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LHF16J06
27
Rev. 1.26
6 ELECTRICAL SPECIFICATIONS
6.1 Absolute Maximum Ratings*
Operating Temperature
During Read, Block Erase,
Full Chip Erase, Word/Byte Write
and Lock-Bit Configuration................0°C to +70°C
(1)
Storage Temperature
During under Bias...............................-10°C to +80°C
During non Bias................................ -65°C to +125°C
Voltage On Any Pin
(except V
CC
and V
CCW
) ...........-0.5V to V
CC
+0.5V
(2)
V
CC
Supply Voltage................................ -0.2V to +4.6V
(2)
V
CCW
Supply Voltage.........................-0.2V to +13.0V
(2,3)
Output Short Circuit Current................................100mA
(4)
*WARNING: Stressing the device beyond the "Absolute
Maximum Ratings" may cause permanent damage. These
are stress ratings only. Operation beyond the "Operating
Conditions" is not recommended and extended exposure
beyond the "Operating Conditions" may affect device
reliability.
NOTES:
1. Operating temperature is for commercial temperature
product defined by this specification.
2. All specified voltages are with respect to GND.
Minimum DC voltage is -0.5V on input/output pins
and -0.2V on V
CC
and V
CCW
pins. During transitions,
this level may undershoot to -2.0V for periods <20ns.
Maximum DC voltage on input/output pins are
V
CC
+0.5V which, during transitions, may overshoot to
V
CC
+2.0V for periods <20ns.
3. Maximum DC voltage on V
CCW
may overshoot to
+13.0V for periods <20ns. Applying 12V±0.3V to
V
CCW
during erase/write can only be done for a
maximum of 1000 cycles on each block. V
CCW
may be
connected to 12V±0.3V for a total of 80 hours
maximum.
4. Output shorted for no more than one second. No more
than one output shorted at a time.
6.2 Operating Conditions
Temperature and V
CC
Operating Conditions
Min.
0
2.7
Symbol
T
A
V
CC
Parameter
Max.
+70
3.6
Unit
°C
V
Test Condition
Ambient Temperature
Operating Temperature
V
CC
Supply Voltage (2.7V-3.6V)
6.2.1 CAPACITANCE
(1)
T
A
=+25°C, f=1MHz
Typ.
7
9
Symbol
C
IN
C
OUT
NOTE:
1. Sampled, not 100% tested.
Parameter
Max.
10
12
Unit
pF
pF
Condition
Input Capacitance
Output Capacitance
V
IN
=0.0V
V
OUT
=0.0V
sharp