DRA718

ACTIVE

Product details

CPU 1 Arm Cortex-A15 Frequency (MHz) 1000 Coprocessors 4 Arm Cortex-M4 Graphics acceleration 1 2D, 1 3D Display type 1 HDMI, 2 LCD Protocols Ethernet, ICSS, Profibus PCIe 2 PCIe Gen 2 Hardware accelerators Audio tracking logic, Image video accelerator, Viterbi decoder Features Multimedia Operating system Android, Linux, RTOS Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection Rating Automotive Operating temperature range (°C) -40 to 125 Edge AI enabled No
CPU 1 Arm Cortex-A15 Frequency (MHz) 1000 Coprocessors 4 Arm Cortex-M4 Graphics acceleration 1 2D, 1 3D Display type 1 HDMI, 2 LCD Protocols Ethernet, ICSS, Profibus PCIe 2 PCIe Gen 2 Hardware accelerators Audio tracking logic, Image video accelerator, Viterbi decoder Features Multimedia Operating system Android, Linux, RTOS Security Cryptographic acceleration, Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection Rating Automotive Operating temperature range (°C) -40 to 125 Edge AI enabled No
FCCSP (CBD) 538 289 mm² (17 mm × 17 mm)
  • Architecture designed for infotainment applications
  • Video, image, and graphics processing support
    • Full-HD video (1920 × 1080p, 60 fps)
    • Multiple video input and video output
    • 2D and 3D graphics
  • Arm® Cortex®-A15 microprocessor subsystem
  • C66x floating-point VLIW DSP
    • Fully object-code compatible with C67x and C64x+
    • Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle
  • Up to 512KB of on-chip L3 RAM
  • Level 3 (L3) and Level 4 (L4) interconnects
  • DDR3/DDR3L Memory Interface (EMIF) module
    • Supports up to DDR-1333 (667 MHz)
    • Up to 2GB across single chip select
  • Dual Arm® Cortex®-M4 Image Processing Units (IPU)
  • IVA-HD subsystem
  • Display subsystem
    • Display controller With DMA engine and up to three pipelines
    • HDMI™ encoder: HDMI 1.4a and DVI 1.0 compliant
  • 2D-graphics accelerator (BB2D) subsystem
    • Vivante® GC320 core
  • Video Processing Engine (VPE)
  • Single-core PowerVR™ SGX544 3D GPU
  • One Video Input Port (VIP) module
    • Support for up to four multiplexed input ports
  • General-Purpose Memory Controller (GPMC)
  • Enhanced Direct Memory Access (EDMA) controller
  • 2-port gigabit ethernet (GMAC)
    • Up to two external ports
  • Sixteen 32-bit general-purpose timers
  • 32-Bit MPU watchdog timer
  • Six high-speed inter-integrated circuit (I2C) ports
  • HDQ™/1-Wire® interface
  • Ten configurable UART/IrDA/CIR modules
  • Four Multichannel Serial Peripheral Interfaces (McSPI)
  • Quad SPI Interface (QSPI)
  • Media Local Bus Subsystem (MLBSS)
  • Eight Multichannel Audio Serial Port (McASP) modules
  • SuperSpeed USB 3.0 dual-role device
  • High-speed USB 2.0 dual-role device
  • High-speed USB 2.0 on-the-go
  • Four MultiMedia Card/Secure Digital/Secure Digital Input Output Interfaces (MMC™/SD®/SDIO)
  • PCI Express® 3.0 subsystems with two 5-Gbps lanes
    • One 2-lane Gen2-compliant port
    • or two 1-lane Gen2-compliant ports
  • Dual Controller Area Network (DCAN) modules
    • CAN 2.0B protocol
  • MIPI® CSI-2 camera serial interface
  • Up to 186 General-Purpose I/O (GPIO) pins
  • Device security features
    • Hardware crypto accelerators and DMA
    • Firewalls
    • JTAG lock
    • Secure keys
    • Secure ROM and boot
    • Customer programmable keys
  • Power, reset, and clock management
  • On-chip debug with CTools technology
  • 28-nm CMOS technology
  • 17 mm × 17 mm, 0.65-mm pitch, 538-pin BGA (CBD)
  • Architecture designed for infotainment applications
  • Video, image, and graphics processing support
    • Full-HD video (1920 × 1080p, 60 fps)
    • Multiple video input and video output
    • 2D and 3D graphics
  • Arm® Cortex®-A15 microprocessor subsystem
  • C66x floating-point VLIW DSP
    • Fully object-code compatible with C67x and C64x+
    • Up to thirty-two 16 × 16-bit fixed-point multiplies per cycle
  • Up to 512KB of on-chip L3 RAM
  • Level 3 (L3) and Level 4 (L4) interconnects
  • DDR3/DDR3L Memory Interface (EMIF) module
    • Supports up to DDR-1333 (667 MHz)
    • Up to 2GB across single chip select
  • Dual Arm® Cortex®-M4 Image Processing Units (IPU)
  • IVA-HD subsystem
  • Display subsystem
    • Display controller With DMA engine and up to three pipelines
    • HDMI™ encoder: HDMI 1.4a and DVI 1.0 compliant
  • 2D-graphics accelerator (BB2D) subsystem
    • Vivante® GC320 core
  • Video Processing Engine (VPE)
  • Single-core PowerVR™ SGX544 3D GPU
  • One Video Input Port (VIP) module
    • Support for up to four multiplexed input ports
  • General-Purpose Memory Controller (GPMC)
  • Enhanced Direct Memory Access (EDMA) controller
  • 2-port gigabit ethernet (GMAC)
    • Up to two external ports
  • Sixteen 32-bit general-purpose timers
  • 32-Bit MPU watchdog timer
  • Six high-speed inter-integrated circuit (I2C) ports
  • HDQ™/1-Wire® interface
  • Ten configurable UART/IrDA/CIR modules
  • Four Multichannel Serial Peripheral Interfaces (McSPI)
  • Quad SPI Interface (QSPI)
  • Media Local Bus Subsystem (MLBSS)
  • Eight Multichannel Audio Serial Port (McASP) modules
  • SuperSpeed USB 3.0 dual-role device
  • High-speed USB 2.0 dual-role device
  • High-speed USB 2.0 on-the-go
  • Four MultiMedia Card/Secure Digital/Secure Digital Input Output Interfaces (MMC™/SD®/SDIO)
  • PCI Express® 3.0 subsystems with two 5-Gbps lanes
    • One 2-lane Gen2-compliant port
    • or two 1-lane Gen2-compliant ports
  • Dual Controller Area Network (DCAN) modules
    • CAN 2.0B protocol
  • MIPI® CSI-2 camera serial interface
  • Up to 186 General-Purpose I/O (GPIO) pins
  • Device security features
    • Hardware crypto accelerators and DMA
    • Firewalls
    • JTAG lock
    • Secure keys
    • Secure ROM and boot
    • Customer programmable keys
  • Power, reset, and clock management
  • On-chip debug with CTools technology
  • 28-nm CMOS technology
  • 17 mm × 17 mm, 0.65-mm pitch, 538-pin BGA (CBD)

