cat64lc10 Catalyst Semiconductor, cat64lc10 Datasheet - Page 2

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cat64lc10

Manufacturer Part Number
cat64lc10
Description
1k/2k/4k-bit Spi Serial Eeprom
Manufacturer
Catalyst Semiconductor
Datasheet
Temperature Under Bias ................. –55 C to +125 C
Storage Temperature ....................... –65 C to +150 C
Voltage on any Pin with
V
Package Power Dissipation
Lead Soldering Temperature (10 secs) ............ 300 C
Output Short Circuit Current
Note:
(1) The minimum DC input voltage is –0.5V. During transitions, inputs may undershoot to –2.0V for periods of less than 20 ns. Maximum DC
(2) Output shorted for no more than one second. No more than one output shorted at a time.
(3) This parameter is tested initially and after a design or process change that affects the parameter.
(4) Latch-up protection is provided for stresses up to 100 mA on address and data pins from –1V to V
Doc. No. 1021, Rev. C
CC
N
T
V
I
C
C
LTH
voltage on output pins is V
Respect to Ground
Capability (Ta = 25 C) ................................... 1.0W
DR
ZAP
END
I/O
IN
with Respect to Ground ............... –2.0V to +7.0V
(3)
(3)
(3)(4)
(3)
(3)
(3)
Endurance
Data Retention
ESD Susceptibility
Latch-Up
(T
A
Input/Output Capacitance (DO, RDY/BSY)
Input Capacitance (CS, SK, DI, RESET)
= 25 C, f= 1.0 MHz, V
(1)
CC
............ –2.0V to +V
+0.5V, which may overshoot to V
(2)
........................ 100 mA
1,000,000
2000
100
100
CC
CC
=6.0V)
+2.0V
CC
+2.0V for periods of less than 20 ns.
2
Cycles/Byte
Stresses above those listed under “Absolute Maximum
Ratings” may cause permanent damage to the device.
These are stress ratings only, and functional operation of
the device at these or any other conditions outside of those
listed in the operational sections of this specification is not
implied. Exposure to any absolute maximum rating for
extended periods may affect device performance and
reliability.
Years
Volts
mA
MIL-STD-883, Test Method 1033
MIL-STD-883, Test Method 1008
MIL-STD-883, Test Method 3015
JEDEC Standard 17
8
6
CC
+1V.
pF
pF
V
V
I/O
IN
= 0V
= 0V

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