產品詳細資料

CPU Arm Cortex-R4F Frequency (MHz) 80 Flash memory (kByte) 128 RAM (kByte) 32 ADC type 1 12-bit SAR Total processing (MIPS) 0.00008 Features CAN, Ethernet, Hercules high-performance microcontroller, SPI, UART UART 1 CAN (#) 2 PWM (Ch) 19 TI functional safety category Functional Safety-Compliant Number of ADC channels 16 SPI 2 Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface CAN, SPI, UART Operating system FreeRTOS Hardware accelerators Floating point unit Edge AI enabled No Nonvolatile memory (kByte) 128 Number of GPIOs 45
CPU Arm Cortex-R4F Frequency (MHz) 80 Flash memory (kByte) 128 RAM (kByte) 32 ADC type 1 12-bit SAR Total processing (MIPS) 0.00008 Features CAN, Ethernet, Hercules high-performance microcontroller, SPI, UART UART 1 CAN (#) 2 PWM (Ch) 19 TI functional safety category Functional Safety-Compliant Number of ADC channels 16 SPI 2 Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface CAN, SPI, UART Operating system FreeRTOS Hardware accelerators Floating point unit Edge AI enabled No Nonvolatile memory (kByte) 128 Number of GPIOs 45
LQFP (PZ) 100 256 mm² (16 mm × 16 mm)
  • High-Performance Microcontroller for Safety-Critical Applications
    • Dual CPUs Running in Lockstep
    • ECC on Flash and RAM Interfaces
    • Built-In Self-Test for CPU and On-Chip RAMs
    • Error Signaling Module With Error Pin
    • Voltage and Clock Monitoring
  • ARM Cortex-R4 32-Bit RISC CPU
    • Efficient 1.66 DMIPS/MHz With 8-Stage Pipeline
    • 8-Region Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
  • Operating Conditions
    • 80-MHz System Clock
    • Core Supply Voltage (VCC): 1.2-V Nominal
    • I/O Supply Voltage (VCCIO): 3.3-V Nominal
    • ADC Supply Voltage (VCCAD): 3.3-V Nominal
  • Integrated Memory
    • 128KB of Program Flash With ECC
    • 32KB of RAM With ECC
    • 16KB of Flash for Emulated EEPROM With ECC
  • Hercules Common Platform Architecture
    • Consistent Memory Map Across Family
    • Real-Time Interrupt (RTI) Timer (OS Timer)
    • 96-Channel Vectored Interrupt Module (VIM)
    • 2-Channel Cyclic Redundancy Checker (CRC)
  • Frequency-Modulated Phase-Locked Loop (FMPLL) With Built-In Slip Detector
  • IEEE 1149.1 JTAG Boundary Scan and ARM CoreSight Components
  • Advanced JTAG Security Module (AJSM)
  • Multiple Communication Interfaces
    • Two CAN Controllers (DCANs)
      • DCAN1 - 32 Mailboxes With Parity Protection
      • DCAN2 - 16 Mailboxes With Parity Protection
      • Compliant to CAN Protocol Version 2.0B
    • Multibuffered Serial Peripheral Interface (MibSPI) Module
      • 128 Words With Parity Protection
    • Two Standard Serial Peripheral Interface (SPI) Modules
    • UART (SCI) Interface With Local Interconnect Network (LIN 2.1) Interface Support
  • Next Generation High-End Timer (N2HET) Module
    • Up to 19 Programmable Pins
    • 128-Word Instruction RAM With Parity Protection
    • Includes Hardware Angle Generator
    • Dedicated High-End Timer Transfer Unit (HTU) With MPU
  • Enhanced Quadrature Encoder Pulse (eQEP) Module
    • Motor Position Encoder Interface
  • 12-Bit Multibuffered Analog-to-Digital Converter (ADC) Module
    • 16 Channels
    • 64 Result Buffers With Parity Protection
  • Up to 45 General-Purpose Input/Output (GPIO) Pins
    • 8 Dedicated Interrupt-Capable GPIO Pins
  • Package
    • 100-Pin Quad Flatpack (PZ) [Green]

All trademarks are the property of their respective owners.

