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MC74VHC1G66DTT3

Description
1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, SC-59, SOT-23, TSOP-5
CategoryAnalog mixed-signal IC    The signal circuit   
File Size137KB,9 Pages
ManufacturerON Semiconductor
Websitehttp://www.onsemi.cn
Related ProductsFound19parts with similar functions to MC74VHC1G66DTT3
Download Datasheet Parametric Compare View All

MC74VHC1G66DTT3 Overview

1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, SC-59, SOT-23, TSOP-5

MC74VHC1G66DTT3 Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerON Semiconductor
Parts packaging codeTSOP
package instructionTSOP, TSOP5/6,.11,37
Contacts5
Reach Compliance Codenot_compliant
Analog Integrated Circuits - Other TypesSPST
JESD-30 codeR-PDSO-G5
JESD-609 codee0
length3 mm
normal positionNO
Number of channels1
Number of functions1
Number of terminals5
Nominal off-state isolation80 dB
Maximum on-state resistance (Ron)60 Ω
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package body materialPLASTIC/EPOXY
encapsulated codeTSOP
Encapsulate equivalent codeTSOP5/6,.11,37
Package shapeRECTANGULAR
Package formSMALL OUTLINE, THIN PROFILE
Peak Reflow Temperature (Celsius)NOT SPECIFIED
power supply5 V
Certification statusNot Qualified
Maximum seat height1.1 mm
Maximum supply voltage (Vsup)5.5 V
Minimum supply voltage (Vsup)2 V
Nominal supply voltage (Vsup)3 V
surface mountYES
Maximum disconnect time35 ns
Maximum connection time35 ns
switchMAKE-BEFORE-BREAK
technologyCMOS
Temperature levelMILITARY
Terminal surfaceTin/Lead (Sn/Pb)
Terminal formGULL WING
Terminal pitch0.95 mm
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
width1.5 mm

