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UCD3138128A

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适用于隔离电源的高集成度数字控制器

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TQFP (PFC) 80 196 mm² (14 mm × 14 mm)
  • 128 kB Program Flash Derivative of UCD3138xA Family
    • 4-32 kB Program Flash Memory Banks
    • Supports Execution From 1 Bank, While Programming Another
    • Capability to Update Firmware Without Shutting Down the Power Supply
    • Additional Communication Ports Compared to the UCD3138xA (+1 SPI, +1 I2C)
    • Boot Flash Based Dual Memory Image Support for ‘On the Fly’ Firmware Updates
  • Synchronous Rectifier Dead Time Optimization Peripheral to Use with UCD7138 Synchronous Rectifier Driver
  • Digital Control of up to 3 Independent Feedback Loops
    • Dedicated PID Based Hardware
    • 2-pole/2-zero Configurable, Non-Linear Control
  • Up to 16 MSPS Error A/D Converter (EADC)
    • Configurable Resolution (min: 1 mV/LSB)
    • Up to 8x Oversampling and Adaptive Sample Positioning
    • Hardware Based Averaging (up to 8x)
    • 14 bit Effective Reference DAC
  • Up to 8 High Resolution Digital Pulse Width Modulated (DPWM) Outputs
    • 250 ps Pulse Width Resolution
    • 4 ns Frequency and Phase Resolution
    • Adjustable Phase Shift and Dead-bands
    • Cycle-by-Cycle Duty Cycle Matching
    • Up to 2 MHz Switching Frequency
  • Configurable Trailing/Leading/Triangular Modulation
  • RTC Support
  • External Crystal Interface
  • Configurable Feedback Control
    • Voltage, Average Current and Peak Current Mode Control
    • Constant Current, Constant Power
  • Configurable FM, Phase Shift Modulation and PWM
  • Fast, Automatic and Smooth Mode Switching
    • Frequency Modulation and PWM
    • Phase Shift Modulation and PWM
  • High Efficiency and Light Load Management
    • Burst Mode and Ideal Diode Emulation
    • Synchronous Rectifier Soft On/Off
    • Low IC Standby Power
  • Primary Side Voltage Sensing
  • Current Share (Average and Master/Slave)
  • Feature Rich Fault Protection Options
    • 7 Analog / 4 Digital Comparators,
    • Cycle-by-Cycle Current Limiting
    • Programmable Blanking Time and Fault Counting
    • External Fault Inputs
  • Synchronization of DPWM Waveforms Between Multiple UCD3138x Devices
  • 15 channel, 12 bit, 539 ksps General Purpose ADC
  • Internal Temperature Sensor
  • Fully ProgrammableHigh-Performance 31.25 MHz, 32-bit ARM7TDMI-S Processor
    • 128 kB Program Flash (4-32 kB Banks)
    • 2 kB Data Flash with ECC
    • 8 kB Data RAM
    • 8 kB Boot ROM Enables Firmware Boot-Load\
  • Communication Peripherals,
    • 2 - I2C/PMBus interfaces
    • 2 - UARTs, 1 - SPI
  • UART Auto Baud Rate Adjustment
  • Timer Capture with Selectable Input Pins
  • 80-pin QFP Package
  • Operating Temperature: –40°C to 125°C
