ETC HD74HCT1G66

HD74HCT1G66
Analog Switch
ADE-205-308D (Z)
5th Edition
May 2001
Description
The HD74HCT1G66 is high speed CMOS analog switch using silicon gate CMOS process. With CMOS
low power dissipation, it provides high speed. The device has low ON resistance for good transfer
characteristics and can take wide range of input voltage.
Features
•
The basic gate function is lined up as hitachi uni logic series.
•
Supplied on emboss taping for high speed automatic mounting.
•
•
Control input is TTL compatible input level.
Supply voltage range : 4.5 to 5.5 V
Operating temperature range : –40 to +85°C
|IOH| = IOL = 2 mA (min)
Outline and Article Indication
• HD74HCT1G66
Index band
Marking
F
CMPAK-5
9
= Control code
(
or blank)
HD74HCT1G66
Function Table
Control
Switch
L
OFF
H
ON
H : High level
L : Low level
GND ≤ VIN ≤ VCC
GND ≤ VOUT ≤ VCC
Pin Arrangement
IN/OUT 1
5
VCC
OUT/IN 2
GND
4 Control
3
(Top view)
Rev.4, May 2001, page 2 of 9
HD74HCT1G66
Absolute Maximum Ratings
Item
Symbol
Ratings
Unit
Supply voltage range
VCC
–0.5 to 7.0
V
Input voltage range *1
VI
–0.5 to VCC + 0.5
V
Output voltage range *
VO
–0.5 to VCC + 0.5
V
Output : H or L
Input clamp current
IIK
±20
mA
VI < 0 or VI > VCC
Output clamp current
IOK
±20
mA
VO < 0 or VO >VCC
Continuous output current
IO
±25
mA
VO = 0 to VCC
Continuous current through
VCC or GND
ICC or IGND
±25
mA
Maximum power dissipation
at Ta = 25°C (in still air) *3
PT
200
mW
Storage temperature
Tstg
–65 to 150
°C
1, 2
Notes:
Test Conditions
The absolute maximum ratings are values which must not individually be exceeded, and
furthermore, no two of which may be realized at the same time.
1. The input and output voltage ratings may be exceeded if the input and output clamp-current
ratings are observed.
2. This value is limited to 5.5 V maximum.
3. The maximum package power dissipation was caluculated using a junction temperature of 150°C.
Recommended Operating Conditions
Item
Symbol
Min
Max
Unit
Supply voltage range
VCC
4.5
5.5
V
Input voltage range
VI
0
5.5
V
Output voltage range
VI/O
0
VCC
V
Input rise / fall time
(Control input 0.3 V to 2.7 V)
tr, tf
0
500
ns
Operating temperature
Ta
–40
85
°C
Test Conditions
VCC = 4.5 to 5.5 V
Note: Unused or floating control inputs must be held high or low.
Rev.4, May 2001, page 3 of 9
HD74HCT1G66
Electrical Characteristics
VCC
Ta = 25°C
Item
Symbol
(V)
Min
Typ
Max
Min
Max
Unit
Test Conditions
Input voltage
VIH
4.5 to
5.5
2.0
—
—
2.0
—
V
Control input only
VIL
4.5 to
5.5
—
—
0.8
—
0.8
On resistance
RON
4.5 to
5.5
—
90
160
—
180
Ω
VC = VIH
VIN = VCC or GND
IT = 1 mA
Peak on
resistance
RON (p)
4.5 to
5.5
—
125
200
—
250
Ω
VC = VIH
VIN = 0 to VCC
IIN/OUT = 1 mA
Leak current
IS (off)
5.5
—
—
±0.1
—
±1.0
µA
VC = VIL
VIN = VCC, VOUT = GND
or VIN = GND, VOUT =
VCC
IS (on)
5.5
—
—
±0.1
—
±1.0
µA
VC = VIH
VIN = VCC or GND
Input current
IIN
5.5
—
—
±0.1
—
±1.0
µA
VIN = VCC or GND
Operating
current
ICC
5.5
—
—
1.0
—
10.0
µA
VIN = VCC or GND
Quiescent supply
current
ICCT
5.5
—
—
2.0
—
2.9
mA
VC = 2.4 V,
VIN (switch) = VCC or
GND
Rev.4, May 2001, page 4 of 9
Ta = –40 to 85°C
HD74HCT1G66
Switching Characteristics
VCC
Ta = 25°C
Item
Symbol
(V)
Min
Typ
Propagation delay time
tPLH, tPHL
4.5
—
4
10
—
13
ns
RL = 10 kΩ
Output enable time
tZH, tZL
4.5
—
10
23
—
29
ns
RL = 1 kΩ
Output disable time
tHZ, tLZ
4.5
—
14
23
—
29
ns
RL = 1 kΩ
4.5
—
30
—
—
—
