產品詳細資料

CPU 32-/64-bit Operating system INTEGRITY, Linux, Neutrino, PrOS, Windows Embedded CE Rating Catalog Operating temperature range (°C) 0 to 85
CPU 32-/64-bit Operating system INTEGRITY, Linux, Neutrino, PrOS, Windows Embedded CE Rating Catalog Operating temperature range (°C) 0 to 85
NFBGA (ZWT) 361 256 mm² (16 mm × 16 mm)
  • Get started today with production-ready, easy-to-use audio and video codecs for digital media processors based on DaVinci™ technology. Also available are various O/S Board Support Packages and software updates. All codecs are available for FREE evaluation. REQUEST FREE SOFTWARE!
  • High-Performance Digital Media SoC
    • C64x+™ DSP Clock Rate
      • 405-MHz (Max) at 1.05 V or 513-MHz (Max) at 1.2 V
    • ARM926EJ-S™ Clock Rate
      • 202.5-MHz (Max) at 1.05 V or 256-MHz (Max) at 1.2 V
    • Eight 32-Bit C64x+ Instructions/Cycle
    • 4752 C64x+ MIPS
    • Fully Software-Compatible With C64x &153; ARM9™
  • 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 × 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)
    • 80K-Byte L1D Data RAM/Cache (2-Way Set-Associative)
    • 64K-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
    • Embedded ICE-RT™ Logic for Real-Time Debug
  • ARM9 Memory Architecture
    • 16K-Byte Instruction Cache
    • 8K-Byte Data Cache
    • 16K-Byte RAM
    • 8K-Byte ROM
  • Embedded Trace Buffer™ (ETB11™) With 4KB Memory for ARM9 Debug
  • Endianness: Little Endian for ARM and DSP
  • Video Imaging Co-Processor (VICP)
  • Video Processing Subsystem
    • Front End Provides:
      • CCD and CMOS Imager Interface
      • BT.601/BT.656 Digital YCbCr 4:2:2 (8-/16-Bit) Interface
      • Preview Engine for Real-Time Image Processing
      • Glueless Interface to Common Video Decoders
      • Histogram Module
      • Auto-Exposure, Auto-White Balance, and Auto-Focus Module
      • Resize Engine
        • Resize Images From 1/4× to 4×
        • Separate Horizontal/Vertical Control
    • Back End Provides:
      • Hardware On-Screen Display (OSD)
      • Four 54-MHz DACs for a Combination of
        • Composite NTSC/PAL Video
        • Luma/Chroma Separate Video (S-video)
        • Component (YPbPr or RGB) Video (Progressive)
      • Digital Output
        • 8-/16-bit YUV or up to 24-Bit RGB
        • HD Resolution
        • Up to Two Video Windows
  • External Memory Interfaces (EMIFs)
    • 32-Bit DDR2 SDRAM Memory Controller With 256M-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)
  • Flash Card Interfaces
    • Multimedia Card (MMC)/Secure Digital (SD) with Secure Data I/O (SDIO)
    • CompactFlash Controller With True IDE Mode
    • SmartMedia
    • Memory Stick® and Memory Stick Pro™
  • Enhanced Direct-Memory-Access (EDMA3) Controller (64 Independent Channels)
  • Two 64-Bit General-Purpose Timers (Each Configurable as Two 32-Bit Timers)
  • One 64-Bit Watch Dog Timer
  • Three UARTs (One with RTS and CTS Flow Control)
  • One Serial Port Interface (SPI) With Two Chip-Selects
  • Master/Slave Inter-Integrated Circuit (I2C Bus™)
  • Audio Serial Port (ASP)
    • I2S
    • AC97 Audio Codec Interface
    • Standard Voice Codec Interface (AIC12)
  • 10/100 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Media Independent Interface (MII)
  • VLYNQ™ Interface (FPGA Interface)
  • Host Port Interface (HPI) with 16-Bit Multiplexed Address/Data
  • USB Port With Integrated 2.0 PHY
    • USB 2.0 High-/Full-Speed Client
    • USB 2.0 High-/Full-/Low-Speed Host
  • Three Pulse Width Modulator (PWM) Outputs
  • Macrovision® Anticopy Protection (TMS320DM6442 only)(1)
  • On-Chip ARM ROM Bootloader (RBL) to Boot From NAND Flash or UART
  • ATA/ATAPI I/F (ATA/ATAPI-5 Specification)
  • Individual Power-Saving Modes for ARM/DSP
  • Flexible PLL Clock Generators
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • Up to 71 General-Purpose I/O (GPIO) Pins (Multiplexed With Other Device Functions)
  • 361-Pin Pb-Free BGA Package (ZWT Suffix), 0.8-mm Ball Pitch
  • 0.09-µm/6-Level Cu Metal Process (CMOS)
  • 3.3-V and 1.8-V I/O, 1.05-V or 1.2-V internal
  • Applications:
    • Digital Media
    • Networked Media Encode/Decode
    • Video Imaging
    • Portable Media Players

(1) This device is protected by U.S. patent numbers 4,631,603; 4,819,098; 5,315,448; and 6,516,132, and other intellectual property rights. The use of Macrovision's copy protection technology in the device must be authorized by Macrovision and is intended for home and other limited pay-per-view uses only, unless otherwise authorized in writing by Macrovision. Reverse engineering or disassembly is prohibited.