  • Debug Interface
    • Code Composer Studio with JTAG Interface
    • Fusion Digital Power Designer GUI Support
  • 128 kB Program Flash Derivative of UCD3138xA Family
    • 4-32 kB Program Flash Memory Banks
    • Supports Execution From 1 Bank, While Programming Another
    • Capability to Update Firmware Without Shutting Down the Power Supply
    • Additional Communication Ports Compared to the UCD3138xA (+1 SPI, +1 I2C)
    • Boot Flash Based Dual Memory Image Support for ‘On the Fly’ Firmware Updates
  • Synchronous Rectifier Dead Time Optimization Peripheral to Use with UCD7138 Synchronous Rectifier Driver
  • Digital Control of up to 3 Independent Feedback Loops
    • Dedicated PID Based Hardware
    • 2-pole/2-zero Configurable, Non-Linear Control
  • Up to 16 MSPS Error A/D Converter (EADC)
    • Configurable Resolution (min: 1 mV/LSB)
    • Up to 8x Oversampling and Adaptive Sample Positioning
    • Hardware Based Averaging (up to 8x)
    • 14 bit Effective Reference DAC
  • Up to 8 High Resolution Digital Pulse Width Modulated (DPWM) Outputs
    • 250 ps Pulse Width Resolution
    • 4 ns Frequency and Phase Resolution
    • Adjustable Phase Shift and Dead-bands
    • Cycle-by-Cycle Duty Cycle Matching
    • Up to 2 MHz Switching Frequency
  • Configurable Trailing/Leading/Triangular Modulation
  • RTC Support
  • External Crystal Interface
  • Configurable Feedback Control
    • Voltage, Average Current and Peak Current Mode Control
    • Constant Current, Constant Power
  • Configurable FM, Phase Shift Modulation and PWM
  • Fast, Automatic and Smooth Mode Switching
    • Frequency Modulation and PWM
    • Phase Shift Modulation and PWM
  • High Efficiency and Light Load Management
    • Burst Mode and Ideal Diode Emulation
    • Synchronous Rectifier Soft On/Off
    • Low IC Standby Power
  • Primary Side Voltage Sensing
  • Current Share (Average and Master/Slave)
  • Feature Rich Fault Protection Options
    • 7 Analog / 4 Digital Comparators,
    • Cycle-by-Cycle Current Limiting
    • Programmable Blanking Time and Fault Counting
    • External Fault Inputs
  • Synchronization of DPWM Waveforms Between Multiple UCD3138x Devices
  • 15 channel, 12 bit, 539 ksps General Purpose ADC
  • Internal Temperature Sensor
  • Fully ProgrammableHigh-Performance 31.25 MHz, 32-bit ARM7TDMI-S Processor
    • 128 kB Program Flash (4-32 kB Banks)
    • 2 kB Data Flash with ECC
    • 8 kB Data RAM
    • 8 kB Boot ROM Enables Firmware Boot-Load\
  • Communication Peripherals,
    • 2 - I2C/PMBus interfaces
    • 2 - UARTs, 1 - SPI
  • UART Auto Baud Rate Adjustment
  • Timer Capture with Selectable Input Pins
  • 80-pin QFP Package
  • Operating Temperature: –40°C to 125°C
  • Debug Interface
    • Code Composer Studio with JTAG Interface
    • Fusion Digital Power Designer GUI Support

