X25040
Characteristics subject to change without notice.
8 of 13
REV 1.1 7/12/00
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C
OUT
(2)
Output capacitance (SO)
C
IN
(2)
Input capacitance (SCK, SI, CS, WP, HOLD)
FORNEWDESGNS
min. and V
IH
max. are for reference only and are not tested.
(2) This parameter is periodically sampled and not 100% tested.
ABSOLUTE MAXIMUM RATINGS
Temperature under bias ........................–65 to +135°C
Storage temperature ............................–65 to +150°C
Voltage on any pin with respect to V
D.C. output current ...............................................5mA
Lead temperature (soldering, 10 seconds).........300°C
SS
.......–1V to +7V
COMMENT
Stresses above those listed under “Absolute Maximum
Ratings” may cause permanent damage to the device.
This is a stress rating only; functional operation of the
device (at these or any other conditions above those
listed in the operational sections of this specification) is
not implied. Exposure to absolute maximum rating con-
ditions for extended periods may affect device reliability.
RECOMMENDED OPERATING CONDITIONS
Temperature
Commercial
Industrial
Min.
0°C
–40°C
Max.
+70°C
+85°C
Supply Voltage
X25040-2.7
Limits
2.7 to 5.5V
D.C. OPERATING CHARACTERISTICS
(Over the recommended operating conditions unless otherwise specified.)
POWER-UP TIMING
CAPACITANCE
T
A
= +25°C, F = 1MHZ, V
CC
= 5V
Notes:
(1) V
IL
Symbol
I
CC
Parameter
supply current (active)
Limits
Unit
mA
Test Conditions
x 0.1/V
CC
Min.
Max.
3
V
CC
SCK = V
SO = Open
CS = V
V
IN
= V
SS
to V
CC
V
OUT
= V
SS
to V
CC
CC
x 0.9 @ 1MHz,
I
SB
I
LI
I
LO
V
IL
(1)
V
IH
(1)
V
OL
V
OH
V
Input leakage current
Output leakage current
Input LOW voltage
Input HIGH voltage
Output LOW voltage
Output HIGH voltage
CC
supply current (standby)
150
10
10
μA
μA
μA
V
V
V
V
CC
, V
IN
= V
SS
or V
CC
– 0.3V
–1
V
CC
x 0.3
V
CC
+ 0.5
0.4
V
CC
x 0.7
I
OL
= 2mA
I
OH
= –1mA
V
CC
– 0.8
Symbol
t
PUR
(2)
t
PUW
(2)
Parameter
Min.
Max.
1
5
Unit
ms
ms
Power-up to read operation
Power-up to write operation
Symbol
Test
Max.
8
6
Unit
pF
pF
Conditions
V
OUT
= 0V
V
IN
= 0V