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TPS63020DSJT

High Efficiency Single Inductor Buck-Boost Converter with 4A Switch 14-VSON -40 to 85

Manufacturer Texas Instruments
Price Range $1.8000 / $3.2800

Part Details

CAD Models Information

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Distributors with Stock

Part Number Description Manufacturer Compare
TPS63020DSJ Power Circuits 4.5A SWITCHING REGULATOR, 2600kHz SWITCHING FREQ-MAX, PDSO14, 3 X 4 MM, PLASTIC QFN-14 Texas Instruments TPS63020DSJT vs TPS63020DSJ
TPS63020DSJR Power Circuits High Efficiency Single Inductor Buck-Boost Converter with 4A Switch 14-VSON -40 to 85 Texas Instruments TPS63020DSJT vs TPS63020DSJR
Part Number Description Manufacturer Compare
TPS63020DSJ Power Circuits 4.5A SWITCHING REGULATOR, 2600kHz SWITCHING FREQ-MAX, PDSO14, 3 X 4 MM, PLASTIC QFN-14 Texas Instruments TPS63020DSJT vs TPS63020DSJ
TPS63020DSJR Power Circuits High Efficiency Single Inductor Buck-Boost Converter with 4A Switch 14-VSON -40 to 85 Texas Instruments TPS63020DSJT vs TPS63020DSJR

Global Popularity

Popularity in Power Circuits

Popularity in Switching Regulator or Controllers

Popularity by Region

Very High

Medium

Good

Low

  • 1. United States of America
    100
  • 2. India
    96
  • 3. Russia
    93
  • 4. South Korea
    93
  • 5. China
    90
  • 6. France
    81
  • 7. Poland
    81
  • 8. Canada
    77
  • 9. Taiwan
    75
  • 10. Portugal
    73

Estimated Price History

Estimated Stock History

Market Price Analysis

No data available
  • 1. Rochester Electronics $1.8000 Buy Now
  • 2. Chip1Stop $2.4800 Buy Now
  • 3. Texas Instruments $2.6800 Buy Now
  • 4. RS Components $2.9349 Buy Now
  • 5. TME Electronic Components $3.2800 Buy Now

Datasheets & Reference Designs

Reference Designs

  • PMP9766 Supercapacitor Backup Power Supply with Active Cell Balancing Reference Design | TI.com
    PMP9766: This reference design describes a backup power circuit which addresses instantaneous protection against power interruptions by using a buck-boost converter and two stacked supercapacitors. The implementation is based on a completely integrated TPS63020 buck-boost converter circuit enabling a small total solution size. The design also provides an active cell balancing circuit. This configuration has been tested with a full test report and operation explanation.
  • Supercapacitor Backup Power Supply with Active Cell Balancing Reference Design
    PMP9766: This reference design describes a backup power circuit which addresses instantaneous protection against power interruptions by using a buck-boost converter and two stacked supercapacitors. The implementation is based on a completely integrated TPS63020 buck-boost converter circuit enabling a small total solution size. The design also provides an active cell balancing circuit. This configuration has been tested with a full test report and operation explanation.
  • TIDA-00818 Mobile Point of Sale (mPOS) Power Reference Design | TI.com
    TIDA-00818: This mobile point of sale (mPOS) reference design features a 1S1P Li-Ion battery architecture to reduce system size and cost. Integrated load switches are used to reduce standby power consumption and maximize battery life to enable the single-cell architecture. A USB Type-C charging port is also featured to support higher power delivery and minimize charging time.
  • PMP9759 Low Power TEC Driver Reference Design | TI.com
    PMP9759: This reference design details a power management circuit which is capable to source and sink current for driving a thermoelectric cooler (TEC) to control the temperature of sensitive devices, like laser diodes or sensors. It supports a small solution based on a completely integrated buck boost converter requiring only a few external components. With a simple high impedance analog voltage input to control the current flowing through the TEC it can be used as a power solution for a microcontroller based temperature control system.
  • Low Power TEC Driver Reference Design
    PMP9759: This reference design details a power management circuit which is capable to source and sink current for driving a thermoelectric cooler (TEC) to control the temperature of sensitive devices, like laser diodes or sensors. It supports a small solution based on a completely integrated buck boost converter requiring only a few external components. With a simple high impedance analog voltage input to control the current flowing through the TEC it can be used as a power solution for a microcontroller based temperature control system.

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