The UCD3138xA is a digital power supply controller from Texas Instruments offering superior levels of integration and performance in a single chip solution. The UCD3138128A offers 128 kB of program flash memory in comparison to 32 kB in UCD3138A. and it also provides additional options for communication such as SPI and a second I2C/PMBus port. The availability of of program Flash memory in multiple 32 kB banks enables designers to implement dual images of firmware (that is, one main image + one back-up image) in the device and provides the option to execute from either of the banks using appropriate algorithms. It also creates the unique opportunity for the processor to load a new program and subsequently execute that program without interrupting power delivery. This feature allows the end user to add new features to the power supply in the field while eliminating any down-time required to load the new program.

The flexible nature of the UCD3138xA family makes it suitable for a wide variety of power conversion applications. In addition, multiple peripherals inside the device have been specifically optimized to enhance the performance of AC/DC and isolated DC/DC applications and reduce the solution component count in the IT and network infrastructure space. The UCD3138xA family is a fully programmable solution offering customers complete control of their application, along with ample flexibility for many solutions. At the same time, TI is committed to simplifying our customer’s development effort through offering best in class development tools, including application firmware, Code Composer StudioTM software development environment, and TI’s Fusion Power Development GUI which enables customers to configure and monitor key system parameters.

At the core of the controller are the Digital Power Peripherals (DPP). Each DPP implements a high speed digital control loop consisting of a dedicated Error Analog to Digital Converter (EADC), a PID based 2 pole - 2 zero digital compensator and DPWM outputs with 250 ps pulse width resolution. The device also contains a 12-bit, 539 ksps general purpose ADC with up to 15 channels, timers, interrupt control, PMBus, I2C, SPI and UART communications ports. The device is based on a 32-bit ARM7TDMI-S RISC microcontroller that performs real-time monitoring, configures peripherals and manages communications. The ARM microcontroller executes its program out of programmable flash memory as well as on chip RAM and ROM.

In addition to the DPP, specific power management peripherals have been added to enable high efficiency across the entire operating range, high integration for increased power density, reliability, and lowest overall system cost and high flexibility with support for the widest number of control schemes and topologies. Such peripherals include: light load burst mode, synchronous rectification, LLC and phase shifted full bridge mode switching, input voltage feed forward, copper trace current sense, ideal diode emulation, constant current constant power control, synchronous rectification soft on and off, peak current mode control, flux balancing, secondary side input voltage sensing, high resolution current sharing, hardware configurable soft start with pre bias, as well as several other features. Topology support has been optimized for voltage mode and peak current mode controlled phase shifted full bridge, single and dual phase PFC, bridgeless PFC, hard switched full bridge and half bridge, active clamp forward converter, two switch forward converter and LLC half bridge and full bridge.

The UCD3138128A is a functional variant of the UCD3138 Digital Power Controller that includes significant improvements over the UCD3138. For a description of the complete changes made in the UCD3138128A, refer to UCD3138128A Migration Guide. The major improvements are: The General Purpose ADC has been improved for better accuracy and performance at extreme cold temperatures (–40°C). The UART peripheral has been modified to include a hardware based auto-baud rate adjustment feature. A new Synchronous Rectifier Dead Time Optimization hardware peripheral has been added. Benefits include: Improved efficiency Reduced synchronous rectifier voltage stressesShorter development cycleA Duty Cycle Read Function has been added to improve use in peak current mode.

The UCD3138xA is a digital power supply controller from Texas Instruments offering superior levels of integration and performance in a single chip solution. The UCD3138128A offers 128 kB of program flash memory in comparison to 32 kB in UCD3138A. and it also provides additional options for communication such as SPI and a second I2C/PMBus port. The availability of of program Flash memory in multiple 32 kB banks enables designers to implement dual images of firmware (that is, one main image + one back-up image) in the device and provides the option to execute from either of the banks using appropriate algorithms. It also creates the unique opportunity for the processor to load a new program and subsequently execute that program without interrupting power delivery. This feature allows the end user to add new features to the power supply in the field while eliminating any down-time required to load the new program.

The flexible nature of the UCD3138xA family makes it suitable for a wide variety of power conversion applications. In addition, multiple peripherals inside the device have been specifically optimized to enhance the performance of AC/DC and isolated DC/DC applications and reduce the solution component count in the IT and network infrastructure space. The UCD3138xA family is a fully programmable solution offering customers complete control of their application, along with ample flexibility for many solutions. At the same time, TI is committed to simplifying our customer’s development effort through offering best in class development tools, including application firmware, Code Composer StudioTM software development environment, and TI’s Fusion Power Development GUI which enables customers to configure and monitor key system parameters.

At the core of the controller are the Digital Power Peripherals (DPP). Each DPP implements a high speed digital control loop consisting of a dedicated Error Analog to Digital Converter (EADC), a PID based 2 pole - 2 zero digital compensator and DPWM outputs with 250 ps pulse width resolution. The device also contains a 12-bit, 539 ksps general purpose ADC with up to 15 channels, timers, interrupt control, PMBus, I2C, SPI and UART communications ports. The device is based on a 32-bit ARM7TDMI-S RISC microcontroller that performs real-time monitoring, configures peripherals and manages communications. The ARM microcontroller executes its program out of programmable flash memory as well as on chip RAM and ROM.