MC74VHC1G66DTT3 Preview

MC74VHC1G66
SPST (NO) Normally Open
Analog Switch
The MC74VHC1G66 is a single pole single throw (SPST) analog
switch. It achieves high speed propagation delays and low ON
resistances while maintaining low power dissipation. This bilateral
switch controls analog and digital voltages that may vary across the
full power−supply range (from V
CC
to GND).
The MC74VHC1G66 is compatible in function to a single gate of
the High Speed CMOS MC74VHC4066 and the metal−gate CMOS
MC14066. The device has been designed so that the ON resistances
(R
ON
) are much lower and more linear over input voltage than R
ON
of
the metal−gate CMOS or High Speed CMOS analog switches.
The ON/OFF control inputs are compatible with standard CMOS
outputs. The ON/OFF control input structure provides protection when
voltages between 0 V and 5.5 V are applied, regardless of the supply
voltage. This input structure helps prevent device destruction caused by
supply voltage
input/output voltage mismatch, battery backup,
hot insertion, etc.
Features
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MARKING DIAGRAMS
5
SC−88A
DF SUFFIX
CASE 419A
V9 MG
G
M
1
5
1
TSOP−5
DT SUFFIX
CASE 483
V9
M
G
1
V9 MG
G
5
High Speed: t
PD
= 20 ns (Typ) at V
CC
= 5.0 V
Low Power Dissipation: I
CC
= 1.0
mA
(Max) at T
A
= 25°C
Diode Protection Provided on Inputs and Outputs
Improved Linearity and Lower ON Resistance over Input Voltage
Chip Complexity: 11 FETs or 3 Equivalent Gates
ON/OFF Control Input has OVT
Chip Complexity: FETs = 11
These Devices are Pb−Free and are RoHS Compliant
= Device Code
= Date Code*
= Pb−Free Package
(Note: Microdot may be in either location)
*Date Code orientation and/or position may
vary depending upon manufacturing location.
PIN ASSIGNMENT
1
2
3
4
5
IN/OUT X
A
OUT/IN Y
A
GND
ON/OFF CONTROL
V
CC
FUNCTION TABLE
On/Off Control Input
L
H
State of Analog Switch
Off
On
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 7 of this data sheet.
©
Semiconductor Components Industries, LLC, 2011
May, 2011
Rev. 15
1
Publication Order Number:
MC74VHC1G66/D
MC74VHC1G66
IN/OUT X
A
1
5
V
CC
IN/OUT X
A
1
6
V
CC
OUT/IN Y
A
2
OUT/IN Y
A
2
5
NC
GND
3
4
ON/OFF
CONTROL
GND
3
4
ON/OFF
CONTROL
(SC−88A, TSOP−5)
(UDFN6)
Figure 1. Pinout Diagrams
ON/OFF CONTROL
IN/OUT X
A
U
1
1
Figure 2. Logic Symbol
MAXIMUM RATINGS
Symbol
V
CC
V
IN
V
IS
I
IK
I
CC
T
STG
T
L
T
J
q
JA
P
D
MSL
F
R
V
ESD
DC Supply Voltage
Digital Input Voltage
Analog Output Voltage
Digital Input Diode Current
DC Supply Current, V
CC
and GND
Storage Temperature Range
Lead Temperature, 1 mm from Case for 10 Seconds
Junction Temperature Under Bias
Thermal Resistance
Power Dissipation in Still Air at 85°C
Moisture Sensitivity
Flammability Rating
ESD Withstand Voltage
Oxygen Index: 28 to 34
Human Body Model (Note 2)
Machine Model (Note 3)
Charged Device Model (Note 4)
Above V
CC
and Below GND at 125°C (Note 5)
SC70−5 (Note 1)
SOT23−5
SC70−5
SOT23−5
Characteristics
Value
−0.5
to +7.0
−0.5
to +7.0
−0.5
to V
CC
+0.5
−20
+25
*65
to
)150
260
)150
350
230
150
200
Level 1
UL 94 V−0 @ 0.125 in
u2000
u200
N/A
$500
V
Unit
V
V
V
mA
mA
°C
°C
°C
°C/W
mW
I
LATCHUP
Latchup Performance
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
1. Measured with minimum pad spacing on an FR4 board, using 10 mm−by−1 inch, 2−ounce copper trace with no air flow.
2. Tested to EIA/JESD22−A114−A.
3. Tested to EIA/JESD22−A115−A.
4. Tested to JESD22−C101−A.
5. Tested to EIA/JESD78.
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2
U
X1
OUT/IN
Y
A
mA
