TMS320F28P550SJ

現行

C2000™ 32 位元 MCU,具備 150MHz 1.1MB 快閃記憶體 C28x + CLA、五個 ADC、CLB、AES 和 NPU

產品詳細資料

CPU 1 C28, 1 CLA Frequency (MHz) 150 Flash memory (kByte) 1088 RAM (kByte) 133 ADC type 5 12-bit SAR Total processing (MIPS) 300 Features Automation, Configurable logic block, FPU32, InstaSPIN-FOC technology, NPU, Robotics UART 4 CAN (#) 2 PWM (Ch) 24 TI functional safety category Functional Safety-Compliant Number of ADC channels 26, 28, 35, 39 Direct memory access (Ch) 6 SPI 2 QEP 3 USB USB 2.0 Hardware accelerators Control law accelerator, TinyEngine™ NPU, Trigonometric math accelerator Edge AI enabled Edge AI Studio enabled Operating temperature range (°C) -40 to 150 Rating Catalog Communication interface CAN, FSI, I2C, LIN, PMBUS, SPI, UART Operating system FreeRTOS Nonvolatile memory (kByte) 1024 Number of I2Cs 2 Security Cryptographic acceleration, Secure boot, Secure storage
CPU 1 C28, 1 CLA Frequency (MHz) 150 Flash memory (kByte) 1088 RAM (kByte) 133 ADC type 5 12-bit SAR Total processing (MIPS) 300 Features Automation, Configurable logic block, FPU32, InstaSPIN-FOC technology, NPU, Robotics UART 4 CAN (#) 2 PWM (Ch) 24 TI functional safety category Functional Safety-Compliant Number of ADC channels 26, 28, 35, 39 Direct memory access (Ch) 6 SPI 2 QEP 3 USB USB 2.0 Hardware accelerators Control law accelerator, TinyEngine™ NPU, Trigonometric math accelerator Edge AI enabled Edge AI Studio enabled Operating temperature range (°C) -40 to 150 Rating Catalog Communication interface CAN, FSI, I2C, LIN, PMBUS, SPI, UART Operating system FreeRTOS Nonvolatile memory (kByte) 1024 Number of I2Cs 2 Security Cryptographic acceleration, Secure boot, Secure storage
LQFP (PM) 64 144 mm² 12 x 12 LQFP (PZ) 100 256 mm² 16 x 16 TQFP (PDT) 128 256 mm² 16 x 16 TQFP (PNA) 80 144 mm² 12 x 12 VQFN (RSH) 56 49 mm² 7 x 7
  • Real-time processing:
    • 150MHz C28x 32-bit DSP CPU
    • Equivalent to 300MHz Arm® Cortex®-M7 based device on real-time signal chain performance (see the Real-time Benchmarks Showcasing C2000™ Control MCU’s Optimized Signal Chain Application Note
    • IEEE 754 single-precision Floating-Point Unit (FPU32)
    • Trigonometric Math Unit (TMU)
      • Support for Nonlinear Proportional Integral Derivative (NLPID) control
    • CRC Engine and Instructions (VCRC)
  • Programmable Control Law Accelerator (CLA)
  • On-chip memory
    • 1088KB of flash (ECC-protected) across five independent banks
      • Four 256KB banks
      • One 64KB bank, ideal of LFU/Bootloaders/data
    • 8KB of OTP (One Time Programmable flash memory)
    • 133KB of RAM (ECC/Parity protected)
  • Security
    • Secure Boot
    • JTAG Lock
    • Advanced Encryption Standard (AES) accelerator
    • Unique Identification (UID) number
  • Clock and system control
    • Two internal 10MHz oscillators
    • Crystal oscillator or external clock input
    • Windowed watchdog timer module
    • Missing clock detection circuitry
    • Dual-clock Comparator (DCC)
  • 3.3V I/O design
    • Internal VREG generation allows for single-supply design
    • Brownout reset (BOR) circuit
    • 5V fail-safe and tolerant capability on 4 GPIOs for PMBUS/I2C support
    • Configurable 1.35V VIH on 4 GPIOs
  • System peripherals
    • 6-channel Direct Memory Access (DMA) controller
    • 91 individually programmable multiplexed General-Purpose Input/Output (GPIO) pins (22 shared with Analog)
    • 17 digital inputs on analog pins
    • Enhanced Peripheral Interrupt Expansion (ePIE)
    • Multiple low-power mode (LPM) support
  • Communications peripherals
    • One Power-Management Bus (PMBus) interface
      • Fast Plus Mode Support - 1MHz SCL
      • 5V/3.3V/1.35V VIH support on select pins
    • Two Inter-integrated Circuit (I2C) interfaces
    • Two Controller Area Network with Flexible Data-Rate (CAN FD/MCAN) bus port
      • 4KB message RAM per MCAN module, independent of system memory
      • Ability to re-use RAM for CPU data variables if MCAN is not used
    • One Universal Serial Bus (USB 2.0 MAC + PHY)
    • Two Serial Peripheral Interface (SPI) ports
    • Three UART-compatible Serial Communication Interface (SCI)
    • One UART-compatible Local Interconnect Network (LIN) interface
    • Fast Serial Interface (FSI) with one transmitter and one receiver (up to 200Mbps)
  • Analog system
    • Five 3.9MSPS, 12-bit Analog-to-Digital Converters (ADCs)
      • Up to 39 external channels (includes one gpdac output)
      • Four integrated Post-Processing Blocks (PPB) per ADC
    • Four windowed comparators (CMPSS) with 12-bit reference Digital-to-Analog Converters (DACs)
      • Digital glitch filters
      • Low DAC output to pin capability on CMPSS1
    • One 12-bit buffered DAC output
    • Three Programmable Gain Amplifiers (PGAs)
      • Unity gain support
      • Inverting and non-inverting gain mode support
      • Programmable output filtering
  • Enhanced control peripherals
    • 24 ePWM channels with 12 channels that have high-resolution capability (150ps resolution)
      • Integrated dead-band support
      • Integrated hardware trip zones (TZs)
    • Two Enhanced Capture (eCAP) modules
    • Three Enhanced Quadrature Encoder Pulse (eQEP) modules with support for CW/CCW operation modes
    • Embedded Pattern Generator (EPG)
  • Configurable Logic Block (CLB)
    • 2 tiles
    • Augments existing peripheral capability
    • Supports position manager solutions
  • Neural-network Processing Unit (NPU)
    • Highly Optimized for Deep Convolutional Neural Networks (CNN)
    • Variable weights and data lengths
      • 8-bit and 4-bit weights
      • 8-bit and 4-bit data
    • 600MOPS (Mega Operations Per Second) at 75MHz on 8bWx8bD
    • 1200MOPS at 75MHz on 4bWx8bD
    • Up to 10x NN inferencing performance improvement vs SW techniques
    • No direct coding required, TI AI tools generate FW libraries
    • Real-time control focused Edge AI Models
      • ARC fault example
      • Motor fault example
  • Live Firmware Update (LFU)
  • Diagnostic features
    • Memory Power-On Self-Test (MPOST)
  • Functional Safety-Compliant (1)
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262 and IEC 61508 system design
    • Systematic capability up to ASIL D and SIL 3
    • Hardware integrity up to ASIL B and SIL 2
  • Safety-related certification
  • Package options:
    • 128-pin Thin Quad Flatpack (TQFP)[PDT suffix]
    • 100-pin Low-profile Quad Flatpack (LQFP)[PZ suffix]
    • 80-pin TQFP [PNA suffix]
    • 64-pin LQFP [PM suffix]
    • 56-pin Very Thin Quad Flatpack No-Lead (VQFN) [RSH suffix]
  • Temperature options:
    • Junction (TJ): –40°C to 150°C

