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ES62UL256 Arkusz danych(PDF) 3 Page - NanoAmp Solutions, Inc.

Numer części ES62UL256
Szczegółowy opis  32Kx8 Bit Ultra-Low Power Asynchronous Static RAM
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Producent  NANOAMP [NanoAmp Solutions, Inc.]
Strona internetowa  http://www.nanoamp.com
Logo NANOAMP - NanoAmp Solutions, Inc.

ES62UL256 Arkusz danych(HTML) 3 Page - NanoAmp Solutions, Inc.

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3
Stock No. 23003-03 4/99
ES62UL256 Family
NanoAmp Solutions
TABLE 3: Absolute Maximum Ratings*
*Stresses greater than those listed above 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 operating section of this
specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability.
TABLE 4: Operating Characteristics (Over the Specified Temperature Range)
*Notes
Note 1. Operating current is a linear function of operating 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:
The L device operating at 2 Mhz at 2.0 volts will draw a typical current of 0.4*2*2 = 1.6 mA.
Note 2. This device assumes a standby mode if CE is disabled (high). It will also automatically go into a standby
mode whenever all input signals are quiescent (not toggling) regardless of the state of CE. In order to achieve low
standby current in the enabled mode (CE low), all inputs must be within 0.2 volts of either VCC or VSS.
Item
Symbol
Rating
Unit
Voltage on any pin relative to VSS
VIN,OUT
–0.3 to VCC+0.3
V
Voltage on VCC Supply Relative to VSS
VCC
–0.3 to 4.0
V
Power Dissipation
PD
500
mW
Storage Temperature
TSTG
–40 to 125
oC
Operating Temperature
TA
-20 to +80
oC
Soldering Temperature and Time
TSOLDER
260 oC, 10sec (Lead only)
oC
Item
Symbol
Test Conditions
Min/Max
L
Unit
Supply Voltage
VCC
Min
1.5
V
Max
3.6
Data Retention Voltage
VDR
CE = VCC
Min
1.2
V
Input High Voltage
VIH
Min
0.7VCC
V
Max
VCC+0.3
Input Low Voltage
VIL
Min
–0.3
V
Max
0.3VCC
Output High Voltage
VOH
IOH = 200 µA
Min
VCC–0.2
V
Output Low Voltage
VOL
IOL = –200 µA
Max
0.2
V
Input Leakage Current
ILI
VIN = 0 to VCC
Max
0.5
µA
Output Leakage Current
ILO
OE = VCC or
CE = VCC
Max
0.5
µA
Operating Supply
Current (Note 1)
ICC2
VIN = VCC or 0V
CE = VSS
Typ
0.4 * f * V
mA
Max
0.5 * f * V
Max Standby Current
(Note 2)
ISB
VIN = VCC or 0V
tA = 55
oC
Max
1.0
µA
Typical Standby Current
(Note 2)
ISB
VIN = VCC or 0V
tA = 25
oC
Typ
0.05
µA


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