The DRA71x processor is offered in a 538-ball, 17×17-mm, 0.65-mm ball pitch (0.8mm spacing rules can be used on signals) with Via Channel™ Array (VCA) technology, ball grid array (BGA) package.

The architecture is designed to deliver high-performance concurrencies for automotive applications in a cost-effective solution, providing full scalability from the DRA75x ("Jacinto 6 EP" and "Jacinto 6 Ex"), DRA74x "Jacinto 6" and DRA72x "Jacinto 6 Eco" family of infotainment processors, including graphics, voice, HMI, multimedia and smartphone projection mode capabilities.

Programmability is provided by a single-core Arm Cortex-A15 RISC CPU with Arm Neon™ extensions and a TI C66x VLIW floating-point DSP core. The Arm processor lets developers keep control functions separate from other algorithms programmed on the DSP and coprocessors, thus reducing the complexity of the system software.

Additionally, TI provides a complete set of development tools for the Arm, and DSP, including C compilers and a debugging interface for visibility into source code execution.

Cryptographic acceleration is available in all devices. All other supported security features, including support for secure boot, debug security and support for trusted execution environment are available on High-Security (HS) devices. For more information about HS devices, contact your TI representative.

The DRA71x Jacinto 6 Entry processor family is qualified according to the AEC-Q100 standard.