(1)Refer to the Functional Safety Manual for TMS320F28P55x Real-Time Microcontrollers and the TÜV certification for the exact part numbers that are Functional Safety-Compliant or Functional Safety Quality-Managed.

  • Real-time processing:
    • 150MHz C28x 32-bit DSP CPU
    • Equivalent to 300MHz Arm® Cortex®-M7 based device on real-time signal chain performance (see the Real-time Benchmarks Showcasing C2000™ Control MCU’s Optimized Signal Chain Application Note
    • IEEE 754 single-precision Floating-Point Unit (FPU32)
    • Trigonometric Math Unit (TMU)
      • Support for Nonlinear Proportional Integral Derivative (NLPID) control
    • CRC Engine and Instructions (VCRC)
  • Programmable Control Law Accelerator (CLA)
  • On-chip memory
    • 1088KB of flash (ECC-protected) across five independent banks
      • Four 256KB banks
      • One 64KB bank, ideal of LFU/Bootloaders/data
    • 8KB of OTP (One Time Programmable flash memory)
    • 133KB of RAM (ECC/Parity protected)
  • Security
    • Secure Boot
    • JTAG Lock
    • Advanced Encryption Standard (AES) accelerator
    • Unique Identification (UID) number
  • Clock and system control
    • Two internal 10MHz oscillators
    • Crystal oscillator or external clock input
    • Windowed watchdog timer module
    • Missing clock detection circuitry
    • Dual-clock Comparator (DCC)
  • 3.3V I/O design
    • Internal VREG generation allows for single-supply design
    • Brownout reset (BOR) circuit
    • 5V fail-safe and tolerant capability on 4 GPIOs for PMBUS/I2C support
    • Configurable 1.35V VIH on 4 GPIOs
  • System peripherals
    • 6-channel Direct Memory Access (DMA) controller
    • 91 individually programmable multiplexed General-Purpose Input/Output (GPIO) pins (22 shared with Analog)
    • 17 digital inputs on analog pins
    • Enhanced Peripheral Interrupt Expansion (ePIE)
    • Multiple low-power mode (LPM) support
  • Communications peripherals
    • One Power-Management Bus (PMBus) interface
      • Fast Plus Mode Support - 1MHz SCL
      • 5V/3.3V/1.35V VIH support on select pins
    • Two Inter-integrated Circuit (I2C) interfaces
    • Two Controller Area Network with Flexible Data-Rate (CAN FD/MCAN) bus port
      • 4KB message RAM per MCAN module, independent of system memory
      • Ability to re-use RAM for CPU data variables if MCAN is not used
    • One Universal Serial Bus (USB 2.0 MAC + PHY)
    • Two Serial Peripheral Interface (SPI) ports
    • Three UART-compatible Serial Communication Interface (SCI)
    • One UART-compatible Local Interconnect Network (LIN) interface
    • Fast Serial Interface (FSI) with one transmitter and one receiver (up to 200Mbps)
  • Analog system
    • Five 3.9MSPS, 12-bit Analog-to-Digital Converters (ADCs)
      • Up to 39 external channels (includes one gpdac output)
      • Four integrated Post-Processing Blocks (PPB) per ADC
    • Four windowed comparators (CMPSS) with 12-bit reference Digital-to-Analog Converters (DACs)
      • Digital glitch filters
      • Low DAC output to pin capability on CMPSS1
    • One 12-bit buffered DAC output
    • Three Programmable Gain Amplifiers (PGAs)
      • Unity gain support
      • Inverting and non-inverting gain mode support
      • Programmable output filtering
  • Enhanced control peripherals
    • 24 ePWM channels with 12 channels that have high-resolution capability (150ps resolution)
      • Integrated dead-band support
      • Integrated hardware trip zones (TZs)
    • Two Enhanced Capture (eCAP) modules
    • Three Enhanced Quadrature Encoder Pulse (eQEP) modules with support for CW/CCW operation modes
    • Embedded Pattern Generator (EPG)
  • Configurable Logic Block (CLB)
    • 2 tiles
    • Augments existing peripheral capability
    • Supports position manager solutions
  • Neural-network Processing Unit (NPU)
    • Highly Optimized for Deep Convolutional Neural Networks (CNN)
    • Variable weights and data lengths
      • 8-bit and 4-bit weights
      • 8-bit and 4-bit data
    • 600MOPS (Mega Operations Per Second) at 75MHz on 8bWx8bD
    • 1200MOPS at 75MHz on 4bWx8bD
    • Up to 10x NN inferencing performance improvement vs SW techniques
    • No direct coding required, TI AI tools generate FW libraries
    • Real-time control focused Edge AI Models
      • ARC fault example
      • Motor fault example
  • Live Firmware Update (LFU)
  • Diagnostic features
    • Memory Power-On Self-Test (MPOST)
  • Functional Safety-Compliant (1)
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262 and IEC 61508 system design
    • Systematic capability up to ASIL D and SIL 3
    • Hardware integrity up to ASIL B and SIL 2
  • Safety-related certification
  • Package options:
    • 128-pin Thin Quad Flatpack (TQFP)[PDT suffix]
    • 100-pin Low-profile Quad Flatpack (LQFP)[PZ suffix]
    • 80-pin TQFP [PNA suffix]
    • 64-pin LQFP [PM suffix]
    • 56-pin Very Thin Quad Flatpack No-Lead (VQFN) [RSH suffix]
  • Temperature options:
    • Junction (TJ): –40°C to 150°C