MC74VHC1G66
RECOMMENDED OPERATING CONDITIONS
Symbol
V
CC
V
IN
V
IS
T
A
t
r
, t
f
DC Supply Voltage
DC Input Voltage
DC Output Voltage
Operating Temperature Range
Input Rise and Fall Time
ON/OFF Control Input
V
CC
= 3.3 V
±
0.3 V
V
CC
= 5.0 V
±
0.5 V
Characteristics
Min
2.0
GND
GND
−55
0
0
Max
5.5
5.5
V
CC
+125
100
20
Unit
V
V
V
°C
ns/V
Device Junction Temperature versus
Time to 0.1% Bond Failures
Junction
Temperature
°C
80
90
100
110
120
130
140
Time, Hours
1,032,200
419,300
178,700
79,600
37,000
17,800
8,900
Time, Years
117.8
47.9
20.4
9.4
4.2
2.0
1.0
NORMALIZED FAILURE RATE
FAILURE RATE OF PLASTIC = CERAMIC
UNTIL INTERMETALLICS OCCUR
T
J
=120
°
C
T
J
=100
°
C
T
J
= 90
°
C
T
J
= 80
°
C
100
T
J
= 130
°
C
T
J
=110
°
C
10
TIME, YEARS
1
1
1000
Figure 3. Failure Rate vs. Time Junction Temperature
DC ELECTRICAL CHARACTERISTICS
Symbol
V
IH
Parameter
Minimum High−Level
Input Voltage
ON/OFF Control Input
Maximum Low−Level
Input Voltage
ON/OFF Control Input
Maximum Input
Leakage Current
ON/OFF Control Input
Maximum Quiescent
Supply Current
Maximum ”ON”
Resistance
Maximum Off−Channel
Leakage Current
Test Conditions
R
ON
= Per Spec
V
CC
(V)
2.0
3.0
4.5
5.5
2.0
3.0
4.5
5.5
0 to
5.5
5.5
3.0
4.5
5.5
5.5
T
A
= 25°C
Min
1.5
2.1
3.15
3.85
0.5
0.9
1.35
1.65
±0.1
Max
T
A
85°C
Min
1.5
2.1
3.15
3.85
0.5
0.9
1.35
1.65
±1.0
Max
−55
T
A
125°C
Min
1.5
2.1
3.15
3.85
0.5
0.9
1.35
1.65
±1.0
Max
Unit
V
V
IL
R
ON
= Per Spec
V
I
IN
V
IN
= V
CC
or GND
mA
I
CC
R
ON
V
IN
= V
CC
or GND
V
IO
= 0 V
V
IN
= V
IH
V
IS
= V
CC
or GND
|I
IS
|
5 mA (Figure 4)
V
IN
= V
IL
V
IS
= V
CC
or GND
Switch Off (Figure 5)
1.0
60
45
40
0.1
20
70
50
45
0.5
40
100
60
55
1.0
mA
W
I
OFF
mA
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3
MC74VHC1G66
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Î
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ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
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Î
Î
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Î
Î
Î
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Î
Î
Î Î Î ÎÎ Î Î Î Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
Î
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
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Î Î Î ÎÎ Î Î Î Î
Î Î
Î
Î
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Î
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Î
Î Î
ÎÎ
Î
ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
AC ELECTRICAL CHARACTERISTICS
C
load
= 50 pF, Input t
r
/t
f
= 3.0 ns
Symbol
t
PLH
,
t
PHL
Parameter
Test Conditions
V
CC
(V)
2.0
3.0
4.5
5.5
2.0
3.0
4.5
5.5
2.0
3.0
4.5
5.5
0.0
5.0
T
A
= 25°C
Typ
1
0.6
0.6
0.6
32
28
24
20
32
28
24
20
3
4
4
T
A
85°C
6
3
1
1
−55
T
A
125°C
Min
Max
7
4
2
1
Min
Max
5
2
1
1
Min
Max
Unit
ns
Maximum
Propagation Delay,
Input X to Y
Y
A
= Open
(Figure 14)
t
PLZ
,
t
PHZ
Maximum
Propagation Delay,
ON/OFF Control to Analog
Output
Maximum
Propagation Delay,
ON/OFF Control to
Analog Output
Maximum Input
Capacitance
R
L
= 1000
W
(Figure 15)
40
35
30
25
40
35
30
25
10
10
10
45
40
35
30
45
40
35
30
10
10
10
50
45
40
35
50
45
40
35
10
10
10
ns
t
PZL
,
t
PZH
R
L
= 1000
W
(Figure 15)
ns
C
IN
ON/OFF Control Input
Control Input = GND
Analog I/O
Feedthrough
pF
Typical @ 25°C, V
CC
= 5.0 V
18
C
PD
Power Dissipation Capacitance (Note 6)
pF
6. C
PD
is defined as the value of the internal equivalent capacitance which is calculated from the operating current consumption without load.
Average operating current can be obtained by the equation: I
CC(OPR
)
= C
PD

