RM46L440

ACTIVO

MCU Flash RISC EMAC de 16/32 bits Cortex R4F

Detalles del producto

CPU Arm Cortex-R4F Frequency (MHz) 200 Flash memory (kByte) 1024 RAM (kByte) 128 ADC type 2 12-bit MibADC Total processing (MIPS) 0.0002 Features CAN, Ethernet, Hercules high-performance microcontroller, SPI, UART UART 2 CAN (#) 3 PWM (Ch) 54, 58 TI functional safety category Functional Safety-Compliant Number of ADC channels 24 SPI 1, 2 Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface CAN, SPI, UART Operating system FreeRTOS, SafeRTOS Hardware accelerators Floating point unit Edge AI enabled No Nonvolatile memory (kByte) 1024 Number of GPIOs 64, 101
CPU Arm Cortex-R4F Frequency (MHz) 200 Flash memory (kByte) 1024 RAM (kByte) 128 ADC type 2 12-bit MibADC Total processing (MIPS) 0.0002 Features CAN, Ethernet, Hercules high-performance microcontroller, SPI, UART UART 2 CAN (#) 3 PWM (Ch) 54, 58 TI functional safety category Functional Safety-Compliant Number of ADC channels 24 SPI 1, 2 Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface CAN, SPI, UART Operating system FreeRTOS, SafeRTOS Hardware accelerators Floating point unit Edge AI enabled No Nonvolatile memory (kByte) 1024 Number of GPIOs 64, 101
LQFP (PGE) 144 484 mm² (22 mm × 22 mm) NFBGA (ZWT) 337 256 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 (BIST) for CPU and On-chip RAMs
    • Error Signaling Module With Error Pin
    • Voltage and Clock Monitoring
  • ARM Cortex-R4F 32-Bit RISC CPU
    • 1.66 DMIPS/MHz With 8-Stage Pipeline
    • FPU With Single- and Double-Precision
    • 12-Region Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
  • Operating Conditions
    • Up to 200-MHz System Clock
    • Core Supply Voltage (VCC): 1.14 to 1.32 V
    • I/O Supply Voltage (VCCIO): 3.0 to 3.6 V
  • Integrated Memory
    • 1.25MB of Program Flash With ECC (RM46L840)
    • 1MB of Program Flash With ECC (RM46L440)
    • 192KB of RAM With ECC (RM46L840)
    • 128KB of RAM With ECC (RM46L440)
    • 64KB of Flash for Emulated EEPROM With ECC
  • 16-Bit External Memory Interface (EMIF)
  • Common Platform Architecture
    • Consistent Memory Map Across Family
    • Real-Time Interrupt (RTI) Timer (OS Timer)
    • 128-Channel Vectored Interrupt Module (VIM)
    • 2-Channel Cyclic Redundancy Checker (CRC)
  • Direct Memory Access (DMA) Controller
    • 16 Channels and 32 Peripheral Requests
    • Parity Protection for Control Packet RAM
    • DMA Accesses Protected by Dedicated MPU
  • Frequency-Modulated Phase-Locked Loop (FMPLL) With Built-In Slip Detector
  • Separate Nonmodulating PLL
  • IEEE 1149.1 JTAG, Boundary Scan and ARM CoreSight Components
  • Advanced JTAG Security Module (AJSM)
  • Calibration Capabilities
    • Parameter Overlay Module (POM)
  • 16 General-Purpose Input/Output (GPIO) Pins Capable of Generating Interrupts
  • Enhanced Timing Peripherals for Motor Control
    • 7 Enhanced Pulse Width Modulator (ePWM) Modules
    • 6 Enhanced Capture (eCAP) Modules
    • 2 Enhanced Quadrature Encoder Pulse (eQEP) Modules
  • Two Next Generation High-End Timer (N2HET) Modules
    • N2HET1: 32 Programmable Channels
    • N2HET2: 18 Programmable Channels
    • 160-Word Instruction RAM Each With Parity Protection
    • Each N2HET Includes Hardware Angle Generator
    • Dedicated High-End Timer Transfer Unit (HTU) for Each N2HET
  • Two 12-Bit Multibuffered Analog-to-Digital Converter (MibADC) Modules
    • ADC1: 24 Channels
    • ADC2: 16 Channels Shared With ADC1
    • 64 Result Buffers Each With Parity Protection
  • Multiple Communication Interfaces
    • 10/100 Mbps Ethernet MAC (EMAC)
      • IEEE 802.3 Compliant (3.3-V I/O Only)