In addition to the DPP, specific power management peripherals have been added to enable high efficiency across the entire operating range, high integration for increased power density, reliability, and lowest overall system cost and high flexibility with support for the widest number of control schemes and topologies. Such peripherals include: light load burst mode, synchronous rectification, LLC and phase shifted full bridge mode switching, input voltage feed forward, copper trace current sense, ideal diode emulation, constant current constant power control, synchronous rectification soft on and off, peak current mode control, flux balancing, secondary side input voltage sensing, high resolution current sharing, hardware configurable soft start with pre bias, as well as several other features. Topology support has been optimized for voltage mode and peak current mode controlled phase shifted full bridge, single and dual phase PFC, bridgeless PFC, hard switched full bridge and half bridge, active clamp forward converter, two switch forward converter and LLC half bridge and full bridge.

The UCD3138128A is a functional variant of the UCD3138 Digital Power Controller that includes significant improvements over the UCD3138. For a description of the complete changes made in the UCD3138128A, refer to UCD3138128A Migration Guide. The major improvements are: The General Purpose ADC has been improved for better accuracy and performance at extreme cold temperatures (–40°C). The UART peripheral has been modified to include a hardware based auto-baud rate adjustment feature. A new Synchronous Rectifier Dead Time Optimization hardware peripheral has been added. Benefits include: Improved efficiency Reduced synchronous rectifier voltage stressesShorter development cycleA Duty Cycle Read Function has been added to improve use in peak current mode.

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技术文档

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 UCD3138128A Highly-Integrated Digital Controller For Isolated Power 数据表 (Rev. A) PDF | HTML 2017-1-19
应用手册 UCD3138x 器件简介 PDF | HTML 英语版 PDF | HTML 2024-1-2
应用手册 UCD3138 器件上的栈溢出检测 PDF | HTML 英语版 PDF | HTML 2023-9-14
应用手册 避免 UCD3138 器件锁定 PDF | HTML 英语版 PDF | HTML 2023-7-5
应用手册 Fusion Digital Power Studio for UCD3138 Isolated Power Applications (Rev. C) 2019-6-24
应用手册 UCD3138 Family - Practical Design Guideline (Rev. B) 2018-11-20
用户指南 UCD3138128A Migration Guide 2017-9-22

设计与开发

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评估板

UCD3138A64OEVM-662 — UCD3138 80 引脚开环数字电源控制器评估模块

UCD3138A64OEVM-662 EVM 提供了易于使用的测试平台,用以独立评估针对隔离电源应用进行优化的 UCD3138A64 数字控制器。该 EVM 包含一个 80 引脚插座和一整套测试点,可让硬件和固件工程师独立操控器件不同引脚上的信号以及研究开环运行。该 EVM 还具备一定的灵活性,以实现简单的闭环控制配置(例如使用 RC 电路过滤 PWM 输出信号并在闭环控制中调节直流电压)。

硬件端口可用于与器件(包括 PMBus 和 UART)通信。该 EVM 可接受高达 5V 直流输入,并且板载 3.3V LDO 可用于偏置器件。此外,通过使用跳线,可以使用 PMBus (...)

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评估板

UCD3138HSFBEVM-029 — UCD3138 硬开关全桥转换器评估模块

德州仪器 (TI) UCD3138HSFBEVM-029 评估模块 (EVM) 是基于 UCD3138RHA 可编程数字电源控制器的数字控制硬开关全桥转换器。EVM 是独立的对称硬开关全桥 (HSFB) 直流/直流电源转换器,专为 48V 输入电压系统而设计。UCD3138HSFBEVM-029 接受 36Vdc 至 72Vdc 的直流输入,并输出标称 12Vdc,其中满载输出功率为 360W(或最大输出电流为 30A)。保护功能包括过压、欠压、过流和过热保护。特性包括输入电压前馈、预偏置启动和 PMBus 通信。UCD3138HSFBEVM-029 还附带一个 USB-TO-GPIO (...)

