Product details

Configuration 16:1 Number of channels 1 Power supply voltage - single (V) 5, 12, 16 Power supply voltage - dual (V) +/-10, +/-15 Protocols Analog Ron (typ) (Ω) 1300 ON-state leakage current (max) (µA) 0.01 Supply current (typ) (µA) 700 Operating temperature range (°C) -40 to 85 Features Break-before-make, Overvoltage protection, Powered-off protection Input/output continuous current (max) (mA) 20 Rating Catalog Drain supply voltage (max) (V) 15 Supply voltage (max) (V) 15 Negative rail supply voltage (max) (V) -5
Configuration 16:1 Number of channels 1 Power supply voltage - single (V) 5, 12, 16 Power supply voltage - dual (V) +/-10, +/-15 Protocols Analog Ron (typ) (Ω) 1300 ON-state leakage current (max) (µA) 0.01 Supply current (typ) (µA) 700 Operating temperature range (°C) -40 to 85 Features Break-before-make, Overvoltage protection, Powered-off protection Input/output continuous current (max) (mA) 20 Rating Catalog Drain supply voltage (max) (V) 15 Supply voltage (max) (V) 15 Negative rail supply voltage (max) (V) -5
SOIC (DW) 28 184.37 mm² 17.9 x 10.3
  • ANALOG OVERVOLTAGE PROTECTION: 70Vpp
  • NO CHANNEL INTERACTION DURING OVERVOLTAGE
  • BREAK-BEFORE-MAKE SWITCHING
  • ANALOG SIGNAL RANGE: ±15V
  • STANDBY POWER: 7.5mW typ
  • TRUE SECOND SOURCE

All trademarks are the property of their respective owners.

  • ANALOG OVERVOLTAGE PROTECTION: 70Vpp
  • NO CHANNEL INTERACTION DURING OVERVOLTAGE
  • BREAK-BEFORE-MAKE SWITCHING
  • ANALOG SIGNAL RANGE: ±15V
  • STANDBY POWER: 7.5mW typ
  • TRUE SECOND SOURCE

All trademarks are the property of their respective owners.

The MPC506A is a 16-channel single-ended analog multiplexer, and the MPC507A is an 8-channel differential multiplexer.

The MPC506A and MPC507A multiplexers have input overvoltage protection. Analog input voltages may exceed either power supply voltage without damaging the device or disturbing the signal path of other channels. The protection circuitry assures that signal fidelity is maintained even under fault conditions that would destroy other multiplexers. Analog inputs can withstand 70Vpp signal levels and standard ESD tests. Signal sources are protected from short circuits should multiplexer power loss occur; each input presents a 1k resistance under this condition. Digital inputs can also sustain continuous faults up to 4V greater than either supply voltage.

These features make the MPC506A and MPC507A ideal for use in systems where the analog signals originate from external equipment or separately powered sources.

The MPC506A and MPC507A are fabricated with Burr-Brown's dielectrically isolated CMOS technology. The multiplexers are available in plastic DIP and plastic SOIC packages. Temperature range is –40/+85°C.

The MPC506A is a 16-channel single-ended analog multiplexer, and the MPC507A is an 8-channel differential multiplexer.

The MPC506A and MPC507A multiplexers have input overvoltage protection. Analog input voltages may exceed either power supply voltage without damaging the device or disturbing the signal path of other channels. The protection circuitry assures that signal fidelity is maintained even under fault conditions that would destroy other multiplexers. Analog inputs can withstand 70Vpp signal levels and standard ESD tests. Signal sources are protected from short circuits should multiplexer power loss occur; each input presents a 1k resistance under this condition. Digital inputs can also sustain continuous faults up to 4V greater than either supply voltage.

These features make the MPC506A and MPC507A ideal for use in systems where the analog signals originate from external equipment or separately powered sources.

The MPC506A and MPC507A are fabricated with Burr-Brown's dielectrically isolated CMOS technology. The multiplexers are available in plastic DIP and plastic SOIC packages. Temperature range is –40/+85°C.

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Technical documentation

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Type Title Date
* Data sheet MPC506, MPC507:Single-Ended 16-Chan/Differential 8-Chan CMOS Analog Multiplexers datasheet (Rev. A) 17 Sep 2003
Application note Selecting the Correct Texas Instruments Signal Switch (Rev. E) PDF | HTML 02 Jun 2022
Application note Multiplexers and Signal Switches Glossary (Rev. B) PDF | HTML 01 Dec 2021
Application brief Eliminate Power Sequencing with Powered-off Protection Signal Switches (Rev. C) PDF | HTML 06 Jan 2021

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