(1)Refer to the Functional Safety Manual for TMS320F28P55x Real-Time Microcontrollers and the TÜV certification for the exact part numbers that are Functional Safety-Compliant or Functional Safety Quality-Managed.

The TMS320F28P55x (F28P55x) is a member of the C2000™ real-time microcontroller family of scalable, ultra-low latency devices designed for efficiency in power electronics, including but not limited to: high power density, high switching frequencies, and supporting the use of GaN and SiC technologies.

These include such applications as:

The real-time control subsystem is based on TI’s 32-bit C28x DSP core, which provides 150MHz of signal-processing performance for floating- or fixed-point code running from either on-chip flash or SRAM. The C28x CPU is further boosted by the Floating-Point Unit (FPU), Trigonometric Math Unit (TMU), and VCRC (Cyclical Redundancy Check) extended instruction sets, speeding up common algorithms key to real-time control systems.

The CLA allows significant offloading of common tasks from the main C28x CPU. The CLA is an independent 32-bit floating-point math accelerator that executes in parallel with the CPU. Additionally, the CLA has its own dedicated memory resources and it can directly access the key peripherals that are required in a typical control system. Support of a subset of ANSI C is standard, as are key features like hardware breakpoints and hardware task-switching.

The Neural-network Processing Unit (NPU) can support machine-learning inferencing using pre-trained models. Capable of 600–1200MOPS (Mega Operations Per Second) with model support for ARC fault detection or Motor Fault detection, the NPU provides up to 10x NN inferencing cycle improvement versus a SW-only-based implementation. Load and train models with the Edge AI Studio - Model Composer from TI or with the Tiny ML Modelmaker for an advanced set of capabilities. Source code for the C28x is generated by these tools, no manual coding is necessary. For customers who rely on their own AI training framework, TI’s Neural Network Compiler can help port your AI model to be compatible with many C28x-based MCUs. For those interested in reference solutions, request access to TI’s Arc Fault Detection Project or the Motor Bearing Fault Detection Project.

The F28P55x supports up to 1088KB of flash memory divided into four 256KB banks plus one 64KB bank, which enable programming one bank and execution in another bank in parallel. Up to 133KB of on-chip SRAM is also available to supplement the flash memory.

The Live Firmware Update hardware enhancements on F28P55x allow fast context switching from the old firmware to the new firmware to minimize application downtime when updating the device firmware.

High-performance analog blocks are integrated on the F28P55x real-time microcontroller (MCU) and are closely coupled with the processing and PWM units to provide optimal real-time signal chain performance. Twenty-four PWM channels, all supporting frequency-independent resolution modes, enable control of various power stages from a 3-phase inverter to power factor correction and advanced multilevel power topologies.

The inclusion of the Configurable Logic Block (CLB) allows the user to add custom logic and potentially integrate FPGA-like functions into the C2000 real-time MCU.

Interfacing is supported through various industry-standard communication ports (such as SPI, SCI, I2C, PMBus, LIN, and CAN FD) and offers multiple pin-muxing options for optimal signal placement.

Want to learn more about features that make C2000 Real-Time MCUs the right choice for your real-time control system? Check out The Essential Guide for Developing With C2000™ Real-Time Microcontrollers and visit the C2000™ real-time control MCUs page.

The Getting Started With C2000™ Real-Time Control Microcontrollers (MCUs) Getting Started Guide covers all aspects of development with C2000 devices from hardware to support resources. In addition to key reference documents, each section provides relevant links and resources to further expand on the information covered.

Ready to get started? Check out the TMDSCNCD28P55X evaluation board or the LAUNCHXL-F28P55X development kit, and download C2000Ware.

The TMS320F28P55x (F28P55x) is a member of the C2000™ real-time microcontroller family of scalable, ultra-low latency devices designed for efficiency in power electronics, including but not limited to: high power density, high switching frequencies, and supporting the use of GaN and SiC technologies.

These include such applications as:

The real-time control subsystem is based on TI’s 32-bit C28x DSP core, which provides 150MHz of signal-processing performance for floating- or fixed-point code running from either on-chip flash or SRAM. The C28x CPU is further boosted by the Floating-Point Unit (FPU), Trigonometric Math Unit (TMU), and VCRC (Cyclical Redundancy Check) extended instruction sets, speeding up common algorithms key to real-time control systems.

