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EM033C08N Datasheet(PDF) 3 Page - Integrated Silicon Solution, Inc |
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EM033C08N Datasheet(HTML) 3 Page - Integrated Silicon Solution, Inc |
3 / 6 page Stock No. 23087-01 12/98 3 EM033C08 NanoAmp Solutions TABLE 3: Operating Characteristics (Over specified temperature range) Notes: Note 1. Operating current is a linear function of frequency and voltage. You may calculate operating current using the formula shown with operating frequency (f) expressed in Mhz and operating voltage (V) in volts. Example: Operating at 2 Mhz and 2.0 volts will draw a maximum current of 0.3*2*2 = 1.2 mA. Note 2. This device assumes a standby mode whenever Chip Enable (CE) is disabled (high). It will also automatically go into a standby mode whenever all input signals are quiescent (not toggling) whenever an access or write cycle is completed regardless of the state CE. In order to achieve low standby current all input levels must be within 0.2 volts of either VCC or GND. TABLE 4: Capacitance* Note: These parameters are verified in device characterization and are not 100% tested TABLE 5: Timing Test Conditions Item Symbol Test Conditions Min. Max. Unit Supply Voltage VCC 1.5 3.6 V Data Retention Voltage VDR CE = VCC 1.2 3.6 V Input High Voltage VIH 0.7VCC VCC+0.3 V Input Low Voltage VIL –0.3 0.3VCC V Output High Voltage VOH IOH = 200 µA VCC–0.2 V Output Low Voltage VOL IOL = –200 µA 0.2 V Input Leakage Current ILI VIN = 0 to VCC 1 µA Output Leakage Current ILO OE = VIH or CE = 1 1 µA Operating Supply Current (Note 1) ICC VIN = VCC or 0V, CE = 0 0.3 * f * V mA Standby Current (Note 2) ISB VIN = VCC or 0V 10 µA Item Symbol Test Condition Min Max Unit Input Capacitance CIN VIN = 0V, f = 1 Mhz, TA = 25 oC 5 pF I/O Capacitance CI/O VIN = 0V, f = 1 Mhz, TA = 25 oC 5 pF Item Input Pulse Level 0.1VCC to 0.9 VCC Input Rise and Fall Time 5ns Input and Output Timing Reference Levels 0.5VCC Output Load CL = 30pF Operating Temperature (Unless otherwise stated) -20 to +80 oC |
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