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CPU 32-/64-bit Display type 1 Video Port Interface Operating system DSP/BIOS, Linux, VLX Rating Catalog Operating temperature range (°C) -40 to 85
CPU 32-/64-bit Display type 1 Video Port Interface Operating system DSP/BIOS, Linux, VLX Rating Catalog Operating temperature range (°C) -40 to 85
FCBGA (CUT) 529 361 mm² (19 mm × 19 mm)
  • High-Performance Digital Media SoC
    • 1-GHz C64x+™ Clock Rate
    • 500-MHz ARM926EJ-S™ Clock Rate
    • Eight 32-Bit C64x+ Instructions/Cycle
    • 8000 C64x+ MIPS
    • Fully Software-Compatible With C64x / ARM9™
    • Industrial Temperature Devices Available
  • Advanced Very-Long-Instruction-Word (VLIW) TMS320C64x+™ DSP Core
    • Eight Highly Independent Functional Units
      • Six ALUs (32-/40-Bit), Each Supports Single 32-Bit, Dual 16-Bit, or Quad 8-Bit Arithmetic per Clock Cycle
      • Two Multipliers Support Four 16 x 16-Bit Multiplies (32-Bit Results) per Clock Cycle or Eight 8 x 8-Bit Multiplies (16-Bit Results) per Clock Cycle
    • Load-Store Architecture With Non-Aligned Support
    • 64 32-Bit General-Purpose Registers
    • Instruction Packing Reduces Code Size
    • All Instructions Conditional
    • Additional C64x+™ Enhancements
      • Protected Mode Operation Exceptions
      • Support for Error Detection and Program Redirection
      • Hardware Support for Modulo Loop Operation
  • C64x+ Instruction Set Features
    • Byte-Addressable (8-/16-/32-/64-Bit Data)
    • 8-Bit Overflow Protection
    • Bit-Field Extract, Set, Clear
    • Normalization, Saturation, Bit-Counting
    • Compact 16-Bit Instructions
    • Additional Instructions to Support Complex Multiplies
  • C64x+ L1/L2 Memory Architecture
    • 32K-Byte L1P Program RAM/Cache (Direct Mapped)
    • 32K-Byte L1D Data RAM/Cache (2-Way Set-Associative)
    • 128K-Byte L2 Unified Mapped RAM/Cache (Flexible RAM/Cache Allocation)
  • ARM926EJ-S Core
    • Support for 32-Bit and 16-Bit (Thumb® Mode) Instruction Sets
    • DSP Instruction Extensions and Single Cycle MAC
    • ARM® Jazelle® Technology
    • EmbeddedICE-RT™ Logic for Real-Time Debug
  • ARM9 Memory Architecture
    • 16K-Byte Instruction Cache
    • 8K-Byte Data Cache
    • 32K-Byte RAM
    • 8K-Byte ROM
  • Embedded Trace Buffer™ (ETB11™) With 4KB Memory for ARM9 Debug
  • Endianness: Little Endian for ARM and DSP
  • Dual Programmable High-Definition Video Image Co-Processor (HDVICP) Engines
    • Supports a Range of Encode, Decode, and Transcode Operations
      • H.264, MPEG2, VC1, MPEG4 SP/ASP
  • 150-MHz Video Port Interface (VPIF)
    • Two 8-Bit SD (BT.656), Single 16-Bit HD (BT.1120), or Single Raw (8-/10-/12-Bit) Video Capture Channels
    • Two 8-Bit SD (BT.656) or Single 16-Bit HD (BT.1120) Video Display Channels
  • Video Data Conversion Engine (VDCE)
    • Horizontal and Vertical Downscaling
    • Chroma Conversion (4:2:2 ↔ 4:2:0)
  • Two Transport Stream Interface (TSIF) Modules (One Parallel/Serial and One Serial Only)
    • TSIF for MPEG Transport Stream
    • Simultaneous Synchronous or Asynchronous Input/Output Streams
    • Absolute Time Stamp Detection
    • PID Filter With 7 PID Filter Tables
    • Corresponding Clock Reference Generator (CRGEN) Modules for System Time-Clock Recovery
  • External Memory Interfaces (EMIFs)
    • Up to 400-MHz 32-Bit DDR2 SDRAM Memory Controller With 512M-Byte Address Space (1.8-V I/O)
    • Asynchronous16-Bit Wide EMIF (EMIFA) With 128M-Byte Address Reach
      • Flash Memory Interfaces
        • NOR (8-/16-Bit-Wide Data)
        • NAND (8-/16-Bit-Wide Data)
  • Enhanced Direct-Memory-Access (EDMA) Controller (64 Independent Channels)
    • Programmable Default Burst Size
  • 10/100/1000 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant (3.3-V I/O Only)
    • Supports MII and GMII Media Independent Interfaces
    • Management Data I/O (MDIO) Module
  • USB Port With Integrated 2.0 PHY
    • USB 2.0 High-/Full-Speed Client
    • USB 2.0 High-/Full-/Low-Speed Host (Mini-Host, Supporting One External Device)
  • 32-Bit, 66-MHz, 3.3 V Peripheral Component Interconnect (PCI) Master/Slave Interface
    • Conforms to PCI Specification 2.3
  • Two 64-Bit General-Purpose Timers (Each Configurable as Two 32-Bit Timers)
  • One 64-Bit Watch Dog Timer
  • Three Configurable UART/IrDA/CIR Modules
    (One With Modem Control Signals)
    • Supports up to 1.8432 Mbps UART
    • SIR and MIR (0.576 MBAUD)
    • CIR With Programmable Data Encoding
  • One Serial Peripheral Interface (SPI) With Two Chip-Selects
  • Master/Slave Inter-Integrated Circuit (I2C Bus™)
  • Two Multichannel Audio Serial Ports (McASPs)
    • One Four Serializer Transmit/Receive Port
    • One Single DIT Transmit Port for S/PDIF
  • 32-Bit Host Port Interface (HPI)
  • VLYNQ™ Interface (FPGA Interface)
  • Two Pulse Width Modulator (PWM) Outputs
  • ATA/ATAPI I/F (ATA/ATAPI-6 Specification)
  • Up to 33 General-Purpose I/O (GPIO) Pins (Multiplexed With Other Device Functions)
  • On-Chip ARM ROM Bootloader (RBL)
  • Individual Power-Saving Modes for ARM/DSP
  • Flexible PLL Clock Generators
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • 529-Pin Pb-Free BGA Package (CUT Suffix), 0.8-mm Ball Pitch
  • 0.09-µm/7-Level Cu Metal Process (CMOS)
  • 3.3-V and 1.8-V I/O, 1.3-V Internal
  • Community Reesources

