MC54HC4016A Motorola, MC54HC4016A Datasheet - Page 8

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MC54HC4016A

Manufacturer Part Number
MC54HC4016A
Description
Quad Analog Switch/ Multiplexer/Demultiplexer
Manufacturer
Motorola
Datasheet
MOTOROLA
levels, V CC being recognized as logic high and GND being
recognized as a logic low. Unused analog inputs/outputs
may be left floating (not connected). However, it is advisable
to tie unused analog inputs and outputs to V CC or GND
through a low value resistor. This minimizes crosstalk and
feedthrough noise that may be picked up by the unused I/O
pins.
the supply voltages V CC and GND. The positive peak analog
voltage should not exceed V CC . Similarly, the negative peak
analog voltage should not go below GND. In the example
MC54/74HC4016A
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The ON/OFF Control pins should be at V CC or GND logic
The maximum analog voltage swings are determined by
APPLICATION INFORMATION
+ 12 V
– 100
0 V
– 10
– 20
– 30
– 40
– 50
– 60
– 70
– 80
– 90
0
Figure 17. Transient Suppressor Application
1.0
Figure 15. Plot, Harmonic Distortion
V CC
ANALOG I/O
FUNDAMENTAL FREQUENCY
Figure 16. 12 V Application
+ 12 V
D x
D x
V CC
FREQUENCY (kHz)
SELECTED
CONTROL
INPUT
7
SELECTED
CONTROL
INPUT
7
3–8
ON
ON
2.0
14
below, the difference between V CC and GND is twelve volts.
Therefore, using the configuration in Figure 16, a maximum
analog signal of twelve volts peak–to–peak can be con-
trolled.
are anticipated on the analog channels, external diodes (Dx)
are recommended as shown in Figure 17. These diodes
should be small signal, fast turn–on types able to absorb the
maximum anticipated current surges during clipping. An al-
ternate method would be to replace the Dx diodes with
MO
MO
DC protection with no inherent wear–out mechanism.
14
When voltage transients above V CC and/or below GND
ANALOG O/I


sorbs are fast turn–on devices ideally suited for precise
sorbs (Motorola high current surge protectors).
V CC = 12 V
DEVICE
SOURCE
OTHER CONTROL
V CC
(V CC OR GND)
OTHER CONTROL
(V CC OR GND)
INPUTS
INPUTS
D x
D x
+ 12 V
0 V
3.0
High–Speed CMOS Logic Data
DL129 — Rev 6

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