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X76F100P-3.0 Datasheet(PDF) 8 Page - Xicor Inc.

Part # X76F100P-3.0
Description  1K 128 x 8 Bit
Download  16 Pages
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Manufacturer  XICOR [Xicor Inc.]
Direct Link  http://www.xicor.com
Logo XICOR - Xicor Inc.

X76F100P-3.0 Datasheet(HTML) 8 Page - Xicor Inc.

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X76F100
Characteristics subject to change without notice.
8 of 16
REV 1.0 6/22/00
www.xicor.com
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 VSS.........................................–1V to +7V
D.C. output current ............................................... 5mA
Lead temperature (soldering, 10 seconds).........300°C
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
Min.
Max.
Commercial
0°C
+70°C
Industrial
–40°C
+85°C
Supply Voltage
Limits
X76F100
4.5V to 5.5V
X76F100-3
3.0V to 5.5V
D.C. OPERATING CHARACTERISTICS (Over the recommended operating conditions unless otherwise specified.)
CAPACITANCE TA = +25°C, f = 1MHz, VCC = 5V
Notes: (1) Must perform a stop command after a read command prior to measurement.
(2) VIL min. and VIH max. are for reference only and are not tested.
(3) This parameter is periodically sampled and not 100% tested.
Symbol
Parameter
Limits
Unit
Test Conditions
Min.
Max.
ICC1
VCC Supply Current
(Read)
1
mA
fSCL = VCC x 0.1/VCC x 0.9 Levels @ 400 kHz,
SDA = Open
RST = CS = VSS
ICC2
(3)
VCC Supply Current
(Write)
3
mA
fSCL = VCC x 0.1/VCC x 0.9 Levels @ 400 kHz,
SDA = Open
RST = CS = VSS
ISB1
(1)
VCC Supply Current
(Standby)
1
µA
VIL = VCC x 0.1, VIH = VCC x 0.9
fSCL = 400 kHz, fSDA = 400 kHz
ISB2
(1)
VCC Supply Current
(Standby)
1
µA
VSDA = VSCC = VCC
Other = GND or VCC–0.3V
ILI
Input Leakage Current
10
µA
VIN = VSS to VCC
ILO
Output Leakage Current
10
µA
VOUT = VSS to VCC
VIL
(2)
Input LOW Voltage
–0.5
VCC x 0.3
V
VIH
(2)
Input HIGH Voltage
VCC x 0.7 VCC + 0.5
V
VOL
Output LOW Voltage
0.4
V
IOL = 3mA
Symbol
Test
Max.
Unit
Conditions
COUT
(3)
Output Capacitance (SDA)
8
pF
VI/O = 0V
CIN
(3)
Input Capacitance (RST, SCL, CS)
6
pF
VIN = 0V


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