      • Supports MII, RMII, and MDIO
    • Three CAN Controllers (DCANs)
      • 64 Mailboxes Each With Parity Protection
      • Compliant to CAN Protocol Version 2.0A and 2.0B
    • Inter-Integrated Circuit (I2C)
    • Three Multibuffered Serial Peripheral Interface (MibSPI) Modules
      • 128 Words Each With Parity Protection
      • 8 Transfer Groups
    • Up to Two Standard Serial Peripheral Interface (SPI) Modules
    • Two UART (SCI) Interfaces, One With Local Interconnect Network (LIN 2.1) Interface Support
  • Packages
    • 144-Pin Quad Flatpack (PGE) [Green]
    • 337-Ball Grid Array (ZWT) [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 (BIST) for CPU and On-chip RAMs
    • Error Signaling Module With Error Pin
    • Voltage and Clock Monitoring
  • ARM Cortex-R4F 32-Bit RISC CPU
    • 1.66 DMIPS/MHz With 8-Stage Pipeline
    • FPU With Single- and Double-Precision
    • 12-Region Memory Protection Unit (MPU)
    • Open Architecture With Third-Party Support
  • Operating Conditions
    • Up to 200-MHz System Clock
    • Core Supply Voltage (VCC): 1.14 to 1.32 V
    • I/O Supply Voltage (VCCIO): 3.0 to 3.6 V
  • Integrated Memory
    • 1.25MB of Program Flash With ECC (RM46L840)
    • 1MB of Program Flash With ECC (RM46L440)
    • 192KB of RAM With ECC (RM46L840)
    • 128KB of RAM With ECC (RM46L440)
    • 64KB of Flash for Emulated EEPROM With ECC
  • 16-Bit External Memory Interface (EMIF)
  • Common Platform Architecture
    • Consistent Memory Map Across Family
    • Real-Time Interrupt (RTI) Timer (OS Timer)
    • 128-Channel Vectored Interrupt Module (VIM)
    • 2-Channel Cyclic Redundancy Checker (CRC)
  • Direct Memory Access (DMA) Controller
    • 16 Channels and 32 Peripheral Requests
    • Parity Protection for Control Packet RAM
    • DMA Accesses Protected by Dedicated MPU
  • Frequency-Modulated Phase-Locked Loop (FMPLL) With Built-In Slip Detector
  • Separate Nonmodulating PLL
  • IEEE 1149.1 JTAG, Boundary Scan and ARM CoreSight Components
  • Advanced JTAG Security Module (AJSM)
  • Calibration Capabilities
    • Parameter Overlay Module (POM)
  • 16 General-Purpose Input/Output (GPIO) Pins Capable of Generating Interrupts
  • Enhanced Timing Peripherals for Motor Control
    • 7 Enhanced Pulse Width Modulator (ePWM) Modules
    • 6 Enhanced Capture (eCAP) Modules
    • 2 Enhanced Quadrature Encoder Pulse (eQEP) Modules
  • Two Next Generation High-End Timer (N2HET) Modules
    • N2HET1: 32 Programmable Channels
    • N2HET2: 18 Programmable Channels
    • 160-Word Instruction RAM Each With Parity Protection
    • Each N2HET Includes Hardware Angle Generator
    • Dedicated High-End Timer Transfer Unit (HTU) for Each N2HET
  • Two 12-Bit Multibuffered Analog-to-Digital Converter (MibADC) Modules
    • ADC1: 24 Channels
    • ADC2: 16 Channels Shared With ADC1
    • 64 Result Buffers Each With Parity Protection
  • Multiple Communication Interfaces
    • 10/100 Mbps Ethernet MAC (EMAC)
      • IEEE 802.3 Compliant (3.3-V I/O Only)
      • Supports MII, RMII, and MDIO
    • Three CAN Controllers (DCANs)
      • 64 Mailboxes Each With Parity Protection
      • Compliant to CAN Protocol Version 2.0A and 2.0B
    • Inter-Integrated Circuit (I2C)
    • Three Multibuffered Serial Peripheral Interface (MibSPI) Modules
      • 128 Words Each With Parity Protection
      • 8 Transfer Groups
    • Up to Two Standard Serial Peripheral Interface (SPI) Modules
    • Two UART (SCI) Interfaces, One With Local Interconnect Network (LIN 2.1) Interface Support
  • Packages
    • 144-Pin Quad Flatpack (PGE) [Green]
    • 337-Ball Grid Array (ZWT) [Green]

