Interface - Analog Switches, Multiplexers, Demultiplexers

Image Part Number Description / PDF Quantity Rfq
DG9252EN-T1-E4

DG9252EN-T1-E4

Vishay / Siliconix

IC MULTIPLEXER DUAL 4CH 16QFN

0

DG304AAK/883

DG304AAK/883

Vishay / Siliconix

IC SWITCH DUAL SPST 14CDIP

0

DG2043DQ-T1-E3

DG2043DQ-T1-E3

Vishay / Siliconix

IC SWITCH QUAD SPST 16TSSOP

0

DG2616DN-T1-E4

DG2616DN-T1-E4

Vishay / Siliconix

IC SWITCH LV DUAL SPST 10DFN

0

DG613DY

DG613DY

Vishay / Siliconix

IC SWITCH QUAD NO/NC 16-SOIC

0

DG333ADW

DG333ADW

Vishay / Siliconix

IC SWITCH QUAD SPDT 20SOIC

0

DG9426DQ-T1-E3

DG9426DQ-T1-E3

Vishay / Siliconix

IC SWITCH QUAD SPST 16TSSOP

0

DG309BDY-T1

DG309BDY-T1

Vishay / Siliconix

IC SWITCH QUAD SPST 16SOIC

0

DG2512DN-T1-E4

DG2512DN-T1-E4

Vishay / Siliconix

IC SWITCH DUAL LV 6MINIQFN

0

DG604EN-T1-E4

DG604EN-T1-E4

Vishay / Siliconix

IC MULTIPLEXER DUAL1X1 16MINIQFN

0

DG9262DY

DG9262DY

Vishay / Siliconix

IC SWITCH DUAL SPST 8SOIC

0

DG412DY-T1

DG412DY-T1

Vishay / Siliconix

IC SWITCH QUAD SPST 16-SOIC

0

DG2721DN-T1-E4

DG2721DN-T1-E4

Vishay / Siliconix

IC SWITCH DUAL SPDT 10MINIQFN

0

DG643DY

DG643DY

Vishay / Siliconix

IC VIDEO SWITCH SPDT 16SOIC

0

DG2034DQ-T1-E3

DG2034DQ-T1-E3

Vishay / Siliconix

IC MULTIPLEXER 4X1 10MSOP

0

DG405BDY

DG405BDY

Vishay / Siliconix

IC ANALOG SWITCH SPDT 16SOIC

0

DG9424DQ-T1

DG9424DQ-T1

Vishay / Siliconix

IC SWITCH QUAD SPST 16TSSOP

0

DG444BDY-T1

DG444BDY-T1

Vishay / Siliconix

IC SWITCH QUAD SPST 16SOIC

0

DG413HSAK

DG413HSAK

Vishay / Siliconix

IC SWITCH QUAD SPST 16-SOIC

0

DG611DJ-E3

DG611DJ-E3

Vishay / Siliconix

IC SWITCH QUAD SPST 16-DIP

0

Interface - Analog Switches, Multiplexers, Demultiplexers

1. Overview

Analog switches, multiplexers, and demultiplexers are semiconductor devices used to route analog signals in electronic circuits. These ICs enable the controlled connection or disconnection of signal paths, allowing dynamic signal management in applications such as data acquisition systems, communication networks, and industrial automation. Their ability to handle analog signals with minimal distortion and high reliability makes them critical components in modern electronics.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Analog SwitchesSingle/multiple pole-switch configurations, low on-resistance, high off-isolationSignal routing in test equipment
Multiplexers (MUX)Selects one of multiple input signals, bandwidth up to GHz rangeSensor signal aggregation in IoT devices
Demultiplexers (DEMUX)Routes single input to multiple outputs, complementary to MUXData distribution in communication systems

3. Structure and Components

These ICs typically employ CMOS technology with MOSFET-based transmission gates. Key components include control logic circuitry, channel selection decoders, and bidirectional signal paths. Common packages include TSSOP, QFN, and SOIC with pin counts ranging from 8 to 100+ for high-channel-density devices. Internal structures incorporate ESD protection diodes and charge pump circuits for rail-to-rail operation.

4. Key Technical Specifications

ParameterDescriptionImportance
On-Resistance (RON)Resistance when switch is closed (typical 0.1-100 )Affects signal integrity and power loss
Off-Leakage CurrentCurrent flow when switch is open (nA/pA range)Determines isolation performance
BandwidthMaximum signal frequency supported (DC to GHz)Limits high-speed application capability
Channel CountNumber of independent switches (1 to 32 channels)System integration level
Supply VoltageOperating voltage range (1.8V to 40V)Compatibility with system power rails

5. Application Areas

Key industries include:

  • Telecommunications: Base station signal routing
  • Industrial Automation: PLC signal switching
  • Consumer Electronics: Audio/video source selection
  • Medical Devices: Multiparameter patient monitoring
  • Test Equipment: Automatic test system signal matrix

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Specifications
TI (Texas Instruments)TMUXHS421210-channel, 0.8 RON, 1GHz bandwidth
Analog DevicesADG4194-channel SPST, 15V operation
NXP Semiconductors74LVC40518-channel MUX/DEMUX, 32MHz bandwidth
ON SemiconductorNCV845616-channel DEMUX, automotive qualified

7. Selection Guidelines

Key selection criteria:

  • Signal bandwidth vs. RON tradeoff
  • Operating voltage compatibility
  • Package size vs. channel density
  • Logic interface voltage levels
  • Thermal management requirements
Case Study: In a precision data acquisition system, a 16-channel MUX with <1 RON and 10nA leakage current was selected to maintain 16-bit measurement accuracy across 0-10V industrial sensor signals.

8. Industry Trends

Current trends include:

  • Development of sub-1 RON switches for power-sensitive applications
  • Integration of fault protection and diagnostics
  • Expansion of radiation-hardened devices for aerospace
  • Adoption of wafer-level chip-scale packaging (WCSP)
  • Emergence of software-configurable analog routing matrices

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