V
CC

f
in
+ I
CC
. C
PD
is used to determine the no−load dynamic
power consumption; P
D
= C
PD

V
CC2

f
in
+ I
CC

V
CC
.
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ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ
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Î
Î
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Î Î Î
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Î
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Î
Î
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Î
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Î
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Î Î Î
Î
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ADDITIONAL APPLICATION CHARACTERISTICS
(Voltages Referenced to GND Unless Noted)
Symbol
BW
Parameter
Test Conditions
V
CC
3.0
4.5
5.5
3.0
4.5
5.5
3.0
4.5
5.5
Limit
25°C
150
175
180
Unit
Maximum On−Channel Bandwidth or
Minimum Frequency Response
(Figure 10)
Off−Channel Feedthrough Isolation
(Figure 11)
f
in
= 1 MHz Sine Wave
Adjust f
in
voltage to obtain 0 dBm at V
OS
Increase f
in
= frequency until dB meter reads
−3
dB
R
L
= 50
W
f
in
= Sine Wave
Adjust f
in
voltage to obtain 0 dBm at V
IS
f
in
= 10 kHz, R
L
= 600
W
MHz
ISO
off
−80
−80
−80
dB
NOISE
feed
Feedthrough Noise Control to Switch
(Figure 12)
Total Harmonic Distortion
(Figure 13)
V
in
1 MHz Square Wave (t
r
= t
f
= 2 ns)
R
L
= 600
W
45
60
130
mV
PP
THD
f
in
= 1 kHz, R
L
= 10 kW
THD = THD
Measured
THD
Source
V
IS
= 3.0 V
PP
sine wave
V
IS
= 5.0 V
PP
sine wave
%
3.3
5.5
0.30
0.15
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4
MC74VHC1G66
PLOTTER
POWER
SUPPLY
-
+
V
CC
1
2
V
CC
3
4
A
3
4
5
V
CC
1
2
5
V
IL
V
CC
DC PARAMETER
ANALYZER
COMPUTER
Figure 4. On Resistance Test Set−Up
Figure 5. Maximum Off−Channel Leakage Current
Test Set−Up
V
CC
A
N/C
1
2
3
4
5
V
CC
1
V
IH
TEST
POINT
2
3
4
5
V
CC
V
CC
Figure 6. Maximum On−Channel Leakage Current
Test Set−Up
Figure 7. Propagation Delay Test Set−Up
Switch to Position 2 when testing t
PLZ
and t
PZL
Switch to Position 1 when testing t
PHZ
and t
PZH
TEST POINT
V
CC
1
1
2
V
CC
1
2
*Includes all probe and jig capacitance.
R
L
2
C
L
*
3
4
N/C
2
3
4
5
V
CC
N/C
1
5
V
CC
A
Figure 8. Propagation Delay Output Enable/Disable
Test Set−Up
Figure 9. Power Dissipation Capacitance
Test Set−Up
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5