用户指南: PDF
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评估板

UCD3138PFCEVM-026 — UCD3138 数字功率因数校正前置稳压器评估模块

德州仪器 (TI) UCD3138PFCEVM-026 评估模块 (EVM) 是基于 UCD3138 可编程数字电源控制器的数字控制单相位 PFC 前置稳压器。此 EVM 可接受 90Vac 至 264Vac、47Hz 至 63Hz 的通用交流线路输入。额定输出电压为 390VDC。输出满负载功率为 360W,在大多数工作条件下,可实现超过 0.999 的超高功率因数和低于 5% 的低 THD。该 EVM 的保护功能包括欠压保护、输出过压保护,以及上电浪涌电流限制。此 EVM 可通过硬件和固件更新重新配置为双相位交错式 PFC 或无桥 PFC 拓扑。还可以使用自定义固件对 EVM (...)

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评估板

UCD3138PSFBEVM-027 — UCD3138PSFBEVM-027 评估模块

此 EVM (UCD3138PSFBEVM-027) 旨在帮助评估离线电源转换器应用中的 UCD3138 64 引脚数字控制 IC,然后帮助进行设计。EVM 是一款独立相移全桥 DC-DC 电源转换器。该 EVM 与其控制卡 UCD3138CC64EVM-030 一同使用、后者也有一个 EVM,位于 UCD3138RGC 上。UCD3138PSFBEVM-027 与 UCD3138CC64EVM-030 一起使用,无需额外的硬件或固件工作,即可评估相移全桥 DC-DC 转换器。这种 EVM 组合允许使用基于 GUI 的工具(称为 Texas Instruments Fusion (...)
用户指南: PDF
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子卡

UCD3138A64CEVM-660 — UCD3138A64 控制卡评估模块

德州仪器 (TI) UCD3138A64CEVM-660 评估模块 (EVM) 用作德州仪器 (TI) UCD3138A64 数字控制器的控制卡,适用于隔离电源应用。该 EVM 开发板既可作为独立板卡用于研究 UCD3138A64 器件,也可作为控制卡用于实现基于半桥谐振 LLC 和移相全桥等拓扑结构的全稳压电源转换器。通过将相应的固件下载至 EVM 中的 UCD3138A64 器件并建立与终端用户的适当功率级板的连接,可以实现这一点。

为了帮助评估常见的隔离式电源拓扑,UCD3138A64CEVM-660 评估模块设计用于与 UCD3138LLCEVM-028 数字 LLC (...)

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调试探针

TMDSEMU110-U — XDS110 JTAG 调试探针

德州仪器 (TI) 的 XDS110 是一款适用于 TI 嵌入式处理器的新型调试探针(仿真器)。XDS110 取代了 XDS100 系列,同时在单个仓体中支持更广泛的标准(IEEE1149.1、IEEE1149.7、SWD)。此外,对于带有嵌入式缓冲跟踪器 (ETB) 的所有 Arm® 和 DSP 处理器,所有 XDS 调试探针均支持核心和系统跟踪。  对于引脚上的内核跟踪,则需要使用 XDS560v2 PRO TRACE

德州仪器 (TI) 的 XDS110 通过 TI 20 引脚连接器(带有适合 TI 14 引脚、Arm 10 引脚和 Arm 20 引脚的多个适配器)连接到目标板,通过 (...)

