HD74HC1G66
Analog Switch
REJ03D0188–0800Z
(Previous ADE-205-314F (Z))
Rev.8.00
Jan.27.2004
Description
The HD74HC1G66 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 Renesas uni logic series.
•
Supplied on emboss taping for high-speed automatic mounting.
•
Electrical characteristics equivalent to the HD74HC4066
Supply voltage range : 2 to 6 V
Operating temperature range : –40 to +85°C
•
Ordering Information
Part Name
HD74HC1G66CME
Package Type
CMPAK-5 pin
Package Code
CMPAK-5A
Package
Abbreviation
CM
Taping Abbreviation
(Quantity)
E (3,000 pcs/reel)
Rev.8.00, Jan.27.2004, page 1 of 8
HD74HC1G66
Outline and Article Indication
•
HD74HC1G66
Index band
Marking
H
9
CMPAK-5
= Control code
Function Table
Control
L
H
H : High level
L : Low level
GND
≤
V
IN
≤
V
CC
GND
≤
V
OUT
≤
V
CC
Switch
OFF
ON
Pin Arrangement
IN/OUT 1
5
V
CC
OUT/IN 2
GND
3
4 Control
(Top view)
Rev.8.00, Jan.27.2004, page 2 of 8
HD74HC1G66
Absolute Maximum Ratings
Item
Supply voltage range
Input voltage range *
1
Output voltage range *
1, 2
Input clamp current
Output clamp current
Continuous output current
Continuous current through
V
CC
or GND
Maximum power dissipation
3
at Ta = 25°C (in still air) *
Storage temperature
Notes:
Symbol
V
CC
V
I
V
O
I
IK
I
OK
I
O
I
CC
or I
GND
P
T
Tstg
Ratings
–0.5 to 7.0
–0.5 to V
CC
+ 0.5
–0.5 to V
CC
+ 0.5
±20
±20
±25
±25
200
–65 to 150
Unit
V
V
V
mA
mA
mA
mA
mW
°C
Output : H or L
V
I
< 0 or V
I
> V
CC
V
O
< 0 or V
O
>V
CC
V
O
= 0 to V
CC
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 calculated using a junction temperature of 150°C.
Recommended Operating Conditions
Item
Supply voltage range
Input voltage range
Output voltage range
Input rise / fall time
(Control input 10% to 90%)
Symbol
V
CC
V
I/O
V
O
t
r
, t
f
Min
2
0
0
0
0
0
Operating temperature
Ta
–40
Max
6
V
CC
V
CC
1000
500
400
85
°C
Unit
V
V
V
ns
V
CC
= 2.0 V
V
CC
= 4.5 V
V
CC
= 6.0 V
Test Conditions
Note: Unused or floating control inputs must be held high or low.
Rev.8.00, Jan.27.2004, page 3 of 8
HD74HC1G66
Electrical Characteristics
V
CC
Item
Input voltage
Symbo
V
IH
(V)
2.0
4.5
6.0
V
IL
2.0
4.5
6.0
On resistance
R
ON
2.0
4.5
6.0
Peak on
resistance
R
ON
(p)
2.0
4.5
6.0
Leak current
I
S
(off)
6.0
Ta = 25°C
Min
1.5
3.15
4.2
—
—
—
—
—
—
—
—
—
—
Typ
—
—
—
—
—
—
200
90
80
600
125
100
—
Max
—
—
—
0.5
1.35
1.8
450
160
130
1500
200
170
±0.1
Ta = –40 to 85°C
Min
1.5
3.15
4.2
—
—
—
—
—
—
—
—
—
—
Max
—
—
—
0.5
1.35
1.8
550
180
140
2000
250
210
±1.0
Unit
V
Test Conditions
Control input only
Ω
V
C
= V
IH
V
IN
= V
CC
or GND
I
T
= 1 mA
V
C
= V
IH
V
IN
= 0 to V
CC
I
IN/OUT
= 1 mA
V
C
= V
IL
V
IN
= V
CC
, V
OUT
= GND
or V
IN
= GND,
V
OUT
= V
CC
V
C
= V
IH
V
IN
= V
CC
or GND
V
IN
= V
CC
or GND
V
IN
= V
CC
or GND
Ω
µA
I
S
(on)
Input current
Operating
current
I
IN
I
CC
6.0
6.0
6.0
—
—
—
—
—
—
±0.1
±0.1
1.0
—
—
—
±1.0
±1.0
10.0
µA
µA
µA
Rev.8.00, Jan.27.2004, page 4 of 8
HD74HC1G66
Switching Characteristics
V
CC
Item
Propagation delay time
Symbol
t
PLH
,
t
PHL
(V)
2.0
4.5
6.0
Output enable time
t
ZH
, t
ZL
2.0
4.5
6.0
Output disable time
t
HZ
, t
LZ
2.0
4.5
6.0
Maximum control
frequency
2.0
4.5
6.0
Control input
capacitance
Switch I/O capacitance
Feed through
capacitance
Power dissipation
capacitance
(C
L
= 50 pF, t
r
= t
f
= 6 ns)
C
IN
C
IN/OUT
C
IN–OUT
C
PD
Ta = 25°C
Min
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
Typ
—
4
—
—
10
—
—
14
—
20
30
30
2.5
2.5
0.5
5
Max
50
10
9
115
23
20
115
23
20
—
—
—
5
—
—
—
Ta = –40 to 85°C
Min
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
Max
65
13
11
145
29
25
145
29
25
—
—
—
5
—
—
—
Unit
ns
Test Conditions
R
L
= 10 kΩ
ns
R
L
= 1 kΩ
ns
R
L
= 1 kΩ
MHz
pF
pF
pF
pF
Rev.8.00, Jan.27.2004, page 5 of 8