  • High-Performance Microcontroller for Safety-Critical Applications
    • Dual CPUs Running in Lockstep
    • ECC on Flash and RAM Interfaces
    • Built-In Self-Test for CPU and On-Chip RAMs
    • Error Signaling Module With Error Pin
    • Voltage and Clock Monitoring
  • ARM Cortex-R4 32-Bit RISC CPU
    • Efficient 1.66 DMIPS/MHz With 8-Stage Pipeline
    • 8-Region Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
  • Operating Conditions
    • 80-MHz System Clock
    • Core Supply Voltage (VCC): 1.2-V Nominal
    • I/O Supply Voltage (VCCIO): 3.3-V Nominal
    • ADC Supply Voltage (VCCAD): 3.3-V Nominal
  • Integrated Memory
    • 128KB of Program Flash With ECC
    • 32KB of RAM With ECC
    • 16KB of Flash for Emulated EEPROM With ECC
  • Hercules Common Platform Architecture
    • Consistent Memory Map Across Family
    • Real-Time Interrupt (RTI) Timer (OS Timer)
    • 96-Channel Vectored Interrupt Module (VIM)
    • 2-Channel Cyclic Redundancy Checker (CRC)
  • Frequency-Modulated Phase-Locked Loop (FMPLL) With Built-In Slip Detector
  • IEEE 1149.1 JTAG Boundary Scan and ARM CoreSight Components
  • Advanced JTAG Security Module (AJSM)
  • Multiple Communication Interfaces
    • Two CAN Controllers (DCANs)
      • DCAN1 - 32 Mailboxes With Parity Protection
      • DCAN2 - 16 Mailboxes With Parity Protection
      • Compliant to CAN Protocol Version 2.0B
    • Multibuffered Serial Peripheral Interface (MibSPI) Module
      • 128 Words With Parity Protection
    • Two Standard Serial Peripheral Interface (SPI) Modules
    • UART (SCI) Interface With Local Interconnect Network (LIN 2.1) Interface Support
  • Next Generation High-End Timer (N2HET) Module
    • Up to 19 Programmable Pins
    • 128-Word Instruction RAM With Parity Protection
    • Includes Hardware Angle Generator
    • Dedicated High-End Timer Transfer Unit (HTU) With MPU
  • Enhanced Quadrature Encoder Pulse (eQEP) Module
    • Motor Position Encoder Interface
  • 12-Bit Multibuffered Analog-to-Digital Converter (ADC) Module
    • 16 Channels
    • 64 Result Buffers With Parity Protection
  • Up to 45 General-Purpose Input/Output (GPIO) Pins
    • 8 Dedicated Interrupt-Capable GPIO Pins
  • Package
    • 100-Pin Quad Flatpack (PZ) [Green]

All trademarks are the property of their respective owners.

The RM41L232 device is a high-performance microcontroller for safety systems. The safety architecture includes dual CPUs in lockstep, CPU and Memory BIST logic, ECC on both the flash and the data SRAM, parity on peripheral memories, and loopback capability on peripheral I/Os.

The RM41L232 device integrates the ARM Cortex-R4 CPU. The CPU offers an efficient 1.66 DMIPS/MHz, and has configurations that can run up to 80 MHz, providing up to 132 DMIPS. The device operates in little-endian (LE) mode.

The RM41L232 device has 128KB of integrated flash and 32KB of data RAM. Both the flash and RAM have single-bit error correction and double-bit error detection. The flash memory on this device is a nonvolatile, electrically erasable, and programmable memory implemented with a 64-bit-wide data bus interface. The flash operates on a 3.3-V supply input (the same level as I/O supply) for all read, program, and erase operations. When in pipeline mode, the flash operates with a system clock frequency of 80 MHz. The SRAM supports single-cycle read and write accesses in byte, halfword, word, and double-word modes throughout the supported frequency range.