All trademarks are the property of their respective owners.

The RM46Lx40 device is a high-performance microcontroller family 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 RM46Lx40 device integrates the ARM Cortex-R4F floating-point CPU which offers an efficient 1.66 DMIPS/MHz, and can run up to 200 MHz providing up to 332 DMIPS. The device supports the little-endian [LE] format.

The RM46L840 device has 1.25MB of integrated flash and 192KB of data RAM with single-bit error correction and double-bit error detection. The RM46L440 device has 1MB of integrated flash and 128KB of data RAM with 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 (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 up to 200 MHz. The SRAM supports single-cycle read and write accesses in byte, halfword, word, and double-word modes throughout the supported frequency range.

The RM46Lx40 device features peripherals for real-time control-based applications, including two Next Generation High-End Timer (N2HET) timing coprocessors with up to 44 I/O terminals, seven Enhanced Pulse Width Modulator (ePWM) modules with up to 14 outputs, six Enhanced Capture (eCAP) modules, two Enhanced Quadrature Encoder Pulse (eQEP) modules, and two 12-bit Analog-to-Digital Converters (ADCs) supporting up to 24 inputs.

The N2HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a reduced 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 general-purpose I/O (GIO). 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 ePWM module can generate complex pulse width waveforms with minimal CPU overhead or intervention. The ePWM is easy to use and it supports both high-side and low-side PWM and deadband generation. With integrated trip zone protection and synchronization with the on-chip MibADC, the ePWM module is ideal for digital motor control applications.

The eCAP module is essential in systems where the accurately timed capture of external events is important. The eCAP can also be used to monitor the ePWM outputs or for simple PWM generation when the eCAP is not needed for capture applications.

The 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 two 12-bit-resolution MibADCs with 24 total inputs and 64 words of parity-protected buffer RAM each. The MibADC channels can be converted individually or can be grouped by software for sequential conversion sequences. Sixteen inputs are shared between the two MibADCs. Each MibADC supports three separate groupings of channels. Each group 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. MibADC1 also supports the use of external analog multiplexers.

The device has multiple communication interfaces: three MibSPIs, two SPIs, one LIN, one SCI, three DCANs, one I2C, and one Ethernet. The SPI provides a convenient method of serial high-speed communications between similar shift-register type devices. The LIN supports the Local Interconnect standard 2.0 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 systems operating in noisy and harsh environments (for example, automotive and industrial fields) that require reliable serial communication or multiplexed wiring. The Ethernet module supports MII, RMII, and MDIO interfaces.

The I2C module is a multimaster communication module providing an interface between the microcontroller and an I2C-compatible device through the I2C serial bus. The I2C supports speeds of 100 and 400 Kbps.

A Frequency-Modulated Phase-Locked Loop (FMPLL) clock module is used to multiply the external frequency reference to a higher frequency for internal use. The Global Clock Module (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 terminal. 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 Direct Memory Access (DMA) controller has 16 channels, 32 peripheral requests, and parity protection on its memory. An MPU is built into the DMA to protect memory against erroneous transfers.

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

The External Memory Interface (EMIF) provides a memory extension to asynchronous and synchronous memories or other slave devices.

