TDA3LX

AKTIV

Low-Power-SoC mit Verarbeitungs-, Bildgebungs- und Sichtbeschleunigung für ADAS-Anwendungen

Produktdetails

Coprocessors 2 Arm Cortex-M4 Display type 1 PARALLEL OUT, 1 TV OUT Protocols Ethernet Hardware accelerators 1 Embedded Vision Engine (EVE), 1 Image Subsystem Processor Features Vision Analytics Operating system Android, Linux, RTOS Security Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection TI functional safety category Functional Safety-Compliant Rating Automotive Power supply solution LP87322E-Q1, LP87322F-Q1, LP87332A-Q1, TPS65917-Q1, TPS65919-Q1 Operating temperature range (°C) -40 to 125 Edge AI enabled No
Coprocessors 2 Arm Cortex-M4 Display type 1 PARALLEL OUT, 1 TV OUT Protocols Ethernet Hardware accelerators 1 Embedded Vision Engine (EVE), 1 Image Subsystem Processor Features Vision Analytics Operating system Android, Linux, RTOS Security Device attestation & anti-counterfeit, Hardware-enforced isolation, Secure boot, Secure debug, Secure storage, Software IP protection TI functional safety category Functional Safety-Compliant Rating Automotive Power supply solution LP87322E-Q1, LP87322F-Q1, LP87332A-Q1, TPS65917-Q1, TPS65919-Q1 Operating temperature range (°C) -40 to 125 Edge AI enabled No
FCBGA (ABF) 367 225 mm² (15 mm × 15 mm)
  • Architecture designed for ADAS applications
  • Video and image processing support
    • Full-HD video (1920 × 1080p, 60 fps)
    • Video input and video output
  • Up to 2 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
  • Memory Interface (EMIF) module
    • Supports DDR3/DDR3L up to DDR-1066
    • Supports DDR2 up to DDR-800
    • Supports LPDDR2 up to DDR-667
    • Up to 2GB supported
  • Dual Arm® Cortex®-M4 Image Processor Unit (IPU)
  • Vision accelerationPac
    • Embedded Vision Engine (EVE)
  • Display subsystem
    • Display controller with DMA engine
    • CVIDEO / SD-DAC TV analog composite output
  • Video Input Port (VIP) module
    • Support for up to 4 multiplexed input ports
  • On-chip temperature sensor that is capable of generating temperature alerts
  • General-Purpose Memory Controller (GPMC)
  • Enhanced Direct Memory Access (EDMA) controller
  • 3-port (2 external) Gigabit Ethernet (GMAC) switch
  • Controller Area Network (DCAN) module
    • CAN 2.0B protocol
  • Modular Controller Area Network (MCAN) module
    • CAN 2.0B protocol
  • Eight 32-bit general-purpose timers
  • Three configurable UART modules
  • Four Multichannel Serial Peripheral Interfaces (McSPI)
  • Quad SPI interface
  • Two Inter-Integrated Circuit (I2C™) ports
  • Three Multichannel Audio Serial Port (McASP) modules
  • Secure Digital Input Output Interface (SDIO)
  • Up to 126 General-Purpose I/O (GPIO) pins
  • Power, reset, and clock management
  • On-chip debug with CTools technology
  • Automotive AEC-Q100 qualified
  • 15 × 15 mm, 0.65-mm pitch, 367-pin PBGA (ABF)
  • Seven Dual Clock Comparators (DCC)
  • Memory Cyclic Redundancy Check (CRC)
  • TESOC (LBIST/PBIST) that enables field testing of logic and on-chip memory
  • Error Signaling Module (ESM)
  • Five instances of Real-Time Interrupt (RTI) modules that can be used as watch dog timers
  • 8-channel 10-bit ADC
  • MIPI® Camera Serial Interface 2 (CSI-2)
  • PWMSS
  • Full HW image pipe: DPC, CFA, 3D-NF, RGB-YUV
    • WDR, HW LDC and perspective
  • Architecture designed for ADAS applications
  • Video and image processing support
    • Full-HD video (1920 × 1080p, 60 fps)
    • Video input and video output
  • Up to 2 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
  • Memory Interface (EMIF) module
    • Supports DDR3/DDR3L up to DDR-1066
    • Supports DDR2 up to DDR-800
    • Supports LPDDR2 up to DDR-667
    • Up to 2GB supported
  • Dual Arm® Cortex®-M4 Image Processor Unit (IPU)
  • Vision accelerationPac
    • Embedded Vision Engine (EVE)
  • Display subsystem
    • Display controller with DMA engine
    • CVIDEO / SD-DAC TV analog composite output
  • Video Input Port (VIP) module
    • Support for up to 4 multiplexed input ports
  • On-chip temperature sensor that is capable of generating temperature alerts
  • General-Purpose Memory Controller (GPMC)
  • Enhanced Direct Memory Access (EDMA) controller
  • 3-port (2 external) Gigabit Ethernet (GMAC) switch
  • Controller Area Network (DCAN) module
    • CAN 2.0B protocol
  • Modular Controller Area Network (MCAN) module
    • CAN 2.0B protocol
  • Eight 32-bit general-purpose timers
  • Three configurable UART modules
  • Four Multichannel Serial Peripheral Interfaces (McSPI)
  • Quad SPI interface
  • Two Inter-Integrated Circuit (I2C™) ports
  • Three Multichannel Audio Serial Port (McASP) modules
  • Secure Digital Input Output Interface (SDIO)
  • Up to 126 General-Purpose I/O (GPIO) pins
  • Power, reset, and clock management
  • On-chip debug with CTools technology
  • Automotive AEC-Q100 qualified
  • 15 × 15 mm, 0.65-mm pitch, 367-pin PBGA (ABF)
  • Seven Dual Clock Comparators (DCC)
  • Memory Cyclic Redundancy Check (CRC)
  • TESOC (LBIST/PBIST) that enables field testing of logic and on-chip memory
  • Error Signaling Module (ESM)
  • Five instances of Real-Time Interrupt (RTI) modules that can be used as watch dog timers
  • 8-channel 10-bit ADC
  • MIPI® Camera Serial Interface 2 (CSI-2)
  • PWMSS
  • Full HW image pipe: DPC, CFA, 3D-NF, RGB-YUV
    • WDR, HW LDC and perspective

