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EM033C08 データシートの表示(PDF) - Integrated Silicon Solution

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EM033C08 Datasheet PDF : 6 Pages
1 2 3 4 5 6
NanoAmp Solutions
EM033C08
TABLE 3: Operating Characteristics (Over specified temperature range)
Item
Supply Voltage
Data Retention Voltage
Input High Voltage
Input Low Voltage
Output High Voltage
Output Low Voltage
Input Leakage Current
Output Leakage Current
Operating Supply
Current (Note 1)
Standby Current (Note 2)
Symbol
VCC
VDR
VIH
VIL
VOH
VOL
ILI
ILO
ICC
ISB
Test Conditions
CE = VCC
IOH = 200 µA
IOL = –200 µA
VIN = 0 to VCC
OE = VIH or CE = 1
VIN = VCC or 0V, CE = 0
VIN = VCC or 0V
Min.
1.5
1.2
0.7VCC
–0.3
VCC–0.2
Max.
3.6
3.6
VCC+0.3
0.3VCC
0.2
1
1
0.3 * f * V
10
Unit
V
V
V
V
V
V
µA
µA
mA
µA
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*
Item
Input Capacitance
I/O Capacitance
Symbol
CIN
CI/O
Test Condition
VIN = 0V, f = 1 Mhz, TA = 25oC
VIN = 0V, f = 1 Mhz, TA = 25oC
Min Max Unit
5
pF
5
pF
Note: These parameters are verified in device characterization and are not 100% tested
TABLE 5: Timing Test Conditions
Item
Input Pulse Level
Input Rise and Fall Time
Input and Output Timing Reference Levels
Output Load
Operating Temperature (Unless otherwise stated)
0.1VCC to 0.9 VCC
5ns
0.5VCC
CL = 30pF
-20 to +80 oC
Stock No. 23087-01 12/98
3

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