A Parameter Overlay Module (POM) enhances the calibration capabilities of application code. The POM can reroute flash accesses to internal memory or to the EMIF, thus avoiding the reprogramming steps necessary for parameter updates in flash.

With integrated safety features and a wide choice of communication and control peripherals, the RM46Lx40 device is an ideal solution for high-performance real-time control applications with safety-critical

The RM46Lx40 device is a high-performance microcontroller family 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 RM46Lx40 device integrates the ARM Cortex-R4F floating-point CPU which offers an efficient 1.66 DMIPS/MHz, and can run up to 200 MHz providing up to 332 DMIPS. The device supports the little-endian [LE] format.

The RM46L840 device has 1.25MB of integrated flash and 192KB of data RAM with single-bit error correction and double-bit error detection. The RM46L440 device has 1MB of integrated flash and 128KB of data RAM with 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 (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 up to 200 MHz. The SRAM supports single-cycle read and write accesses in byte, halfword, word, and double-word modes throughout the supported frequency range.

The RM46Lx40 device features peripherals for real-time control-based applications, including two Next Generation High-End Timer (N2HET) timing coprocessors with up to 44 I/O terminals, seven Enhanced Pulse Width Modulator (ePWM) modules with up to 14 outputs, six Enhanced Capture (eCAP) modules, two Enhanced Quadrature Encoder Pulse (eQEP) modules, and two 12-bit Analog-to-Digital Converters (ADCs) supporting up to 24 inputs.

The N2HET is an advanced intelligent timer that provides sophisticated timing functions for real-time applications. The timer is software-controlled, using a reduced 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 general-purpose I/O (GIO). 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 ePWM module can generate complex pulse width waveforms with minimal CPU overhead or intervention. The ePWM is easy to use and it supports both high-side and low-side PWM and deadband generation. With integrated trip zone protection and synchronization with the on-chip MibADC, the ePWM module is ideal for digital motor control applications.

The eCAP module is essential in systems where the accurately timed capture of external events is important. The eCAP can also be used to monitor the ePWM outputs or for simple PWM generation when the eCAP is not needed for capture applications.

The 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 two 12-bit-resolution MibADCs with 24 total inputs and 64 words of parity-protected buffer RAM each. The MibADC channels can be converted individually or can be grouped by software for sequential conversion sequences. Sixteen inputs are shared between the two MibADCs. Each MibADC supports three separate groupings of channels. Each group 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. MibADC1 also supports the use of external analog multiplexers.

The device has multiple communication interfaces: three MibSPIs, two SPIs, one LIN, one SCI, three DCANs, one I2C, and one Ethernet. The SPI provides a convenient method of serial high-speed communications between similar shift-register type devices. The LIN supports the Local Interconnect standard 2.0 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 systems operating in noisy and harsh environments (for example, automotive and industrial fields) that require reliable serial communication or multiplexed wiring. The Ethernet module supports MII, RMII, and MDIO interfaces.

The I2C module is a multimaster communication module providing an interface between the microcontroller and an I2C-compatible device through the I2C serial bus. The I2C supports speeds of 100 and 400 Kbps.

A Frequency-Modulated Phase-Locked Loop (FMPLL) clock module is used to multiply the external frequency reference to a higher frequency for internal use. The Global Clock Module (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 terminal. 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 Direct Memory Access (DMA) controller has 16 channels, 32 peripheral requests, and parity protection on its memory. An MPU is built into the DMA to protect memory against erroneous transfers.

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

The External Memory Interface (EMIF) provides a memory extension to asynchronous and synchronous memories or other slave devices.

A Parameter Overlay Module (POM) enhances the calibration capabilities of application code. The POM can reroute flash accesses to internal memory or to the EMIF, thus avoiding the reprogramming steps necessary for parameter updates in flash.

With integrated safety features and a wide choice of communication and control peripherals, the RM46Lx40 device is an ideal solution for high-performance real-time control applications with safety-critical

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El RM46L440 de Hercules está certificado por TÜV SÜD como capaz de alcanzar el nivel de integridad de seguridad (SIL) 3 según la norma IEC 61508, lo que facilita el desarrollo de aplicaciones de seguridad funcional. Descargue el certificado ahora.

