DRA829V

ACTIVO

SoC con Arm® Cortex®-A72 doble, Ethernet de 8 puertos, PCIe de 4 puertos y C7xDSP para redes e infor

Detalles del producto

CPU 2 Arm Cortex-A72 Frequency (MHz) 2000 Coprocessors 6 Arm Cortex-R5F Display type 1 DSI, 1 EDP, 2 DPI Protocols Ethernet PCIe 4 PCIe Gen 3 switch Features Networking Operating system FreeRTOS, INTEGRITY, Linux, QNX, SafeRTOS, VxWorks, u-velOSity Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection Rating Catalog Power supply solution LP8764-Q1, TPS6594-Q1 Operating temperature range (°C) -40 to 105 Edge AI enabled No
CPU 2 Arm Cortex-A72 Frequency (MHz) 2000 Coprocessors 6 Arm Cortex-R5F Display type 1 DSI, 1 EDP, 2 DPI Protocols Ethernet PCIe 4 PCIe Gen 3 switch Features Networking Operating system FreeRTOS, INTEGRITY, Linux, QNX, SafeRTOS, VxWorks, u-velOSity Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection Rating Catalog Power supply solution LP8764-Q1, TPS6594-Q1 Operating temperature range (°C) -40 to 105 Edge AI enabled No
FCBGA (ALF) 827 576 mm² (24 mm × 24 mm)

Processor cores:

  • Dual 64-bit Arm Cortex-A72 microprocessor subsystem at up to 2.0GHz
    • 1MB shared L2 cache per dual-core Arm Cortex-A72 cluster
    • 32KB L1 DCache and 48KB L1 ICache per Cortex-A72 Core
  • Six Arm Cortex-R5F MCUs at up to 1.0GHz
    • 16K I-Cache, 16K D-Cache, 64K L2 TCM
    • Two Arm Cortex-R5F MCUs in isolated MCU subsystem
    • Four Arm Cortex-R5F MCUs in general compute partition
  • Deep-learning Matrix Multiply Accelerator (MMA), up to 8 TOPS (8b) at 1.0 GHz
  • C7x floating point, vector DSP, up to 1.0 GHz, 80 GFLOPS, 256 GOPS
  • Two C66x floating point DSP, up to 1.35 GHz, 40 GFLOPS, 160 GOPS
  • 3D GPU PowerVR Rogue 8XE GE8430, up to 750 MHz, 96 GFLOPS, 6 Gpix/sec

    Memory subsystem:

  • Up to 8MB of on-chip L3 RAM with ECC and coherency
    • ECC error protection
    • Shared coherent cache
    • Supports internal DMA engine
  • External Memory Interface (EMIF) module with ECC
    • Supports LPDDR4 memory types
    • Supports speeds up to 4266 MT/s
    • 32-bit data bus with inline ECC up to 14.9GB/s
  • General-Purpose Memory Controller (GPMC)
  • 512KB on-chip SRAM in MAIN domain, protected by ECC

    Display subsystem:

  • One eDP/DP interface with Multi-Display Support (MST)
    • HDCP1.4/HDCP2.2 high-bandwidth digital content protection
  • One DSI TX (up to 2.5K)
  • Up to two DPI

    Video acceleration:

  • Ultra-HD video, one (3840 × 2160p, 60 fps), or two (3840 × 2160p, 30 fps) H.264/H.265 decode
  • Full-HD video, four (1920 × 1080p, 60 fps), or eight (1920 × 1080p, 30 fps) H.264/H.265 decode
  • Full-HD video, one (1920 × 1080p, 60 fps), or up to three (1920 × 1080p, 30 fps) H.264 encode

    Functional Safety:

  • Functional Safety-Compliant (on select part numbers)
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262/IEC 61508 functional safety system design up to ASIL D/SIL 3
    • Systematic capability up to ASIL D/SC 3
    • Hardware integrity up to ASIL D/SIL 3 for MCU Domain
    • Hardware integrity up to ASIL B/SIL 2 for Main Domain
  • Safety-related certification
  • AEC-Q100 qualified on part number variants ending in Q1

    Device security (on select part numbers):

  • Secure boot with secure run-time support
  • Customer programmable root key, up to RSA-4K or ECC-512
  • Embedded hardware security module
  • Crypto hardware accelerators – PKA with ECC, AES, SHA, RNG, DES and 3DES

    High speed serial interfaces:

