HD74LVC08TELL-E [RENESAS]
暂无描述;型号: | HD74LVC08TELL-E |
厂家: | RENESAS TECHNOLOGY CORP |
描述: | 暂无描述 栅 |
文件: | 总6页 (文件大小:177K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
HD74LVC08
Quad. 2-input AND Gates
REJ03D0344–0300Z
(Previous ADE-205-063B (Z))
Rev.3.00
Jul. 22, 2004
Description
The HD74LVC08 has four 2-input AND gates in a 14 pin package. Low voltage and high speed operation is suitable at
the battery drive product (note type personal computer) and low power consumption extends the life of a battery for
long time operation.
Features
•
•
•
•
•
•
VCC = 2.0 V to 5.5 V
All inputs VIH (Max.) = 5.5 V (@VCC = 0 V to 5.5 V)
Typical VOL ground bounce < 0.8 V (@VCC = 3.3 V, Ta = 25°C)
Typical VOH undershoot > 2.0 V (@VCC = 3.3 V, Ta = 25°C)
High output current ±24 mA (@VCC = 3.0 V to 5.5 V)
Ordering Information
Part Name
Package Type
Pa
viation
Taping Abbreviation
(Quantity)
HD74LVC08FPEL
HD74LVC08TELL
SOP–14 pin (JEITA)
TSSOP–14 pin
T
EL (2,000 pcs/reel)
ELL (2,000 pcs/reel)
Note: Please consult the sales office for th.
Function Table
Inputs
Output Y
A
L
L
L
L
H
H
L
H
H
H:
L:
High level
Low level
Rev.3.00 Jul. 22, 2004 page 1 of 5
HD74LVC08
Pin Arrangement
VCC
4B
4A
4Y
3B
3A
3Y
1
2
3
4
5
6
7
14
13
12
11
10
9
1A
1B
1Y
2A
2B
2Y
GND
8
(Top view)
Absolute Maximum Ratings
Item
Symbol
VCC
IIK
Ratings
itions
Supply voltage range
Input diode current
Input voltage
–0.5 to 6.0
–50
VI = –0.5 V
VI
–0.5 to 6.
–50
Output diode current
IOK
A
VO = –0.5 V
50
VO = VCC+0.5 V
Output voltage
VO
IO
V
Output current
mA
mA
°C
VCC, GND current / pin
Storage temperature
ICC o
T
Note: The absolute maximum st not individually be exceeded, and furthermore, no two of
which may be realize
Recommended Opera
Item
l
Ratings
1.5 to 5.5
2.0 to 5.5
0 to 5.5
0 to VCC
–40 to 85
–12
Unit
Conditions
Data retention
At operation
A, B
Supply voltage
V
Input / Output voltage
VI
V
VO
Ta
IOH
Y
Operating temperature
Output current
°C
mA
VCC = 2.7 V
–24*2
VCC = 3.0 V to 5.5 V
VCC = 2.7 V
IOL
12
24*2
mA
VCC = 3.0 V to 5.5 V
Input rise / fall time*1
tr, tf
10
ns/V
Notes: 1. This item guarantees maximum limit when one input switches.
Waveform: Refer to test circuit of switching characteristics.
2. Duty cycle ≤ 50%
Rev.3.00 Jul. 22, 2004 page 2 of 5
HD74LVC08
Electrical Characteristics
Ta = –40 to 85°C
Item
Symbol VCC (V)
Unit
Test Conditions
Min
2.7 to 3.6 2.0
Max
—
Input voltage
VIH
V
4.5 to 5.5
2.7 to 3.6
4.5 to 5.5
V
CC×0.7
—
VIL
—
—
0.8
V
V
VCC×0.3
Output voltage
VOH
2.7 to 5.5 VCC–0.2
—
IOH = –100 µA
IOH = –12 mA
IOH = –12 mA
IOH = –24 mA
IOH = –24 mA
IOL = 100 µA
2.7
2.2
2.4
2.0
3.8
—
—
3.0
—
3.0
—
4.5
—
VOL
2.7 to 5.5
2.7
0.2
0.4
0.55
0.55
±5.0
20
V
—
IOL = 12 mA
3.0
—
IOL = 24 mA
4.5
—
= 24 mA
Input current
IIN
0 to 5.5
5.5
—
µA
.5 V or GND
or GND
Quiescent supply current
ICC
∆ICC
—
3.0 to 3.6
—
500
ut at (VCC–0.6)V,
s at VCC or GND
Switching Characteristics
T
From
To
Item
Symbol VCC (V)
Unit
(Input)
(Output)
.0
6.0
5.0
—
Propagation delay time
tPLH
tPHL
2.7
ns
A or B
Y
3.3
Input capacitance
Output capacitance
CIN
CO
0
pF
pF
15.0
—
Test Circuit
VCC
VCC
ut
Pulse Generator
Output
Zout = 50 Ω
450Ω
CL=
50 pF
50 Ω Scope
Note:
1. CL includes probe and jig capacitance.
Rev.3.00 Jul. 22, 2004 page 3 of 5
HD74LVC08
Waveforms
tr
tf
VIH
90 %
Vref
90 %
Vref
Input A or B
10 %
10 %
tPHL
GND
tPLH
VOH
Vref
Vref
Output Y
VOL
V
CC = 2.7 V,
TEST
V
CC = 5.0±0.5 V
CC
3.3±0.3 V
V
IH
2.7 V
V
V
ref
1.
50%VCC
Notes:
1. tr = 2.5 ns, tf = 2.5 ns
2. Input waveform : PRR = 10 MHz, duty cycle 50%.
Rev.3.00 Jul. 22, 2004 page 4 of 5
HD74LVC08
Package Dimensions
As of January, 2003
Unit: mm
10.06
10.5 Max
8
14
1
7
+ 0.20
7.80
– 0.30
1.42 Max
1.15
0˚ – 8˚
1.27
0.70 ± 0.20
*0.40 ± 0.06
0.15
M
0.12
P-14DAV
—
ue)
Conforms
0.23 g
*Ni/Pd/Au plating
As of January, 2003
Unit: mm
5.0
5.3
14
1.0
*0.20 ± 0.05
13 M
6.40 ± 0.20
0.83 Max
0˚ – 8˚
0.50 ± 0.10
0.10
Package Code
JEDEC
TTP-14DV
—
JEITA
—
*Ni/Pd/Au plating
Mass (reference value)
0.05 g
Rev.3.00 Jul. 22, 2004 page 5 of 5
Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan
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Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary
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