All other trademarks are the property of their respective owners.

Applications:

  • Video Encode/Decode/Transcode/Transrate
  • Digital Media
  • Networked Media Encode/Decode
  • Video Imaging
  • Video Infrastructure
  • Video Conferencing
  • High-Performance Digital Media SoC
    • 1-GHz C64x+™ Clock Rate
    • 500-MHz ARM926EJ-S™ Clock Rate
    • Eight 32-Bit C64x+ Instructions/Cycle
    • 8000 C64x+ MIPS
    • Fully Software-Compatible With C64x / ARM9™
    • Industrial Temperature Devices Available
  • Advanced Very-Long-Instruction-Word (VLIW) TMS320C64x+™ DSP Core
    • Eight Highly Independent Functional Units
      • Six ALUs (32-/40-Bit), Each Supports Single 32-Bit, Dual 16-Bit, or Quad 8-Bit Arithmetic per Clock Cycle
      • Two Multipliers Support Four 16 x 16-Bit Multiplies (32-Bit Results) per Clock Cycle or Eight 8 x 8-Bit Multiplies (16-Bit Results) per Clock Cycle
    • Load-Store Architecture With Non-Aligned Support
    • 64 32-Bit General-Purpose Registers
    • Instruction Packing Reduces Code Size
    • All Instructions Conditional
    • Additional C64x+™ Enhancements
      • Protected Mode Operation Exceptions
      • Support for Error Detection and Program Redirection
      • Hardware Support for Modulo Loop Operation
  • C64x+ Instruction Set Features
    • Byte-Addressable (8-/16-/32-/64-Bit Data)
    • 8-Bit Overflow Protection
    • Bit-Field Extract, Set, Clear
    • Normalization, Saturation, Bit-Counting
    • Compact 16-Bit Instructions
    • Additional Instructions to Support Complex Multiplies
  • C64x+ L1/L2 Memory Architecture
    • 32K-Byte L1P Program RAM/Cache (Direct Mapped)
    • 32K-Byte L1D Data RAM/Cache (2-Way Set-Associative)
    • 128K-Byte L2 Unified Mapped RAM/Cache (Flexible RAM/Cache Allocation)
  • ARM926EJ-S Core
    • Support for 32-Bit and 16-Bit (Thumb® Mode) Instruction Sets
    • DSP Instruction Extensions and Single Cycle MAC
    • ARM® Jazelle® Technology
    • EmbeddedICE-RT™ Logic for Real-Time Debug
  • ARM9 Memory Architecture
    • 16K-Byte Instruction Cache
    • 8K-Byte Data Cache
    • 32K-Byte RAM
    • 8K-Byte ROM
  • Embedded Trace Buffer™ (ETB11™) With 4KB Memory for ARM9 Debug
  • Endianness: Little Endian for ARM and DSP
  • Dual Programmable High-Definition Video Image Co-Processor (HDVICP) Engines
    • Supports a Range of Encode, Decode, and Transcode Operations
      • H.264, MPEG2, VC1, MPEG4 SP/ASP
  • 150-MHz Video Port Interface (VPIF)
    • Two 8-Bit SD (BT.656), Single 16-Bit HD (BT.1120), or Single Raw (8-/10-/12-Bit) Video Capture Channels
    • Two 8-Bit SD (BT.656) or Single 16-Bit HD (BT.1120) Video Display Channels
  • Video Data Conversion Engine (VDCE)
    • Horizontal and Vertical Downscaling
    • Chroma Conversion (4:2:2 ↔ 4:2:0)
