Produktdetails

Configuration 1:1 SPST Number of channels 4 Power supply voltage - single (V) 12, 16, 20, 36, 44 Power supply voltage - dual (V) +/-10, +/-15, +/-18, +/-22, +/-5 Protocols Analog Ron (typ) (Ω) 9.5 CON (typ) (pF) 20 ON-state leakage current (max) (µA) 0.025 Supply current (typ) (µA) 300 Bandwidth (MHz) 500 Operating temperature range (°C) -40 to 125 Features 1.8-V compatible control inputs, Break-before-make, Fail-safe logic, Overvoltage protection Input/output continuous current (max) (mA) 50 Rating Catalog Drain supply voltage (max) (V) 44 Supply voltage (max) (V) 44 Negative rail supply voltage (max) (V) -44
Configuration 1:1 SPST Number of channels 4 Power supply voltage - single (V) 12, 16, 20, 36, 44 Power supply voltage - dual (V) +/-10, +/-15, +/-18, +/-22, +/-5 Protocols Analog Ron (typ) (Ω) 9.5 CON (typ) (pF) 20 ON-state leakage current (max) (µA) 0.025 Supply current (typ) (µA) 300 Bandwidth (MHz) 500 Operating temperature range (°C) -40 to 125 Features 1.8-V compatible control inputs, Break-before-make, Fail-safe logic, Overvoltage protection Input/output continuous current (max) (mA) 50 Rating Catalog Drain supply voltage (max) (V) 44 Supply voltage (max) (V) 44 Negative rail supply voltage (max) (V) -44
TSSOP (PW) 16 32 mm² 5 x 6.4 WQFN (RRP) 16 16 mm² 4 x 4
  • Wide supply range: 8 V to 44 V single supply ±5 V to ±22 V dual supply
  • Channel protector without need for dedicated select pin per channel
    • Reduces number of control logic signals to route across PCB
  • Integrated fault protection:
    • Overvoltage protection, source to supplies or source to drain: ±85 V
    • Overvoltage protection: ±60 V
    • Powered-off protection: ±60 V
    • Interrupt flags to indicate fault status
    • Adjustable overvoltage triggering thresholds
      • V FP: 3 V to V DD, V FN: 0 V to V SS
    • Adjustable output behavior (clamped or open) during fault
  • Latch-up immunity by device construction
  • 6 kV human body model (HBM) ESD rating
  • Low On-Resistance: 8.3 Ω typical
  • Flat On-Resistance: 5 mΩ typical
  • Industry-standard TSSOP and smaller WQFN package
  • Wide supply range: 8 V to 44 V single supply ±5 V to ±22 V dual supply
  • Channel protector without need for dedicated select pin per channel
    • Reduces number of control logic signals to route across PCB
  • Integrated fault protection:
    • Overvoltage protection, source to supplies or source to drain: ±85 V
    • Overvoltage protection: ±60 V
    • Powered-off protection: ±60 V
    • Interrupt flags to indicate fault status
    • Adjustable overvoltage triggering thresholds
      • V FP: 3 V to V DD, V FN: 0 V to V SS
    • Adjustable output behavior (clamped or open) during fault
  • Latch-up immunity by device construction
  • 6 kV human body model (HBM) ESD rating
  • Low On-Resistance: 8.3 Ω typical
  • Flat On-Resistance: 5 mΩ typical
  • Industry-standard TSSOP and smaller WQFN package

The TMUX7462F is a four-channel protector that can be placed on the front end of a signal path to protect sensitive components downstream from damage caused by overvoltage faults. Each of the 4 channels has an internal switch that is turned-off automatically upon occurrence of an overvoltage fault without the need of external controls. This simplifies robust system level protection designs by removing the need for control signals for each channel of the device. The overvoltage protection is available in powered and powered-off conditions, making the TMUX7462F suitable for applications where power supply sequencing cannot be precisely controlled.

The switch channels remain in the high impedance state (regardless of switch input conditions) when the devices power supplies are floating, grounded, or at a level that is below the undervoltage (UV) threshold. If the signal level on any Sx pin exceeds the fault supply (V FP or V FN) by a threshold voltage (V T), then the Sx pin becomes high impedance and an output fault flag is asserted low to indicate a fault condition under normal operation. The drain pin (Dx) is either pulled to the fault supply voltage that was exceeded or left floating depending on the DR control logic.