The RM41L232 device features peripherals for real-time control-based applications, including a Next Generation High-End Timer (N2HET) timing coprocessor with up to 19 I/O terminals and a 12-bit Analog-to-Digital Converter (ADC) supporting 16 inputs in the 100-pin package.

The N2HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a small instruction set, with a specialized timer micromachine and an attached I/O port. The N2HET can be used for pulse-width-modulated outputs, capture or compare inputs, or GPIO. The N2HET is especially well suited for applications requiring multiple sensor information and drive actuators with complex and accurate time pulses. A High-End Timer Transfer Unit (HTU) can perform DMA-type transactions to transfer N2HET data to or from main memory. A Memory Protection Unit (MPU) is built into the HTU.

The Enhanced Quadrature Encoder Pulse (eQEP) module is used for direct interface with a linear or rotary incremental encoder to get position, direction, and speed information from a rotating machine as used in high-performance motion and position-control systems.

The device has a 12-bit-resolution MibADC with 16 channels and 64 words of parity-protected buffer RAM. The MibADC channels can be converted individually or can be grouped by software for sequential conversion sequences. There are three separate groupings. Each sequence can be converted once when triggered or configured for continuous conversion mode. The MibADC has a 10-bit mode for use when compatibility with older devices or faster conversion time is desired.

The device has multiple communication interfaces: one MibSPI, two SPIs, one UART/LIN, and two DCANs. The SPI provides a convenient method of serial high-speed communications between similar shift-register type devices. The UART/LIN supports the Local Interconnect standard 2.1 and can be used as a UART in full-duplex mode using the standard Non-Return-to-Zero (NRZ) format. The DCAN supports the CAN 2.0 (A and B) protocol standard and uses a serial, multimaster communication protocol that efficiently supports distributed real-time control with robust communication rates of up to 1 Mbps. The DCAN is ideal for applications operating in noisy and harsh environments (for example, automotive and industrial applications) that require reliable serial communication or multiplexed wiring.

The Frequency-Modulated Phase-Locked Loop (FMPLL) clock module is used to multiply the external frequency reference to a higher frequency for internal use. The FMPLL provides one of the five possible clock source inputs to the Global Clock Module (GCM). The GCM manages the mapping between the available clock sources and the device clock domains.

The device also has an External Clock Prescaler (ECP) module that when enabled, outputs a continuous external clock on the ECLK pin. The ECLK frequency is a user-programmable ratio of the peripheral interface clock (VCLK) frequency. This low-frequency output can be monitored externally as an indicator of the device operating frequency.

The Error Signaling Module (ESM) monitors all device errors and determines whether an interrupt is generated or the external nERROR pin is toggled when a fault is detected. The nERROR pin can be monitored externally as an indicator of a fault condition in the microcontroller.

The I/O Multiplexing and Control Module (IOMM) allows the configuration of the input/output pins to support alternate functions. See for a list of the pins that support multiple functions on this device.

With integrated safety features and a wide choice of communication and control peripherals, the RM41L232 device is an ideal solution for real-time control applications with safety-critical

The RM41L232 device is a high-performance microcontroller for safety systems. The safety architecture includes dual CPUs in lockstep, CPU and Memory BIST logic, ECC on both the flash and the data SRAM, parity on peripheral memories, and loopback capability on peripheral I/Os.

The RM41L232 device integrates the ARM Cortex-R4 CPU. The CPU offers an efficient 1.66 DMIPS/MHz, and has configurations that can run up to 80 MHz, providing up to 132 DMIPS. The device operates in little-endian (LE) mode.

The RM41L232 device has 128KB of integrated flash and 32KB of data RAM. Both the flash and RAM have single-bit error correction and double-bit error detection. The flash memory on this device is a nonvolatile, electrically erasable, and programmable memory implemented with a 64-bit-wide data bus interface. The flash operates on a 3.3-V supply input (the same level as I/O supply) for all read, program, and erase operations. When in pipeline mode, the flash operates with a system clock frequency of 80 MHz. The SRAM supports single-cycle read and write accesses in byte, halfword, word, and double-word modes throughout the supported frequency range.