  • Two Transport Stream Interface (TSIF) Modules (One Parallel/Serial and One Serial Only)
    • TSIF for MPEG Transport Stream
    • Simultaneous Synchronous or Asynchronous Input/Output Streams
    • Absolute Time Stamp Detection
    • PID Filter With 7 PID Filter Tables
    • Corresponding Clock Reference Generator (CRGEN) Modules for System Time-Clock Recovery
  • External Memory Interfaces (EMIFs)
    • Up to 400-MHz 32-Bit DDR2 SDRAM Memory Controller With 512M-Byte Address Space (1.8-V I/O)
    • Asynchronous16-Bit Wide EMIF (EMIFA) With 128M-Byte Address Reach
      • Flash Memory Interfaces
        • NOR (8-/16-Bit-Wide Data)
        • NAND (8-/16-Bit-Wide Data)
  • Enhanced Direct-Memory-Access (EDMA) Controller (64 Independent Channels)
    • Programmable Default Burst Size
  • 10/100/1000 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant (3.3-V I/O Only)
    • Supports MII and GMII Media Independent Interfaces
    • Management Data I/O (MDIO) Module
  • USB Port With Integrated 2.0 PHY
    • USB 2.0 High-/Full-Speed Client
    • USB 2.0 High-/Full-/Low-Speed Host (Mini-Host, Supporting One External Device)
  • 32-Bit, 66-MHz, 3.3 V Peripheral Component Interconnect (PCI) Master/Slave Interface
    • Conforms to PCI Specification 2.3
  • Two 64-Bit General-Purpose Timers (Each Configurable as Two 32-Bit Timers)
  • One 64-Bit Watch Dog Timer
  • Three Configurable UART/IrDA/CIR Modules
    (One With Modem Control Signals)
    • Supports up to 1.8432 Mbps UART
    • SIR and MIR (0.576 MBAUD)
    • CIR With Programmable Data Encoding
  • One Serial Peripheral Interface (SPI) With Two Chip-Selects
  • Master/Slave Inter-Integrated Circuit (I2C Bus™)
  • Two Multichannel Audio Serial Ports (McASPs)
    • One Four Serializer Transmit/Receive Port
    • One Single DIT Transmit Port for S/PDIF
  • 32-Bit Host Port Interface (HPI)
  • VLYNQ™ Interface (FPGA Interface)
  • Two Pulse Width Modulator (PWM) Outputs
  • ATA/ATAPI I/F (ATA/ATAPI-6 Specification)
  • Up to 33 General-Purpose I/O (GPIO) Pins (Multiplexed With Other Device Functions)
  • On-Chip ARM ROM Bootloader (RBL)
  • Individual Power-Saving Modes for ARM/DSP
  • Flexible PLL Clock Generators
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • 529-Pin Pb-Free BGA Package (CUT Suffix), 0.8-mm Ball Pitch
  • 0.09-µm/7-Level Cu Metal Process (CMOS)
  • 3.3-V and 1.8-V I/O, 1.3-V Internal
  • Community Reesources

All other trademarks are the property of their respective owners.

Applications:

  • Video Encode/Decode/Transcode/Transrate
  • Digital Media
  • Networked Media Encode/Decode
  • Video Imaging
  • Video Infrastructure
  • Video Conferencing

The TMS320DM6467T (also referenced as DM6467T) leverages TI's DaVinci™ technology to meet the networked media encode and decode application processing needs of next-generation embedded devices.