MC74VHC1G66DTT3 Related Products

MC74VHC1G66DTT3 MC74VHC1G66DFT4
Description 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, SC-59, SOT-23, TSOP-5 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, SC-70, SC-88A, SOT-353, 5 PIN
Is it Rohs certified? incompatible incompatible
Maker ON Semiconductor ON Semiconductor
Parts packaging code TSOP SOT-353
package instruction TSOP, TSOP5/6,.11,37 TSSOP, TSSOP5/6,.08
Contacts 5 5
Reach Compliance Code not_compliant not_compliant
Analog Integrated Circuits - Other Types SPST SPST
JESD-30 code R-PDSO-G5 R-PDSO-G5
JESD-609 code e0 e0
length 3 mm 2 mm
normal position NO NO
Number of channels 1 1
Number of functions 1 1
Number of terminals 5 5
Nominal off-state isolation 80 dB 80 dB
Maximum on-state resistance (Ron) 60 Ω 60 Ω
Maximum operating temperature 125 °C 125 °C
Minimum operating temperature -55 °C -55 °C
Package body material PLASTIC/EPOXY PLASTIC/EPOXY
encapsulated code TSOP TSSOP
Encapsulate equivalent code TSOP5/6,.11,37 TSSOP5/6,.08
Package shape RECTANGULAR RECTANGULAR
Package form SMALL OUTLINE, THIN PROFILE SMALL OUTLINE, THIN PROFILE, SHRINK PITCH
Peak Reflow Temperature (Celsius) NOT SPECIFIED 240
power supply 5 V 5 V
Certification status Not Qualified Not Qualified
Maximum seat height 1.1 mm 1.1 mm
Maximum supply voltage (Vsup) 5.5 V 5.5 V
Minimum supply voltage (Vsup) 2 V 2 V
Nominal supply voltage (Vsup) 3 V 3 V
surface mount YES YES
Maximum disconnect time 35 ns 35 ns
Maximum connection time 35 ns 35 ns
switch MAKE-BEFORE-BREAK MAKE-BEFORE-BREAK
technology CMOS CMOS
Temperature level MILITARY MILITARY
Terminal surface Tin/Lead (Sn/Pb) Tin/Lead (Sn/Pb)
Terminal form GULL WING GULL WING
Terminal pitch 0.95 mm 0.65 mm
Terminal location DUAL DUAL
Maximum time at peak reflow temperature NOT SPECIFIED 30
width 1.5 mm 1.25 mm

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SN74LVC1G66DCKR Rochester Electronics 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, GREEN, PLASTIC, SC-70, 5 PIN
NC7SZ66P5 Rochester Electronics 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, 1.25 MM, EIAJ, SC-88A, SC-70, 5 PIN
SN74LVC1G66DCKTE4 Rochester Electronics 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, GREEN, PLASTIC, SC-70, 5 PIN
FSAT66P5X Rochester Electronics 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, 1.25 MM, SC-88A, SC-70, 5 PIN
FSA66P5X Rochester Electronics 1-CHANNEL, SGL POLE SGL THROW SWITCH, PDSO5, 1.25 MM, LEAD FREE, EIAJ, SC-88A, SC-70, 5 PIN
MC74VHC1G66DFT1 ON Semiconductor(安森美) Analog Switch ICs 2-5.5V Hi Speed ANLG
FSAT66P5X Fairchild Low Voltage Single SPST Normally Open Analog Switch with TTL Compatible Control Input
NC7SZ66P5 Fairchild Analog Switch ICs SPST Analog Switch
SN74LVC1G66DCKTE4 Texas Instruments(德州仪器) Analog Switch Single SPST 5-Pin SC-70 T/R
I want to design a wireless competition answering machine based on CPLD
I have no idea which chip is better....
huohuohbuo FPGA/CPLD
USB camera OV511+OV7620, the captured image is not clear
Environment: WINCE ARM11 Device: Mesh V2000, OV511+USB camera Resource: Refer to the WINCE_OV511 on the Internet, the one with driver+host computer+PPT explanation Test results: YUV420->RGB image is a...
ENG Embedded System
【sensorTile Review】02: Software and Hardware Development Environment Review
SensorTile is quite different from other basic development boards released by ST. ST's basic development boards are the Nucleo series and the Discovery series. Nucleo is the simplest, with STLink+MCU,...
johnrey MEMS sensors
Two STM32 communication problems
Hello STM32 experts, please help me solve the SPI communication problem. The data I sent is 0x44. The received data is 0x11, 0x22, 0x33, 0x44. I think it is the problem of clock polarity and clock pha...
贝多芬爵士 stm32/stm8
A few VBA programming statements!
In Excel, there are several commonly used programming statements. ActiveSheet.Range("A:A").ColumnWidth = 6 'Set the width of column A to 6 ActiveSheet.Range("C:H").ColumnWidth = 13 'Set the width of c...
liufan FPGA/CPLD
Send an ultrasonic ranging program
The module is HSR-04. I have tested it myself and the accuracy is about 0.02M. The MCU is STM32 with serial data output and LCD display...
psmaorui Integrated technical exchanges

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