DG529 Maxim, DG529 Datasheet

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DG529

Manufacturer Part Number
DG529
Description
Maxim's DG528/DG529 are monolithic, 8-channel, CMOS multiplexers with on-board address and control latches that simplify design and reduce board space in microprocessor-based applications
Manufacturer
Maxim
Datasheet

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Maxim’s DG528/DG529 are monolithic, 8-channel,
CMOS multiplexers with on-board address and control
latches that simplify design and reduce board space in
microprocessor-based applications. The DG528 is a
single-ended, 1-of-8 multiplexer, while the DG529 is a
differential, 2-of-8 multiplexer. These devices can oper-
ate as multiplexers or demultiplexers.
The DG528/DG529 have break-before-make switching
to prevent momentary shorting of the input signals.
Each device operates with dual supplies (±4.5V to
±20V) or a single supply (+5V to +30V). All logic inputs
are TTL and CMOS compatible. The Maxim
DG528/DG529 are pin and electrically compatible with
the industry-standard DG528/DG529.
________________________Applications
19-3519; Rev 0; 3/91
Call toll free 1-800-998-8800 for free samples or literature.
__________Typical Operating Circuit
_______________General Description
DIFFERENTIAL INPUT FOR DATA-ACQUISITION SYSTEMS
Data-Acquisition Systems
Automatic Test Equipment
Avionics and Military Systems
Communication Systems
Microprocessor-Controlled Systems
Audio-Signal Multiplexing
IN1A
IN1B
IN2A
IN2B
IN3A
IN3B
IN4A
IN4B
+5V
WR RS
DG529
-5V
A0 A1
________________________________________________________________ Maxim Integrated Products
MUX AND A/D CONTROL
OUTA
OUTB
MAX133
8-Channel Latchable Multiplexers
P INTERFACE
____________________________Features
Ordering Information continued at end of data sheet.
* Contact factory for dice specifications.
** Contact factory for availability and processing to MIL-STD-883.
_________________Pin Configurations
______________Ordering Information
DG528CJ
DG528CWN
DG528CK
DG528C/D
DG528DJ
DG528DN
DG528EWN
DG528DK
DG528AZ
DG528AK
Low-Power, Monolithic CMOS Design
On-Board Address Latches
Break-Before-Make Input Switches
TTL and CMOS Logic Compatible
Microprocessor-Bus Compatible
r
Pin and Electrically Compatible with the Industry-
Standard DG528/DG529 and ADG528/ADG529
DS(ON)
TOP VIEW
PART
Pin Configurations continued at end of data sheet.
< 400Ω
WR
EN
A0
S1
S2
S3
S4
V-
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
-55°C to +125°C
-55°C to +125°C
D
TEMP. RANGE
0°C to +70°C
0°C to +70°C
0°C to +70°C
0°C to +70°C
1
2
3
4
5
6
7
8
9
DIP/SO
DG528
18
17
16
15
14
12
11
10
18 Plastic DIP
18 Wide SO
18 CERDIP
Dice*
18 Plastic DIP
20 PLCC
18 Wide SO
18 CERDIP
20 LCC**
18 CERDIP**
13
PIN-PACKAGE
RS
A1
A2
GND
V+
S5
S6
S7
S8
1

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DG529 Summary of contents

Page 1

... Maxim’s DG528/DG529 are monolithic, 8-channel, CMOS multiplexers with on-board address and control latches that simplify design and reduce board space in microprocessor-based applications. The DG528 is a single-ended, 1-of-8 multiplexer, while the DG529 is a differential, 2-of-8 multiplexer. These devices can oper- ate as multiplexers or demultiplexers. The DG528/DG529 have break-before-make switching to prevent momentary shorting of the input signals. Each device operates with dual supplies (± ...

Page 2

... A MAX T = +25°C -10 A DG529 -100 -0.008 A MAX T = +25°C - 2.4V, DG528 -200 = ±10V, A MAX D = 0.8V +25°C -10 A DG529 = 2. -100 -0.015 A MAX T = +25° 2. -30 A MAX T = +25° MAX T = +25° 2.4V T ...

Page 3

... +25° 0V 1kΩ +25° 500kHz RMS T = +25° 0V 140kHz +25° 0V, DG528 T = +25°C A DG529 T = +25° +25° +25°C -1 300 180 (Note 5) 500 S DG52_C/D/E UNITS TYP ...

Page 4

... OUT GND WR V- 35pF 1M -15V +15V DG529 V+ IN1B ±10V EN RS IN1A TO IN4A OUTA, IN2B TO IN3B SWITCH A0 IN4B ±10V OUTPUT OUTB GND 35pF -15V +15V DG529 IN_ AND +5V OUTA SWITCH OUTPUT A0, A1 (A2) OUTB V O GND WR V- 35pF 1k -15V ...

Page 5

... GND WR +2.4V EN A0, A1 (A2) REMAINING SWITCHES RS WR OUTB OUT LOGIC 0 INPUT GND RS WR +15V DG528 V+ IN1 -5V SWITCH OUTPUT OUT 35pF 1k -15V +15V DG529 V+ IN1B -5V OUTA SWITCH OUTPUT 35pF 1k -15V +15V DG529 V+ IN1 OR +5V IN1B SWITCH OUTPUT 35pF 1k -15V 5 ...

Page 6

... IS THE MEASURE OF VOLTAGE ERROR DUE TO O CHARGE INJECTION. THE CHARGE INJECTION IN COULOMBS Figure 6. Charge-Injection Test Circuit +3V +1. +3V +2.0V EN, A0, A1, (A2) +0.8V 0 Figure 7. Typical Timing Diagrams for DG528/DG529 6 _______________________________________________________________________________________ t OFF(RS) 0 GEN V GEN SHOWN + ...

Page 7

... RS turns off all channels when it is low, which resets channel selection to the channel 1 mode. The DG528/DG529 work with both single and dual sup- plies and function over the +5V to +30V single-supply range. For example, with a single +15V power supply, analog signals in the 0V to +15V range can be switched normally ...

Page 8

... The switching delays increase by about a factor of two at ±5V, and break- before-make action is preserved. The DG528/DG529 can operate with a single +5V to +30V supply as well as asymmetrical power supplies like +15V and -5V. The digital threshold will remain approximately 1.6V above the GND pin, and the analog ...

Page 9

... S1A S1B S2A S2A 13 S2B 6 S3A S6 S3A 7 12 S3B S4A 11 S4B DIP/SO ±15V ANALOG INPUTS IN1 IN2 IN3 IN4 IN5 IN6 IN7 IN8 1-OF-8 ANALOG INPUTS GND DG529 16 S1B S2B 7 15 S3B 8 14 LCC/PLCC N. CONNECT 9 ...

Page 10

... Dice* DG529DJ -40°C to +85°C 18 Plastic DIP DG529DN -40°C to +85°C 20 PLCC DG529EWN -40°C to +85°C 18 Wide SO DG529DK -40°C to +85°C 18 CERDIP DG529AZ -55°C to +125°C 20 LCC** DG529AK -55°C to +125°C 18 CERDIP** * Contact factory for dice specifications. ** Contact factory for availability and processing to MIL-STD-883. ...

Page 11

Latchable Multiplexers ________________________________________________________Package Information ______________________________________________________________________________________ 0° - 15° Plastic DIP PKG. PLASTIC P P DUAL-IN-LINE P PACKAGE ...

Page 12

... B S1 Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied ...

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