The DM6467T enables OEMs and ODMs to quickly bring to market devices featuring robust operating systems support, rich user interfaces, high processing performance, and long battery life through the maximum flexibility of a fully integrated mixed processor solution.

The dual-core architecture of the DM6467T provides benefits of both DSP and Reduced Instruction Set Computer (RISC) technologies, incorporating a high-performance TMS320C64x+ DSP core and an ARM926EJ-S core.

The ARM926EJ-S is a 32-bit RISC processor core that performs 32-bit or 16-bit instructions and processes 32-bit, 16-bit, or 8-bit data. The core uses pipelining so that all parts of the processor and memory system can operate continuously.

The ARM core incorporates:

  • A coprocessor 15 (CP15) and protection module
  • Data and program Memory Management Units (MMUs) with table look-aside buffers.
  • Separate 16K-byte instruction and 8K-byte data caches. Both are four-way associative with virtual index virtual tag (VIVT).

The TMS320C64x+™ DSPs are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. It is based on an enhanced version of the second-generation high-performance, advanced very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making these DSP cores an excellent choice for digital media applications. The C64x is a code-compatible member of the C6000™ DSP platform. The TMS320C64x+ DSP is an enhancement of the C64x+ DSP with added functionality and an expanded instruction set.

Any reference to the C64x DSP or C64x CPU also applies, unless otherwise noted, to the C64x+ DSP and C64x+ CPU, respectively.

With performance of up to 8000 million instructions per second (MIPS) at a clock rate of 1 GHz, the C64x+ core offers solutions to high-performance DSP programming challenges. The DSP core possesses the operational flexibility of high-speed controllers and the numerical capability of array processors. The C64x+ DSP core processor has 64 general-purpose registers of 32-bit word length and eight highly independent functional units— two multipliers for a 32-bit result and six arithmetic logic units (ALUs). The eight functional units include instructions to accelerate the performance in video and imaging applications. The DSP core can produce four 16-bit multiply-accumulates (MACs) per cycle for a total of 4000 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 8000 MMACS. For more details on the C64x+ DSP, see the TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (literature number SPRU732).

The DM6467T also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000 DSP platform devices. The DM6467T core uses a two-level cache-based architecture. The Level 1 program cache (L1P) is a 256K-bit direct mapped cache and the Level 1 data cache (L1D) is a 640K-bit 2-way set-associative cache. The Level 2 memory/cache (L2) consists of an 512K-bit memory space that is shared between program and data space. L2 memory can be configured as mapped memory, cache, or combinations of the two.

The peripheral set includes: a configurable video port; a 10/100/1000 Mb/s Ethernet MAC (EMAC) with a Management Data Input/Output (MDIO) module; a 4-bit transfer/4-bit receive VLYNQ interface; an inter-integrated circuit (I2C) Bus interface; a multichannel audio serial port (McASP0) with 4 serializers; a secondary multichannel audio serial port (McASP1) with a single transmit serializer; 2 64-bit general-purpose timers each configurable as 2 independent 32-bit timers; 1 64-bit watchdog timer; a configurable 32-bit host port interface (HPI); up to 33-pins of general-purpose input/output (GPIO) with programmable interrupt/event generation modes, multiplexed with other peripherals; 3 UART/IrDA/CIR interfaces with modem interface signals on UART0; 2 pulse width modulator (PWM) peripherals; an ATA/ATAPI-6 interface; a 66-MHz peripheral component interface (PCI); and 2 external memory interfaces: an asynchronous external memory interface (EMIFA) for slower memories/peripherals, and a higher speed synchronous memory interface for DDR2.

The Ethernet Media Access Controller (EMAC) provides an efficient interface between the DM6467T and the network. The DM6467T EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or full-duplex mode; and 1000Base-TX (1 Gbps) in full-duplex mode with hardware flow control and quality of service (QOS) support.

The Management Data Input/Output (MDIO) module continuously polls all 32 MDIO addresses in order to enumerate all PHY devices in the system. Once a PHY candidate has been selected by the ARM, the MDIO module transparently monitors its link state by reading the PHY status register. Link change events are stored in the MDIO module and can optionally interrupt the ARM, allowing the ARM to poll the link status of the device without continuously performing costly MDIO accesses.

The PCI, HPI, I2C, SPI, USB2.0, and VLYNQ ports allow the DM6467T to easily control peripheral devices and/or communicate with host processors.

