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IS62U6416LL Datasheet, PDF (4/9 Pages) Integrated Silicon Solution, Inc – 64K x 16 LOW VOLTAGE, ULTRA-LOW POWER CMOS STATIC RAM | |||
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IS62U6416LL
ISSI ®
ABSOLUTE MAXIMUM RATINGS(1)
Symbol Parameter
Value
Unit
VTERM Terminal Voltage with Respect to GND â0.5 to Vcc +0.5 V
TSTG Storage Temperature
â65 to +150
°C
PT
Power Dissipation
1.5
W
IOUT DC Output Current (LOW)
20
mA
OPERATING RANGE
Range
Commercial
Industrial
Ambient Temperature
0°C to +70°C
â40°C to +85°C
VCC
1.8V (Min.) to 2.7V (Max.)
1.8V (Min.) to 2.7V (Max.)
Note:
1. Stress 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 operational sec-
tions of this specification is not im-
plied. Exposure to absolute maximum
rating conditions for extended periods
may affect reliability.
DC ELECTRICAL CHARACTERISTICS (Over Operating Range Unless Otherwise Specified)
Symbol Parameter
Test Conditions
VOH
Output HIGH Voltage
VCC = Min., IOH = â0.44 mA
VOL
Output LOW Voltage
VCC = Min., IOL = 0.33 mA
VIH
Input HIGH Voltage
VIL(1)
Input LOW Voltage
ILI
Input Leakage
GND ⤠VIN ⤠VCC
ILO
Output Leakage
GND ⤠VOUT ⤠VCC, Outputs Disabled
Note:
1. VIL (min.) = â1.5V for pulse width less than 30 ns.
Min.
1.6
â
1.6
â0.2
â1
â1
Max.
â
0.4
VCC + 0.2
0.4
1
1
Unit
V
V
V
V
µA
µA
POWER SUPPLY CHARACTERISTICS(1) (Over Operating Range Unless Otherwise Specified)
Symbol Parameter
Test Conditions
-200
Min. Max. Unit
ICC
Vcc Dynamic Operating
VCC = Max.,
Com.
â 25
mA
Supply Current
IOUT = 0 mA, f = fMAX
Ind.
CE = VIH
â 40
ISB1
TTL Standby Current
(TTL Inputs)
VCC = Max.,
VIN = VIH or VIL
CE ⥠VIH , f = 0
Com.
â 0.3
mA
Ind.
â 0.3
ISB2
CMOS Standby
VCC = Max.,
Com.
â
5
µA
Current (CMOS Inputs)
CE ⥠VCC â 0.2V,
Ind.
â
5
VIN ⤠0.2V, f = 0
Note:
1. At f = fMAX, address and data inputs are cycling at the maximum frequency; f = 0 means no input lines change.
4
Integrated Silicon Solution, Inc. â 1-800-379-4774
ADVANCE INFORMATION SR034-0C
12/09/98
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