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AS27C010A-20ECAM Datasheet(PDF) 5 Page - Austin Semiconductor |
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AS27C010A-20ECAM Datasheet(HTML) 5 Page - Austin Semiconductor |
5 / 11 page UVEPROM UVEPROM UVEPROM UVEPROM UVEPROM SMJ27C010A AS27C010A SMJ27C010A AS27C010A Rev. 2.1 6/05 Austin Semiconductor, Inc. reserves the right to change products or specifications without notice. 5 Austin Semiconductor, Inc. *Stresses greater than those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operation section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. ** All voltage values are with respect to GND. ABSOLUTE MAXIMUM RATINGS* Supply Voltage Range, V CC **...........................-0.6V to +7.0V Supply Voltage Range, V pp **.........................-0.6V to +14.0V Input Voltage Range, All inputs except A9 **..-0.6V to V CC +1 A9.....-0.6V to +13.5V Output Voltage Range, with respect to V SS **..................................-0.6V to V CC +1 Operating Free-air Temperature Range, T A ....-55°C to 125°C Storage Temperature Range, T stg .....................-65°C to 150°C RECOMMENDED OPERATING CONDITIONS NOTES: 1. V CC must be applied before or at the same time as V PP and removed after or at the same time as V PP . The deivce must not be inserted into or removed from the board when V PP or V CC is applied. 2. During programming, V PP must be maintained at 13V ± 0.25V. ELECTRICAL CHARACTERISTICS OVER RECOMMENDED RANGES OF SUPPLY VOLTAGE AND OPERATING FREE-AIR TEMPERATURE NOTES: 1. Minimum cycle time = maximum access time. MIN NOM MAX UNIT 4.5 5 5.5 V 6.25 6.5 6.75 V VCC-0.6 VCC VCC+0.6 V 12.75 13 13.25 V TTL 2 VCC+0.5 V CMOS VCC-0.2 VCC+0.5 V TTL -0.5 0.8 V CMOS -0.5 GND+0.2 V TA -55 125 °C VIL Low-level DC input voltage Operating free-air temperature Read Mode 2 SNAP! Pulse programming algorithm VPP High-level DC input voltage VIH Supply Voltage VCC Read Mode 1 SNAP! Pulse programming algorithm Supply Voltage TEST CONDITIONS MIN MAX UNIT IOH = -20µA VCC-0.2 IOH = -2.5mA 3.5 IOL = 2.1mA 0.4 IOL = 20µA 0.1 II VI = 0V to 5.5V ±1 µA IO VO = 0V to VCC ±1 µA IPP1 VPP = VCC = 5.5V 10 µA IPP2 VPP = 13V 50 mA TTL-Input Level VCC = 5.5V, E\=VIH 500 CMOS-Input Level VCC = 5.5V, E\=VCC±0.2V 100 ICC2 E\=VIL, VCC=5.5V tcycle = minimum cycle time, outputs open 1 30 mA µA High-level DC output voltage Low-level DC output voltage V V VCC supply current (active) (output open) PARAMETER ICC1 VCC supply current (standby) Input current (leakage) VPP supply current Output current (leakage) VPP supply current (during program pulse) VOL VOH |
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