The CLA allows significant offloading of common tasks from the main C28x CPU. The CLA is an independent 32-bit floating-point math accelerator that executes in parallel with the CPU. Additionally, the CLA has its own dedicated memory resources and it can directly access the key peripherals that are required in a typical control system. Support of a subset of ANSI C is standard, as are key features like hardware breakpoints and hardware task-switching.

The Neural-network Processing Unit (NPU) can support machine-learning inferencing using pre-trained models. Capable of 600–1200MOPS (Mega Operations Per Second) with model support for ARC fault detection or Motor Fault detection, the NPU provides up to 10x NN inferencing cycle improvement versus a SW-only-based implementation. Load and train models with the Edge AI Studio - Model Composer from TI or with the Tiny ML Modelmaker for an advanced set of capabilities. Source code for the C28x is generated by these tools, no manual coding is necessary. For customers who rely on their own AI training framework, TI’s Neural Network Compiler can help port your AI model to be compatible with many C28x-based MCUs. For those interested in reference solutions, request access to TI’s Arc Fault Detection Project or the Motor Bearing Fault Detection Project.

The F28P55x supports up to 1088KB of flash memory divided into four 256KB banks plus one 64KB bank, which enable programming one bank and execution in another bank in parallel. Up to 133KB of on-chip SRAM is also available to supplement the flash memory.

The Live Firmware Update hardware enhancements on F28P55x allow fast context switching from the old firmware to the new firmware to minimize application downtime when updating the device firmware.

High-performance analog blocks are integrated on the F28P55x real-time microcontroller (MCU) and are closely coupled with the processing and PWM units to provide optimal real-time signal chain performance. Twenty-four PWM channels, all supporting frequency-independent resolution modes, enable control of various power stages from a 3-phase inverter to power factor correction and advanced multilevel power topologies.

The inclusion of the Configurable Logic Block (CLB) allows the user to add custom logic and potentially integrate FPGA-like functions into the C2000 real-time MCU.

Interfacing is supported through various industry-standard communication ports (such as SPI, SCI, I2C, PMBus, LIN, and CAN FD) and offers multiple pin-muxing options for optimal signal placement.

Want to learn more about features that make C2000 Real-Time MCUs the right choice for your real-time control system? Check out The Essential Guide for Developing With C2000™ Real-Time Microcontrollers and visit the C2000™ real-time control MCUs page.

The Getting Started With C2000™ Real-Time Control Microcontrollers (MCUs) Getting Started Guide covers all aspects of development with C2000 devices from hardware to support resources. In addition to key reference documents, each section provides relevant links and resources to further expand on the information covered.

Ready to get started? Check out the TMDSCNCD28P55X evaluation board or the LAUNCHXL-F28P55X development kit, and download C2000Ware.