All trademarks are the property of their respective owners.

  • Get started today with production-ready, easy-to-use audio and video codecs for digital media processors based on DaVinci™ technology. Also available are various O/S Board Support Packages and software updates. All codecs are available for FREE evaluation. REQUEST FREE SOFTWARE!
  • High-Performance Digital Media SoC
    • C64x+™ DSP Clock Rate
      • 405-MHz (Max) at 1.05 V or 513-MHz (Max) at 1.2 V
    • ARM926EJ-S™ Clock Rate
      • 202.5-MHz (Max) at 1.05 V or 256-MHz (Max) at 1.2 V
    • Eight 32-Bit C64x+ Instructions/Cycle
    • 4752 C64x+ MIPS
    • Fully Software-Compatible With C64x &153; ARM9™
  • 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 × 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)
    • 80K-Byte L1D Data RAM/Cache (2-Way Set-Associative)
    • 64K-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
    • Embedded ICE-RT™ Logic for Real-Time Debug
  • ARM9 Memory Architecture
    • 16K-Byte Instruction Cache
    • 8K-Byte Data Cache
    • 16K-Byte RAM
    • 8K-Byte ROM
  • Embedded Trace Buffer™ (ETB11™) With 4KB Memory for ARM9 Debug
  • Endianness: Little Endian for ARM and DSP
  • Video Imaging Co-Processor (VICP)
  • Video Processing Subsystem
    • Front End Provides:
      • CCD and CMOS Imager Interface
      • BT.601/BT.656 Digital YCbCr 4:2:2 (8-/16-Bit) Interface
      • Preview Engine for Real-Time Image Processing
      • Glueless Interface to Common Video Decoders
      • Histogram Module
      • Auto-Exposure, Auto-White Balance, and Auto-Focus Module
      • Resize Engine
        • Resize Images From 1/4× to 4×
        • Separate Horizontal/Vertical Control
    • Back End Provides:
      • Hardware On-Screen Display (OSD)
      • Four 54-MHz DACs for a Combination of
        • Composite NTSC/PAL Video
        • Luma/Chroma Separate Video (S-video)
        • Component (YPbPr or RGB) Video (Progressive)
      • Digital Output
        • 8-/16-bit YUV or up to 24-Bit RGB
        • HD Resolution
        • Up to Two Video Windows
  • External Memory Interfaces (EMIFs)
    • 32-Bit DDR2 SDRAM Memory Controller With 256M-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)
  • Flash Card Interfaces
    • Multimedia Card (MMC)/Secure Digital (SD) with Secure Data I/O (SDIO)
    • CompactFlash Controller With True IDE Mode
    • SmartMedia
    • Memory Stick® and Memory Stick Pro™
  • Enhanced Direct-Memory-Access (EDMA3) Controller (64 Independent Channels)
  • Two 64-Bit General-Purpose Timers (Each Configurable as Two 32-Bit Timers)
  • One 64-Bit Watch Dog Timer
  • Three UARTs (One with RTS and CTS Flow Control)
  • One Serial Port Interface (SPI) With Two Chip-Selects
  • Master/Slave Inter-Integrated Circuit (I2C Bus™)
  • Audio Serial Port (ASP)
    • I2S
    • AC97 Audio Codec Interface
    • Standard Voice Codec Interface (AIC12)
  • 10/100 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Media Independent Interface (MII)
  • VLYNQ™ Interface (FPGA Interface)
  • Host Port Interface (HPI) with 16-Bit Multiplexed Address/Data
  • USB Port With Integrated 2.0 PHY
    • USB 2.0 High-/Full-Speed Client
    • USB 2.0 High-/Full-/Low-Speed Host
  • Three Pulse Width Modulator (PWM) Outputs
  • Macrovision® Anticopy Protection (TMS320DM6442 only)(1)
  • On-Chip ARM ROM Bootloader (RBL) to Boot From NAND Flash or UART
  • ATA/ATAPI I/F (ATA/ATAPI-5 Specification)
  • Individual Power-Saving Modes for ARM/DSP
  • Flexible PLL Clock Generators
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • Up to 71 General-Purpose I/O (GPIO) Pins (Multiplexed With Other Device Functions)
  • 361-Pin Pb-Free BGA Package (ZWT Suffix), 0.8-mm Ball Pitch
  • 0.09-µm/6-Level Cu Metal Process (CMOS)
  • 3.3-V and 1.8-V I/O, 1.05-V or 1.2-V internal
  • Applications:
    • Digital Media
    • Networked Media Encode/Decode
    • Video Imaging
    • Portable Media Players

(1) This device is protected by U.S. patent numbers 4,631,603; 4,819,098; 5,315,448; and 6,516,132, and other intellectual property rights. The use of Macrovision's copy protection technology in the device must be authorized by Macrovision and is intended for home and other limited pay-per-view uses only, unless otherwise authorized in writing by Macrovision. Reverse engineering or disassembly is prohibited.

