전력 관리 부하 스위치

TPS22975

활성

조정 가능한 상승 시간, 선택적 출력 방전 및 열 셧다운을 지원하는 5.7V, 6A, 16mΩ 부하 스위치

TPS22975

활성

제품 상세 정보

이 제품에 사용할 수 있는 매개 변수가 없습니다.
WSON (DSG) 8 4 mm² 2 x 2
  • Integrated Single-Channel Load Switch
  • Input Voltage Range: 0.6 V to VBIAS
  • VBIAS Voltage Range: 2.5 V to 5.7 V
  • On-Resistance (RON)
    • RON = 16 mΩ (typical) at VIN = 0.6 V to 5.7 V,
      VBIAS = 5.7 V
  • 6-A Maximum Continuous Switch Current
  • Low Quiescent Current
    • 37 µA (typical) at VIN = VBIAS = 5 V
  • Low-Control Input-Threshold Enables Use of
    1.2-, 1.8-, 2.5-, and 3.3-V Logic
  • Configurable Rise Time
  • Thermal Shutdown
  • Quick-Output Discharge (QOD) (Optional)
  • SON 8-pin Package with Thermal Pad
  • ESD Performance Tested per JESD 22
    • 2000-V HBM and 1000-V CDM
  • Integrated Single-Channel Load Switch
  • Input Voltage Range: 0.6 V to VBIAS
  • VBIAS Voltage Range: 2.5 V to 5.7 V
  • On-Resistance (RON)
    • RON = 16 mΩ (typical) at VIN = 0.6 V to 5.7 V,
      VBIAS = 5.7 V
  • 6-A Maximum Continuous Switch Current
  • Low Quiescent Current
    • 37 µA (typical) at VIN = VBIAS = 5 V
  • Low-Control Input-Threshold Enables Use of
    1.2-, 1.8-, 2.5-, and 3.3-V Logic
  • Configurable Rise Time
  • Thermal Shutdown
  • Quick-Output Discharge (QOD) (Optional)
  • SON 8-pin Package with Thermal Pad
  • ESD Performance Tested per JESD 22
    • 2000-V HBM and 1000-V CDM

The TPS22975 product family consists of two devices: TPS22975 and TPS22975N. Each device is a single-channel load switch that provides a configurable rise time to minimize inrush current. The device contains an N-channel MOSFET that can operate over an input voltage range of 0.6 V to 5.7 V and can support a maximum continuous current of 6 A. The switch is controlled by an on and off input (ON), which is capable of interfacing directly with low-voltage control signals. TPS22975 has an optional 230-Ω on-chip load resistor for quick output discharge when switch is turned off.

The TPS22975 is available in a small, space-saving 2-mm × 2-mm 8-pin SON package (DSG) with integrated thermal pad allowing for high power dissipation. The device is characterized for operation over the free-air temperature range of –40°C to +105°C.

The TPS22975 product family consists of two devices: TPS22975 and TPS22975N. Each device is a single-channel load switch that provides a configurable rise time to minimize inrush current. The device contains an N-channel MOSFET that can operate over an input voltage range of 0.6 V to 5.7 V and can support a maximum continuous current of 6 A. The switch is controlled by an on and off input (ON), which is capable of interfacing directly with low-voltage control signals. TPS22975 has an optional 230-Ω on-chip load resistor for quick output discharge when switch is turned off.

The TPS22975 is available in a small, space-saving 2-mm × 2-mm 8-pin SON package (DSG) with integrated thermal pad allowing for high power dissipation. The device is characterized for operation over the free-air temperature range of –40°C to +105°C.

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기술 자료

star =TI에서 선정한 이 제품의 인기 문서
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14개 모두 보기
상위 문서 유형 직함 형식 옵션 날짜
* Data sheet TPS22975 5.7-V, 6-A, 16-mΩ On-Resistance Load Switch datasheet (Rev. B) PDF | HTML 2017/11/01
Technical article How innovative packaging can drive higher power density in load switches PDF | HTML 2022/02/23
E-book 11 Ways to Protect Your Power Path 2019/07/03
Application brief Making the Switch to an Integrated Load Switch 2019/06/11
Application note Integrated Load Switches Versus Discrete MOSFETs (Rev. A) 2019/05/06
Application note Load Switch Thermal Considerations (Rev. A) 2018/10/11
Application note Basics of Load Switches (Rev. A) 2018/09/05
Technical article How to use load switches and eFuses in your set-top box design PDF | HTML 2017/11/23
Application note Selecting a Load Switch to Replace a Discrete Solution 2017/04/30
Application note Timing of Load Switches 2017/04/27
Application note Fundamentals of On-Resistance in Load Switches 2016/06/09
Application note Quiescent Current vs Shutdown Current for Load Switch Power Consumption 2016/03/30
Technical article Reduce inrush current using load switches PDF | HTML 2015/11/17
Application note Managing Inrush Current (Rev. A) 2015/05/28

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