具有預測性 Gate Drive™ 技術的 2.25 至 5.5V 輸入 300kHz 同步降壓控制器

產品詳細資料

Vin (min) (V) 2.25 Vin (max) (V) 5.5 Iout (max) (A) 15 Operating temperature range (°C) -40 to 85 Rating Catalog Vout (min) (V) 0.7 Vout (max) (V) 4 Iq (typ) (A) 0.0015 Duty cycle (max) (%) 87
Vin (min) (V) 2.25 Vin (max) (V) 5.5 Iout (max) (A) 15 Operating temperature range (°C) -40 to 85 Rating Catalog Vout (min) (V) 0.7 Vout (max) (V) 4 Iq (typ) (A) 0.0015 Duty cycle (max) (%) 87
HVSSOP (DGQ) 10 14.7 mm² 3 x 4.9
  • Operating Input Voltage 2.25 V to 5.5 V
  • Output Voltage as Low as 0.7 V
  • 1% Internal 0.7 V Reference
  • Predictive Gate Drive™ N-Channel MOSFET Drivers for Higher Efficiency
  • Externally Adjustable Soft-Start and Overcurrent Limit
  • Source-Only Current or Source/Sink Current
  • Versions for Starting into VOUT Pre-Bias
  • 10-Lead MSOP PowerPad™ Package for Higher Performance
  • Thermal Shutdown
  • Internal Boostrap Diode
  • Fixed-Frequency, Voltage-Mode Control
    • TPS40000/1/4 300-kHz
    • TPS40002/3/5 600-kHz
  • APPLICATIONS
    • Networking Equipment
    • Telecom Equipment
    • Base Stations
    • Servers
    • DSP Power
    • Power Modules

PowerPAD™ and Predictive Gate Drive™ are trademarks of Texas Instruments Incorporated.

  • Operating Input Voltage 2.25 V to 5.5 V
  • Output Voltage as Low as 0.7 V
  • 1% Internal 0.7 V Reference
  • Predictive Gate Drive™ N-Channel MOSFET Drivers for Higher Efficiency
  • Externally Adjustable Soft-Start and Overcurrent Limit
  • Source-Only Current or Source/Sink Current
  • Versions for Starting into VOUT Pre-Bias
  • 10-Lead MSOP PowerPad™ Package for Higher Performance
  • Thermal Shutdown
  • Internal Boostrap Diode
  • Fixed-Frequency, Voltage-Mode Control
    • TPS40000/1/4 300-kHz
    • TPS40002/3/5 600-kHz
  • APPLICATIONS
    • Networking Equipment
    • Telecom Equipment
    • Base Stations
    • Servers
    • DSP Power
    • Power Modules

PowerPAD™ and Predictive Gate Drive™ are trademarks of Texas Instruments Incorporated.

The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated.

The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown.

The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated.

The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown.

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技術文件

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類型 標題 日期
* Data sheet TPS40000 Synchronous Buck Controller datasheet (Rev. D) 2005年 11月 14日
More literature Fundamentals of MOSFET and IGBT Gate Driver Circuits (Replaces SLUP169) (Rev. A) 2018年 10月 29日
Application note PowerPAD™ Thermally Enhanced Package (Rev. H) 2018年 7月 6日
User guide TPS40000/1 Controller Enables High Power Sync Step-Down Converter for Low-Logic (Rev. B) 2005年 7月 8日
User guide TPS40002/3 Controllers Enable BUCK Converter Operating From 2.5-V Supply (Rev. B) 2005年 7月 8日
User guide Ultra-High Efficiency Buck Converter Using TPS40000/1 Controller Keeps Costs Low (Rev. B) 2005年 7月 8日
User guide TPS40000/1 Controller Enables High Power Synchronous Step-Down Converter for Low (Rev. A) 2003年 1月 27日
EVM User's guide TPS40001EVM (Rev. A) 2003年 1月 27日
User guide TPS40002/3 Controllers Enable BUCK Converter Operating From 2.5-V Supply (Rev. A) 2003年 1月 27日
User guide TPS40002/3 Controllers Enable Miniature Synchronous Step-Down Converter for Low (Rev. A) 2003年 1月 27日
User guide Ultra-High Efficiency Buck Converter Using TPS40000/1 Controller Keeps Power Sys (Rev. A) 2003年 1月 27日
Application note Predictive Gate Drive Boosts Converter Efficiency 2002年 12月 18日
More literature Seminar 1400 Topic 7 The Implication of Synchronous Rectifiers to the Design of 2002年 4月 22日

設計與開發

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物料清單

PR071 Bill of Materials

SLVR290.PDF (22 KB)
物料清單

PR073 Bill of Materials

SLVR294.PDF (24 KB)
配置圖

PR071 Schematic

SLVR289.PDF (46 KB)
配置圖

PR073 Schematic

SLVR293.PDF (46 KB)
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  • 鉛塗層/球物料
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