The RM41L232 device features peripherals for real-time control-based applications, including a Next Generation High-End Timer (N2HET) timing coprocessor with up to 19 I/O terminals and a 12-bit Analog-to-Digital Converter (ADC) supporting 16 inputs in the 100-pin package.

The N2HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a small instruction set, with a specialized timer micromachine and an attached I/O port. The N2HET can be used for pulse-width-modulated outputs, capture or compare inputs, or GPIO. The N2HET is especially well suited for applications requiring multiple sensor information and drive actuators with complex and accurate time pulses. A High-End Timer Transfer Unit (HTU) can perform DMA-type transactions to transfer N2HET data to or from main memory. A Memory Protection Unit (MPU) is built into the HTU.

The Enhanced Quadrature Encoder Pulse (eQEP) module is used for direct interface with a linear or rotary incremental encoder to get position, direction, and speed information from a rotating machine as used in high-performance motion and position-control systems.

The device has a 12-bit-resolution MibADC with 16 channels and 64 words of parity-protected buffer RAM. The MibADC channels can be converted individually or can be grouped by software for sequential conversion sequences. There are three separate groupings. Each sequence can be converted once when triggered or configured for continuous conversion mode. The MibADC has a 10-bit mode for use when compatibility with older devices or faster conversion time is desired.

The device has multiple communication interfaces: one MibSPI, two SPIs, one UART/LIN, and two DCANs. The SPI provides a convenient method of serial high-speed communications between similar shift-register type devices. The UART/LIN supports the Local Interconnect standard 2.1 and can be used as a UART in full-duplex mode using the standard Non-Return-to-Zero (NRZ) format. The DCAN supports the CAN 2.0 (A and B) protocol standard and uses a serial, multimaster communication protocol that efficiently supports distributed real-time control with robust communication rates of up to 1 Mbps. The DCAN is ideal for applications operating in noisy and harsh environments (for example, automotive and industrial applications) that require reliable serial communication or multiplexed wiring.

The Frequency-Modulated Phase-Locked Loop (FMPLL) clock module is used to multiply the external frequency reference to a higher frequency for internal use. The FMPLL provides one of the five possible clock source inputs to the Global Clock Module (GCM). The GCM manages the mapping between the available clock sources and the device clock domains.

The device also has an External Clock Prescaler (ECP) module that when enabled, outputs a continuous external clock on the ECLK pin. The ECLK frequency is a user-programmable ratio of the peripheral interface clock (VCLK) frequency. This low-frequency output can be monitored externally as an indicator of the device operating frequency.

The Error Signaling Module (ESM) monitors all device errors and determines whether an interrupt is generated or the external nERROR pin is toggled when a fault is detected. The nERROR pin can be monitored externally as an indicator of a fault condition in the microcontroller.

The I/O Multiplexing and Control Module (IOMM) allows the configuration of the input/output pins to support alternate functions. See for a list of the pins that support multiple functions on this device.

With integrated safety features and a wide choice of communication and control peripherals, the RM41L232 device is an ideal solution for real-time control applications with safety-critical