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技術文件

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重要文件 類型 標題 格式選項 日期
* Data sheet TMS320F28P55x Real-Time Microcontrollers datasheet (Rev. C) PDF | HTML 2025年 6月 26日
* Errata TMS320F28P55x Real-Time MCUs Silicon Errata (Rev. B) PDF | HTML 2025年 2月 20日
* User guide TMS320F28P55x Real-Time Microcontrollers Technical Reference Manual (Rev. C) PDF | HTML 2025年 2月 21日
Application note Achieve Delayed Protection for Three Phase Three-Level Inverter with Minimum CLB Resources PDF | HTML 2025年 12月 16日
Application note User Guide for E-Metrology Library for Digital Power Applications with F28P55x and F28P65x PDF | HTML 2025年 11月 4日
Application note Live Firmware Update Without Device Reset on C2000™ MCUs (Rev. C) PDF | HTML 2025年 10月 29日
Application note Serial Flash Programming of C2000 Microcontrollers (Rev. I) PDF | HTML 2025年 8月 14日
Application note MCU Control Center Tool Developer's Guide PDF | HTML 2025年 8月 4日
Application note MCU Signal Sight Tool Developer's Guide PDF | HTML 2025年 8月 1日
User guide C2000 Real-Time Control Peripheral Reference Guide (Rev. U) PDF | HTML 2025年 7月 11日
Application brief Enhancing EV Powertrain Efficiency: Optimizing Motor Control and Battery Performance With TMS320F28P55x MCUs PDF | HTML 2025年 5月 14日
User guide Out-of-the-Box Edge AI Demo on TI MCUs With Hardware Acceleration PDF | HTML 2025年 4月 24日
Application note C2000-IDE Assist Tool Migration Feature Guide PDF | HTML 2025年 4月 23日
Product overview Industrial Functional Safety for C2000™ Real-Time Microcontrollers (Rev. F) 2025年 4月 23日
Technical article 以 TI GaN FET 為基礎的 10kW 單相串列式逆變器設計考量 PDF | HTML 2025年 4月 11日
User guide Getting Started with Bootloading on C2000™ Microcontrollers PDF | HTML 2025年 4月 8日
Functional safety information VDE Safety Certification Document for F280013x, F280015x, F28002x, F28004x, F2838x, F28003x, F28P65x, F28P55x 2025年 3月 19日
Application brief How to Debug Interrupt Abnormalities PDF | HTML 2025年 2月 25日
Design guide 11-kW, Bidirectional Three-Phase Three-Level (T-type) Inverter and PFC Reference Design (Rev. J) PDF | HTML 2025年 2月 20日
Certificate TMS320F28P55x TUV SUD Functional Safety Certificate 2025年 2月 19日
Application note C2000 IDE Assist Tool Features Guide (Rev. A) PDF | HTML 2025年 1月 29日
Functional safety information Functional Safety Manual for TMS320F28P55x Real-Time Microcontrollers PDF | HTML 2024年 12月 12日
Technical article 透過支援邊緣 AI 的 MCU,最佳化即時控制系統中的系統故障偵測功能 PDF | HTML 2024年 10月 30日
User guide Migration Between TMS320F28P5xx and TMS320F280013x/TMS320F280015x (Rev. A) PDF | HTML 2024年 10月 23日
User guide Migration Between TMS320F28P5xx and TMS320F28003x (Rev. A) PDF | HTML 2024年 9月 25日
Application note Digital Control Implementation for Hybrid Hysteretic Control LLC Converter (Rev. A) PDF | HTML 2024年 8月 21日
White paper How to Build a Model of Multi-Phase-Shift With Varying Frequency in PLECS PDF | HTML 2024年 7月 11日
Technical article 即時控制技術如何實現可靠、可擴充的高電壓設計 PDF | HTML 2024年 7月 1日
Application brief Isolated Bidirectional DC/DC in Power Conversion System (PCS) PDF | HTML 2024年 6月 27日
Certificate Certificate of Compliance UL-CA-2340465-0 2024年 5月 23日
Design guide Bidirectional, Dual Active Bridge Reference Design for Level 3 Electric Vehicle Charging Stations (Rev. E) PDF | HTML 2024年 4月 30日
Application note Power Supply and Monitoring Solution for C2000 MCU Automotive Applications PDF | HTML 2024年 4月 17日
User guide TMS320F28P55x Flash API Version 4.00.00.00 PDF | HTML 2024年 4月 9日
Application note C2000 Type-2 Programmable Gain Amplifier Use Cases PDF | HTML 2024年 4月 4日
Application note Migrating Software From 8-Bit (Byte) Addressable CPU’s to C28x CPU (Rev. A) PDF | HTML 2023年 4月 19日
Application note Charge-Sharing Driving Circuits for C2000 ADCs (using PSPICE-FOR-TI) (Rev. A) PDF | HTML 2023年 3月 24日
Application note Charge-Sharing Driving Circuits for C2000 ADCs (using TINA-TI simulation tool) (Rev. A) PDF | HTML 2023年 3月 24日
Application note C2000 ePWM Developer’s Guide (Rev. A) PDF | HTML 2023年 2月 24日
Application note LIN Protocol and Physical Layer Requirements (Rev. A) PDF | HTML 2022年 8月 24日
Application note Intelligent LLC SR Control Using C2000 and UCD7138 (Rev. A) PDF | HTML 2022年 6月 27日
Application note Implement three-phase interleaved LLC on C2000 Type-4 PWM PDF | HTML 2022年 3月 30日
Design guide 11-kW, Bidirectional, Three-Phase ANPC Based on GaN Reference Design (Rev. A) PDF | HTML 2022年 3月 18日
Application note C2000 Memory Power-On Self-Test (M-POST) (Rev. A) PDF | HTML 2022年 3月 3日
Application brief Using An Op Amp for High-Side Current Sensing (Rev. A) PDF | HTML 2021年 12月 7日
Application note C2000 SysConfig PDF | HTML 2021年 10月 20日
Application note Getting Started with the MCAN (CAN FD) Module PDF | HTML 2021年 10月 20日
White paper Speed Up Development With C2000™ Real-Time MCUs Using SysConfig 2021年 10月 20日
Application note Leverage New Type ePWM Features for Multiple Phase Control PDF | HTML 2021年 5月 11日
E-book An Engineer’s Guide to Designing with Precision Amplifiers 2021年 4月 29日
Application note CRM/ZVS PFC Implementation Based on C2000 Type-4 PWM Module PDF | HTML 2021年 2月 18日
Application note Power Topologies in Electric Vehicle Charging Stations PDF | HTML 2020年 9月 16日
Application note Secure BOOT On C2000 Device 2020年 7月 21日
Application note Configurable Error Generator for Controller Area Network PDF | HTML 2019年 12月 19日
Application note Fast Integer Division – A Differentiated Offering From C2000 Product Family PDF | HTML 2019年 6月 14日
Application note Embedded Real-Time Analysis and Response for Control Applications PDF | HTML 2019年 3月 29日
Circuit design Inverting op amp with non-inverting positive reference voltage circuit (Rev. A) 2019年 2月 4日
Circuit design Non-inverting op amp with inverting positive reference voltage circuit (Rev. A) 2019年 2月 4日
White paper Maximizing power for Level 3 EV charging stations 2018年 6月 12日
User guide Digitally Controlled Solar Micro Inverter Using C2000 MCU CCS User's Guide (Rev. B) 2017年 6月 9日
Application note Calculating FIT for a Mission Profile 2015年 3月 24日
Application note AN-20 An Applications Guide for Op Amps (Rev. C) 2013年 5月 1日
User guide Serial Peripheral Interface (SPI) for KeyStone Devices User’s Guide (Rev. A) 2012年 3月 30日

設計與開發

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開發板

LAUNCHXL-F28P55X — C2000™ 即時 MCU F28P55X LaunchPad™ 開發套件

LAUNCHXL-F28P55X 是適用 TI C2000™ 即時微控制器 F28P55x 裝置系列的低成本開發電路板。其適合進行初始評估與原型設計,提供標準化且使用方便的平台,可讓您開發下一個應用。此擴充版本 LaunchPad™ 開發套件提供額外針腳以助開發,並支援連接兩個 BoosterPack™ 外掛模組。屬於 TI MCU LaunchPad 龐大生態系統的一部分,也與各種外掛程式模組交互相容。

使用指南: PDF | HTML
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開發板

TIEVM-ARC-AFE — 太陽能應用中適用於 C2000™ MCU 架構機器學習電弧偵測的類比前端

TIEVM-ARC-AFE 是 TIDA-010955 參考設計的可訂購版本。此參考設計具備類比前端,可在以人工智慧 (AI) 為基礎的太陽能應用中進行 DC 電弧偵測。DC 電弧會對 DC 串列電流造成高頻雜訊。為了偵測電弧頻率,會擷取資料並將資料饋入嵌入式 AI 模型,而該模型會接受識別電弧的訓練。相較於傳統的電弧偵測方法,如此可實現更高的準確度,同時也能減少運算工作量。除了電弧偵測的訊號鏈外,此設計亦提供收集與標示電弧資料的功能,以用於進行嵌入式 AI 模型訓練。此硬體可搭配 TMDSCNCD28P55X (C2000™ F28P55x 裝置的 controlCARD) 運作,亦可搭配 (...)