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos RM46Lx40 16- and 32-Bit RISC Flash Microcontroller datasheet (Rev. C) PDF | HTML 30/06/2015
* Errata RM46x Microcontroller Silicon Errata (Silicon Revision B) (Rev. F) 31/05/2016
* Errata RM46x Microcontroller Silicon Errata (Silicon Revision C) (Rev. B) 31/05/2016
Información sobre seguridad funcional Certification for Functional Safety Hardware Process (Rev. C) 6/06/2025
Certificado TUEV SUED Certification and Report for RM46x (Rev. E) 21/06/2024
Más documentación Hercules™ Diagnostic Library Test Automation Unit User Guide (Rev. B) PDF | HTML 9/01/2020
Información sobre seguridad funcional HALCoGen-CSP Installation Guide (Rev. B) PDF | HTML 8/01/2020
Información sobre seguridad funcional HALCoGen-CSP User's Guide (Rev. C) PDF | HTML 8/01/2020
Información sobre seguridad funcional Hercules Diagnostic Library -TAU Installation Guide (Rev. B) PDF | HTML 8/01/2020
Más documentación HALCoGen-CSP 04.07.01 (Rev. C) PDF | HTML 8/01/2020
Guía del usuario Hercules Diagnostic Library CSP Without LDRA 29/10/2019
Más documentación Diagnostic Library CSP Release Notes 17/10/2019
Información sobre seguridad funcional SafeTI™ Hercules™ Diagnostic Library Release Notes (Rev. A) 24/09/2019
Nota sobre la aplicación HALCoGen Ethernet Driver With lwIP Integration Demo and Active Webserver Demo PDF | HTML 13/09/2019
Nota sobre la aplicación Hercules PLL Advisory SSWF021#45 Workaround (Rev. B) PDF | HTML 9/09/2019
Nota sobre la aplicación CAN Bus Bootloader for Hercules Microcontrollers PDF | HTML 21/08/2019
Guía del usuario HALCoGen-CSP Without LDRA Installation Guide PDF | HTML 19/08/2019
Guía del usuario HALCoGen-CSP Without LDRA User's Guide PDF | HTML 19/08/2019
Guía del usuario Hercules™ Diag Lib Test Automation Unit Without LDRA User's Guide PDF | HTML 19/08/2019
Guía del usuario Hercules Diagnostic Library - Without LDRA Installation Guide PDF | HTML 19/08/2019
Nota sobre la aplicación HALCoGen CSP Without LDRA Release_Notes 19/08/2019
Guía del usuario RM46x Hercules Development Kit (HDK) User's Guide (Rev. B) 2/11/2018
Nota sobre la aplicación Interfacing the Embedded 12-Bit ADC in a TMS570LS31x/21x and RM4x Series MCUs (Rev. A) 20/04/2018
Nota sobre la aplicación FreeRTOS on Hercules Devices_new 19/04/2018
Guía del usuario RM46x 16/32-Bit RISC Flash Microcontroller Technical Reference Manual (Rev. C) 1/03/2018
Nota sobre la aplicación Sharing FEE Blocks Between the Bootloader and the Application 7/11/2017
Guía del usuario Hercules™ TMS570LS12x/RM46 LaunchPad User's Guide 31/05/2017
Nota sobre la aplicación Sharing Exception Vectors on Hercules™ Based Microcontrollers 27/03/2017
Nota sobre la aplicación Hercules AJSM Unlock (Rev. A) PDF | HTML 19/10/2016
Nota sobre la aplicación How to Create a HALCoGen Based Project For CCS (Rev. B) 9/08/2016
Nota sobre la aplicación Using the CRC Module on Hercules™-Based Microcontrollers 4/08/2016
Información sobre seguridad funcional Functional Safety Audit: SafeTI Functional Safety Hardware Development (Rev. A) 25/04/2016
Nota sobre la aplicación High Speed Serial Bus Using the MibSPIP Module on Hercules-Based MCUs 22/04/2016
Información sobre seguridad funcional Enabling Functional Safety Using SafeTI Diagnostic Library 18/12/2015
Información sobre seguridad funcional Safety Manual for RM46x Hercules ARM Safety Critical MCUs (Rev. B) 11/12/2015
Informe Hercules™ MCU: Features Applicable to Use in High-Speed Rail 2/11/2015
Nota sobre la aplicación Triggering ADC Using Internal Timer Events on Hercules MCUs 19/10/2015
Informe Extending TI’s Hercules MCUs with the integrated flexible HET 29/09/2015
Nota sobre la aplicación Continuous Monitor of the PLL Frequency With the DCC 24/07/2015
Nota sobre la aplicación PWM Generation and Input Capture Using HALCoGen N2HET Module 30/06/2015