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重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* 資料表 RM41L232 16- and 32-Bit RISC Flash Microcontroller datasheet (Rev. A) PDF | HTML 2015/6/30
* 使用指南 RM41Lx 16/32-Bit RISC Flash Microcontroller Technical Reference Manual (Rev. B) 2018/3/1
* 勘誤表 RM41L232 Microcontroller Silicon Errata (Silicon Revision B) (Rev. A) 2016/5/31
* 勘誤表 RM41L232 Microcontroller Silicon Errata (Silicon Revision A) (Rev. C) 2016/5/31
功能安全資訊 Certification for Functional Safety Hardware Process (Rev. C) 2025/6/6
功能安全資訊 Hercules Diagnostic Library -TAU Installation Guide (Rev. B) PDF | HTML 2020/1/8
使用指南 Hercules Diagnostic Library CSP Without LDRA 2019/10/29
更多文件說明 Diagnostic Library CSP Release Notes 2019/10/17
功能安全資訊 SafeTI™ Hercules™ Diagnostic Library Release Notes (Rev. A) 2019/9/24
應用說明 Hercules PLL Advisory SSWF021#45 Workaround (Rev. B) PDF | HTML 2019/9/9
應用說明 CAN Bus Bootloader for Hercules Microcontrollers PDF | HTML 2019/8/21
應用說明 Interfacing the Embedded 12-Bit ADC in a TMS570LS31x/21x and RM4x Series MCUs (Rev. A) 2018/4/20
應用說明 FreeRTOS on Hercules Devices_new 2018/4/19
應用說明 Sharing FEE Blocks Between the Bootloader and the Application 2017/11/7
應用說明 Sharing Exception Vectors on Hercules™ Based Microcontrollers 2017/3/27
應用說明 Hercules AJSM Unlock (Rev. A) PDF | HTML 2016/10/19
應用說明 How to Create a HALCoGen Based Project For CCS (Rev. B) 2016/8/9
應用說明 Using the CRC Module on Hercules™-Based Microcontrollers 2016/8/4
應用說明 Using the SPI as an Extra UART Transmitter 2016/7/26
功能安全資訊 Functional Safety Audit: SafeTI Functional Safety Hardware Development (Rev. A) 2016/4/25
應用說明 High Speed Serial Bus Using the MibSPIP Module on Hercules-Based MCUs 2016/4/22
證書 TUEV SUED Certification for RM42x (Rev. A) 2016/2/18
功能安全資訊 Enabling Functional Safety Using SafeTI Diagnostic Library 2015/12/18
白皮書 Hercules™ MCU: Features Applicable to Use in High-Speed Rail 2015/11/2
功能安全資訊 Safety Manual for RM42x/41x Hercules ARM-Based Safety Critical MCUs (Rev. B) 2015/10/26
白皮書 Extending TI’s Hercules MCUs with the integrated flexible HET 2015/9/29
白皮書 How to improve system availability and minimize down time with Hercules™ MCUs? 2015/9/3
應用說明 PWM Generation and Input Capture Using HALCoGen N2HET Module 2015/6/30
應用說明 Sine Wave Generation Using PWM With Hercules N2HET and HTU 2015/5/12
功能安全資訊 Foundational Software for Functional Safety 2015/5/12
應用說明 Triangle/Trapezoid Wave Generation Using PWM With Hercules N2HET 2015/5/1
應用說明 Nested Interrupts on Hercules ARM Cortex-R4/5-Based Microncontrollers 2015/4/23
白皮書 Latch-Up White Paper PDF | HTML 2015/4/22
應用說明 Interrupt and Exception Handling on Hercules ARM Cortex-R4/5-Based MCUs 2015/4/20
應用說明 Monitoring PWM Using N2HET 2015/4/2
應用說明 Hercules SCI With DMA 2015/3/22
證書 TÜV NORD Certificate for Functional Safety Software Development Process 2015/2/3
功能安全資訊 Calculating Equivalent Power-on-Hours for Hercules Safety MCUs 2015/1/26
應用說明 Limiting Clamp Currents on TMS470/TMS570 Digital and Analog Inputs (Rev. A) 2014/12/8
功能安全資訊 Migrating from RM48x or RM46x to RM42x Safety MCUs (Rev. A) 2014/9/22
更多文件說明 HaLCoGen Release Notes 2014/6/25
應用說明 Interfacing TPS65381 With Hercules Microcontrollers (Rev. A) 2014/2/14
功能安全資訊 IEC 60730 and UL 1998 Safety Standard Compliance Made Easier with TI Hercules 2013/10/3
應用說明 CAN Bus Bootloader for RM42 MCU 2013/9/16
應用說明 SPI Bootloader for Hercules RM42 MCU 2013/9/16
應用說明 UART Bootloader for Hercules RM42 MCU 2013/9/16
功能安全資訊 Accelerating safety-certified motor control designs (Rev. A) 2012/10/4
應用說明 Initialization of the TMS570LS043x, 570LS033x & RM42L432 Hercules ARM Cortex-R4 2012/9/26
使用指南 RM42x Hercules Development Kit (HDK) User's Guide 2012/9/14
應用說明 Hercules Family Frequency Slewing to Reduce Voltage and Current Transients 2012/7/5
應用說明 Basic PBIST Configuration and Influence on Current Consumption (Rev. C) 2012/4/12
應用說明 Verification of Data Integrity Using CRC 2012/2/17
功能安全資訊 Important ARM Ltd Application Notes for TI Hercules ARM Safety MCUs 2011/11/17
使用指南 HET Integrated Development Environment User's Guide (Rev. A) 2011/11/17
功能安全資訊 Execution Time Measurement for Hercules ARM Safety MCUs (Rev. A) 2011/11/4
應用說明 Use of All 1'’s and All 0's Valid in Flash EEPROM Emulation 2011/9/27
應用說明 3.3 V I/O Considerations for Hercules Safety MCUs (Rev. A) 2011/9/6
功能安全資訊 ADC Source Impedance for Hercules ARM Safety MCUs (Rev. B) 2011/9/6
功能安全資訊 Leveraging the High-End Timer Transfer Unit on Hercules ARM Safety MCUs (Rev. A) 2011/9/6
功能安全資訊 Configuring a CAN Node on Hercules ARM Safety MCUs 2011/9/6
功能安全資訊 Configuring the Hercules ARM Safety MCU SCI/LIN Module for UART Communication (Rev. A) 2011/9/6
功能安全資訊 Hercules™ Microcontrollers: Real-time MCUs for safety-critical products 2011/9/2
應用說明 ECC Handling in TMSx70-Based Microcontrollers 2011/2/23
使用指南 TI ICEPick Module Type C Reference Guide Public Version 2011/2/17
應用說明 NHET Getting Started (Rev. B) 2010/8/30
功能安全資訊 Generating Operating System Tick Using RTI on a Hercules ARM Safety MCU 2010/7/13
功能安全資訊 Usage of MPU Subregions on TI Hercules ARM Safety MCUs 2010/3/10
使用指南 TI Assembly Language Tools Enhanced High-End Timer (NHET) Assembler User's Guide 2010/3/4
白皮書 Discriminating between Soft Errors and Hard Errors in RAM White Paper 2008/6/4

