SLVSH67
September 2024
TPS26750
PRODUCTION DATA
1
1
Features
2
Applications
3
Description
4
Pin Configuration and Functions
5
Specifications
5.1
Absolute Maximum Ratings
5.1.1
TPS26750 - Absolute Maximum Ratings
5.1.2
TPS26750 - Absolute Maximum Ratings
5.2
ESD Ratings
5.3
Recommended Operating Conditions
5.3.1
TPS26750 - Recommended Operating Conditions
5.4
Recommended Capacitance
5.5
Thermal Information
5.5.1
TPS26750 - Thermal Information
5.6
Power Supply Characteristics
5.7
Power Consumption
5.8
PP_5V Power Switch Characteristics
5.9
POWER_PATH_EN Characteristics - TPS26750
5.10
Power Path Supervisory
5.11
CC Cable Detection Parameters
5.12
CC VCONN Parameters
5.13
CC PHY Parameters
5.14
Thermal Shutdown Characteristics
5.15
ADC Characteristics
5.16
Input/Output (I/O) Characteristics
5.17
BC1.2 Characteristics
5.18
I2C Requirements and Characteristics
5.19
Typical Characteristics
6
Parameter Measurement Information
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
USB-PD Physical Layer
7.3.1.1
USB-PD Encoding and Signaling
7.3.1.2
USB-PD Bi-Phase Marked Coding
7.3.1.3
USB-PD Transmit (TX) and Receive (Rx) Masks
7.3.1.4
USB-PD BMC Transmitter
7.3.1.5
USB-PD BMC Receiver
7.3.1.6
Squelch Receiver
7.3.2
Power Management
7.3.2.1
Power-On And Supervisory Functions
7.3.2.2
VBUS LDO
7.3.3
Power Paths
7.3.3.1
Internal Sourcing Power Paths
7.3.3.1.1
PP_5V Current Clamping
7.3.3.1.2
PP_5V Local Overtemperature Shut Down (OTSD)
7.3.3.1.3
PP_5V OVP
7.3.3.1.4
PP_5V UVLO
7.3.3.1.5
PP_5Vx Reverse Current Protection
7.3.3.1.6
PP_CABLE Current Clamp
7.3.3.1.7
PP_CABLE Local Overtemperature Shut Down (OTSD)
7.3.3.1.8
PP_CABLE UVLO
7.3.4
Cable Plug and Orientation Detection
7.3.4.1
Configured as a Source
7.3.4.2
Configured as a Sink
7.3.4.3
Configured as a DRP
7.3.4.4
Dead Battery Advertisement
7.3.5
Overvoltage Protection (CC1, CC2)
7.3.6
Default Behavior Configuration (ADCIN1, ADCIN2)
7.3.7
ADC
7.3.8
BC 1.2 (USB_P, USB_N)
7.3.9
Digital Interfaces
7.3.9.1
General GPIO
7.3.9.2
I2C Interface
7.3.10
Digital Core
7.3.11
I2C Interface
7.3.11.1
I2C Interface Description
7.3.11.1.1
I2C Clock Stretching
7.3.11.1.2
I2C Address Setting
7.3.11.1.3
Unique Address Interface
7.4
Device Functional Modes
7.4.1
Pin Strapping to Configure Default Behavior
7.4.2
Power States
7.5
Thermal Shutdown
8
Application and Implementation
8.1
Application Information
8.2
Typical Application
8.2.1
Design Requirements
8.2.1.1
Programmable Power Supply (PPS) - Design Requirements
8.2.1.2
Liquid Detection Design Requirements
8.2.1.3
BC1.2 Application Design Requirements
8.2.1.4
USB Data Support Design Requirements
8.2.1.5
EPR Design Requirements
8.2.2
Detailed Design Procedure
8.2.2.1
Programmable Power Supply (PPS)
8.2.2.2
Liquid Detection
8.2.2.3
BC1.2 Application
8.2.2.4
USB Data Support
8.2.2.5
Power Delivery EPR Support
8.2.3
Application Curves
8.2.3.1
Programmable Power Supply (PPS) Application Curves
8.2.3.2
Liquid Detection Application Curves
8.2.3.3
BC1.2 Application Curves
8.2.3.4
USB Data Support Application Curves
8.2.3.5
EPR Application Curves
8.3
Power Supply Recommendations
8.3.1
3.3V Power
8.3.1.1
VIN_3V3 Input Switch
8.3.2
1.5V Power
8.3.3
Recommended Supply Load Capacitance
8.4
Layout
8.4.1
TPS26750 - Layout
8.4.1.1
Layout Guidelines
8.4.1.1.1
Recommended Via Size
8.4.1.1.2
Minimum Trace Widths
8.4.1.2
Layout Example
8.4.1.2.1
TPS26750 Schematic Layout Example
8.4.1.2.2
TPS26750 Layout Example - PCB Plots
8.4.1.2.2.1
TPS26750 Component Placement
8.4.1.2.2.2
TPS26750 PP5V
8.4.1.2.2.3
TPS26750 PP_EXT
8.4.1.2.2.4
TPS26750 VBUS
8.4.1.2.2.5
TPS26750 I/O
8.4.1.2.2.6
TPS26750 PPEXT Gate Driver
8.4.1.2.2.7
TPS26750 GND
9
Device and Documentation Support
9.1
Device Support
9.1.1
Third-Party Products Disclaimer
9.2
Documentation Support
9.2.1
Related Documentation
9.3
Support Resources
9.4
Trademarks
9.5
Electrostatic Discharge Caution
9.6
Glossary
10
Revision History
11
Mechanical, Packaging, and Orderable Information
封装选项
请参考 PDF 数据表获取器件具体的封装图。
机械数据 (封装 | 引脚)
RSM|32
散热焊盘机械数据 (封装 | 引脚)
RSM|32
QFND112H
订购信息
slvsh67_oa
slvsh67_pm
1
Features
This device is certified by the USB-IF for PD3.1
PD3.1 silicon is required for certification of new USB PD designs
TPS26750 TID#: 11450
Article on
PD2.0 vs. PD3.0
Optimized for USB Type-C PD power applications
Integrated I2C control for TI battery chargers
Ex: In Development
Web-based GUI
and pre-configured firmware
For a more extensive selection guide and getting started information, please refer to
www.ti.com/usb-c
and
E2E guide
Extended Power Range
(EPR)
Supports EPR source and sink
EPR 28V, 36V, 48V, and AVS
Programmable Power Supply
(PPS)
Supports PPS source and sink
Standalone PPS source control TI battery chargers
Programmable interface for PPS sink
Liquid Detection
Measures directly at the Type-C connector
Integrated error handling and protection
Integrated fully managed power path & protection
Integrated 5V, 3A, and 36mΩ sourcing switch
Integrated undervoltage and overvoltage protection and current limiting for inrush current protection for the 5V and 3A source power path
26V tolerant CC pins for robust protection when connected to non-compliant devices
USB Type-C®
Power Delivery (PD) controller
10 configurable GPIOs
BC1.2 charging support
3.3V LDO output for dead battery support
Power supply from 3.3V or VBUS source
1 I2C primary port
1 I2C secondary port
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