  • Two CSI2.0 4L RX plus one CSI2.0 4L TX
  • Integrated Ethernet switch supporting up to 8 external ports
    • All ports support 2.5Gb SGMII
    • All ports support 1Gb SGMII/RGMII
    • All ports support 100Mb RMII
    • Any two ports support QSGMII (using 4 internal ports per QSGMII)
  • Up to four PCI-Express (PCIe) Gen3 controllers
    • Gen1 (2.5GT/s), Gen2 (5.0GT/s), and Gen3 (8.0GT/s) operation with auto-negotiation
    • Up to two lanes per controller
  • Two USB 3.0 dual-role device (DRD) subsystem
    • Two enhanced SuperSpeed Gen1 ports
    • Each port supports Type-C switching
    • Each port independently configurable as USB host, USB peripheral, or USB DRD

    Automotive interfaces:

  • Sixteen Modular Controller Area Network (MCAN) modules with full CAN-FD support

    Audio interfaces:

  • Twelve Multichannel Audio Serial Port (MCASP) modules

    Flash memory interfaces:

  • Embedded MultiMediaCard interface ( eMMC™ 5.1)
  • Universal Flash Storage (UFS 2.1) interface with two lanes
  • Two Secure Digital 3.0/Secure Digital Input Output 3.0 interfaces (SD3.0/SDIO3.0)
  • Two simultaneous flash interfaces configured as
    • One OSPI and one QSPI flash interfaces
    • or one HyperBus™ and one QSPI flash interface

    System-on-Chip (SoC) architecture:

  • 16-nm FinFET technology
  • 24 mm × 24 mm, 0.8-mm pitch, 827-pin FCBGA (ALF), enables IPC class 3 PCB routing

    TPS6594-Q1 Companion Power Management ICs (PMIC):

  • Functional Safety support up to ASIL-D
  • Flexible mapping to support different use cases

Processor cores:

  • Dual 64-bit Arm Cortex-A72 microprocessor subsystem at up to 2.0GHz
    • 1MB shared L2 cache per dual-core Arm Cortex-A72 cluster
    • 32KB L1 DCache and 48KB L1 ICache per Cortex-A72 Core
  • Six Arm Cortex-R5F MCUs at up to 1.0GHz
    • 16K I-Cache, 16K D-Cache, 64K L2 TCM
    • Two Arm Cortex-R5F MCUs in isolated MCU subsystem
    • Four Arm Cortex-R5F MCUs in general compute partition
  • Deep-learning Matrix Multiply Accelerator (MMA), up to 8 TOPS (8b) at 1.0 GHz
  • C7x floating point, vector DSP, up to 1.0 GHz, 80 GFLOPS, 256 GOPS
  • Two C66x floating point DSP, up to 1.35 GHz, 40 GFLOPS, 160 GOPS
  • 3D GPU PowerVR Rogue 8XE GE8430, up to 750 MHz, 96 GFLOPS, 6 Gpix/sec

    Memory subsystem:

  • Up to 8MB of on-chip L3 RAM with ECC and coherency
    • ECC error protection
    • Shared coherent cache
    • Supports internal DMA engine
  • External Memory Interface (EMIF) module with ECC
    • Supports LPDDR4 memory types
    • Supports speeds up to 4266 MT/s
    • 32-bit data bus with inline ECC up to 14.9GB/s
  • General-Purpose Memory Controller (GPMC)
  • 512KB on-chip SRAM in MAIN domain, protected by ECC

    Display subsystem:

  • One eDP/DP interface with Multi-Display Support (MST)
    • HDCP1.4/HDCP2.2 high-bandwidth digital content protection
  • One DSI TX (up to 2.5K)
  • Up to two DPI

    Video acceleration:

  • Ultra-HD video, one (3840 × 2160p, 60 fps), or two (3840 × 2160p, 30 fps) H.264/H.265 decode
  • Full-HD video, four (1920 × 1080p, 60 fps), or eight (1920 × 1080p, 30 fps) H.264/H.265 decode
  • Full-HD video, one (1920 × 1080p, 60 fps), or up to three (1920 × 1080p, 30 fps) H.264 encode

    Functional Safety:

  • Functional Safety-Compliant (on select part numbers)
    • Developed for functional safety applications
    • Documentation available to aid ISO 26262/IEC 61508 functional safety system design up to ASIL D/SIL 3
    • Systematic capability up to ASIL D/SC 3
    • Hardware integrity up to ASIL D/SIL 3 for MCU Domain
    • Hardware integrity up to ASIL B/SIL 2 for Main Domain
  • Safety-related certification
  • AEC-Q100 qualified on part number variants ending in Q1

    Device security (on select part numbers):

  • Secure boot with secure run-time support
  • Customer programmable root key, up to RSA-4K or ECC-512
  • Embedded hardware security module
  • Crypto hardware accelerators – PKA with ECC, AES, SHA, RNG, DES and 3DES