The device features a simplified power supply rail mapping which enables lower cost PMIC solutions.

The DRA71x processor is offered in a 538-ball, 17×17-mm, 0.65-mm ball pitch (0.8mm spacing rules can be used on signals) with Via Channel™ Array (VCA) technology, ball grid array (BGA) package.

The architecture is designed to deliver high-performance concurrencies for automotive applications in a cost-effective solution, providing full scalability from the DRA75x ("Jacinto 6 EP" and "Jacinto 6 Ex"), DRA74x "Jacinto 6" and DRA72x "Jacinto 6 Eco" family of infotainment processors, including graphics, voice, HMI, multimedia and smartphone projection mode capabilities.

Programmability is provided by a single-core Arm Cortex-A15 RISC CPU with Neon extensions and a TI C66x VLIW floating-point DSP core. The Arm processor lets developers keep control functions separate from other algorithms programmed on the DSP and coprocessors, thus reducing the complexity of the system software.

Additionally, TI provides a complete set of development tools for the Arm, and DSP, including C compilers and a debugging interface for visibility into source code execution.

Cryptographic acceleration is available in all devices. All other supported security features, including support for secure boot, debug security and support for trusted execution environment are available on High-Security (HS) devices. For more information about HS devices, contact your TI representative.

The DRA71x Jacinto 6 Entry processor family is qualified according to the AEC-Q100 standard.

The device features are simplified power supply rail mapping which enables lower cost PMIC solutions.

The DRA71x processor is offered in a 538-ball, 17×17-mm, 0.65-mm ball pitch (0.8mm spacing rules can be used on signals) with Via Channel™ Array (VCA) technology, ball grid array (BGA) package.

The architecture is designed to deliver high-performance concurrencies for automotive applications in a cost-effective solution, providing full scalability from the DRA75x ("Jacinto 6 EP" and "Jacinto 6 Ex"), DRA74x "Jacinto 6" and DRA72x "Jacinto 6 Eco" family of infotainment processors, including graphics, voice, HMI, multimedia and smartphone projection mode capabilities.

Programmability is provided by a single-core Arm Cortex-A15 RISC CPU with Arm Neon™ extensions and a TI C66x VLIW floating-point DSP core. The Arm processor lets developers keep control functions separate from other algorithms programmed on the DSP and coprocessors, thus reducing the complexity of the system software.

Additionally, TI provides a complete set of development tools for the Arm, and DSP, including C compilers and a debugging interface for visibility into source code execution.

Cryptographic acceleration is available in all devices. All other supported security features, including support for secure boot, debug security and support for trusted execution environment are available on High-Security (HS) devices. For more information about HS devices, contact your TI representative.

The DRA71x Jacinto 6 Entry processor family is qualified according to the AEC-Q100 standard.

The device features a simplified power supply rail mapping which enables lower cost PMIC solutions.

The DRA71x processor is offered in a 538-ball, 17×17-mm, 0.65-mm ball pitch (0.8mm spacing rules can be used on signals) with Via Channel™ Array (VCA) technology, ball grid array (BGA) package.

The architecture is designed to deliver high-performance concurrencies for automotive applications in a cost-effective solution, providing full scalability from the DRA75x ("Jacinto 6 EP" and "Jacinto 6 Ex"), DRA74x "Jacinto 6" and DRA72x "Jacinto 6 Eco" family of infotainment processors, including graphics, voice, HMI, multimedia and smartphone projection mode capabilities.

Programmability is provided by a single-core Arm Cortex-A15 RISC CPU with Neon extensions and a TI C66x VLIW floating-point DSP core. The Arm processor lets developers keep control functions separate from other algorithms programmed on the DSP and coprocessors, thus reducing the complexity of the system software.

Additionally, TI provides a complete set of development tools for the Arm, and DSP, including C compilers and a debugging interface for visibility into source code execution.

Cryptographic acceleration is available in all devices. All other supported security features, including support for secure boot, debug security and support for trusted execution environment are available on High-Security (HS) devices. For more information about HS devices, contact your TI representative.

The DRA71x Jacinto 6 Entry processor family is qualified according to the AEC-Q100 standard.

The device features are simplified power supply rail mapping which enables lower cost PMIC solutions.