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调试探针

TMDSEMU560V2STM-U — XDS560™ 软件 v2 系统跟踪 USB 调试探针

XDS560v2 是 XDS560™ 系列调试探针中性能最高的一款,同时支持传统 JTAG 标准 (IEEE1149.1) 和 cJTAG (IEEE1149.7)。  请注意,它不支持串行线调试 (SWD)。

对于带有嵌入式缓冲跟踪器 (ETB) 的所有 ARM 和 DSP 处理器,所有 XDS 调试探针均支持核心和系统跟踪。  对于引脚上的跟踪,则需要使用 XDS560v2 PRO TRACE

XDS560v2 通过 MIPI HSPT 60 引脚连接器(带有多个用于 TI 14 引脚、TI 20 引脚和 ARM 20 引脚的适配器)连接到目标板,并通过 USB2.0 高速 (...)

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调试探针

TMDSEMU560V2STM-UE — Spectrum Digital XDS560v2 系统跟踪 USB 和以太网

XDS560v2 System Trace 是 XDS560v2 系列高性能 TI 处理器调试探针(仿真器)的第一种型号。XDS560v2 是 XDS 系列调试探针中性能最高的一款,同时支持传统 JTAG 标准 (IEEE1149.1) 和 cJTAG (IEEE1149.7)。

XDS560v2 System Trace 在其巨大的外部存储器缓冲区中加入了系统引脚跟踪。这种外部存储器缓冲区适用于指定的 TI 器件,通过捕获相关器件级信息,获得准确的总线性能活动和吞吐量,并对内核和外设进行电源管理。此外,对于带有嵌入式缓冲跟踪器 (ETB) 的所有 ARM 和 DSP 处理器,所有 XDS (...)

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IDE、配置、编译器或调试器

CCSTUDIO — CCStudio™ 集成开发环境 (IDE)

CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)

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IDE、配置、编译器或调试器

FUSION_DIGITAL_POWER_API — TI Fusion API

Fusion Digital Power Studio 以 Microsoft.NET 应用编程接口 (Fusion-API) 为基础而构建,可处理 I2C/SMBus 通信和提取器件及命令。它为常见任务(例如命令读取/写入、完整器件配置导出/导入、固件下载、补偿等)提供了高级接口。

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应用软件和框架

UCD3138_FW_SDK — UCD3138 应用开发固件套件 Kit

UCD3138 固件是一种免费的软件开发套件,适用于德州仪器 (TI) 的 UCD3138 集成式数字电源控制器系列。它包含适用于大多数常见电源拓扑的固件开发工具以及配套资料,可用于更快地评估和开发数字电源系统:



    • 谐振半桥 LLC 应用套件可在评估阶段和开发阶段提供帮助,从而加快向生产阶段推进。具有 ZCS 保护和模式切换功能的 UCD3138 谐振 LLC 拓扑固件可在更宽泛的操作条件下实现高效率。固件中的向日葵特性 (UCC7138) (...)
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代码示例或演示

UCD-TRAINING-LABS — UCD Training Labs

UCD3138 集成式数字电源控制器培训实验室提供用于了解数字控制器的快速入门学习工具。UCD3138 集成式数字控制器提供独立于处理器自主运行的高级电源外设。设备包括高级保护功能、模式切换、恒定电流、电压前馈、峰值电流模式。
支持的产品和硬件
固件

UCD3138FW-FBLLC — Full Bridge / Phase Shift LLC Firmware for UCD3138 in TIDA-00381

UCD3138 相移 LLC 可以提供具有 ZVS 操作和模式开关功能的固件,以在更广泛的工作条件下实现高效率,从而使设计人员在基于谐振 LLC 拓扑的电源设计中快速地从评估走向生产。

谐振 LLC 拓扑可降低开关损耗和 EMI,同时可通过全桥转换器(在转换器的初级侧具有零电压开关)提供极佳的效率。它可以扩展至高功率输出电平,并且可以在各种输入电压下正常工作。

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固件

UCD3138FW-HSFB — HSFB Firmware

UCD3138 硬开关全桥 (HSFB) 拓扑固件可以提供具有输入电压前馈、覆铜线迹电流传感、即时死区时间和开关频率调节以及预偏置启动的全功能固件,从而使设计人员在基于高功率硬开关全桥拓扑的电源设计中快速地从评估走向生产。