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開發板

TMDSCNCD28P55X — TMDSCNCD28P55X controlCARD 評估模組

TMDSCNCD28P55X 是一款用於 TI C2000™ MCU 系列 F28P55x 裝置的低成本評估和開發板。其隨附 HSEC180 (180 針腳高速邊緣連接器),並且為 controlCARD,因此是初始評估和原型設計的理想之選。若要評估 TMDSCNCD28P55X,需要 180 針腳的擴充站 TMDSHSECDOCK,並且可單獨或以搭售套件的方式購買。

使用指南: PDF | HTML
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開發板

XDS110ISO-EVM — 適用於 C2000 和 Sitara™ controlSOM 的 XDS110 隔離插入式評估模組

XDS110 隔離插入式電路板是一款適用於 C2000 和 Sitara controlSOM 的即時偵錯及 Flash 編程評估模組。可透過非隔離式 120 針腳連接器或電氣隔離式 16 針腳連接器連接 C2000 及 Sitara controlSOM。兩種接頭皆具備 JTAG/cJTAG/SWD 支援和全雙工 UART 埠。電路板支援兩個額外功能,可在目標電路板偵錯中使用:序列周邊介面 (SPI) 至四個隔離式數位類比轉換器 (DAC) 通道,以及最多六個數位和四個類比非隔離通道。
使用指南: PDF | HTML
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開發板

ALGO-3P-UISP1-TI — 適用於德州儀器裝置的 Algocraft μISP1 編程器

μISP 可以連接到主機 PC (內建 RS-232、USB、LAN 連接) 或獨立模式工作。

在單機模式下,只要按下「開始」按鈕或透過一些 TTL 控制線,就可以執行編程週期。

其緊湊的尺寸和多功能性可輕鬆整合到生產環境、手動和自動化程序中。

從:Algocraft
子卡

TMDSHSECDOCK — HSEC180 controlCARD 基板擴充站

TMDSHSECDOCK 為一塊基板,可為相容的 HSEC180 架構 controlCARD 提供關鍵訊號的接頭針腳存取。提供模擬板區域以快速進行原型設計。電路板電源可由 USB 纜線或 5-V 桶式電源供應器供電。

使用指南: PDF | HTML
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偵錯探測器

TMDSEMU110-U — XDS110 JTAG 偵錯探測器

德州儀器 XDS110 是一種全新的偵錯探測器 (模擬器) 類別,適用於 TI 嵌入式處理器。XDS110 取代 XDS100 系列,可在單一 Pod 中支援更廣泛的標準 (IEEE1149.1、IEEE1149.7、SWD)。同時,所有 XDS 偵錯探針在所有配備嵌入式追蹤緩衝器 (ETB) 的 Arm® 與 DSP 處理器中均支援核心與系統追蹤。  對於針腳上的核心追蹤,則需要 XDS560v2 PRO TRACE

德州儀器 XDS110 透過 TI 20 針腳連接器(具有用於 TI 14 針腳和 Arm 10 針腳和 Arm 20 針腳的多轉接器)連接到目標電路板,並透過 USB2.0 (...)

使用指南: PDF
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偵錯探測器

TMDSEMU200-U — XDS200 USB 偵錯探測器

XDS200 是為 TI 嵌入式裝置偵錯的偵錯探測器(模擬器)。對於大多數裝置,建議使用較新、成本較低的 XDS110 (www.ti.com/tool/TMDSEMU110-U)。XDS200 支援單一 Pod 中廣泛的標準(IEEE1149.1、IEEE1149.7、SWD)。所有 XDS 偵錯探針在所有配備嵌入式追蹤緩衝器 (ETB) 的 Arm® 與 DSP 處理器中均支援核心與系統追蹤。

XDS200 透過 TI 20 接腳連接器(配備適用 TI 14 接腳、Arm Cortex® 10 接腳和 Arm 20 接腳的多重轉接器)連接到目標電路板,並透過 USB2.0 高速 (...)

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硬體程式設計工具

ALGO-3P-WRITENOW — Algocraft WriteNow!程式設計工具

WriteNow! 系統內編程器系列是可編程產業的一大突破。此編程器支援多家製造商的眾多裝置 (例如微控制器、記憶體、CPLD 與其他可編程裝置)。其尺寸精巧,便於整合至 ATE 與固定裝置。編程器可單機運作,或透過內建的 RS-232、LAN 與 USB 連接埠與主機電腦連線,並隨附操作簡易的工具軟體。

從:Algocraft
硬體程式設計工具

C-GANG — 適用於獨立式與整合式快閃且快速可靠的 gang 編程解決方案

C-GANG 是一款低成本的 gang 程式設計工具,可同時編程多達六個相同的目標。本產品相容於各種 TI 微控制器,包括 MSPM0、MSP430 及 C2000 裝置。

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硬體程式設計工具

OPTEEQ-3P-SG400-SERIES — OPTEEQ SG400 系列通用型在板量產燒錄器

OPTEEQ Technologies 是擁有十多年半導體晶片燒錄深厚專業知識的市場領導者。OPTEEQ SG400E 燒錄器提供 1-32 通道選項。在保留 SG400 系列高穩定性與超快燒錄速度的同時,它透過全新設計的獨立電源系統滿足客戶的多樣化應用場景。同時新增 VCC/VPP 快速放電電路與雙過載保護電路,使其成為汽車電子、工業控制與其他行業中 PCB 大量生產與測試的理想選擇,幫助客戶達成百萬級晶片燒錄零缺陷的目標。

軟體開發套件 (SDK)

C2000WARE C2000Ware for C2000 Microcontrollers

C2000Ware is a cohesive set of software and documentation created to minimize development time. It includes device-specific drivers, libraries, and peripheral examples.

