參數(shù)資料
型號: X5645S8-2.7
元件分類: EEPROM
英文描述: SPI Serial EEPROM with Supervisory Features
中文描述: SPI串行EEPROM,帶有監(jiān)控功能
文件頁數(shù): 10/22頁
文件大?。?/td> 106K
代理商: X5645S8-2.7
X5643/X5645
Characteristics subject to change without notice.
10 of 22
ABSOLUTE MAXIMUM RATINGS
Temperature under bias ...................–65°C to +135°C
Storage temperature ........................–65°C to +150°C
Voltage on any pin with respect to v
ss
......–1.0v to +7v
D.C. output current ...............................................5mA
Lead temperature (soldering, 10 seconds).........300°C
RECOMMENDED OPERATING CONDITIONS
COMMENT
Stresses above those listed under “Absolute Maximum
Ratings” may cause permanent damage to the device.
This is a stress rating only; the 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.
Temp
Commercial
Industrial
Min.
0°C
–40°C
Max.
70°C
+85°C
Device Option
–1.8
–2.7 or -2.7A
Blank or -4.5A
Supply Voltage
1.8V-3.6V
2.7V to 5.5V
4.5V-5.5V
D.C. OPERATING CHARACTERISTICS
(Over the recommended operating conditions unless otherwise specified.)
Symbol
I
CC1
Parameter
Limits
Typ.
Units
mA
Test Conditions
Min.
Max.
5
V
CC
write current (active)
SCK = V
CC
x 0.1/V
CC
x 0.9 @ 2MHz,
SO = Open
SCK = V
CC
x 0.1/V
CC
x 0.9 @ 2MHz,
SO = Open
CS = V
CC
, V
IN
= V
SS
or V
CC
,
V
CC
= 5.5V
CS = V
CC
, V
IN
= V
SS
or V
CC
,
V
CC
= 5.5V
CS = V
CC
, V
IN
= V
SS
or V
CC
,
V
CC
=3.6V
V
IN
= V
SS
to V
CC
V
OUT
= V
SS
to V
CC
I
CC2
V
CC
read current (active)
0.4
mA
I
SB1
V
CC
standby current
WDT=OFF
V
CC
standby current
WDT=ON
V
CC
standby current
WDT=ON
Input leakage current
Output leakage current
Input LOW voltage
Input HIGH voltage
Output LOW voltage
Output LOW voltage
Output LOW voltage
Output HIGH voltage
Output HIGH voltage
Output HIGH voltage
Reset output LOW voltage
1
μA
I
SB2
50
μA
I
SB3
20
μA
I
LI
I
LO
V
IL
(1)
V
IH
(1)
V
OL1
V
OL2
V
OL3
V
OH1
V
OH2
V
OH3
V
OLS
0.1
0.1
10
10
μA
μA
V
V
V
V
V
V
V
V
V
–0.5
V
CC
x 0.3
V
CC
+ 0.5
0.4
0.4
0.4
V
CC
x 0.7
V
CC
> 3.3V, I
OL
= 2.1mA
2V < V
CC
3.3V, I
OL
= 1mA
V
CC
2V, I
OL
= 0.5mA
V
CC
> 3.3V, I
OH
= –1.0mA
2V < V
CC
3.3V, I
OH
= –0.4mA
V
CC
2V, I
OH
= –0.25mA
I
OL
= 1mA
V
CC
– 0.8
V
CC
– 0.4
V
CC
– 0.2
0.4
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