The DM6467T also includes a High-Definition Video/Imaging Co-processor (HDVICP) and Video Data Conversion Engine (VDCE) to offload many video and imaging processing tasks from the DSP core, making more DSP MIPS available for common video and imaging algorithms. For more information on the HDVICP enhanced codecs, such as H.264 and MPEG4, please contact your nearest TI sales representative.

The rich peripheral set provides the ability to control external peripheral devices and communicate with external processors. For details on each of the peripherals, see the related sections later in this document and the associated peripheral reference guides.

The DM6467T has a complete set of development tools for both the ARM and DSP. These include C compilers, a DSP assembly optimizer to simplify programming and scheduling, and a Windows™ debugger interface for visibility into source code execution.

The TMS320DM6467T (also referenced as DM6467T) leverages TI's DaVinci™ technology to meet the networked media encode and decode application processing needs of next-generation embedded devices.

The DM6467T enables OEMs and ODMs to quickly bring to market devices featuring robust operating systems support, rich user interfaces, high processing performance, and long battery life through the maximum flexibility of a fully integrated mixed processor solution.

The dual-core architecture of the DM6467T provides benefits of both DSP and Reduced Instruction Set Computer (RISC) technologies, incorporating a high-performance TMS320C64x+ DSP core and an ARM926EJ-S core.

The ARM926EJ-S is a 32-bit RISC processor core that performs 32-bit or 16-bit instructions and processes 32-bit, 16-bit, or 8-bit data. The core uses pipelining so that all parts of the processor and memory system can operate continuously.

The ARM core incorporates:

  • A coprocessor 15 (CP15) and protection module
  • Data and program Memory Management Units (MMUs) with table look-aside buffers.
  • Separate 16K-byte instruction and 8K-byte data caches. Both are four-way associative with virtual index virtual tag (VIVT).

The TMS320C64x+™ DSPs are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. It is based on an enhanced version of the second-generation high-performance, advanced very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making these DSP cores an excellent choice for digital media applications. The C64x is a code-compatible member of the C6000™ DSP platform. The TMS320C64x+ DSP is an enhancement of the C64x+ DSP with added functionality and an expanded instruction set.

Any reference to the C64x DSP or C64x CPU also applies, unless otherwise noted, to the C64x+ DSP and C64x+ CPU, respectively.

With performance of up to 8000 million instructions per second (MIPS) at a clock rate of 1 GHz, the C64x+ core offers solutions to high-performance DSP programming challenges. The DSP core possesses the operational flexibility of high-speed controllers and the numerical capability of array processors. The C64x+ DSP core processor has 64 general-purpose registers of 32-bit word length and eight highly independent functional units— two multipliers for a 32-bit result and six arithmetic logic units (ALUs). The eight functional units include instructions to accelerate the performance in video and imaging applications. The DSP core can produce four 16-bit multiply-accumulates (MACs) per cycle for a total of 4000 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 8000 MMACS. For more details on the C64x+ DSP, see the TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (literature number SPRU732).

The DM6467T also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000 DSP platform devices. The DM6467T core uses a two-level cache-based architecture. The Level 1 program cache (L1P) is a 256K-bit direct mapped cache and the Level 1 data cache (L1D) is a 640K-bit 2-way set-associative cache. The Level 2 memory/cache (L2) consists of an 512K-bit memory space that is shared between program and data space. L2 memory can be configured as mapped memory, cache, or combinations of the two.

The peripheral set includes: a configurable video port; a 10/100/1000 Mb/s Ethernet MAC (EMAC) with a Management Data Input/Output (MDIO) module; a 4-bit transfer/4-bit receive VLYNQ interface; an inter-integrated circuit (I2C) Bus interface; a multichannel audio serial port (McASP0) with 4 serializers; a secondary multichannel audio serial port (McASP1) with a single transmit serializer; 2 64-bit general-purpose timers each configurable as 2 independent 32-bit timers; 1 64-bit watchdog timer; a configurable 32-bit host port interface (HPI); up to 33-pins of general-purpose input/output (GPIO) with programmable interrupt/event generation modes, multiplexed with other peripherals; 3 UART/IrDA/CIR interfaces with modem interface signals on UART0; 2 pulse width modulator (PWM) peripherals; an ATA/ATAPI-6 interface; a 66-MHz peripheral component interface (PCI); and 2 external memory interfaces: an asynchronous external memory interface (EMIFA) for slower memories/peripherals, and a higher speed synchronous memory interface for DDR2.

The Ethernet Media Access Controller (EMAC) provides an efficient interface between the DM6467T and the network. The DM6467T EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or full-duplex mode; and 1000Base-TX (1 Gbps) in full-duplex mode with hardware flow control and quality of service (QOS) support.