The device operates with dual supplies (±5 V to ±22 V), a single supply (8 V to 44 V), or asymmetric supplies. The low and flat on-resistance of the device makes the TMUX7462F an excellent solution for data acquisition applications where excellent linearity and low distortion is critical.

The TMUX7462F is a four-channel protector that can be placed on the front end of a signal path to protect sensitive components downstream from damage caused by overvoltage faults. Each of the 4 channels has an internal switch that is turned-off automatically upon occurrence of an overvoltage fault without the need of external controls. This simplifies robust system level protection designs by removing the need for control signals for each channel of the device. The overvoltage protection is available in powered and powered-off conditions, making the TMUX7462F suitable for applications where power supply sequencing cannot be precisely controlled.

The switch channels remain in the high impedance state (regardless of switch input conditions) when the devices power supplies are floating, grounded, or at a level that is below the undervoltage (UV) threshold. If the signal level on any Sx pin exceeds the fault supply (V FP or V FN) by a threshold voltage (V T), then the Sx pin becomes high impedance and an output fault flag is asserted low to indicate a fault condition under normal operation. The drain pin (Dx) is either pulled to the fault supply voltage that was exceeded or left floating depending on the DR control logic.

The device operates with dual supplies (±5 V to ±22 V), a single supply (8 V to 44 V), or asymmetric supplies. The low and flat on-resistance of the device makes the TMUX7462F an excellent solution for data acquisition applications where excellent linearity and low distortion is critical.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet TMUX7462F ±60 V Fault-Protected, Latch-Up Immune, Quad Channel Protector with Adjustable Fault Threshold and 1.8-V Logic datasheet (Rev. B) PDF | HTML 12 Jun 2023
Application note Protecting and Maintaining Signal Integrity in PLC Systems PDF | HTML 22 Dez 2024
Application note Protecting Analog Input Channels With Channel Protector With Secondary Rails PDF | HTML 03 Jan 2022
Application brief Replace Discrete Protection and Optimize Your PLC System Protection PDF | HTML 03 Jan 2022
Application note Protection Against Overvoltage Events, Miswiring, and Common Mode Voltages PDF | HTML 07 Okt 2021
Application note Improving Analog Input Modules Reliability Using Fault Protected Multiplexers PDF | HTML 28 Sep 2021

Design und Entwicklung

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Evaluierungsplatine

TMUX741-746EVM — TMUX741xF und TMUX7462F Evaluierungsmodul für die PW- und RRP-Gehäuse

Der TMUX741-746EVM unterstützt die Evaluierung der Bausteinfamilien TMUX741xF und TMUX746xF sowohl im TSSOP (PW)- als auch im WQFN (RRP)-Gehäuse. Dieses Evaluierungsmodul (EVM) kann für schnelles Prototyping und Prüfungen der Bausteinfamilien TMUX741xF und TMUX746xF zur Evaluierung der DC-Parameter (...)

Benutzerhandbuch: PDF | HTML
Schnittstellenadapter

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The EVM-LEADED1 board allows for quick testing and bread boarding of TI's common leaded packages.  The board has footprints to convert TI's D, DBQ, DCT,DCU, DDF, DGS, DGV, and PW surface mount packages to 100mil DIP headers.     

Benutzerhandbuch: PDF
Schnittstellenadapter

LEADLESS-ADAPTER1 — Oberflächenmontierbarer DIP-Header-Adapter zum Testen der 6-, 8-, 10-, 12-, 14-, 16- und 20-poligen

The EVM-LEADLESS1 board allows for quick testing and bread boarding of TI's common leadless packages.  The board has footprints to convert TI's DRC, DTP, DQE, RBW, RGY, RSE, RSV, RSW RTE, RTJ, RUK , RUC, RUG, RUM,RUT and YZP surface mount packages to 100mil DIP headers.
Benutzerhandbuch: PDF
Simulationsmodell

TMUX7462F IBIS Model

SCDM272.ZIP (31 KB) - IBIS Model
Gehäuse Pins Herunterladen
TSSOP (PW) 16 Optionen anzeigen
WQFN (RRP) 16 Optionen anzeigen

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