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T63H0008A 参数 Datasheet PDF下载

T63H0008A图片预览
型号: T63H0008A
PDF下载: 下载PDF文件 查看货源
内容描述: 锂离子/聚合物电池一节电池保护 [Li-Ion/Polymer Battery for one-cell Protector]
分类和应用: 电池
文件页数/大小: 20 页 / 342 K
品牌: TMT [ TAIWAN MEMORY TECHNOLOGY ]
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T63H0008A
MEASUREMENT CIRCUITS
Unless otherwise specified, the output voltage levels “H” and “L” at COUT and DOUT pins are judged by the
threshold voltage (1.0V) of the N channel FET. Judge the COUT pin level with respect to V- and the DOUT pin
level with respect to VSS.
(1) Measurement Condition 1, Measurement Circuit 1
(Overcharge detection voltage, Overcharge hysteresis voltage).
The overcharge detection voltage (VDET1) is defined by the voltage between VDD and VSS at which VCO
goes “L” from “H” when the voltage V1 is gradually increased from the starting condition V1=3.5V and
V2=0V. The overcharge hysteresis voltage (VHC T1) is then defined by the difference between the
overcharge detection voltage (VDD) and the voltage between VDD and VSS at which VCOUT goes “H”
from “L” when the voltage V1 is gradually decreased.
(2) Measurement Condition 2, Measurement Circuit 2
(Over-discharge detection voltage, Over-discharge hysteresis voltage )
The over-discharge detection voltage (VDET2) is defined by the voltage between VDD and VSS at which
VDO goes “L” from “H” when the voltage V1 is gradually decreased from the starting cond ition V1=3.5V
and V2=0V. The over-discharge hysteresis voltage (VHDT2 ) is then defined by the difference between the
over-discharge detection voltage (VDET2) and the voltage between VDD and VSS at which VDO goes
“H” from “L” when the voltage V1 is gradually increased.
(3) Measurement Condition 3, Measurement Circuit 2
(Over-current 1 detection voltage, Over-current 2 detection voltage, Load short-circuiting detection voltage)
The over-current 1 detection voltage is defined by the voltage between V- and VSS whose delay time for
changing VDO from “H” to “L” lies between the minimum and the maximum value of the over-current 1
detection delay time when the voltage V2 is increased rapidly within 10us from the starting condition
V1=3.5V and V2=0V.
The over-current 2 detection voltage is defined by the voltage between V- and VSS whose delay time for
changing VDO from “H” to “L” lies between the minimum and the maximum value of the over-current 2
detection delay time when the voltage V2 is increased rapidly within 10us from the starting condition
V1=3.5V and V2=0V.
The load short-circuiting detection voltage is defined by the voltage between V- and VSS whose delay time
for changing VDO from “H” to “L” lies between the minimum and the maximum value of the load
short-circuiting detection delay time when the voltage V2 is increased rapidly within 10us from the starting
condition V1=3.5V and V2=0V.
TM Technology, Inc. reserves the right
to change products or specifications without notice.
P. 6
Publication Date: Dec. 2003
Revision:A