JAJSVI1 October   2024 TPS25763-Q1

PRODUCTION DATA  

  1.   1
  2. 特長
  3. アプリケーション
  4. 概要
  5. Device Comparison Table
  6. Pin Configuration and Functions
  7. Specifications
    1. 6.1  Absolute Maximum Ratings
    2. 6.2  ESD Ratings
    3. 6.3  Recommended Operating Conditions
    4. 6.4  Recommended Components
    5. 6.5  Thermal Information
    6. 6.6  Buck-Boost Regulator
    7. 6.7  CC Cable Detection Parameters
    8. 6.8  CC VCONN Parameters
    9. 6.9  CC PHY Parameters
    10. 6.10 Thermal Shutdown Characteristics
    11. 6.11 Oscillator Characteristics
    12. 6.12 ADC Characteristics
    13. 6.13 TVSP Parameters
    14. 6.14 Input/Output (I/O) Characteristics
    15. 6.15 BC1.2 Characteristics
    16. 6.16 I2C Requirements and Characteristics
    17. 6.17 Typical Characteristics
  8. Parameter Measurement Information
  9. Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
      1. 8.3.1  Device Power Management and Supervisory Circuitry
        1. 8.3.1.1 VIN UVLO and Enable/UVLO
        2. 8.3.1.2 Internal LDO Regulators
      2. 8.3.2  TVSP Device Configuration and ESD Protection
      3. 8.3.3  External NFET and LSGD
      4. 8.3.4  Buck-Boost Regulator
        1. 8.3.4.1  Buck-Boost Regulator Operation
        2. 8.3.4.2  Switching Frequency, Frequency Dither, Phase-Shift and Synchronization
        3. 8.3.4.3  VIN Supply and VIN Over-Voltage Protection
        4. 8.3.4.4  Feedback Paths and Error Amplifiers
        5. 8.3.4.5  Transconductors and Compensation
        6. 8.3.4.6  Output Voltage DAC, Soft-Start and Cable Droop Compensation
        7. 8.3.4.7  VBUS Overvoltage Protection
        8. 8.3.4.8  VBUS Undervoltage Protection
        9. 8.3.4.9  Current Sense Resistor (RSNS) and Current Limit Operation
        10. 8.3.4.10 Buck-Boost Peak Current Limits
      5. 8.3.5  USB-PD Physical Layer
        1. 8.3.5.1 USB-PD Encoding and Signaling
        2. 8.3.5.2 USB-PD Bi-Phase Marked Coding
        3. 8.3.5.3 USB-PD Transmit (TX) and Receive (Rx) Masks
        4. 8.3.5.4 USB-PD BMC Transmitter
        5. 8.3.5.5 USB-PD BMC Receiver
        6. 8.3.5.6 Squelch Receiver
      6. 8.3.6  VCONN
      7. 8.3.7  Cable Plug and Orientation Detection
        1. 8.3.7.1 Configured as a Source
        2. 8.3.7.2 Configured as a Sink
        3. 8.3.7.3 Configured as a DRP
        4. 8.3.7.4 Overvoltage Protection (Px_CC1, Px_CC2)
      8. 8.3.8  ADC
        1. 8.3.8.1 ADC Divider Ratios
      9. 8.3.9  BC 1.2, Legacy and Fast Charging Modes (Px_DP, Px_DM)
      10. 8.3.10 DisplayPort Hot-Plug Detect (HPD)
      11. 8.3.11 USB2.0 Low-Speed Endpoint
      12. 8.3.12 Digital Interfaces
        1. 8.3.12.1 General GPIO
        2. 8.3.12.2 I2C Buffer
      13. 8.3.13 I2C Interface
        1. 8.3.13.1 I2C Interface Description
        2. 8.3.13.2 I2C Clock Stretching