Nota sobre la aplicación Sine Wave Generation Using PWM With Hercules N2HET and HTU 12/05/2015
Información sobre seguridad funcional Foundational Software for Functional Safety 12/05/2015
Nota sobre la aplicación Triangle/Trapezoid Wave Generation Using PWM With Hercules N2HET 1/05/2015
Nota sobre la aplicación Nested Interrupts on Hercules ARM Cortex-R4/5-Based Microncontrollers 23/04/2015
Informe Latch-Up White Paper PDF | HTML 22/04/2015
Nota sobre la aplicación Interrupt and Exception Handling on Hercules ARM Cortex-R4/5-Based MCUs 20/04/2015
Nota sobre la aplicación Monitoring PWM Using N2HET 2/04/2015
Nota sobre la aplicación Hercules SCI With DMA 22/03/2015
Certificado TÜV NORD Certificate for Functional Safety Software Development Process 3/02/2015
Información sobre seguridad funcional Calculating Equivalent Power-on-Hours for Hercules Safety MCUs 26/01/2015
Nota sobre la aplicación Limiting Clamp Currents on TMS470/TMS570 Digital and Analog Inputs (Rev. A) 8/12/2014
Información sobre seguridad funcional Migrating from RM48x or RM46x to RM44x Safety MCUs 7/11/2014
Información sobre seguridad funcional Migrating from RM48x or RM46x to RM42x Safety MCUs (Rev. A) 22/09/2014
Información sobre seguridad funcional TUV SUD ISO-13849 Safety Architecture Concept Study 2/07/2014
Más documentación HaLCoGen Release Notes 25/06/2014
Información sobre seguridad funcional Migrating From RM48x to RM46x Safety MCUs (Rev. A) 19/02/2014
Nota sobre la aplicación Interfacing TPS65381 With Hercules Microcontrollers (Rev. A) 14/02/2014
Información sobre seguridad funcional IEC 60730 and UL 1998 Safety Standard Compliance Made Easier with TI Hercules 3/10/2013
Nota sobre la aplicación CAN Bus Bootloader for RM46 MCU 16/09/2013
Nota sobre la aplicación SPI Bootloader for Hercules RM46 MCU 16/09/2013
Nota sobre la aplicación UART Bootloader for Hercules RM46 MCU 16/09/2013
Información sobre seguridad funcional Accelerating safety-certified motor control designs (Rev. A) 4/10/2012
Nota sobre la aplicación Hercules Family Frequency Slewing to Reduce Voltage and Current Transients 5/07/2012
Nota sobre la aplicación Basic PBIST Configuration and Influence on Current Consumption (Rev. C) 12/04/2012
Nota sobre la aplicación Verification of Data Integrity Using CRC 17/02/2012
Información sobre seguridad funcional Important ARM Ltd Application Notes for TI Hercules ARM Safety MCUs 17/11/2011
Información sobre seguridad funcional Execution Time Measurement for Hercules ARM Safety MCUs (Rev. A) 4/11/2011
Nota sobre la aplicación Use of All 1'’s and All 0's Valid in Flash EEPROM Emulation 27/09/2011
Nota sobre la aplicación 3.3 V I/O Considerations for Hercules Safety MCUs (Rev. A) 6/09/2011
Información sobre seguridad funcional ADC Source Impedance for Hercules ARM Safety MCUs (Rev. B) 6/09/2011
Información sobre seguridad funcional Leveraging the High-End Timer Transfer Unit on Hercules ARM Safety MCUs (Rev. A) 6/09/2011
Información sobre seguridad funcional Configuring a CAN Node on Hercules ARM Safety MCUs 6/09/2011
Información sobre seguridad funcional Configuring the Hercules ARM Safety MCU SCI/LIN Module for UART Communication (Rev. A) 6/09/2011
Información sobre seguridad funcional Hercules™ Microcontrollers: Real-time MCUs for safety-critical products 2/09/2011
Nota sobre la aplicación ECC Handling in TMSx70-Based Microcontrollers 23/02/2011
Guía del usuario TI ICEPick Module Type C Reference Guide Public Version 17/02/2011
Información sobre seguridad funcional Generating Operating System Tick Using RTI on a Hercules ARM Safety MCU 13/07/2010
Información sobre seguridad funcional Usage of MPU Subregions on TI Hercules ARM Safety MCUs 10/03/2010
Informe Discriminating between Soft Errors and Hard Errors in RAM White Paper 4/06/2008

