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AS7C164 Datasheet(PDF) 6 Page - Alliance Semiconductor Corporation |
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AS7C164 Datasheet(HTML) 6 Page - Alliance Semiconductor Corporation |
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6 / 8 page ![]() $6& Y $OOLDQFH6HPLFRQGXFWRU RI 'DWD UHWHQWLRQFKDUDFWHULVWLFV RYHUWKHRSHUDWLQJUDQJH 'DWD UHWHQWLRQZDYHIRUP $&WHVWFRQGLWLRQV 1RWHV 1During VCC power-up, a pull-up resistor to VCC on CE1 is required to meet ISB specification. 2 This parameter is sampled, but not 100% tested. 3 For test conditions, see AC Test Conditions, Figures A, B, and C. 4tCLZ and tCHZ are specified with CL = 5pF as in Figures B or C. Transition is measured ±500mV from steady-state voltage. 5 This parameter is guaranteed, but not 100% tested. 6WE is High for read cycle. 7CE1 and OE are Low and CE2 is High for read cycle. 8 Address valid prior to or coincident with CE1 transition Low and CE2 transition High. 9 All read cycle timings are referenced from the last valid address to the first transitioning address. 10 CE1 or WE must be High or CE2 Low during address transitions. Either CE or WE asserting high terminates a write cycle. 11 All write cycle timings are referenced from the last valid address to the first transitioning address. 12 CE1 and CE2 have identical timing. 13 2V data retention applies to the commercial operating range only. 14 C = 30pF, except on High Z and Low Z parameters, where C = 5pF. Parameter Symbol Test conditions Min Max Unit VCC for data retention VDR VCC = 2.0V CE1 ≥ V CC–0.2V or CE2 ≤ 0.2V 2.0 – V Data retention current ICCDR –60 µA Chip enable to data retention time tCDR 0– ns Operation recovery time tR tRC –ns VCC CE1 tR tCDR Data retention mode VCC VCC VDR ≥ 2.0V VIH VIH VDR CS2 tR tCDR VIH VIH VDR -Output load: see Figure B or Figure C. - Input pulse level: GND to 3.0V. See Figure A. - Input rise and fall times: 2 ns. See Figure A. - Input and output timing reference levels: 1.5V. 10% 90% 10% 90% GND +3.0V Figure A: Input pulse 2ns 255 Ω C(14) 480 Ω DRXW GND +5V Figure B: 5V Output lo DG 255 Ω C(14) 320 Ω DRXW GND +5V Figure C: 3.3V Output load 168 Ω Thevenin Equivalent: DRXW +1.728V (5V) |
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