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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet DRA71x Infotainment Applications Processor datasheet (Rev. G) PDF | HTML Nov 25, 2019
* User guide DRA71x and DRA72x Technical Reference Manual (Rev. D) May 21, 2019
* Errata DRA72x and DRA71x SoC for Automotive Infortainment Silicon Errata (Rev. F) PDF | HTML Sep 8, 2024
Application note Integrating virtual DRM between VISION SDK and PSDK on Jacinto6 SOC PDF | HTML May 5, 2021
Application note IVA-HD Sharing Between VISION-SDK and PSDKLA on Jacinto6 SoC PDF | HTML Aug 24, 2020
White paper Jump Start Upgrading Your Digital Cluster Design with Jacinto 6 Platform (Rev. A) Aug 17, 2020
Application note AM57x, DRA7x, and TDA2x EMIF Tools (Rev. E) Jan 6, 2020
Application note Integrating New Cameras With Video Input Port on DRA7xx SoCs PDF | HTML Jun 11, 2019
Application note Achieving Early CAN Response on DRA7xx Devices Nov 28, 2018
Application note DRA74x_75x/DRA72x Performance (Rev. A) Oct 31, 2018
Application note Audio Post Processing Engine on Jacinto™ DRA7x Family of Devices Sep 14, 2018
Application note The Implementation of YUV422 Output for SRV Aug 2, 2018
Application note MMC DLL Tuning (Rev. B) Jul 31, 2018
Application note Integrating AUTOSAR on TI SoC: Fundamentals Jun 18, 2018
Application note ECC/EDC on TDAxx (Rev. B) Jun 13, 2018
Application note Tools and Techniques to Root Case Failures in Video Capture Subsystem Jun 12, 2018
Application note Sharing VPE Between VISIONSDK and PSDKLA May 4, 2018
Application note Android Boot Optimization on DRA7xx Devices (Rev. A) Feb 13, 2018
Technical article Jacinto™ DRA automotive processors drive digital cockpit solutions PDF | HTML Jan 12, 2018
Application note Using Peripheral Boot and DFU for Rapid Development on Jacinto 6 Devices (Rev. A) Nov 30, 2017
Application note Jacinto6 Spread Spectrum Clocking Configuration (Rev. A) Nov 27, 2017
Application note Optimizing DRA7xx and TDA2xx Processors for use with Video Display SERDES (Rev. B) Nov 7, 2017
Application note A Guide to Debugging With CCS on the DRA75x, DRA74x, TDA2x and TDA3x Family of D (Rev. B) Nov 3, 2017
User guide DRA71x Cost Effective Automotive Reference Design Nov 1, 2017
Application note USB Composite Gadget Using CONFIG-FS on DRA7xx Devices Sep 26, 2017
Application note Robust Rear-View Camera (RVC) App Report Sep 13, 2017
Application note Optimization of GPU-Based Surround View on TI’s TDA2x SoC Sep 12, 2017
Application note Using DSS Write-Back Pipeline for RGB-to-YUV Conversion on DRA7xx Devices Aug 14, 2017
Application note Software Guidelines to EMIF/DDR3 Configuration on DRA7xx Devices Jul 12, 2017
Application note Linux Boot Time Optimizations on DRA7xx Devices Mar 31, 2017
Application note Interfacing DRA75x and DRA74x Audio to Analog Codecs (Rev. A) Feb 17, 2017
Application note Early Splash Screen on DRA7x Devices Jan 31, 2017
Application note Quality of Service (QoS) Knobs for DRA74x, DRA75x & TDA2x Family of Devices (Rev. A) Dec 15, 2016
Application note Gstreamer Migration Guidelines Apr 26, 2016
User guide Jacinto6 Android Video Encoder Software Design Specification User's Guide Apr 21, 2016
User guide Jacinto6 Android Video Decoder Software Design Specification User's Guide Apr 21, 2016
Application note Flashing Binaries to DRA7xx Factory Boards Using DFU Apr 14, 2016
Application note Tools and Techniques for Audio Debugging Apr 13, 2016
Application note Debugging Tools and Techniques With IPC3.x Mar 30, 2016
Application note Modifying Memory Usage for IPUMM Applications Loaded IPC 3.x for DRA75x, DRA74x (Rev. A) Jan 15, 2016
White paper Informational ADAS as Software Upgrade to Today’s Infotainment Systems Oct 14, 2014
Application note Guide to fix Perf Issues Using QoS Knobs for DRA74x, DRA75x, TDA2x & TD3x Device Aug 13, 2014
White paper Today’s high-end infotainment soon becoming mainstream Jun 2, 2014

