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TMUX7612
  • TMUX7612
  • TMUX7612
  • TMUX7612
  • TMUX7612

TMUX7612

ACTIVE

50V, 1.3Ω RON, 1:1 (SPST) four-channel precision multiplexer with 1.8V logic

Texas Instruments TMUX7612 Product Info

1 April 2026 0

Parameters

Configuration

1:1 SPST

Number of channels

4

Power supply voltage - single (V)

5, 12, 16, 20, 36, 44, 50

Power supply voltage - dual (V)

+/- 25, +/-10, +/-15, +/-18, +/-22, +/-5

Protocols

Analog

Ron (typ) (Ω)

1.35

CON (typ) (pF)

24

ON-state leakage current (max) (µA)

0.0005

Supply current (typ) (µA)

150

Bandwidth (MHz)

180

Operating temperature range (°C)

-40 to 125

Features

1.8-V compatible control inputs, Break-before-make

Input/output continuous current (max) (A)

0.45

Rating

Catalog

Drain supply voltage (max) (V)

25

Supply voltage (max) (V)

50

Negative rail supply voltage (max) (V)

-25

Package

TSSOP (PW)-16-32 mm² 5 x 6.4

Features

  • Dual supply range: ±4.5V to ±25V
  • Single supply range: 4.5V to 50V
  • Asymmetric dual supply support (For example: VDD = 37.5V, VSS = -12.5V)
  • 1.8V logic compatible
  • Precision performance:
    • Low on-resistance: 1.1Ω (typical)
    • Low capacitance: 27pF (typical)
    • Ultra-low on-resistance flatness: 0.0003Ω (typical)
    • High current support: 470mA (maximum)
    • Low on-leakage current: 3.7pA (typical), 0.3nA (maximum)
    • Low off-leakage current: 30pA (typical), 0.15nA (maximum)
    • Ultra-low charge injection: 2pC (typical)
  • –40°C to +125°C operating temperature
  • Rail-to-rail operation
  • Bidirectional operation
  • Break-before-make switching
  • Dual supply range: ±4.5V to ±25V
  • Single supply range: 4.5V to 50V
  • Asymmetric dual supply support (For example: VDD = 37.5V, VSS = -12.5V)
  • 1.8V logic compatible
  • Precision performance:
    • Low on-resistance: 1.1Ω (typical)
    • Low capacitance: 27pF (typical)
    • Ultra-low on-resistance flatness: 0.0003Ω (typical)
    • High current support: 470mA (maximum)
    • Low on-leakage current: 3.7pA (typical), 0.3nA (maximum)
    • Low off-leakage current: 30pA (typical), 0.15nA (maximum)
    • Ultra-low charge injection: 2pC (typical)
  • –40°C to +125°C operating temperature
  • Rail-to-rail operation
  • Bidirectional operation
  • Break-before-make switching

Description

The TMUX7612 is a complementary metal-oxide semiconductor (CMOS) switch device with four independently selectable 1:1, single-pole, single-throw (SPST) switch channels. The device works with a single supply (4.5V to 50V), dual supplies (±4.5V to ±25V), or asymmetric supplies (such as VDD = 37.5V, VSS = –12.5V). The TMUX7612 supports bidirectional analog and digital signals on the source (Sx) and drain (Dx) pins ranging from VSS to VDD.

The switches of the TMUX7612 are controlled with appropriate logic control inputs on the SELx pins. The TMUX7612 features a special architecture which allows for ultra-low charge injection. This feature helps prevent unwanted coupling from the control input to the analog output of the device and reduces AC noise and offset errors.

The TMUX7612 is a part of the precision switches and multiplexers family of devices and have very low on and off leakage currents allowing them to be used in high precision measurement applications.

The TMUX7612 is a complementary metal-oxide semiconductor (CMOS) switch device with four independently selectable 1:1, single-pole, single-throw (SPST) switch channels. The device works with a single supply (4.5V to 50V), dual supplies (±4.5V to ±25V), or asymmetric supplies (such as VDD = 37.5V, VSS = –12.5V). The TMUX7612 supports bidirectional analog and digital signals on the source (Sx) and drain (Dx) pins ranging from VSS to VDD.

The switches of the TMUX7612 are controlled with appropriate logic control inputs on the SELx pins. The TMUX7612 features a special architecture which allows for ultra-low charge injection. This feature helps prevent unwanted coupling from the control input to the analog output of the device and reduces AC noise and offset errors.

The TMUX7612 is a part of the precision switches and multiplexers family of devices and have very low on and off leakage currents allowing them to be used in high precision measurement applications.

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