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AAT8660I Datasheet(PDF) 7 Page - List of Unclassifed Manufacturers |
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7 / 24 page Advanced Analog Technology, Inc. – 台灣類比科技股份有限公司 – – Advanced Analog Technology, Inc. – Page 7 of 24 V 1.0 AAT8660 Series AAT8660D DETECTION VOLTAGE AND DELAY TIME (25℃) PARAMETER SYMBOL TEST CONDITION MIN TYP MAX UNIT Over Charge Threshold Voltage 1 C V Detect Rising Edge of Supply Voltage 4.230 4.280 4.330 V Over Charge Release Voltage 2 C V Detect Falling Edge of Supply Voltage VC1-0.30 VC1-0.20 VC1-0.10 V Over Discharge Threshold Voltage 1 D V Detect Falling Edge of Supply Voltage 2.201 2.281 2.361 V Over Discharge Release Voltage 2 D V Detect Rising Edge of Supply Voltage VD1-0.08 VD1 VD1+0.08 V Over Charge Delay Time 1 C t V 6 . 3 V DD = to 4.5V 0.700 1.000 1.300 s Over Discharge Delay Time 1 D t V 6 . 3 V DD = to 2.4V 87.5 125.0 162.5 ms Over Current Level 1 Detection Voltage 1 OC V Detect Rising Edge of “VN” Pin Voltage ( out D Response With tOC1 Delay Time) 110 130 150 mV Over Current Level 2 Detection Voltage 2 OC V Detect Rising Edge of “VN” Pin Voltage ( out D Response with 2 OC t Delay Time) 400 490 600 mV Short Circuit Detection Voltage short V V 0 . 3 V DD = , Detect Rising Edge of “VN” Pin Voltage ( out D Response with short t Delay Time) 7 . 1 V DD − 3 . 1 V DD − 9 . 0 V DD − V Over Current Level 1 Detection Delay Time 1 OC t V 0 . 3 V DD = 5.6 8.0 10.4 ms Over Current Level 2 Detection Delay Time 2 OC t Room Temp. ⇒ Low or High Temp. ⇒ V 0 . 3 V DD = 1.4 1.1 2.0 2.0 2.6 3.4 ms ms Short Circuit Detection Delay Time short t V 0 . 3 V DD = 10 50 µs Charger Detection Voltage CHR V Detect Rising Edge of “ out D” Pin Voltage (when VD1<VDD<VD2) 0 . 2 − 3 . 1 − 6 . 0 − V out C High Level Resistance COH R V 5 . 3 V DD = ; V 0 . 3 C out = ;V 0 VN = 1 2 10 Ω k out C Low Level Resistance COL R V 5 . 4 V DD = ; V 5 . 0 C out = ;V 0 VN = 150 602 2,380 Ω k out D High Level Resistance DOH R V 5 . 3 V DD = ; V 0 . 3 D out = ;V 0 VN = 2.5 5.0 10.0 Ω k out D Low Level Resistance DOL R V 8 . 1 V DD = ; V 5 . 0 D out = ; V 8 . 1 VN = 2.5 5.0 10.0 Ω k Internal Resistance between VN and DD V VND R V 8 . 1 V DD = ; VN=0V 100 300 900 Ω k Internal Resistance between VN and GND VNG R V 5 . 3 V DD = ; V 5 . 3 VN = 10 20 40 Ω k |
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