
LP621024D-I Series 
PRELIMINARY 
(August, 2002, Version 0.0) 
   4                                       
AMIC Technology, Inc.
Recommended DC Operating Conditions 
(T
A
 = -40
°
C to + 85
°
C) 
Symbol 
Parameter 
Min. 
Typ. 
Max. 
Unit 
Supply Voltage 
4.5 
5.0 
5.5 
V 
GND 
Ground 
0 
0 
0 
V 
V
IH
Input High Voltage 
2.2 
3.5 
VCC + 0.3 
V 
V
IL
Input Low Voltage 
-0.3 
0 
+0.8 
V 
C
L
Output Load 
- 
- 
30 
pF 
TTL 
Output Load 
- 
- 
1 
- 
Absolute Maximum Ratings*
VCC to GND ............................................. -0.5V to + 7.0V 
IN, IN/OUT Volt to GND....................-0.5V to VCC + 0.5V 
Operating Temperature, Topr..................-40
°
C to + 85
°
C 
Storage Temperature, Tstg....................-55
°
C to + 125
°
C 
Temperature Under Bias, Tbias...............-10
°
C to + 85
°
C 
Power Dissipation, P
T.......................................................................
0.7W 
Soldering Temp. & Time.............................260
°
C, 10 sec 
DC Electrical Characteristics
     (T
A
 = -40
°
C to + 85
°
C, VCC = 5V 
±
 10%, GND = 0V) 
*Comments
Stresses above those listed under "Absolute Maximum 
Ratings" may cause permanent damage to this device. 
These are stress ratings only. Functional operation of this 
device at these or any other conditions above those 
indicated in the operational sections of this specification 
is not implied or intended. Exposure to the absolute 
maximum rating conditions for extended periods may 
affect device reliability. 
Symbol 
Parameter 
LP621024D-55LLI 
LP621024D-70LLI 
Unit 
Conditions 
Min. 
Max. 
Min.  
Max. 
I
LI
Input Leakage 
Current 
- 
1 
- 
1 
μ
A 
 V
IN
 = GND to VCC
I
LO
Output Leakage 
Current 
- 
1 
- 
1 
μ
A 
CE1 = V
IH 
or CE2 = V
IL 
or OE  = V
IH 
or WE  = V
IL
 V
I/O
 = GND to VCC
I
CC
Active Power 
Supply Current  
- 
15 
- 
15 
mA 
CE1 = V
IL
, CE2 = V
IH
 I
I/O
 = 0mA
I
CC1
Dynamic 
Operating 
Current 
- 
70 
- 
70 
mA 
Min. Cycle, Duty = 100%
CE1 = V
IL
, CE2 = V
IH
 I
I/O
 = 0mA 
I
CC2
- 
15 
- 
15 
mA 
CE1 = V
IL
, CE2 = V
IH
 V
IH
 = VCC, V
IL
 = 0V  
 f = 1MH
Z,  
I
I/O
 = 0mA