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開發套件

LAUNCHXL-RM42 — Hercules RM42x LaunchPad 開發套件

The Hercules™ RM42 LaunchPad™ is an inexpensive evaluation platform designed to help users evaluate and get started on development with Hercules microcontroller platform. The Launchpad Development Kit is based on the IEC 61508 SIL 3 certified RM42L432, which is a dual core lock-step ARM® (...)

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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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TMDSEMU560V2STM-U — XDS560™ 軟體 v2 系統追蹤 USB 偵錯探測器

XDS560v2 是 XDS560™ 系列偵錯探測器中性能最高的,且同時支援傳統 JTAG 標準 (IEEE1149.1) 與 cJTAG (IEEE1149.7)。  請注意,其不支援序列線偵錯 (SWD)。

所有 XDS 偵錯探測器均在所有配備嵌入式追蹤緩衝器 (ETB) 的 ARM 與 DSP 處理器中支援核心與系統追蹤。  對於針腳上的追蹤,則需要 XDS560v2 PRO TRACE

XDS560v2 透過 MIPI HSPT 60 針腳接頭 (具有用於 TI 14 針腳、TI 20 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 高速 (...)

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TMDSEMU560V2STM-UE — XDS560v2 System Trace USB 與乙太網路偵錯探測器

The XDS560v2 is the highest performance of the XDS560™ family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7). Note that it does not support serial wire debug (SWD).

All XDS debug probes support Core and System Trace in all ARM and DSP processors (...)