  • Hardware design schematics, BOM, gerber files, and documentation for C2000 controlCARDS, Experimenter Kits, and LaunchPads.
  • (...)
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軟體開發套件 (SDK)

C2000WARE-DIGITALPOWER-SDK DigitalPower SDK for C2000 Real-time Controllers

    • DigitalPower SDK for C2000™ microcontrollers (MCU) is a cohesive set of software infrastructure, tools, and documentation designed to minimize C2000 MCU based digital power system development time targeted for various AC-DC, DC-DC and DC-AC power supply applications. The software includes (...)
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軟體開發套件 (SDK)

C2000WARE-MOTORCONTROL-SDK MotorControl software development kit (SDK) for C2000™ MCUs

MotorControl SDK for C2000™ microcontrollers (MCU) is a cohesive set of software infrastructure, tools, and documentation designed to minimize C2000 real-time controller based motor control system development time targeted for various three-phase motor control applications. The software (...)

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快速入門

TI-DEVELOPER-ZONE Start embedded development on your desktop or in the cloud

From evaluation to deployment the TI Developer Zone provides a comprehensive range of software, tools and training to ensure that you have everything you need for each stage of the development process.
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IDE、配置、編譯器或偵錯程式

C2000_CLA_SAFETI_CQKIT_RV C2000™ and CLA safety compiler qualification kit (leverages compiler release validations)

The Safety Compiler Qualification Kit was developed to assist customers in qualifying their use of the TI ARM, C6000, C7000 or C2000/CLA C/C++ Compiler to functional safety standards such as IEC 61508 and ISO 26262.

The Safety Compiler Qualification Kit:

  • is free of charge for TI customers
  • does (...)
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IDE、配置、編譯器或偵錯程式

CCSTUDIO Code Composer Studio™ integrated development environment (IDE)

Code Composer Studio is an integrated development environment (IDE) for TI's microcontrollers and processors. It is comprised of a rich suite of tools used to build, debug, analyze and optimize embedded applications. Code Composer Studio is available across Windows®, Linux® and macOS® platforms.

(...)

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IDE、配置、編譯器或偵錯程式

EDGE-AI-STUDIO-MCU Edge AI Studio for Microcontrollers

Edge AI Studio is a collection of graphical and command line tools designed to accelerate edge AI development on TI processors, microcontrollers and radar sensors. Whether developing a proof of concept using a model from the TI Model Zoo or leveraging your own model, Edge AI Studio provides the (...)

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IDE、配置、編譯器或偵錯程式

SYSCONFIG Standalone desktop version of SysConfig

SysConfig is a configuration tool designed to simplify hardware and software configuration challenges to accelerate software development.

SysConfig is available as part of the Code Composer Studio™ integrated development environment as well as a standalone application. Additionally SysConfig (...)

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線上培訓

C28X-ACADEMY C28X-ACADEMY

The C28x Academy is a great resource for developers to learn about C28x-based C2000 real-time microcontrollers. The Academy delivers informational training modules as well as hands-on lab exercises that span a variety of topics.
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作業系統 (OS)

WHIS-3P-SAFERTOS — WITTENSTEIN SAFERTOS 預先認證的安全 RTOS

SAFERTOS® 是專為嵌入式處理器設計的獨特即時作業系統。經 TÜV SÜD 預先認證,符合 IEC 61508 SIL3 與 ISO 26262 ASILD 標準。SAFERTOS® 是由 WHIS 專家團隊專為安全而打造,適用於全球重要安全應用。WHIS 與德州儀器的合作已經超過十年。在此期間,WHIS 已將 SAFERTOS® 移植至各種 TI 處理器,支援所有熱門核心,並可依要求提供其他架構。SAFERTOS® 專為您的特定處理器/編譯器組合量身打造,隨附完整的原始程式碼與設計保證包,可完全一目了然整個設計生命週期。許多 WHIS 客戶開始使用 FreeRTOS (...)
軟體程式設計工具

C2000-C-GANG-SW C-GANG Programmer Support Software - C2000 - From Elprotronics, Inc.

Support Software
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軟體程式設計工具

PLEXIM-3P-PLECS-CODER — 具有 TI C2000 目標支援套件的 Plexim PLECS Coder

配備 TI C2000 目標支援套件的 PLECS Coder,簡化了電力電子和電力驅動應用的 C2000 微控制器編程程序。PLECS Coder 旨在讓嵌入式軟體開發容易取得並提升效率,彌補控制設計與硬體實作之間的差距。無論您是經驗豐富的開發人員,或是微控制器編程新手,PLECS Coder 都能以最快方式將控制電路圖轉換為有效的 MCU 程式碼。這包括以標準 PLECS 函式庫元件建置的使用者定義控制演算法本身之程式碼,以及感測、致動及通訊所需的各種晶片內建週邊設備和通訊協定介面配置。除了直接從 PLECS 對目標裝置進行編程外,還可以建置為範本 Coder Composer (...)
從:Plexim GmbH
軟體程式設計工具

UNIFLASH UniFlash for most TI microcontrollers (MCUs) and mmWave sensors

UniFlash is a software tool for programming on-chip flash on TI microcontrollers and wireless connectivity devices and on-board flash for TI processors. UniFlash provides both graphical and command-line interfaces.