MHz
Maximum control
frequency
Ta = –40 to 85°C
Max
Min
Max
Unit
Control input capacitance
CIN
—
2.5
5
—
5
pF
Switch I/O capacitance
CIN/OUT
—
2.5
—
—
—
pF
Feed through capacitance
CIN–OUT
—
0.5
—
—
—
pF
Power dissipation
capacitance
CPD
—
5
—
—
—
pF
Test Conditions
Test Circuit
• RON
VCC
VC = VIH
VCC
VIN = VCC
(ON)
VOUT
GND
+
1.0 mA
V
RON =
VIN-OUT
10–3
(Ω)
–
VIN-OUT
Rev.4, May 2001, page 5 of 9
HD74HCT1G66
• IS (off), IS (on)
VCC
VCC
VC = VIL
VC = VIH
VCC
A
VCC
A
(OFF)
VIN = VCC
or GND
GND
VOUT = GND
or VCC
(ON)
VIN = VCC
or GND
GND
VOUT
OPEN
• tPLH, tPHL
VCC
tr = 6 ns
VC = VIH
VCC
VIN
VOUT
(ON)
GND
RL =
10 kΩ
CL =
50 pF
tf = 6 ns
3V
90% 90%
1.3V
1.3V
VIN
10%
10%
tPHL
tPLH
VOUT
1.3V
GND
VOH
1.3V
VOL
• tZH, tZL
/ tHZ, tLZ
VCC
VC
S1
VIN
R L=
1kΩ
VCC
GND
VOUT
CL =
50 pF
S2
tr = 6 ns
VC
10%
90%
1.3V
tZH
tHZ
tLZ
S1
VCC
GND
VCC
GND
S2
GND
VCC
3V
90%
1.3V
10%
90%
VOUT
Waveform - B
VOH
1.3V
GND
tZL
tLZ
1.3V
VCC
10%
GND
VCC
Notes: 1. Waveform - A is for an output with internal conditions such that the output is high
except when disabled by the output control.
2. Waveform - B is for an output with internal conditions such that the output is low
except when disabled by the output control.
Rev.4, May 2001, page 6 of 9
GND
tHZ
RL =
1 kΩ
Waveform - A
Item
tZH
tZL
tf = 6 ns
VOL
HD74HCT1G66
• Maximum control frequency
VCC
VC
VCC
VC
VCC
VIN = VCC
GND
GND
VOUT
RL =
1 kΩ
CL =
15 pF
VOUT
VCC/2
• CIN/OUT, CIN-OUT
CIN-OUT
VC = GND
VCC
VCC
(OFF)
CIN/OUT
GND
CIN/OUT
Rev.4, May 2001, page 7 of 9
HD74HCT1G66
Package Dimensions
As of January, 2001
(0.65)
1.25 – 0.1
(0.65)
+ 0.1
0.05
0 0.1
(0.2)
2.0 – 0.2
0.9 – 0.1
(0.425)
5 0.2 – 0.05
0.15
2.1 – 0.3
1.3 – 0.2
(0.425)
Unit: mm
Hitachi Code
JEDEC
EIAJ
Mass (reference value)
Rev.4, May 2001, page 8 of 9
CMPAK-5
Conforms
0.006 g
HD74HCT1G66
Disclaimer
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copyright, trademark, or other intellectual property rights for information contained in this document.
Hitachi bears no responsibility for problems that may arise with third party’s rights, including
intellectual property rights, in connection with use of the information contained in this document.
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received the latest product standards or specifications before final design, purchase or use.
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contact Hitachi’s sales office before using the product in an application that demands especially high
quality and reliability or where its failure or malfunction may directly threaten human life or cause risk
of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation,
traffic, safety equipment or medical equipment for life support.
4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly
for maximum rating, operating supply voltage range, heat radiation characteristics, installation
conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used
beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable
failure rates or failure modes in semiconductor devices and employ systemic measures such as failsafes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other
consequential damage due to operation of the Hitachi product.
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Copyright © Hitachi, Ltd., 2001. All rights reserved. Printed in Japan.
Colophon 4.0
Rev.4, May 2001, page 9 of 9