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MC74VHC4316DR2G Datasheet(PDF) 5 Page - ON Semiconductor

Part # MC74VHC4316DR2G
Description  Quad Analog Switch/Multiplexer/Demultiplexer with Separate Analog and Digital Power Supplies
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

MC74VHC4316DR2G Datasheet(HTML) 5 Page - ON Semiconductor

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MC74VHC4316
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5
AC ELECTRICAL CHARACTERISTICS (CL = 50 pF, Control or Enable tr = tf = 6 ns, VEE = GND)
Symbol
Parameter
VCC
V
Guaranteed Limit
Unit
– 55 to
25
°C
v 85°C
v 125°C
tPLH,
tPHL
Maximum Propagation Delay, Analog Input to Analog Output
(Figures 8 and 9)
2.0
4.5
6.0
40
6
5
50
8
7
60
9
8
ns
tPLZ,
tPHZ
Maximum Propagation Delay, Control or Enable to Analog Output
(Figures 10 and 11)
2.0
4.5
6.0
130
40
30
160
50
40
200
60
50
ns
tPZL,
tPZH
Maximum Propagation Delay, Control or Enable to Analog Output
(Figures 10 and 11)
2.0
4.5
6.0
140
40
30
175
50
40
250
60
50
ns
C
Maximum Capacitance
ON/OFF Control
and Enable Inputs
-
10
10
10
pF
Control Input = GND
Analog I/O
Feedthrough
-
-
35
1.0
35
1.0
35
1.0
1. For propagation delays with loads other than 50 pF, see Chapter 2 of the ON Semiconductor High-Speed CMOS Data Book (DL129/D).
2. Information on typical parametric values can be found in Chapter 2 of the ON Semiconductor High-Speed CMOS Data Book (DL129/D).
CPD
Power Dissipation Capacitance (Per Switch) (Figure 13)*
Typical @ 25
°C, VCC = 5.0 V
pF
15
*Used to determine the no-load dynamic power consumption: PD = CPD VCC2f + ICC VCC. For load considerations, see Chapter 2of the
ON Semiconductor High-Speed CMOS Data Book (DL129/D).
ADDITIONAL APPLICATION CHARACTERISTICS (GND = 0 V)
Symbol
Parameter
Test Conditions
VCC
V
VEE
V
Limit*
25
°C
Unit
BW
Maximum On–Channel Bandwidth
or
Minimum Frequency Response
(Figure 5)
fin = 1 MHz Sine Wave
Adjust fin Voltage to Obtain 0 dBm at VOS
Increase fin Frequency Until dB Meter
Reads – 3 dB
RL = 50 W, CL = 10 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
150
160
160
MHz
-
Off–Channel Feedthrough
Isolation
(Figure 6)
fin  Sine Wave
Adjust fin Voltage to Obtain 0 dBm at VIS
fin = 10 kHz, RL = 600 W, CL = 50 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
– 50
– 50
– 50
dB
fin = 1.0 MHz, RL = 50 W, CL = 10 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
– 40
– 40
– 40
-
Feedthrough Noise, Control to
Switch
(Figure 7)
Vin v 1 MHz Square Wave (tr = tf = 6 ns)
Adjust RL at Setup so that IS = 0 A
RL = 600 W, CL = 50 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
60
130
200
mVPP
RL = 10 kW, CL = 10 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
30
65
100
-
Crosstalk Between Any Two
Switches
(Figure 12)
fin  Sine Wave
Adjust fin Voltage to Obtain 0 dBm at VIS
fin = 10 kHz, RL = 600 W, CL = 50 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
– 70
– 70
– 70
dB
fin = 1.0 MHz, RL = 50 W, CL = 10 pF
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
– 80
– 80
– 80
THD
Total Harmonic Distortion
(Figure 14)
fin = 1 kHz, RL = 10 kW, CL = 50 pF
THD = THDMeasured - THDSource
VIS = 4.0 VPP sine wave
VIS = 8.0 VPP sine wave
VIS = 11.0 VPP sine wave
2.25
4.50
6.00
– 2.25
– 4.50
– 6.00
0.10
0.06
0.04
%
*Limits not tested. Determined by design and verified by qualification.


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