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Software development kit (SDK)

PROCESSOR-SDK-ANDROID-AUTOMOTIVE-DRA7X

Processor SDK Linux Automotive

Processor SDK Linux Automotive is the foundational software development platform for TI's Jacinto™ DRAx family of Infotainment SoCs. The software framework allows users to develop feature-rich Infotainment solutions such as reconfigurable digital instrument (...)

Supported products & hardware
Software development kit (SDK)

PROCESSOR-SDK-LINUX-AUTOMOTIVE-DRA7X — PROCESSOR-SDK-LINUX-AUTOMOTIVE-DRA7X

Processor SDK Linux Automotive

Processor SDK Linux Automotive is the foundational software development platform for TI's Jacinto™ DRAx family of Infotainment SoCs. The software framework allows users to develop feature-rich Infotainment solutions such as reconfigurable digital instrument (...)

Supported products & hardware
Software development kit (SDK)

PROCESSOR-SDK-RTOS-AUTOMOTIVE-DRA7X

Processor SDK Linux Automotive

Processor SDK Linux Automotive is the foundational software development platform for TI's Jacinto™ DRAx family of Infotainment SoCs. The software framework allows users to develop feature-rich Infotainment solutions such as reconfigurable digital instrument (...)

Supported products & hardware
IDE, configuration, compiler or debugger

SYSCONFIG — Standalone desktop version of SysConfig

CCStudio™ SysConfig is part of TI's extensive CCStudio™ development ecosystem and is a configuration tool that simplifies hardware and software configuration challenges to accelerate software development.

SysConfig provides an intuitive graphical user interface for configuring pins, peripherals, (...)

Supported products & hardware
Operating system (OS)

GHS-INTEGRITY-RTOS — Green Hills INTEGRITY RTOS

The INTEGRITY RTOS from Green Hills Software is the safe and secure foundation for running critical applications and guest operating systems on TI processors using Arm® Cortex-A cores. Its certified separation kernel runs software within protected partitions with certified (...)

Supported products & hardware
Support software

VCTR-3P-MICROSAR — Vector MICROSAR AUTOSAR software for microcontrollers and high-performance computers (HPCs)

MICROSAR and DaVinci product families simplify ECU development with sophisticated embedded software and powerful development tools for both microcontrollers and HPCs. With advanced infrastructure software, you create an optimal basis for your ECUs and simplify all accompanying development tasks (...)

Supported products & hardware
Simulation model

DRA71x and DRA79x BSDL Model (Rev. A)

SPRM695A.ZIP (15 KB) - BSDL model
Supported products & hardware
Simulation model

DRA71x and DRA79x IBIS Model

SPRM697.ZIP (9618 KB) - IBIS model
Supported products & hardware
Simulation model

DRA71x and DRA79x Thermal Model

SPRM696.ZIP (2 KB) - Thermal model
Supported products & hardware
Calculation tool

CLOCKTREETOOL — Clock Tree Tool for Sitara, Automotive, Vision Analytics, & Digital Signal Processors


The Clock Tree Tool (CTT) for ARM Processors & Digital Signal Processors is an interactive configuration software tool that provides information about device clock tree architecture. This tool allows visualization of the device clock tree. It can also be used to determine the exact register (...)

Supported products & hardware
Reference design

TIDEP-01002 — Cost-optimized digital cluster automotive reference design with Jacinto™ automotive processor

The Jacinto™ automotive processor Digital Cluster Automotive Reference Design (DCARD) is a cost-optimized design for reconfigurable digital cluster systems.  DCARD is a complete and self-contained 6-layer PCB design to enable 60fps digital cluster solutions on 1920x720 resolution (...)

Supported products & hardware
Package Pins CAD symbols, footprints & 3D models
FCCSP (CBD) 538 Ultra Librarian

Ordering & quality

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Support & training

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