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LB-3P-TRACE32-ARM — 適用於 Arm® 架構微控制器和處理器的 Lauterbach TRACE32® 偵錯和追蹤系統

Lauterbach 的 TRACE32® 工具是一套先進的軟硬體元件,可讓開發人員分析、最佳化及認證各種 Arm® 架構微控制器和處理器。全球知名的嵌入式系統和 SoC 偵錯和追蹤解決方案是完美的解決方案,適用於從早期的矽前 (pre-silicon) 開發,到產品認證和現場故障排除等所有開發階段。Lauterbach 工具的直覺模組化設計為工程師提供現今最高的可用性能,以及可隨需求變化而調整和成長的系統。藉由 TRACE32® 偵錯器,開發人員也可透過單一偵錯介面,同時偵錯和控制 SoC 中的任何 C28x/C29x/C6x/C7x DSP 核心及所有其他 Arm (...)

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CCSTUDIO — Code Composer Studio™ integrated development environment (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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HALCOGEN — HAL 程式碼產生器工具 - TMS570 (v4.07.01)

HALCoGen allows users to generate hardware abstraction layer device drivers for Hercules™ microcontrollers. HALCoGen provides a graphical user interface that allows the user to configure peripherals, interrupts, clocks, and other Hercules microcontroller parameters. Once the Hercules device (...)

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HET_IDE — 高階計時器 (HET)

The High-End Timer (HET) is a programmable timer co-processor available on TI’s high-performance Hercules Microcontrollers. The HET enables sophisticated timing functions for real-time control applications. Programming the HET provides an alternate approach to the use of costly FPGAs or ASICs which (...)

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SAFETI-HERCULES-DIAG-LIB-CSP — 適用於 Hercules Diagnostic Library 的 SafeTI 合規性支援套件

The SafeTI Hercules Diagnostic Library Compliance Support Package (CSP) was developed to provide the necessary documentation and reports to assist customers using the SafeTI Hercules Diagnostic Library to comply with functional safety standards such as IEC 61508 and ISO 26262.

lock = 需要匯出核准 (1 分鐘)
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IDE、配置、編譯器或偵錯程式

SAFETI_CQKIT — 安全編譯器資格套件

開發安全編譯器資格認證套件是為了協助客戶對 TI ARM、C6000、C7000 或 C2000/CLA C/C++ 編譯器的使用進行認證,以確保符合功能安全標準,如 IEC 61508 和 ISO 26262。

安全編譯器資格認證套件:

  • 對 TI 客戶免費
  • 不需要使用者進行資格測試
  • 支援編譯器覆蓋範圍分析*
    • * 覆蓋範圍資料收集的說明可從每個 QKIT 下載頁面下載。
  • 不包括 Validas 諮詢

如需存取安全編譯器資格認證套件,請按一下上面其中一個索取按鈕。

如需進一步了解功能安全產品,請造訪 (...)

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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 (...)

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驅動程式或資料庫

HERCULES-DSPLIB — Hercules Safety MCU Cortex-R4 CMSIS DSP Library (v1.0.0)

TI 的 Cortex-R4 DSP 函式庫符合 ARM 的 Cortex 微控制器軟體介面標準 (CMSIS),這是一套適用 Cortex 處理器系列的標準化硬體抽象層。CMSIS-DSP 函式庫包含 60 種以上函式,內容涵蓋向量運算、矩陣運算、複數運算、濾波器函式、控制函式、PID 控制器、傅立葉轉換及許多其他常用 DSP 演算法。大多數演算法皆提供浮點及各種定點格式,並針對 Cortex-R 系列處理器進行最佳化。Cortex-R4 處理器實作使用 ARM DSP SIMD(單指令多資料)指令集和浮點硬體,充分發揮 Cortex-R4 (...)
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驅動程式或資料庫

SAFETI_DIAG_LIB — Hercules SafeTI Diagnostic Library (v2.4.0)

The Hercules SafeTI™ Diagnostic Library is a collection of software functions and response handlers for various safety features of the Hercules Safety MCUs. The Hercules SafeTI Diagnostic Library runs in the context of the caller's protection environment and all responses are handled in the (...)