    High speed serial interfaces:

  • Two CSI2.0 4L RX plus one CSI2.0 4L TX
  • Integrated Ethernet switch supporting up to 8 external ports
    • All ports support 2.5Gb SGMII
    • All ports support 1Gb SGMII/RGMII
    • All ports support 100Mb RMII
    • Any two ports support QSGMII (using 4 internal ports per QSGMII)
  • Up to four PCI-Express (PCIe) Gen3 controllers
    • Gen1 (2.5GT/s), Gen2 (5.0GT/s), and Gen3 (8.0GT/s) operation with auto-negotiation
    • Up to two lanes per controller
  • Two USB 3.0 dual-role device (DRD) subsystem
    • Two enhanced SuperSpeed Gen1 ports
    • Each port supports Type-C switching
    • Each port independently configurable as USB host, USB peripheral, or USB DRD

    Automotive interfaces:

  • Sixteen Modular Controller Area Network (MCAN) modules with full CAN-FD support

    Audio interfaces:

  • Twelve Multichannel Audio Serial Port (MCASP) modules

    Flash memory interfaces:

  • Embedded MultiMediaCard interface ( eMMC™ 5.1)
  • Universal Flash Storage (UFS 2.1) interface with two lanes
  • Two Secure Digital 3.0/Secure Digital Input Output 3.0 interfaces (SD3.0/SDIO3.0)
  • Two simultaneous flash interfaces configured as
    • One OSPI and one QSPI flash interfaces
    • or one HyperBus™ and one QSPI flash interface

    System-on-Chip (SoC) architecture:

  • 16-nm FinFET technology
  • 24 mm × 24 mm, 0.8-mm pitch, 827-pin FCBGA (ALF), enables IPC class 3 PCB routing

    TPS6594-Q1 Companion Power Management ICs (PMIC):

  • Functional Safety support up to ASIL-D
  • Flexible mapping to support different use cases

DRA829 processors, based on the Arm®v8 64-bit architecture, provide advanced system integration to enable lower system costs of automotive and industrial applications. The integrated diagnostics and functional safety features are targeted to ASIL-B/C or SIL-2 certification/requirements. The integrated microcontroller (MCU) island eliminates the need for an external system MCU. The device features a Gigabit Ethernet switch and a PCIe hub which enables networking use cases that require heavy data bandwidth. Up to four Arm Cortex-R5F subsystems manage low level, timing critical processing tasks leaving the Arm Cortex-A72’s unencumbered for applications. A dual-core cluster configuration of Arm Cortex-A72 facilitates multi-OS applications with minimal need for a software hypervisor.

DRA829 processors, based on the Arm®v8 64-bit architecture, provide advanced system integration to enable lower system costs of automotive and industrial applications. The integrated diagnostics and functional safety features are targeted to ASIL-B/C or SIL-2 certification/requirements. The integrated microcontroller (MCU) island eliminates the need for an external system MCU. The device features a Gigabit Ethernet switch and a PCIe hub which enables networking use cases that require heavy data bandwidth. Up to four Arm Cortex-R5F subsystems manage low level, timing critical processing tasks leaving the Arm Cortex-A72’s unencumbered for applications. A dual-core cluster configuration of Arm Cortex-A72 facilitates multi-OS applications with minimal need for a software hypervisor.

