
Device Specification
Semiconductor Group 7-61
Absolute Maximum Ratings
Ambient temperature under bias................................................................. – 40 to 110° C
Storage temperature ................................................................................... – 65 to 150
o
C
Voltage on V
CC
pins with respect to ground (V
SS
) ...................................... – 0.5 V to 6.5 V
Voltage on any pin with respect to ground (V
SS
) ........................................ – 0.5 to V
CC
+0.5 V
Input current on any pin during overload condition ..................................... – 10mA to +10mA
Absolute sum of all input currents during overload condition...................... |100mA|
Power dissipation........................................................................................ 1 W
Note Stresses above those listed under “Absolute Maximum Ratings” may cause permanent
damage of 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 sections of this
specification is not implied. Exposure to absolute maximum rating conditions for longer
periods may affect device reliability. During overload conditions (V
IN
>
V
CC
or
V
IN
<
V
SS
)
theVoltage
on V
CC
pins with respect to ground (V
SS
) must not exeed the values
definded by the absolute maximum ratings.
DC Characteristics
V
CC
= 5 V + 10 %, – 15 %;
V
SS
= 0 V
T
A
= 0 to 70
o
C for the SAB 80C517A/83C517A-5
T
A
= – 40 to 85
o
C for the SAB 80C517A-T3/83C517A-5-T3
T
A
= – 40 to 11 0
o
C for the SAB 80C517A-T4/83C517A-5-T4
Parameter Symbol Limit Values Unit Test condition
min. max.
Input low voltage
(except EA, RESET, HWPD)
V
IL
– 0.5 0.2 V
CC
–
0.1
V–
Input low voltage (EA) V
IL1
– 0.5 0.2 V
CC
–
0.3
V–
Input low voltage (HWPD,
RESET)
V
IL2
– 0.5 0.2 V
CC
+ 0.1
V–
Input high voltage (except
RESET, XTAL2 and HWPD
V
IH
0.2 V
CC
+ 0.9
V
CC
+ 0.5 V –
Input high voltage to XTAL2 V
IH1
0.7 V
CC
V
CC
+ 0.5 V –
Input high voltage to RESET
and HWPD
V
IH2
0.6 V
CC
V
CC
+ 0.5 V –
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