UniFlash can be run from the cloud on the TI Developer Zone or downloaded and used (...)

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模擬型號

TMS320F28P55x BSDL Files

SPRM852.ZIP (14 KB) - BSDL Model
模擬型號

TMS320F28P55x IBIS Model (Rev. A)

SPRM853A.ZIP (971 KB) - IBIS Model
設計工具

CDNS-3P-MIDAS-SAFETY — MIDAS Safety Platform and Report Creator

The Midas Safety Platform provides early phase exploration of functional safety architectures and leverages native chip design data to perform accurate safety analysis efficiently. The platform is a unified solution available across Cadence products, and with its modular architecture, it supports (...)
參考設計

TIDA-010938 — 具有電池儲能系統的 10kW GaN 型單相串列式逆變器參考設計

此參考設計提供以 GaN 為基礎的單相串列式逆變器在電池儲能系統 (BESS) 中實現雙向電源轉換系統的實作概覽。此設計包含兩個串列輸入,每個輸入可處理多達 10 塊串聯光電 (PV) 面板,並配備可處理 50V 至 500V 電池組的儲能系統連接埠。從串列輸入至 BESS 的額定功率高達 10kW。可配置 DC-AC 轉換器,可在 230V 下支援高達 4.6kW 的單相電網連接。在單一 C2000™ MCU 上執行三個功率級的數位控制。
Design guide: PDF
參考設計

TIDA-010957 — 15kW、雙向、三相帶中性線之基於氮化鎵的飛馳電容器參考設計

此參考設計提供了一個設計範本,用於實現基於氮化鎵 (GaN) 的三階層、三相帶中性線飛馳電容器功率級。使用快速切換功率裝置可在同等 125kHz 頻率進行切換、減少濾波器的磁性元件尺寸,以及提升功率級的功率密度。此多階層拓撲結構允許在最高達 900V 的較高直流匯流排電壓下使用 650V 額定功率裝置。電晶體上的較低切換電壓應力減少了切換損耗,從而實現滿功率下 98.9% 的效率。
Design guide: PDF
參考設計

TIDA-010933 — GaN 型 1.6kW、雙向微型逆變器參考設計

此參考設計展示了一款具有儲能功能的四輸入雙向 1.6kW GaN 型微型逆變器。
Design guide: PDF
參考設計

TIDA-010955 — 太陽能應用中適用於機器學習電弧偵測的類比前端參考設計

此參考設計具備類比前端,可在以人工智慧 (AI) 為基礎的太陽能應用中進行 DC 電弧偵測。DC 電弧會對 DC 串列電流造成高頻雜訊。為了偵測電弧頻率,會擷取資料並將資料饋入嵌入式 AI 模型,而該模型會接受識別電弧的訓練。相較於傳統的電弧偵測方法,如此可實現更高的準確度,同時也能減少運算工作量。除了電弧偵測的訊號鏈外,此設計亦提供收集與標示電弧資料的功能,以用於進行嵌入式 AI 模型訓練。此硬體可搭配 TMDSCNCD28P55X (C2000™ F28P55x 裝置的 controlCARD) 運作,亦可搭配 180 針腳連接器中的其他 C2000 controlCARD (...)
Design guide: PDF
參考設計

PMP23547 — GaN 式 8kW 三相圖騰柱功率因數校正和三相 LLC 參考設計

此參考設計為高密度且高效率的 8kW 電源供應器。第一個階段是三角傳導模式 (TCM) 功率因數校正 (PFC) 轉換器,接著是連接 Δ-Δ 的三相電感器 - 電感器 - 電容器 (LLC) 轉換器。兩個功率級均採用 TI 高性能氮化鎵 (GaN) 電源開關來實現。PFC 在零電流偵測 (ZCD) 架構控制機制中採用三相圖騰柱 PFC。控制方法以可變頻率運作,且可在所有操作條件下維持零電壓切換 (ZVS)。此控制透過 TMS320F280039C 高性能微控制器和含整合式 ZCD 感測的 LMG3527R030 GaN 場效應電晶體 (FET) 來執行。轉換器的運作頻率範圍約在 70kHz (...)
Test report: PDF
參考設計

TIDA-010062 — 1-kW、80+ 鈦金,以及 GaN CCM 圖騰柱免橋接 PFC 和半橋接 LLC 搭配 LFU 參考設計

此參考設計是一款數位控制的精巧型 1-kW AC/DC 電源供應器設計,適用於伺服器電源供應器 (PSU) 和電信整流器應用。高效率設計支援兩個主要功率級,包括前端連續導通模式 (CCM) 圖騰柱免橋接功率因數校正 (PFC) 級。PFC 級具備 LMG341x GaN FET 與整合式驅動器,可在廣泛負載範圍中提供增強效率,並可滿足 80 plus 鈦金屬需求。此參考設計還支援 LMG3422 GaN FET 半橋電感-電感電容 (LLC) 隔離式 DC/DC 級,以在 1 kW 時達到 +12-V DC 輸出。兩張控制卡使用 C2000 ™ Piccolo ™微控制器來控制兩個功率級。
Design guide: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
LQFP (PM) 64 Ultra Librarian
LQFP (PZ) 100 Ultra Librarian
TQFP (PDT) 128 Ultra Librarian
TQFP (PNA) 80 Ultra Librarian
VQFN (RSH) 56 Ultra Librarian

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內含資訊:
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  • 產品標記
  • 鉛塗層/球物料
  • MSL 等級/回焊峰值
  • MTBF/FIT 估算值
  • 材料內容
  • 認證摘要
  • 進行中的可靠性監測
內含資訊:
  • 晶圓廠位置
  • 組裝地點

建議產品可能具有與此 TI 產品相關的參數、評估模組或參考設計。

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