        3. 8.3.13.3 I2C Address Setting
        4. 8.3.13.4 Unique Address Interface
        5. 8.3.13.5 I2C Pullup Resistor Calculation
      14. 8.3.14 Digital Core
        1. 8.3.14.1 Device Memory
        2. 8.3.14.2 Core Microprocessor
      15. 8.3.15 NTC Input
      16. 8.3.16 Thermal Sensors and Thermal Shutdown
    4. 8.4 Device Functional Modes
  10. Application and Implementation
    1. 9.1 Application Information
    2. 9.2 Typical Application
      1. 9.2.1 Design Requirements
      2. 9.2.2 Detailed Design Procedure
        1. 9.2.2.1 Application GUI Selections
        2. 9.2.2.2 EEPROM Selection
        3. 9.2.2.3 EN/UVLO
        4. 9.2.2.4 Sense Resistor, RSNS, RCSP, RCSN and CFILT
        5. 9.2.2.5 Inductor Currents
        6. 9.2.2.6 Output Capacitor
        7. 9.2.2.7 Input Capacitor
      3. 9.2.3 Application Curves
    3. 9.3 Power Supply Recommendations
    4. 9.4 Layout
      1. 9.4.1 Layout Guidelines
      2. 9.4.2 Layout Example
  11. 10Device and Documentation Support
    1. 10.1 Documentation Support
      1. 10.1.1 Related Documentation
    2. 10.2 ドキュメントの更新通知を受け取る方法
    3. 10.3 サポート・リソース
    4. 10.4 Trademarks
    5. 10.5 静電気放電に関する注意事項
    6. 10.6 用語集
  12. 11Revision History
  13. 12Mechanical, Packaging, and Orderable Information
    1.     106

Application Curves

TPS25763-Q1 Efficiency vs
            Output Current (IOUT), VOUT = 5 V
L = 4.7 μH
Figure 9-6 Efficiency vs Output Current (IOUT), VOUT = 5 V
TPS25763-Q1 Efficiency vs Output Current
              (IOUT), VOUT = 12 V
L = 4.7 μH
Figure 9-8 Efficiency vs Output Current (IOUT), VOUT = 12 V
TPS25763-Q1 Efficiency vs Output Current
              (IOUT), VOUT = 20 V
L = 4.7 μH
Figure 9-10 Efficiency vs Output Current (IOUT), VOUT = 20 V
TPS25763-Q1 Efficiency vs Output Current
              (IOUT), VOUT = 9 V
L = 4.7 μH
Figure 9-7 Efficiency vs Output Current (IOUT), VOUT = 9 V
TPS25763-Q1 Efficiency vs Output Current
              (IOUT), VOUT = 15 V
L = 4.7 μH
Figure 9-9 Efficiency vs Output Current (IOUT), VOUT = 15 V
TPS25763-Q1 Efficiency vs Input Voltage
IBUS = 3 A
L = 4.7 μH
Figure 9-11 Efficiency vs Input Voltage
TPS25763-Q1 Type-C Attach
VIN = 13.5 V VBUS = 0 V to 5 V IBUS = 0 A
Figure 9-12 Type-C Attach
TPS25763-Q1 Type-C Detach
VIN = 13.5 V VBUS = 5 V to 0 V IBUS = 0 A
Figure 9-13 Type-C Detach
TPS25763-Q1 Boost Mode: Low VIN, No
            Load
VIN = 7 V VBUS = 20 V IBUS = 0 A
Figure 9-14 Boost Mode: Low VIN, No Load
TPS25763-Q1 Boost Mode: Low VIN, 3 A
            Load
VIN = 7 V VBUS = 20 V IBUS = 3 A
Figure 9-16 Boost Mode: Low VIN, 3 A Load
TPS25763-Q1 Boost Mode: Nominal VIN,
            No Load
VIN = 12 V VBUS = 20 V IBUS = 0 A
Figure 9-18 Boost Mode: Nominal VIN, No Load
TPS25763-Q1 Buck Mode: nominal VIN, 3
            A Load
VIN = 12 V VBUS = 5 V IBUS = 3 A
Figure 9-20 Buck Mode: nominal VIN, 3 A Load