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軟體程式設計工具

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

UniFlash 是 TI 龐大 CCStudio™ 開發生態系統的一部分,是一款用於在 TI 微控制器與無線連線裝置上對晶片內快閃記憶體進行燒錄,以及在 TI 處理器上對板載快閃記憶體進行燒錄的軟體工具。UniFlash 提供圖形化介面與命令行介面,並可在桌面上或雲端中執行。

UniFlash 可從 CCStudio 開發人員區上的雲端執行,或在下載後於 Windows®、Linux® 和 macOS® 電腦中使用。

請注意,mmWave、AMx、K2G 和 J7 裝置不支援 macOS。AMx、K2G 和 J7 裝置僅於命令列上支援。

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支援軟體

HERCULES-F021FLASHAPI — F021 Flash API - Software (v02.01.01)

The F021 Flash Application Programming Interface (API) provides a software library of functions to program, erase, and verify F021 on-chip Flash memory. These functions must be used when creating Flash bootloaders or other programming utilities for F021 Flash based microcontrollers. The Hercules (...)

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支援軟體

HERCULES_SAFETY_MCU_DEMOS — Hercules Software Kit (v4.0.0)

Hercules 安全 MCU 示範旨在強調 Hercules 微控制器平台的主要安全、資料擷取及控制功能。示範可搭配 Hercules USB Development Sick 或 Hercules 開發套件 (HDK) 在 PC 上執行。
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支援軟體

NHET-ASSEMBLER — TMS570 NHET Assembler Software (v2.0.1)

TI's Enhanced High-End Timer (NHET) module provides sophisticated timing functions for real-time control applications.

The NHET Assembler translates programs written in the NHET assembly language into multiple output formats for use in code-generation tools such as TI's Code Composer Studio.

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支援軟體

NOWECC — TMS570 nowECC v2.22.00

The Hercules microcontroller family contains as part of the embedded flash module a circuit that provides, the capability to detect and correct memory faults. This Single bit Error Correction and Double bit Error Detection circuit (SECDED) needs 8 Error correction check bits for every 64 bit of (...)
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模擬型號

RM41L232 PZ BSDL Model

SPNM051.ZIP (5 KB) - BSDL 模型
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計算工具

FMZPLL_CALCULATOR — FMzPLL 配置工具

The FMzPLL Calculator assists a user with the configuration of the FMzPLL on TMS570 microcontrollers. It allows the user to input:
  • OSCIN speed
  • multiplier setting
  • divider settings
  • frequency modulation settings
  • PLL/OSC fail options
Once the user has configured the desired options, the calculator displays (...)
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參考設計

TIDA-00548 — 適用於安全應用的 4-20mA 類比輸入模組參考設計

TIDA-00548 是一款具備隔離的雙通道 4 至 20mA 類比輸入參考設計,可用作功能安全可程式化邏輯控制器 (PLC) 的一部分。此參考設計透過一顆 32 位元高效能類比數位轉換器 (ADC) 輸出數位化的輸入值。採用 RM4x 雙核心 ARM® Cortex®-R4 架構的 CPU,具備 lockstep 技術與內建自我測試 (BIST),可比對最多九組可選類比輸入訊號鏈路的轉換值。雙輸入架構搭配兩組獨立的負載電阻,支援冗餘測量單一路 4 至 20mA 電流迴路,或測量兩組獨立的電流迴路。Hercules™ RM 系列 ARM Cortex-R (...)
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參考設計

TIDA-010049 — 適用於 IEC 61508 的 TUV 評估數位輸入參考設計 (SIL-2)

此 8 通道群組隔離式數位輸入模組參考設計,專為具備工業功能安全需求的應用而設計。此設計內建診斷功能,可協助偵測永久性與瞬態隨機硬體故障。此輸入模組的設計概念已通過 TUEV SUED (TÜV SÜD) 評估,可協助設計人員符合 IEC61508-2:2010 (SIL2) 和 EN13849-1:2015 (Cat2 PLd) 的系統合規性要求。此外,此設計具有 0(1oo1D 架構)的硬體容錯 (HFT) ,以及符合 IEC61131-2(類型 1)建議的數位輸入。
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封裝 針腳 CAD 符號、佔位空間與 3D 模型
LQFP (PZ) 100 Ultra Librarian

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