 2)
The 0 V charge starting charger voltage (V
V
V2 = 0 V.
“Unavailable”)
(Test Condition 11, Test Circuit 2)
The 0 V charge inhibition charger voltage (V
V
0 V, V2 = 4 V.
CO
CO
goes to “H” (V
goes to “H” (V
VM
VM
0.1 V or higher) when the voltage V2 is gradually decreased from the starting condition of V1 =
0.1 V or higher) when the voltage V1 is gradually increased from the starting condition of V1 =
s) from 0 V to 0.35 V under the set conditions of V1 = 3.5 V, V2 =
s) from 0 V to 1.6 V under the set conditions of V1 = 3.5 V, V2 =
Seiko Instruments Inc.
0CHA
0INH
SHORT
) is defined as the voltage between the VDD pin and VM pin at which
DIOV
) is defined as the voltage between the VDD pin and VSS pin at which
) is the time needed for V
) is the time needed for V
DO
DO
to go to “L” after the voltage V2
to go to “L” after the voltage V2
Rev.4.9
_00

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