TPS25763-Q1 Buck-Boost Mode: VIN =
              VBUS, No Load
VIN = 12 V VBUS = 12 V IBUS = 0 A
Figure 9-22 Buck-Boost Mode: VIN = VBUS, No Load
TPS25763-Q1 Buck-Boost Mode: VIN =
              VBUS, 3 A Load
VIN = 12 V VBUS = 12 V IBUS = 3 A
Figure 9-24 Buck-Boost Mode: VIN = VBUS, 3 A Load
TPS25763-Q1 Buck-Boost Mode: Nominal
              VIN, 3 A Load
VIN = 12 V VBUS = 15 V IBUS = 3 A
Figure 9-26 Buck-Boost Mode: Nominal VIN, 3 A Load
TPS25763-Q1 VIN(OVP) Recovery
VIN 20 V ➔ 12 V
Figure 9-28 VIN(OVP) Recovery
TPS25763-Q1 Load Transient (Buck):
              VBUS = 5 V
VIN = 13.5V VBUS = 5 V IBUS 0 A ➔ 3 A
Figure 9-30 Load Transient (Buck): VBUS = 5 V
TPS25763-Q1 Load Transient (Buck-Boost):
              VBUS = 15 V
VIN = 13.5V VBUS = 15 V IBUS 0 A ➔ 3 A
Figure 9-32 Load Transient (Buck-Boost): VBUS = 15 V
TPS25763-Q1 Current Limit: Stepped Resistive
            Load
VIN 12 V VBUS = 20 V ILIMIT = 3.1 A
Figure 9-34 Current Limit: Stepped Resistive Load
TPS25763-Q1 Line Transient: VBUS = 15
            V
VIN 7 V ➔ 18 V VBUS = 15 V IBUS = 3 A
Figure 9-36 Line Transient: VBUS = 15 V
TPS25763-Q1 Line Transient: VBUS = 5
            V
VIN 7 V ➔ 18 V VBUS = 5 V IBUS = 3 A
Figure 9-38 Line Transient: VBUS = 5 V
TPS25763-Q1 Buck Mode: High VIN, No
            Load
VIN = 18 V VBUS = 5 V IBUS = 0 A
Figure 9-15 Buck Mode: High VIN, No Load
TPS25763-Q1 Buck Mode: High VIN, 3 A
            load
VIN = 18 V VBUS = 5 V IBUS = 3 A
Figure 9-17 Buck Mode: High VIN, 3 A load
TPS25763-Q1 Buck Mode: Nominal VIN,
            No Load
VIN = 12 V VBUS = 5 V IBUS = 0 A
Figure 9-19 Buck Mode: Nominal VIN, No Load
TPS25763-Q1 Buck-Boost Mode: VIN ≨
              VBUS, No Load
VIN = 12 V VBUS = 13 V IBUS = 0 A
Figure 9-21 Buck-Boost Mode: VIN ≨ VBUS, No Load
TPS25763-Q1 Buck-Boost Mode: VIN ≩ VBUS, No
            Load
VIN = 12 V VBUS = 11 V IBUS = 0 A
Figure 9-23 Buck-Boost Mode: VIN ≩ VBUS, No Load
TPS25763-Q1 Buck-Boost Mode: Nominal
              VIN, No Load
VIN = 12 V VBUS = 15 V IBUS = 0 A
Figure 9-25 Buck-Boost Mode: Nominal VIN, No Load
TPS25763-Q1 VIN(OVP) Entry
VIN 12 V ➔ 20 V
Figure 9-27 VIN(OVP) Entry
TPS25763-Q1 VIN(OVP) Showing
              VBUS Discharge
VIN 12 V ➔ 20 V VBUS = 0 V IBUS = 0 A
Figure 9-29 VIN(OVP) Showing VBUS Discharge
TPS25763-Q1 Load Transient (Buck):
              VBUS = 9 V
VIN = 13.5V VBUS = 9 V IBUS 0 A ➔ 3 A
Figure 9-31 Load Transient (Buck): VBUS = 9 V
TPS25763-Q1 Load Transient (Boost):
              VBUS = 20 V
VIN = 13.5V VBUS = 20 V IBUS 0 A ➔ 3 A
Figure 9-33 Load Transient (Boost): VBUS = 20 V
TPS25763-Q1 Line Transient: VBUS = 20
            V
VIN 7 V ➔ 18 V VBUS = 20 V IBUS = 3 A
Figure 9-35 Line Transient: VBUS = 20 V
TPS25763-Q1 Line Transient: VBUS = 9
            V
VIN 7 V ➔ 18 V VBUS = 9 V IBUS = 3 A
Figure 9-37 Line Transient: VBUS = 9 V