The Management Data Input/Output (MDIO) module continuously polls all 32 MDIO addresses in order to enumerate all PHY devices in the system. Once a PHY candidate has been selected by the ARM, the MDIO module transparently monitors its link state by reading the PHY status register. Link change events are stored in the MDIO module and can optionally interrupt the ARM, allowing the ARM to poll the link status of the device without continuously performing costly MDIO accesses.

The PCI, HPI, I2C, SPI, USB2.0, and VLYNQ ports allow the DM6467T to easily control peripheral devices and/or communicate with host processors.

The DM6467T also includes a High-Definition Video/Imaging Co-processor (HDVICP) and Video Data Conversion Engine (VDCE) to offload many video and imaging processing tasks from the DSP core, making more DSP MIPS available for common video and imaging algorithms. For more information on the HDVICP enhanced codecs, such as H.264 and MPEG4, please contact your nearest TI sales representative.

The rich peripheral set provides the ability to control external peripheral devices and communicate with external processors. For details on each of the peripherals, see the related sections later in this document and the associated peripheral reference guides.

The DM6467T has a complete set of development tools for both the ARM and DSP. These include C compilers, a DSP assembly optimizer to simplify programming and scheduling, and a Windows™ debugger interface for visibility into source code execution.

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상위 문서 유형 직함 형식 옵션 최신 영어 버전 다운로드 날짜
* 데이터 시트 TMS320DM6467T Digital Media System-on-Chip datasheet (Rev. C) 2012. 7. 11
* 정오표 TMS320DM6467T Digital Media System-on-Chip (DMSoC) Silicon Errata (Rev. 3.0) (Rev. A) 2010. 7. 7
애플리케이션 노트 Introduction to TMS320C6000 DSP Optimization 2011. 10. 6
사용 설명서 TMS320DM646x DMSoC Inter-Integrated Circuit (I2C) Module User's Guide (Rev. D) 2011. 3. 25
사용 설명서 TMS320DM646x DMSoC DDR2 Memory Controller User's Guide (Rev. E) 2011. 3. 21
사용 설명서 TMS320DM646x DMSoC Serial Peripheral Interface (SPI) User's Guide (Rev. B) 2011. 3. 17
애플리케이션 노트 Using the TMS320DM646x DMSoC Bootloader (Rev. D) 2011. 3. 4
사용 설명서 TMS320DM646x DMSoC Enhanced Direct Memory Access Controller (EDMA) User's Guide (Rev. B) 2011. 1. 14
사용 설명서 TMS320DM646x DMSoC 64-Bit Timer User's Guide (Rev. B) 2011. 1. 7
사용 설명서 TMS320DM646x DMSoC EMAC/MDIO Module User's Guide (Rev. A) 2010. 12. 23
사용 설명서 TMS320DM646x DMSoC Pulse-Width Modulator (PWM) User's Guide (Rev. A) 2010. 8. 6
사용 설명서 TMS320DM646x DMSoC ARM Subsystem Reference Guide (Rev. E) 2010. 8. 4
사용 설명서 TMS320C64x+ DSP Megamodule Reference Guide (Rev. K) 2010. 8. 3
사용 설명서 TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (Rev. J) 2010. 7. 30
애플리케이션 노트 Migrating from TMS320DM6467 to TMS320DM6467T (Rev. B) 2010. 6. 8
애플리케이션 노트 Using the Video Port of TMS320DM646x (Rev. A) 2010. 4. 6
사용 설명서 TMS320DM646x DMSoC Peripheral Component Interconnect (PCI) User's Guide (Rev. B) 2009. 11. 16
사용 설명서 TMS320DM646x DMSoC Video Port Interface (VPIF) User's Guide (Rev. D) 2009. 11. 16
사용 설명서 TMS320DM646x DMSoC Peripherals Overview Reference Guide (Rev. B) 2009. 11. 16
애플리케이션 노트 TMS320DM6467T Power Consumption Summary 2009. 11. 13
애플리케이션 노트 Running a TMS320C64x+ Codec Across TMS320C64x+ Based DSP Platforms 2009. 9. 24
사용 설명서 TMS320DM646x DMSoC Video Data Conversion Engine (VDCE) User's Guide (Rev. A) 2009. 8. 26
사용 설명서 TMS320DM646x DMSoC Asynchronous External Memory Interface (EMIF) User's Guide (Rev. C) 2009. 7. 14
사용 설명서 TMS320DM646x DMSoC Universal Asynchronous Receiver/Transmitter (UART) User's Gde (Rev. D) 2009. 6. 21
사용 설명서 TMS320DM646x DMSoC General-Purpose Input/Output (GPIO) User's Guide (Rev. A) 2009. 3. 13
사용 설명서 TMS320C64x+ DSP Cache User's Guide (Rev. B) 2009. 2. 11
애플리케이션 노트 Multiple TMS320DM6467 PCI Interface 2009. 2. 10
애플리케이션 노트 PCI Express to TMS320DM646x PCI Interface Through XIO2000A Bridge 2009. 2. 3
사용 설명서 TMS320DM646x DMSoC ATA Controller User's Guide (Rev. A) 2009. 1. 27
사용 설명서 TMS320DM646x DMSoC Host Port Interface (HPI) User's Guide (Rev. A) 2008. 11. 7
추가 자료 DaVinci Technology Overview Brochure (Rev. B) 2008. 9. 27
애플리케이션 노트 Understanding TI's PCB Routing Rule-Based DDR Timing Specification (Rev. A) 2008. 7. 17
사용 설명서 TMS320DM646x DMSoC Transport Stream Interface (TSIF) Module User's Guide (Rev. E) 2008. 7. 2
애플리케이션 노트 Building a Small Embedded Linux Kernel Example (Rev. A) 2008. 5. 27
사용 설명서 TMS320DM646x DMSoC Multichannel Audio Serial Port (McASP) User's Guide (Rev. B) 2008. 3. 13
사용 설명서 TMS320DM646x DMSoC DSP Subsystem Reference Guide 2007. 12. 3
사용 설명서 TMS320DM646x DMSoC VLYNQ Port User's Guide 2007. 12. 3
사용 설명서 TMS320DM646x DMSoC Clock Reference Generator (CRGEN) User's Guide 2007. 12. 3
애플리케이션 노트 Thermal Considerations for the DM64xx, DM64x, and C6000 Devices 2007. 5. 20
애플리케이션 노트 Migrating from TMS320C64x to TMS320C64x+ (Rev. A) 2005. 10. 20