支持的产品和硬件
固件

UCD3138FW-PFC — PFC Firmware

UCD3138 功率因数校正 (PFC) 固件可以提供能够轻松与维护功能相集成的全功能固件,从而使设计人员在基于 PFC 拓扑的电源设计中从评估走向生产。

支持的产品和硬件
固件

UCD3138FW-PSFB — Phase Shifted Full Bridge Firmware

UCD3138 相移全桥可以提供具有峰值电流模式控制支持、自适应死区时间优化和可编程斜坡补偿的全功能固件,从而使设计人员在基于高功率 PSFB 拓扑的电源设计中快速地从评估走向生产。

支持的产品和硬件
固件

UCD3138FW_LLC — LLC Half bridge Firmware

UCD3138 谐振 LLC 编程器可以提供具有 ZCS 保护和模式开关功能的固件,以在更广泛的工作条件下实现高效率,从而使设计人员在基于谐振 LLC 拓扑的电源设计中快速地从评估走向生产。固件中的向日葵功能 (UCC7138) 提供高级同步整流控制。

谐振 LLC 拓扑可降低开关损耗和 EMI,同时可通过半桥转换器(在转换器的初级侧具有零电压开关)提供极佳的效率。它可以扩展至高功率输出电平,并且可以在各种输入电压下正常工作。

支持的产品和硬件
支持软件

FUSION-DIGITAL-POWER-STUDIO — Fusion Digital Power Studio 3.0.77

Fusion Digital PowerTM Studio 包含适用于德州仪器 (TI) 的 UCD3138 集成数字控制器系列的软件工具。   Fusion Digital Power 可帮助电源工程师从数字电源获益,无需学习复杂的编程技能。Fusion Digital Power 是直观的工具,可在设计的评估、开发和测试阶段提供帮助。

Fusion Digital Power 包含各种工具,这些工具专为在数字电源设计系统的评估和设计为工程师提供帮助而设计:

用于固件开发的工具:

  • 内存调试程序
    • 动态解析已编译的输出内存映射
    • 提供寄存器和变量读取/写入访问
  • SMBus 调试
    • 通过发送 i2c (...)
支持的产品和硬件
支持软件

FUSION-PRODUCTION-GUI — Fusion Digital Power Production Tool

Fusion Digital Power Production Tool(生产 GUI)是一款图形用户界面,用于下载和升级固件以及配置、校准和测试。此基于命令的界面允许在生产环境中实习对 UCD 闪存程序的无缝集成。

生产 GUI 支持与 Fusion Digital Power Studio™ 软件相同的器件。此工具通常用于制造和生产环境。可通过 GUI 中的“Help”菜单获取用户指南。
支持的产品和硬件
仿真模型

UCD3138128A IBIS Model

SLUM628.ZIP (10 KB) - IBIS 模型
支持的产品和硬件
参考设计

TIDA-00653 — 用于电池充电应用的非隔离式双向转换器参考设计

TIDA-00653 是非隔离式 48V 至 12V 双向转换器参考设计,适用于 UCD3138 数字电源控制器支持的 48V 电池应用。该设计非常灵活,能够以 ZVS 转换模式拓扑工作以优化轻负载效率,也能够以硬开关拓扑工作以实现简单的系统设计。该双向转换器具有自动换相、轻载偏移和自适应死区时间优化功能,可实现超过 96% 的复合效率增益。由于效率显著提升,因此热损耗得以降低,在汽车应用中无需使用风冷或液冷。此外,使用 UCD3138 高控制频率控制器和基于硬件的状态机,可以实现小尺寸设计,并且可以释放系统 CPU 以用于电池管理等其他功能。

支持的产品和硬件
封装 引脚 CAD 符号、封装和 3D 模型
TQFP (PFC) 80 Ultra Librarian

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