Diseño y desarrollo

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Kit de desarrollo

LAUNCHXL2-RM46 — Kit de desarrollo de LaunchPad RM46x Hercules

The Hercules™ RM46x LaunchPad™ Development Kit is an inexpensive evaluation platform designed to help you get started quickly in evaluating and developing with the Hercules microcontroller platform. The LaunchPad Development Kit is based on the IEC 61508 SIL 3 certified RM46L852, which is a (...)

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Kit de desarrollo

TMDXRM46HDK — Kit de desarrollo Hercules RM46x

The Hercules™ RM46x Development Kit is based on the IEC 61508 SIL 3 certified RM46L852 and is ideal for getting started on development with the RM46 series of the Hercules RM family of microcontrollers. The development board features RJ45 10/100 Ethernet, USB-A Host, and USB-B Device Interfaces (...)

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Sonda de depuración

TMDSEMU200-U — Sonda de depuración XDS200 USB

El XDS200 es una sonda de depuración (emulador) que se utiliza para depurar dispositivos integrados de TI. Para la mayoría de los dispositivos, se recomienda utilizar el XDS110 (www.ti.com/tool/TMDSEMU110-U), que es más nuevo y de menor costo. El XDS200 es compatible con una amplia variedad de (...)

Productos y hardware compatibles
En inventario
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Sonda de depuración

TMDSEMU560V2STM-U — Sonda de depuración USB para rastreo del sistema con el software XDS560™ v2

El XDS560v2 es el modelo de mayor rendimiento de la familia de sondas de depuración XDS560™ y es compatible tanto con el estándar JTAG tradicional (IEEE 1149.1) como con cJTAG (IEEE 1149.7).  Tenga en cuenta que no es compatible con la depuración por cable serie (SWD).

Todas las sondas de (...)

Productos y hardware compatibles
En inventario
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Sonda de depuración

TMDSEMU560V2STM-UE — Sonda de depuración USB y ethernet de seguimiento del sistema XDS560v2

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 (...)

Productos y hardware compatibles
En inventario
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No disponible
Sonda de depuración

LB-3P-TRACE32-ARM — Sistema de depuración y seguimiento Lauterbach TRACE32 para microcontroladores y procesadores basado

Lauterbach‘s TRACE32® tools are a suite of leading-edge hardware and software components that enables developers to analyze, optimize and certify all kinds of Arm®-based microcontrollers and processors. The globally renowned debug and trace solutions for embedded systems and SoCs are the perfect (...)

Productos y hardware compatibles
IDE, configuración, compilador o depurador

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 (...)

Productos y hardware compatibles
IDE, configuración, compilador o depurador

HALCOGEN — Herramienta generadora de código HAL: 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 (...)

Productos y hardware compatibles
IDE, configuración, compilador o depurador

HET_IDE — Temporizador de gama alta (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 (...)