설계 및 개발

추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.

디버그 프로브

TMDSEMU200-U — XDS200 USB 디버그 프로브

XDS200은 TI 임베디드 장치를 디버깅하는 데 사용되는 디버그 프로브(에뮬레이터)입니다. 대부분의 장치의 경우 더욱 저렴한 신형 XDS110(www.ti.com/tool/TMDSEMU110-U)을 사용하실 것을 권장합니다. XDS200은 단일 포드에서 다양한 표준(IEEE1149.1, IEEE1149.7, SWD)을 지원합니다. 모든 XDS 디버그 프로브는 ETB(임베디드 트레이스 버퍼)가 포함되어 있는 모든 Arm® 및 DSP 프로세서에서 코어 및 시스템 트레이스를 지원합니다.

XDS200은 TI 20핀 커넥터(TI 14핀, (...)

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TMDSEMU560V2STM-U — XDS560™ 소프트웨어 v2 시스템 추적 USB 디버그 프로브

XDS560v2는 디버그 프로브의 XDS560™ 제품군 중 최고의 성능을 가진 제품으로, 기존의 JTAG 표준(IEEE1149.1)과 cJTAG(IEEE1149.7)를 모두 지원합니다.  SWD(직렬 와이어 디버그)는 지원하지 않습니다.

모든 XDS 디버그 프로브는 ETB(임베디드 추적 버퍼)가 있는 모든 ARM 및 DSP 프로세서에서 코어와 시스템 트레이스를 지원합니다.  핀을 통한 추적의 경우 XDS560v2 PRO TRACE가 필요합니다.

XDS560v2는 MIPI HSPT 60핀 커넥터(TI 14핀, TI 20핀 및 ARM (...)

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TMDSEMU560V2STM-UE — XDS560v2 시스템 추적 USB 및 이더넷 디버그 프로브

The XDS560v2 is the highest performance of the XDS 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 that (...)

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LB-3P-TRACE32-DSP — DSP(디지털 신호 프로세서)용 Lauterbach TRACE32 디버그 및 트레이스 시스템

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 single- or multi-core Digital Signal processors (DSPs) which are a popular choice for audio and video processing as well as radar data (...)

발송: Lauterbach GmbH
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소프트웨어 개발 키트(SDK)

LINUXDVSDK-DV200 — Linux DVSDK (v2.00) for DM644x and DM646x - PRODUCTION

Effective Oct 2010 - Linux DVSDK v4 has been released. For DaVinci™ devices not listed above, search TI.com for your device part number; This product page will have a link to your current DVSDK.