All trademarks are the property of their respective owners.

The TMS320DM6441 (also referenced as DM6441) leverages TI's DaVinci™ technology to meet the networked media encode and decode application processing needs of next-generation embedded devices.

The DM6441 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 DM6441 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 4104 million instructions per second (MIPS) at a clock rate of 513 MHz, 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&151;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 2052 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 4104 MMACS. For more details on the C64x+ DSP, see the TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (literature number SPRU732).

The DM6441 also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000 DSP platform devices. The DM6441 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: two configurable video ports; a 10/100 Mb/s Ethernet MAC (EMAC) with a management data input/output (MDIO) module; an inter-integrated circuit (I2C) bus interface; one audio serial port (ASP); two 64-bit general-purpose timers each configurable as two independent 32-bit timers; one 64-bit watchdog timer; up to 71 pins of general-purpose input/output (GPIO) with programmable interrupt/event generation modes, multiplexed with other peripherals; three UARTs with hardware handshaking support on one UART; three pulse width modulator (PWM) peripherals; and two external memory interfaces: an asynchronous external memory interface (EMIFA) for slower memories/peripherals, and a higher speed synchronous memory interface for DDR2.

The DM6441 device includes a video processing subsystem (VPSS) with two configurable video/imaging peripherals: one video processing front-end (VPFE) input used for video capture, one video processing back-end (VPBE) output with imaging coprocessor (VICP) used for display.

The video processing front-end (VPFE) consists of a CCD controller (CCDC), a preview engine (previewer), histogram module, auto-exposure/white balance/focus module (H3A), and resizer. The CCDC is capable of interfacing to common video decoders, CMOS sensors, and charge coupled devices (CCDs). The previewer is a real-time image processing engine that takes raw imager data from a CMOS sensor or CCD and converts from an RGB Bayer pattern to YUV4:2:2. The histogram and H3A modules provide statistical information on the raw color data for use by the DM6441. The resizer accepts image data for separate horizontal and vertical resizing from 1/4x to 4x in increments of 256/N, where N is between 64 and 1024.

The video processing back-end (VPBE) consists of an on-screen display engine (OSD) and a video encoder (VENC). The OSD engine is capable of handling two separate video windows and two separate OSD windows. Other configurations include two video windows, one OSD window, and one attribute window allowing up to eight levels of alpha blending. The VENC provides four analog DACs that run at 54 MHz, providing a means for composite NTSC/PAL video, S-Video, and/or component video output. The VENC also provides up to 24 bits of digital output to interface to RGB888 devices. The digital output is capable of 8/16-bit BT.656 output and/or CCIR.601 with separate horizontal and vertical syncs. VFocus (part of the VPBE functionality and operationally (e.g., 16-bit multiplexed address/data) is also provided.

The Ethernet media access controller (EMAC) provides an efficient interface between the DM6441 and the network. The DM6441 EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or 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 HPI, I2C, SPI, USB2.0, and VLYNQ ports allow DM6441 to easily control peripheral devices and/or communicate with host processors. The DM6441 also provides Memory Stick/Memory Stick Pro card support, MMC/SD with SDIO support, and a universal serial bus (USB).

The DM6441 also includes a video/imaging coprocessor (VICP) 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 VICP 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 DM6441 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

The TMS320DM6441 (also referenced as DM6441) leverages TI's DaVinci™ technology to meet the networked media encode and decode application processing needs of next-generation embedded devices.

The DM6441 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 DM6441 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 4104 million instructions per second (MIPS) at a clock rate of 513 MHz, 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&151;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 2052 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 4104 MMACS. For more details on the C64x+ DSP, see the TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (literature number SPRU732).

The DM6441 also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000 DSP platform devices. The DM6441 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: two configurable video ports; a 10/100 Mb/s Ethernet MAC (EMAC) with a management data input/output (MDIO) module; an inter-integrated circuit (I2C) bus interface; one audio serial port (ASP); two 64-bit general-purpose timers each configurable as two independent 32-bit timers; one 64-bit watchdog timer; up to 71 pins of general-purpose input/output (GPIO) with programmable interrupt/event generation modes, multiplexed with other peripherals; three UARTs with hardware handshaking support on one UART; three pulse width modulator (PWM) peripherals; and two external memory interfaces: an asynchronous external memory interface (EMIFA) for slower memories/peripherals, and a higher speed synchronous memory interface for DDR2.