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos DRA829 Processors datasheet (Rev. L) PDF | HTML 4/06/2026
* Guía del usuario J721E DRA829/TDA4VM Processors Silicon Revision 2.0, 1.1 Technical Reference Manual (Rev. D) PDF | HTML 27/12/2024
* Errata J721E DRA829/TDA4VM Processors Silicon Revision 2.0/1.1/1.0 (Rev. G) PDF | HTML 3/06/2026
Información sobre seguridad funcional DRA829_TDA4VM TÜV SÜD Functional Safety Certificate - Industrial (Rev. A) 28/08/2025
Información sobre seguridad funcional DRA829/TDA4VM TÜV SÜD Functional Safety Report - Industrial - PG2.0 (Rev. A) 28/08/2025
Información sobre seguridad funcional TÜV SÜD Certificate for Functional Safety Software Development Process (Rev. D) 17/06/2025
Informe Securing Arm-Based Application Processors (Rev. F) PDF | HTML 26/02/2025
Nota sobre la aplicación Jacinto 7 LPDDR4 Board Design and Layout Guidelines (Rev. F) PDF | HTML 5/08/2024
Nota sobre la aplicación Debugging GPU Driver Issues on TDA4x and AM6x Devices PDF | HTML 20/06/2024
Nota sobre la aplicación Jacinto7 AM6x, TDA4x, and DRA8x High-Speed Interface Design Guidelines (Rev. A) PDF | HTML 4/06/2024
Nota sobre la aplicación MMC SW Tuning Algorithm (Rev. A) PDF | HTML 14/05/2024
Nota sobre la aplicación Jacinto7 AM6x/TDA4x/DRA8x Schematic Checklist (Rev. B) PDF | HTML 4/04/2024
Nota sobre la aplicación Jacinto7 HS Device Customer Return Process PDF | HTML 16/11/2023
Nota sobre la aplicación Using TSN Ethernet Features to Improve Timing in Industrial Ethernet Controllers PDF | HTML 15/11/2023
Más documentación Jacinto 7 EVM Quick Start Guide for TDA4VM and DRA829V Processors (Rev. A) PDF | HTML 9/08/2023
Nota sobre la aplicación Understanding TDA4VM or DRA829 Memory for Optimal Performance PDF | HTML 14/06/2023
Nota sobre la aplicación Jacinto7 DDRSS Register Configuration Tool (Rev. B) PDF | HTML 30/01/2023
Nota sobre la aplicación UART Log Debug System on Jacinto 7 SoC PDF | HTML 9/01/2023
Información sobre seguridad funcional Jacinto Functional Safety Enablers (Rev. A) PDF | HTML 12/12/2022
Product overview Jacinto™ 7 Safety Product Overview PDF | HTML 15/08/2022
Certificado J721E SDL TUV Certification 8/08/2022
Nota sobre la aplicación Proof of Concept Enablement for Jacinto TDA4VM OpenVx Host on R5F MCU2_0 PDF | HTML 25/07/2022
Nota sobre la aplicación Dual-TDA4x System Solution PDF | HTML 29/04/2022
Nota sobre la aplicación SPI Enablement & Validation on TDA4 Family PDF | HTML 5/04/2022
Guía del usuario TPS65941213-Q1 and LP876411B4-Q1 PMIC User Guide for J721E, PDN-1A PDF | HTML 2/02/2022
Guía del usuario TPS65941212-Q1 and TPS65941111-Q1 PMIC User Guide for J721E, PDN-0B (Rev. B) PDF | HTML 31/01/2022
Artículo técnico How to simplify your embedded edge AI application development PDF | HTML 28/01/2022
Guía del usuario Optimized TPS65941213-Q1 and TPS65941111-Q1 PMIC User Guide for J721E, PDN-0C (Rev. A) PDF | HTML 26/01/2022
Nota sobre la aplicación Enabling MAC2MAC Feature on Jacinto7 Soc 10/01/2022
Más documentación Jacinto™ 7 automotive processors 14/12/2021
Nota sobre la aplicación Jacinto 7 Thermal Management Guide - Software Strategies PDF | HTML 10/12/2021
Nota sobre la aplicación Jacinto 7 Display Subsystem Overview PDF | HTML 10/12/2021
Información sobre seguridad funcional Leverage Jacinto 7 Processors Functional Safety Features for Automotive Designs (Rev. A) PDF | HTML 13/10/2021
Nota sobre la aplicación TISCI Server Integration in Vector AUTOSAR PDF | HTML 16/07/2021
Nota sobre la aplicación TDA4 Flashing Techniques PDF | HTML 8/07/2021
Nota sobre la aplicación Jacinto 7 Camera Capture and Imaging Subsystem PDF | HTML 7/07/2021
Nota sobre la aplicación J721E DDR Firewall Example PDF | HTML 1/07/2021
Informe Security Enablers on Jacinto™ 7 Processors 4/01/2021
Informe Enabling Differentiation through MCU Integration on Jacinto™ 7 Processors 22/10/2020
Informe Evolving automotive gateways for next-generation vehicles (Rev. B) 9/10/2020
Nota sobre la aplicación OSPI Tuning Procedure PDF | HTML 8/07/2020
Artículo técnico Enabling the software-defined car with a vehicle compute gateway platform PDF | HTML 7/01/2020
Artículo técnico Making ADAS technology more accessible in vehicles PDF | HTML 7/01/2020

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

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J721EXSOMXEVM — Sistema en módulo (SoM) con zócalo TDA4VM y DRA829V

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J7EXPCXEVM — Tarjeta de expansión de conmutador Gateway/Ethernet

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Placa de evaluación

J7EXPEXEVM — Tarjeta de expansión de audio y pantalla

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Sonda de depuración

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

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

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Kit de desarrollo de software (SDK)

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IDE, configuración, compilador o depurador

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Sistema operativo (SO)

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