The Linux™ Digital Video Software Development Kits (DVSDKs) enable DaVinci system integrators to (...)

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소프트웨어 개발 키트(SDK)

LINUXDVSDK-DV310 — Linux DVSDK (v3.10) for DM6467T and DM355 - PRODUCTION

Effective Oct 2010 - Linux DVSDK v4 has been released. For DaVinci™ devices not listed above, search TI.com for your device part number; This product page will have a link to your current DVSDK.

The Linux™ Digital Video Software Development Kits (DVSDKs) enable DaVinci system integrators to (...)

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코드 예제 또는 데모

DEMO-DM6467H264E — DEMO: DM6467 1080p30 H.264 Encoder Example Code

Free Example Code - TI provides proof-of-concept application code to demonstrate some of the hardware and software capabilities of its devices.

  • Click GET SOFTWARE to access Application Demo and Documentation, based on the DM6467 EVM (evaluation module).
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드라이버 또는 라이브러리

AEC-AER — Acoustic echo cancellation/removal for TI C64x+, C674x, C55x and Cortex®-A8 processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

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드라이버 또는 라이브러리

FAXLIB — FAX library (FAXLIB) for C66x, C64x+ and C55x processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

지원되는 제품 및 하드웨어
드라이버 또는 라이브러리

VOLIB — Voice library (VoLIB) for C66x, C64x+ and C55x processors

Voice Library - VoLIB provides components that, together, facilitate the development of the signal processing chain for Voice over IP applications such as infrastructure, enterprise, residential gateways and IP phones. Together with optimized implementations of ITU-T voice codecs, that can be (...)

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소프트웨어 코덱

C64XPLUSCODECSPCH — Speech Codecs for C64x+-based Devices

TI 코덱은 무료이고 프로덕션 라이선스와 함께 제공되며 지금 다운로드할 수 있습니다. 모두 프로덕션급 테스트를 통해 비디오 및 음성 애플리케이션에 원활하게 통합되는 것으로 확인되었습니다. 소프트웨어 다운로드 버튼(위)을 클릭하면 테스트를 거친 최신 버전의 코덱에 액세스할 수 있습니다. 데이터시트와 릴리스 노트는 해당 페이지와 각 설치 프로그램에 있습니다.

 

 

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소프트웨어 코덱

C64XPLUSCODECSVID — C64x+ Video Codecs - Software and Documentation

TI 코덱은 무료이고 프로덕션 라이선스와 함께 제공되며 지금 다운로드할 수 있습니다. 모두 프로덕션급 테스트를 통해 비디오 및 음성 애플리케이션에 원활하게 통합되는 것으로 확인되었습니다. 소프트웨어 다운로드 버튼(위)을 클릭하면 테스트를 거친 최신 버전의 코덱에 액세스할 수 있습니다. 데이터시트와 릴리스 노트는 해당 페이지와 각 설치 프로그램에 있습니다.

 

 

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소프트웨어 코덱

DM6467CODECS — Codecs for DM6467 - Software and Documentation

TI 코덱은 무료이고 프로덕션 라이선스와 함께 제공되며 지금 다운로드할 수 있습니다. 모두 프로덕션급 테스트를 통해 오디오, 비디오 및 음성 애플리케이션에 원활하게 통합되는 것으로 확인되었습니다. 소프트웨어 다운로드 버튼(위)을 클릭하면 테스트를 거친 최신 버전의 코덱에 액세스할 수 있습니다. 데이터시트와 릴리스 노트는 해당 페이지와 각 설치 프로그램에 있습니다.

 

 

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시뮬레이션 모델

DM646x ZUT BSDL Model (Rev. A)

SPRM276A.ZIP (12 KB) - BSDL 모델
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시뮬레이션 모델

DM646x ZUT IBIS Model (Rev. E)

SPRM277 (1901 KB) - IBIS 모델
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패키지 CAD 기호, 풋프린트 및 3D 모델
FCBGA (CUT) 529 Ultra Librarian

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TI 엔지니어의 기술 지원을 받을 수 있는 TI E2E™ 포럼

콘텐츠는 TI 및 커뮤니티 기고자에 의해 "있는 그대로" 제공되며 TI의 사양으로 간주되지 않습니다. 사용 약관을 참조하십시오.

품질, 패키징, TI에서 주문하는 데 대한 질문이 있다면 TI 지원을 방문하세요. ​​​​​​​​​​​​​​

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