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WCFS1016C1C データシート(PDF) 2 Page - Weida Semiconductor, Inc. |
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WCFS1016C1C データシート(HTML) 2 Page - Weida Semiconductor, Inc. |
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2 / 9 page ![]() WCFS1016C1C Page 2 of 9 Maximum Ratings (Above which the useful life may be impaired. For user guide- lines, not tested.) Storage Temperature ................................. –65 °C to +150°C Ambient Temperature with Power Applied............................................. –55 °C to +125°C Supply Voltage on VCC to Relative GND [1] .... –0.5V to +7.0V DC Voltage Applied to Outputs in High Z State[1] ......................................–0.5V to VCC+0.5V DC Input Voltage[1]...................................–0.5V to VCC+0.5V Current into Outputs (LOW) ........................................ 20 mA Static Discharge Voltage............................................ >2001V (per MIL-STD-883, Method 3015) Latch-Up Current ..................................................... >200 mA Operating Range Range Ambient Temperature[2] VCC Commercial 0 °C to +70°C 5V ± 10% Electrical Characteristics Over the Operating Range Parameter Description Test Conditions WCFS1016C1C 12ns WCFS1016C1C 15ns Unit Min. Max. Min. Max. VOH Output HIGH Voltage VCC = Min., IOH = –4.0 mA 2.4 2.4 V VOL Output LOW Voltage VCC = Min., IOL = 8.0 mA 0.4 0.4 V VIH Input HIGH Voltage 2.2 6.0 2.2 6.0 V VIL Input LOW Voltage[1] –0.5 0.8 –0.5 0.8 V IIX Input Load Current GND < VI < VCC –1 +1 –1 +1 µA IOZ Output Leakage Current GND < VI < VCC, Output Disabled –1 +1 –1 +1 µA IOS Output Short Circuit Current[3] VCC = Max., VOUT = GND –300 –300 mA ICC VCC Operating Supply Current VCC = Max., IOUT = 0 mA, f = fMAX = 1/tRC 140 130 mA ISB1 Automatic CE Power-Down Current —TTL Inputs Max. VCC, CE > VIH VIN > VIH or VIN < VIL, f = fMAX 40 40 mA ISB2 Automatic CE Power-Down Current —CMOS Inputs Max. VCC, CE > VCC – 0.3V, VIN > VCC – 0.3V, or VIN < 0.3V, f = 0 10 10 mA Notes: 1. VIL (min.) = –2.0V for pulse durations of less than 20 ns. 2. TA is the “Instant On” case temperature. 3. Not more than one output should be shorted at one time. Duration of the short circuit should not exceed 30 seconds. |
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