DG534ADJ Vishay, DG534ADJ Datasheet - Page 15

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DG534ADJ

Manufacturer Part Number
DG534ADJ
Description
Analog Multiplexer Single 4:1 20-Pin PDIP
Manufacturer
Vishay
Type
Analog Multiplexerr
Datasheets

Specifications of DG534ADJ

Multiplexer Configuration
Single 4:1
Number Of Inputs
4
Number Of Outputs
2
Number Of Channels
1
Package Type
PDIP
Power Supply Requirement
Single/Dual
Single Supply Voltage (min)
10V
Single Supply Voltage (typ)
12/15V
Single Supply Voltage (max)
18V
Dual Supply Voltage (min)
±10V
Dual Supply Voltage (typ)
±12V
Dual Supply Voltage (max)
±15V
Power Dissipation
625mW
Mounting
Through Hole
Pin Count
20
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Package
20PDIP
Maximum On Resistance
90@15V@-3V Ohm
Maximum Propagation Delay Bus To Bus
300@15V|300@-3V ns
Maximum High Level Output Current
40 mA
Multiplexer Architecture
4:1
Number Of Channels Per Chip
1
Maximum Turn-off Time
175@15V@-3V ns
Maximum Turn-on Time
300@15V@-3V ns
Power Supply Type
Single|Dual
Lead Free Status / Rohs Status
Not Compliant
Power Supplies and Decoupling
A useful feature of the DG534A/538A is its power supply
flexibility. It can be operated from unipolar supplies (V–
connected to 0 V) if required. Allowable operating voltage
ranges are shown in Figure 13.
Note that the analog signal must not go below V– by more than
0.3 V (see absolute maximum ratings). However, the addition
of a V– pin has a number of advantages:
a.
b.
c.
It is established rf design practice to incorporate sufficient
bypass capacitors in the circuit to decouple the power supplies
to all active devices in the circuit. The dynamic performance
of the DG534/538 is adversely affected by poor decoupling of
power supply pins. Also, since the substrate of the device is
connected to the negative supply, proper decoupling of this pin
is essential.
Rules:
a.
b.
c.
d.
Board Layout
PCB layout rules for good high frequency performance must
also be observed to achieve the performance boasted by the
DG534A/538A. Some tips for minimizing stray effects are:
Document Number: 70069
S-05734—Rev. G, 29-Jan-02
It allows flexibility in analog signal handling, i.e. with V– =
–5 V and V+ = 15 V, up to "5 V ac signals can be
accepted.
The value of on capacitance (C
increasing the reverse bias across the internal FET body to
source junction. V+ has no effect on C
It is useful to note that tests indicate that optimum video
differential phase and gain occur when V– is –3 V.
V– eliminates the need to bias an ac analog signal using
potential dividers and large decoupling capacitors.
Decoupling capacitors should be incorporated on all
power supply pins (V+, V–, V
They should be mounted as close as possible to the
device pins.
Capacitors should have good frequency characteristics -
tantalum bead and/or ceramic disc types are suitable.
Recommended decoupling capacitors are 1- to 10-mF
tantalum bead, in parallel with 100-nF ceramic or
polyester.
Additional high frequency protection may be provided by
51-W carbon film resistors connected in series with the
power supply pins (see Figure 14).
L
).
S(on)
) may be reduced by
S(on)
.
a.
b.
c.
Improvements in performance can be obtained by using PLCC
parts instead of DIPs. The stray effects of the quad PLCC
package are lower than those of the dual-in-line packages.
Sockets for the PLCC packages usually increase crosstalk.
Interfacing
Logic interfacing is easily accomplished. Comprehensive
addressing and control functions are incorporated in the
design.
The V
is primarily designed to be TTL or CMOS logic compatible with
+5 V applied to V
simply by increasing V
Use extensive ground planes on double sided PCB
separating adjacent signal paths. Multilayer PCB is even
better.
Keep signal paths as short as practically possible with all
channel paths of near equal length.
Use strip-line layout techniques.
FIGURE 14. DG534A Power Supply Decoupling
L
pin permits interface to various logic types. The device
S
S
S
S
A1
A2
B1
B2
C
2
L
. The actual logic threshold can be raised
51 W
+5 V
GND
L
C
+
.
1
V
L
DG534A
–3 V
V–
C
+
1
51 W
V+
Vishay Siliconix
C
DG534A/538A
+15 V
+
1
51 W
C
C
1
2
C
= 1 mF Tantalum
= 100 nF Polyester
2
C
2
www.vishay.com
D
D
A
B
15

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