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S-8200AAC-I6T1U Datasheet(PDF) 9 Page - Seiko Instruments Inc |
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S-8200AAC-I6T1U Datasheet(HTML) 9 Page - Seiko Instruments Inc |
9 / 36 page BATTERY PROTECTION IC FOR 1-CELL PACK Rev.4.0_02 S-8200A Series 9 2. Ta = −40°C to +85°C*1 Table 10 (Ta = −40°C to +85°C*1 unless otherwise specified) Item Symbol Condition Min. Typ. Max. Unit Test Circuit Detection Voltage Overcharge detection voltage VCU − VCU − 0.045 VCU VCU + 0.030 V 1 Overcharge release voltage VCL VCL ≠ VCU VCL − 0.070 VCL VCL + 0.040 V 1 VCL = VCU VCL − 0.050 VCL VCL + 0.030 V 1 Overdischarge detection voltage VDL − VDL − 0.070 VDL VDL + 0.045 V 2 Overdischarge release voltage VDU VDL ≠ VDU VDU − 0.090 VDU VDU + 0.060 V 2 VDL = VDU VDU − 0.070 VDU VDU + 0.045 V 2 Discharge overcurrent detection voltage VDIOV − VDIOV − 0.010 VDIOV VDIOV + 0.010 V 2 Load short-circuiting detection voltage VSHORT − VSHORT − 0.100 VSHORT VSHORT + 0.100 V 2 Charge overcurrent detection voltage VCIOV − VCIOV − 0.015 VCIOV VCIOV + 0.015 V 2 0 V Battery Charge Function 0 V battery charge starting charger voltage V0CHA 0 V battery charge function "available" 0.0 0.7 1.5 V 2 0 V battery charge inhibition battery voltage V0INH 0 V battery charge function "unavailable" 0.4 0.8 1.3 V 2 Internal Resistance Resistance between VM pin and VDD pin RVMD VDD = 1.8 V, VVM = 0 V 78 300 1310 k Ω 3 Resistance between VM pin and VSS pin RVMS VDD = 3.4 V, VVM = 1.0 V 7.2 20 44 k Ω 3 Input Voltage Operation voltage between VDD pin and VSS pin VDSOP1 − 1.5 − 6.5 V − Operation voltage between VDD pin and VM pin VDSOP2 − 1.5 − 28 V − Input Current (With Power-down Function) Current consumption during operation IOPE VDD = 3.4 V, VVM = 0 V 0.7 2.8 5.5 μA2 Current consumption during power-down IPDN VDD = VVM = 1.5 V − − 0.15 μA 2 Input Current (Without Power-down Function) Current consumption during operation IOPE VDD = 3.4 V, VVM = 0 V 0.7 2.8 5.5 μA2 Current consumption during overdischarge IOPED VDD = VVM = 1.5 V − − 3.8 μA 2 Output Resistance CO pin resistance "H" RCOH VCO = 3.0 V, VDD = 3.4 V, VVM = 0 V 2.4 10 30 k Ω 4 CO pin resistance "L" RCOL VCO = 0.4 V, VDD = 4.6 V, VVM = 0 V 2.4 10 30 k Ω 4 DO pin resistance "H" RDOH VDO = 3.0 V, VDD = 3.4 V, VVM = 0 V 2.4 10 30 k Ω 4 DO pin resistance "L" RDOL VDO = 0.4 V, VDD = 1.8 V, VVM = 0 V 2.4 10 30 k Ω 4 Delay Time Overcharge detection delay time tCU − tCU × 0.6 tCU tCU × 1.6 − 5 Overdischarge detection delay time tDL − tDL × 0.6 tDL tDL × 1.6 − 5 Discharge overcurrent detection delay time tDIOV − tDIOV × 0.6 tDIOV tDIOV × 1.6 − 5 Load short-circuiting detection delay time tSHORT − tSHORT × 0.6 tSHORT tSHORT × 1.6 − 5 Charge overcurrent detection delay time tCIOV − tCIOV × 0.6 tCIOV tCIOV × 1.6 − 5 *1. Since products are not screened at high and low temperature, the specification for this temperature range is guaranteed by design, not tested in production. |
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