TI’s TDA3x System-on-Chip (SoC) is a highly optimized and scalable family of devices designed to meet the requirements of leading Advanced Driver Assistance Systems (ADAS). The TDA3x family enables broad ADAS applications in automobiles by integrating an optimal mix of performance, low power, smaller form factor and ADAS vision analytics processing that aims to facilitate a more autonomous and collision-free driving experience.

The TDA3x SoC enables sophisticated embedded vision technology in today’s automobile by enabling the industry’s broadest range of ADAS applications including front camera, rear camera, surround view, radar, and fusion on a single architecture.

The TDA3x SoC incorporates a heterogeneous, scalable architecture that includes a mix of Texas Instruments (TI)’s fixed and floating-point TMS320C66x digital signal processor (DSP) generation cores, Vision AccelerationPac (EVE), and dual-Cortex-M4 processors. The device allows low power profile in different package options (including Package-On-Package) to enable small form factor designs. TDA3x SoC also integrates a host of peripherals including multi-camera interfaces (both parallel and serial) for LVDS-based surround view systems, displays, CAN and GigB Ethernet AVB.

The Vision AccelerationPac for this family of products includes embedded vision engine (EVE) offloading the vision analytics functionality from the application processor while also reducing the power footprint. The Vision AccelerationPac is optimized for vision processing with a 32-bit RISC core for efficient program execution and a vector coprocessor for specialized vision processing.

Additionally, TI provides a complete set of development tools for the Arm, DSP, and EVE coprocessor, including C compilers, a DSP assembly optimizer to simplify programming and scheduling, and a debugging interface for visibility into source code execution.

The TDA3x ADAS processor is qualified according to AEC-Q100 standard.

TI’s TDA3x System-on-Chip (SoC) is a highly optimized and scalable family of devices designed to meet the requirements of leading Advanced Driver Assistance Systems (ADAS). The TDA3x family enables broad ADAS applications in automobiles by integrating an optimal mix of performance, low power, smaller form factor and ADAS vision analytics processing that aims to facilitate a more autonomous and collision-free driving experience.

The TDA3x SoC enables sophisticated embedded vision technology in today’s automobile by enabling the industry’s broadest range of ADAS applications including front camera, rear camera, surround view, radar, and fusion on a single architecture.

The TDA3x SoC incorporates a heterogeneous, scalable architecture that includes a mix of Texas Instruments (TI)’s fixed and floating-point TMS320C66x digital signal processor (DSP) generation cores, Vision AccelerationPac (EVE), and dual-Cortex-M4 processors. The device allows low power profile in different package options (including Package-On-Package) to enable small form factor designs. TDA3x SoC also integrates a host of peripherals including multi-camera interfaces (both parallel and serial) for LVDS-based surround view systems, displays, CAN and GigB Ethernet AVB.