Productos y hardware compatibles
IDE, configuración, compilador o depurador

SAFETI-HERCULES-DIAG-LIB-CSP — Paquete de soporte de conformidad SafeTI para Hercules Diagnostic Library

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 = Requiere aprobación de exportación (1 minuto)
Productos y hardware compatibles
IDE, configuración, compilador o depurador

SAFETI_CQKIT — Kit de cualificación de compilador de seguridad

El Kit de cualificación de compilador de seguridad se desarrolló para ayudar a los clientes a calificar el uso del compilador C/C++ ARM, C6000, C7000 o C2000/CLA de TI respecto de normas de seguridad funcional como IEC 61508 e ISO 26262.

El Kit de cualificación de compilador de seguridad:

  • Es (...)
Productos y hardware compatibles
Sistema operativo (SO)

WHIS-3P-SAFERTOS — RTOS de seguridad precertificado SAFERTOS de WITTENSTEIN

SAFERTOS® es un sistema operativo único en tiempo real diseñado para procesadores integrados. Está precertificado según las normas IEC 61508 SIL3 e ISO 26262 ASILD por TÜV SÜD. SAFERTOS® se diseñó específicamente para la seguridad por el equipo de expertos de WHIS y se usa globalmente en (...)

Productos y hardware compatibles
Controlador o biblioteca

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

La biblioteca DSP Cortex-R4 DE TI se ajusta al Estándar de interfaz de software de microcontrolador Cortex (CMSIS) de ARM, una capa de abstracción de hardware estandarizada para la serie de procesadores Cortex. La biblioteca CMSIS-DSP incluye más de 60 funciones que cubren operaciones vectoriales, (...)
Productos y hardware compatibles
Controlador o biblioteca

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 (...)

Productos y hardware compatibles
Herramienta de programación de software

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

UniFlash forma parte del amplio ecosistema de desarrollo CCStudio™ de TI y es una herramienta de software diseñada para programar la memoria flash integrada en los microcontroladores y dispositivos de conectividad inalámbrica de TI, así como la memoria flash integrada en los procesadores de TI. (...)

Productos y hardware compatibles
Soporte de software

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 (...)

Productos y hardware compatibles
Soporte de software

HERCULES_SAFETY_MCU_DEMOS — Hercules Software Kit (v4.0.0)

Las demostraciones de MCU de seguridad de Hercules están diseñadas para resaltar las principales funciones de seguridad, adquisición de datos y control de la plataforma de microcontroladores Hercules. Las demostraciones están diseñadas para ejecutarse en una PC junto con un Hercules USB (...)
Productos y hardware compatibles
Soporte de software

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.

Productos y hardware compatibles
Soporte de software

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 (...)
Productos y hardware compatibles
Modelo de simulación

RM46Lx PGE BSDL Model

SPNM025.ZIP (11 KB) - Modelo BSDL
Productos y hardware compatibles
Modelo de simulación

RM46Lx ZWT BSDL Model

SPNM026.ZIP (11 KB) - Modelo BSDL
Productos y hardware compatibles
Modelo de simulación

RM46x PGE IBIS Model (Silicon Revision B)

SPNM058.ZIP (294 KB) - Modelo IBIS
Productos y hardware compatibles
Modelo de simulación

RM46x ZWT IBIS Model (Silicon Revision B)

SPNM057.ZIP (284 KB) - Modelo IBIS
Productos y hardware compatibles
Herramienta de cálculo

FMZPLL_CALCULATOR — Herramienta de configuración FMzPLL

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 (...)
Productos y hardware compatibles
Encapsulado Pines Símbolos CAD, huellas y modelos 3D
LQFP (PGE) 144 Ultra Librarian
NFBGA (ZWT) 337 Ultra Librarian

Pedidos y calidad

Soporte y capacitación

Foros de TI E2E™ con asistencia técnica de los ingenieros de TI

El contenido lo proporcionan “tal como está” TI y los colaboradores de la comunidad y no constituye especificaciones de TI. Consulte los términos de uso.

Si tiene alguna pregunta sobre calidad, encapsulados o pedido de productos de TI, consulte el servicio de asistencia de TI. ​​​​​​​​​​​​​​

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