Dual low-ohmic double-pole double-throw analog switch

The XS3A2467 is a dual low-ohmic double-pole double-throw analog switch suitable for use as an analog or digital multiplexer/demultiplexer. It consists of four switches, each with two independent input/outputs (nY0 and nY1) and a common input/output (nZ). The two digital inputs (1S and 2S) are used to select the switch position. 1S is used in selecting the independent inputs/outputs switched to 1Z and 2Z, and 2S is used in selecting the independent inputs/outputs switched to 3Z and 4Z. Schmitt trigger action at the digital inputs makes the circuit tolerant to slower input rise and fall times. Low threshold digital inputs allows this device to be driven by 1.8 V logic levels in 3.3 V applications without significant increase in supply current ICC. This makes it possible for the XS3A2467 to switch 4.3 V signals with a 1.8 V digital controller, eliminating the need for logic level translation. The XS3A2467 allows signals with amplitude up to VCC to be transmitted from nZ to nY0 or nY1; or from nY0 or nY1 to nZ. Its low ON resistance (0.5 Ω) and flatness (0.13 Ω) ensures minimal attenuation and distortion of transmitted signals.

Orderable parts

Type number Orderable part number Ordering code (12NC) Package Buy from distributors
XS3A2467PW XS3A2467PWJ 935691242118 SOT403-1 Order product

Features and benefits

  • Wide supply voltage range from 1.4 V to 4.3 V

  • Very low ON resistance (peak):

    • 1.6 Ω (typical) at VCC = 1.4 V

    • 1.0 Ω (typical) at VCC = 1.65 V

    • 0.55 Ω (typical) at VCC = 2.3 V

    • 0.5 Ω (typical) at VCC = 2.7 V

    • 0.5 Ω (typical) at VCC = 4.3 V

  • Break-before-make switching

  • High noise immunity

  • ESD protection:

    • HBM ANSI/ESDA/JEDEC JS-001 exceeds 4000 V

    • CDM ANSI/ESDA/JEDEC JS-002 exceeds 1000 V

    • IEC61000-4-2 contact discharge exceeds 8000 V for switch ports

  • CMOS low-power consumption

  • Latch-up performance exceeds 100 mA per JESD78 Class II Level A

  • 1.8 V control logic at VCC = 3.6 V

  • Control input accepts voltages above supply voltage

  • Very low supply current, even when input is below VCC

  • High current handling capability (350 mA continuous current under 3.3 V supply)

  • Specified from -40 °C to +85 °C and from -40 °C to +125 °C


  • Appliances

  • Communication Systems

  • Medical Equipment

  • Analog Sensor Monitoring

  • Audio Routing/Switching

  • Test and Measurement


Type numberProduct statusConfigurationVCC (V)Logic switching levelsRON (Ω)RON(FLAT) (Ω)f(-3dB) (MHz)THD (%)Xtalk (dB)Power dissipation considerationsTamb (°C)Rth(j-a) (K/W)Ψth(j-top) (K/W)Rth(j-c) (K/W)Package name
XS3A2467PWProductionDPDT-Z1.4 - 4.3CMOS/LVTTL0.50.2400.04-90ultra low-40~1251152.243.1TSSOP16

PCB Symbol, Footprint and 3D Model

Model NameDescription


Type numberOrderable part number, (Ordering code (12NC))StatusMarkingPackagePackage informationReflow-/Wave solderingPacking
( 9356 912 42118 )

Environmental information

Type numberOrderable part numberChemical contentRoHSRHF-indicator
Quality and reliability disclaimer

Documentation (5)

File nameTitleTypeDate
XS3A2467Dual low-ohmic double-pole double-throw analog switchData sheet2022-02-11
xs3a2467XS3A2467 IBIS modelIBIS model2022-02-14
XS3A2467PW_Nexperia_Product_ReliabilityXS3A2467PW Nexperia Product ReliabilityQuality document2022-05-04
SSOP-TSSOP-VSO-WAVEFootprint for wave solderingWave soldering2009-10-08
SOT403-1_118TSSOP16; Reel pack for SMD, 13"; Q1/T1 product orientationPacking information2020-02-14


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File nameTitleTypeDate
xs3a2467XS3A2467 IBIS modelIBIS model2022-02-14

PCB Symbol, Footprint and 3D Model

Model NameDescription

Ordering, pricing & availability

Type numberOrderable part numberOrdering code (12NC)PackingPacking quantityBuy online
XS3A2467PWXS3A2467PWJ935691242118SOT403-1_118- Order product


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How does it work?

The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.