Logic - Signal Switches, Multiplexers, Decoders

Image Part Number Description / PDF Quantity Rfq
74HCT153N,652

74HCT153N,652

NXP Semiconductors

IC MULTIPLEXER 2 X 4:1 16DIP

10671

FAGD1655348BA

FAGD1655348BA

Intel

MUX/DEMUX, 1-FUNC, PQFP48

6254

MC9801P

MC9801P

MUX, 2-FUNC, 4 LINE INPUT, DTL

101

SN74HCT257D

SN74HCT257D

Texas Instruments

IC MULTIPLEXER 4 X 2:1 16SOIC

304

SNJ54AHC157J

SNJ54AHC157J

Texas Instruments

54AHC157 QUADRUPLE 2-LINE TO 1-L

174

SN74LV4053ANS

SN74LV4053ANS

Texas Instruments

SINGLE-ENDED MUX, 2 CHANNEL

10450

SN74LS399D

SN74LS399D

Texas Instruments

IC MULTIPLEXER 4 X 2:1 16SOIC

20782

MC10H158FNR2

MC10H158FNR2

IC MULTIPLEXER 4 X 2:1 20PLCC

4350

MAX4639EUE

MAX4639EUE

Analog Devices, Inc.

DUAL 4:1 ANALOG MUX

2409

SN74ALS153DR

SN74ALS153DR

Texas Instruments

IC MULTIPLEXER 2 X 4:1 16SOIC

12411

QS3126QG8

QS3126QG8

Renesas Electronics America

IC BUS SWITCH 1 X 1:1 16QSOP

5128

74CBTLV3245DS,118

74CBTLV3245DS,118

NXP Semiconductors

IC BUS SWITCH 8 X 1:1 20SSOP

45000

74LVC157AD,118

74LVC157AD,118

Nexperia

IC MULTIPLEXER 4 X 2:1 16SO

2710

SN74CBT3384ADBR

SN74CBT3384ADBR

Texas Instruments

IC BUS SWITCH 5 X 1:1 24SSOP

42077

DG202CSE.C30341

DG202CSE.C30341

Analog Devices, Inc.

DG202 QUAD SPST ANALOG SWITCH

1000

SN74AHC157DGVR

SN74AHC157DGVR

Texas Instruments

IC MULTIPLEXER 4 X 2:1 16TVSOP

4000

CD74HCT251E

CD74HCT251E

Texas Instruments

IC MULTIPLEXER 1 X 8:1 16DIP

4454

74HC157BQ-Q100,115

74HC157BQ-Q100,115

Nexperia

IC MULTIPLEXER 4 X 2:1 16DHVQFN

0

PI3B3253QE

PI3B3253QE

Zetex Semiconductors (Diodes Inc.)

IC MUX/DEMUX 2 X 4:1 16QSOP

1504

ADG3247BRU

ADG3247BRU

Analog Devices, Inc.

IC BUS SWITCH 8 X 1:1 38TSSOP

11906

Logic - Signal Switches, Multiplexers, Decoders

1. Overview

Signal switches, multiplexers, and decoders are fundamental logic ICs used to manage signal routing and data selection in electronic systems. Signal switches control the flow of electrical signals, multiplexers select between multiple input signals, and decoders convert encoded signals into specific outputs. These components are critical in modern technologies such as telecommunications, computing, and industrial automation, enabling efficient data handling and system design simplification.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Signal SwitchesDigital/analog switches with on/off controlAudio routing, power management
Multiplexers (MUX)2:1 to 16:1 channel selection, data bus sharingNetwork switches, sensor data aggregation
DecodersBinary-to-decimal, BCD-to-7-segment conversionMemory address decoding, display drivers

3. Structure and Composition

These ICs typically use CMOS or TTL technology with standard packages like DIP, SOP, and QFN. Internal components include transistor arrays, logic gates, and channel control circuits. For example, a 4-channel analog switch integrates four independent switching elements in a single package with common control lines.

4. Key Technical Specifications

ParameterDescriptionImportance
On-resistance (RON)Resistance in conducting stateImpacts signal integrity
BandwidthMaximum signal frequency supportedDetermines high-speed capability
Channel countNumber of independent pathsSystem scalability
Power consumptionQuiescent current and switching lossBattery life consideration
Propagation delaySignal transmission timeCritical for timing-sensitive systems

5. Application Areas

  • Telecommunications: Signal routing in base stations
  • Automotive: Sensor signal selection in ECUs
  • Consumer Electronics: HDMI switch boxes
  • Industrial: PLC signal conditioning
  • Computing: Memory address decoding in CPUs

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TISN74CB3Q324510- RON, 2.3V-3.6V supply
Analog DevicesADG14124-channel switch, 165MHz bandwidth
NXP74HC1518:1 multiplexer, 70MHz operation
STMicroelectronicsCD4028BEBCD-to-decimal decoder, 18V rating

7. Selection Guidelines

  • Channel requirements: Match input/output count needs
  • Signal type: Choose analog/digital switches accordingly
  • Voltage compatibility: Ensure supply voltage matches system rails
  • Speed vs. power trade-off: High bandwidth increases consumption
  • Package constraints: Consider PCB space and thermal requirements

8. Industry Trends

Current developments focus on miniaturization (0.4mm pitch packages), lower on-resistance (<1 ), and integration with level-shifting functions. The rise of IoT and 5G drives demand for high-frequency switches (up to 10GHz) with sub-mW standby power. Advanced CMOS processes enable higher channel density while maintaining signal integrity in automotive-grade temperature ranges.

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