The Vision AccelerationPac for this family of products includes embedded vision engine (EVE) offloading the vision analytics functionality from the application processor while also reducing the power footprint. The Vision AccelerationPac is optimized for vision processing with a 32-bit RISC core for efficient program execution and a vector coprocessor for specialized vision processing.

Additionally, TI provides a complete set of development tools for the Arm, DSP, and EVE coprocessor, including C compilers, a DSP assembly optimizer to simplify programming and scheduling, and a debugging interface for visibility into source code execution.

The TDA3x ADAS processor is qualified according to AEC-Q100 standard.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt TDA3x SoC for Advanced Driver Assistance Systems (ADAS) 15mm Package (ABF) Silicon Revision 2.0 datasheet (Rev. H) PDF | HTML 04.02.2020
* Benutzerhandbuch TDA3x Technical Reference Manual (Rev. D) 29.07.2019
* Errata TDA3x SoC for Advanced Driver Assistance Systems (ADAS) (SR 1.0, 1.0A) (Rev. F) 01.10.2019
Whitepaper Stereo vision- facing the challenges and seeing the opportunities for ADAS (Rev. A) 24.07.2020
Anwendungshinweis AM57x, DRA7x, and TDA2x EMIF Tools (Rev. E) 06.01.2020
Anwendungshinweis TDA2x/TDA2E Performance (Rev. A) PDF | HTML 10.06.2019
Anwendungshinweis TDA3xx Tester On Chip (TESOC) (Rev. A) 19.10.2018
Anwendungshinweis ECC/EDC on TDAxx (Rev. B) 13.06.2018
Anwendungshinweis TMS320C66x XMC Memory Protection 31.01.2018
Anwendungshinweis DSS Bit Exact Output (Rev. A) 12.01.2018
Anwendungshinweis Flashing Utility - mflash 09.01.2018
Whitepaper Embedded low-power deep learning with TIDL 08.12.2017
Anwendungshinweis Dynamic Backup Lines PDF | HTML 14.11.2017
Anwendungshinweis Optimizing DRA7xx and TDA2xx Processors for use with Video Display SERDES (Rev. B) 07.11.2017
Anwendungshinweis A Guide to Debugging With CCS on the DRA75x, DRA74x, TDA2x and TDA3x Family of D (Rev. B) 03.11.2017
Anwendungshinweis DSS BT656 Workaround for TDA2x (Rev. A) 03.11.2017
Informationen zur funktionalen Sicherheit Safety Features on VisionSDK 26.10.2017
Anwendungshinweis IISS Image Pipe for Alternate CFA Formats 16.08.2017
Anwendungshinweis Quality of Service (QoS) Knobs for DRA74x, DRA75x & TDA2x Family of Devices (Rev. A) 15.12.2016
Anwendungshinweis Quad Channel Camera Application for Surround View and CMS Camera Systems (Rev. A) 23.08.2016
Anwendungshinweis ADC as Voltage Monitoring in TDA3x 20.06.2016
Anwendungshinweis TDA3xx ISS Tuning and Debug Infrastructure 02.06.2016
Anwendungshinweis ADAS Power Management 07.03.2016
Whitepaper Multicore SoCs stay a step ahead of SoC FPGAs 23.02.2016
Anwendungshinweis TDA3x Error Signaling Module (ESM) 26.01.2016
Whitepaper Surround view camera systems for ADAS (Rev. A) 20.10.2015
Anwendungshinweis Guide to fix Perf Issues Using QoS Knobs for DRA74x, DRA75x, TDA2x & TD3x Device 13.08.2014
Whitepaper TI Vision SDK, Optimized Vision Libraries for ADAS Systems 14.04.2014
Whitepaper TI Gives Sight to Vision-Enabled Automotive Technologies 16.10.2013
Whitepaper Empowering Automotive Vision with TI’s Vision AccelerationPac 13.10.2013

Design und Entwicklung

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Processor SDK-Vision (Vision SDK) und Processor SDK-Radar (Radar SDK) sind Multiprozessor-Softwareentwicklungskits für TDAx-Prozessoren. Das Software-Framework ermöglicht es dem Benutzer, verschiedene ADAS-Anwendungsdatenströme zu erstellen, die Radardaten, Radarverarbeitung, Videoerfassung, (...)

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