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IS61S6432-6PQ Datasheet(PDF) 6 Page - Integrated Silicon Solution, Inc |
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IS61S6432-6PQ Datasheet(HTML) 6 Page - Integrated Silicon Solution, Inc |
6 / 19 page PB Integrated Silicon Solution, Inc. • 1-800-379-4774 Rev.B 06/28/01 IS61S6432 ISSI® POWER SUPPLY CHARACTERISTICS (Operating Range) -200(1) -166 -133 -117 Symbol Parameter Test Conditions Min. Max. Min. Max. Min. Max. Min. Max. Unit ICC AC Operating Device Selected, Com. — 400 — 215 — 205 — 195 mA Supply Current All Inputs = VIL or VIH Ind. —— —— —— — 205 OE = VIH, Cycle Time • tKC min. ISB Standby Current Device Deselected, Com. — 100 — 70 — 60 — 50 mA VCC = Max., Ind. —— —— —— — 60 CLK Cycle Time • tKC min. IZZ Power-Down ZZ = VCCQ, CLK Running Com. — 5 — 5 — 5 — 5mA Mode Current All Inputs - GND + 0.2V Ind. —— —— —— — 10 or • VCC – 0.2V Note: 1. ADVANCE INFORMATION ONLY. DC ELECTRICAL CHARACTERISTICS(1,2) (Over Operating Range) Symbol Parameter Test Conditions Min. Max. Unit VOH Output HIGH Voltage IOH = –5.0 mA 2.4 — V VOL Output LOW Voltage IOL = 5.0 mA — 0.4 V VIH Input HIGH Voltage 2.0 VCCQ + 0.3 V VIL Input LOW Voltage –0.3 0.8 V ILI Input Leakage Current GND - VIN - VCCQ(2) Com. –55 µA Ind. –10 10 ILO Output Leakage Current GND - VOUT - VCCQ, OE = VIH Com. –55 µA Ind. –10 10 Notes: 1. MODE pin have an internal pull-up. ZZ pin has an internal pull-down. These pins may be a No Connect, tied to GND,or tied to VCCQ. 2. MODE pin should be tied to Vcc or GND. They exhibit ±30 µA maximum leakage current when tied to - GND + 0.2V or • Vcc – 0.2V. -5 -6 -7 -8 Symbol Parameter Test Conditions Min. Max. Min. Max. Min. Max. Min. Max. Unit ICC AC Operating Device Selected, Com. — 175 — 165 — 150 — 140 mA Supply Current All Inputs = VIL or VIH Ind. — 185 — 175 — 160 — 150 OE = VIH, Cycle Time • tKC min. ISB Standby Current Device Deselected, Com. — 25 — 25 — 25 — 25 mA VCC = Max., Ind. — 35 — 35 — 35 — 35 CLK Cycle Time • tKC min. IZZ Power-Down ZZ = VCCQ, CLK Running Com. — 5 — 5 — 5 — 5mA Mode Current All Inputs - GND + 0.2V Ind. — 10 — 10 — 10 — 10 or • VCC – 0.2V |
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