The DM6441 device includes a video processing subsystem (VPSS) with two configurable video/imaging peripherals: one video processing front-end (VPFE) input used for video capture, one video processing back-end (VPBE) output with imaging coprocessor (VICP) used for display.

The video processing front-end (VPFE) consists of a CCD controller (CCDC), a preview engine (previewer), histogram module, auto-exposure/white balance/focus module (H3A), and resizer. The CCDC is capable of interfacing to common video decoders, CMOS sensors, and charge coupled devices (CCDs). The previewer is a real-time image processing engine that takes raw imager data from a CMOS sensor or CCD and converts from an RGB Bayer pattern to YUV4:2:2. The histogram and H3A modules provide statistical information on the raw color data for use by the DM6441. The resizer accepts image data for separate horizontal and vertical resizing from 1/4x to 4x in increments of 256/N, where N is between 64 and 1024.

The video processing back-end (VPBE) consists of an on-screen display engine (OSD) and a video encoder (VENC). The OSD engine is capable of handling two separate video windows and two separate OSD windows. Other configurations include two video windows, one OSD window, and one attribute window allowing up to eight levels of alpha blending. The VENC provides four analog DACs that run at 54 MHz, providing a means for composite NTSC/PAL video, S-Video, and/or component video output. The VENC also provides up to 24 bits of digital output to interface to RGB888 devices. The digital output is capable of 8/16-bit BT.656 output and/or CCIR.601 with separate horizontal and vertical syncs. VFocus (part of the VPBE functionality and operationally (e.g., 16-bit multiplexed address/data) is also provided.

The Ethernet media access controller (EMAC) provides an efficient interface between the DM6441 and the network. The DM6441 EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or 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 HPI, I2C, SPI, USB2.0, and VLYNQ ports allow DM6441 to easily control peripheral devices and/or communicate with host processors. The DM6441 also provides Memory Stick/Memory Stick Pro card support, MMC/SD with SDIO support, and a universal serial bus (USB).

The DM6441 also includes a video/imaging coprocessor (VICP) 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 VICP 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 DM6441 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

下載 觀看有字幕稿的影片 影片
TI 提供有限的設計支援

此產品具有 TI 針對現有專案提供的有限設計支援。若有提供,您可在產品資料夾中找到相關資訊、軟體與工具。對於使用此產品的現有設計,您可以在 TI E2ETM 支援論壇中要求支援,但此產品提供的支援有限。

技術文件

找不到結果。請清除您的搜尋條件,然後再試一次。
檢視所有 70
重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* 資料表 TMS320DM6441 Digital Media System-on-Chip datasheet (Rev. E) 2010/8/30
* 勘誤表 TMS320DM6441 Digital Media SoC Silicon Errata (Revs 2.3, 2.1, 1.3,1.2,1.1) (Rev. J) 2010/8/12
應用說明 High-Speed Interface Layout Guidelines (Rev. J) PDF | HTML 2023/2/24
使用指南 TMS320C6000 Optimizing Compiler v 7.4 User's Guide (Rev. U) 2012/8/21
使用指南 TMS320C6000 Assembly Language Tools v 7.4 User's Guide (Rev. W) 2012/8/21
應用說明 Introduction to TMS320C6000 DSP Optimization 2011/10/6
使用指南 TMS320DM644x DMSoC 64-bit Timer User's Guide 2011/8/1
使用指南 TMS320C6000 Programmer's Guide (Rev. K) 2011/7/11
使用指南 TMS320DM644x DMSoC Inter-Integrated Circuit (I2C) Peripheral User's Guide (Rev. F) 2011/3/25
使用指南 TMS320DM644x DMSoC Video Processing Back End (VPBE) User's Guide (Rev. D) 2011/1/27
使用指南 TMS320DM644x DMSoC DDR2 Memory Controller User's Guide (Rev. E) 2011/1/12
使用指南 TMS320DM644x DMSoC EMAC/MDIO Module User's Guide (Rev. B) 2010/12/23
使用指南 TMS320DM644x DMSoC Video Processing Front End (VPFE) User's Guide (Rev. H) 2010/8/25
使用指南 TMS320DM644x DMSoC General-Purpose Input/Output (GPIO) User's Guide (Rev. A) 2010/8/19
應用說明 TMS320DM6446/3 Power Consumption Summary (Rev. B) 2010/8/16
使用指南 TMS320DM644x DMSoC Pulse-Width Modulator (PWM) User's Guide (Rev. A) 2010/8/6
使用指南 TMS320C64x+ DSP Megamodule Reference Guide (Rev. K) 2010/8/3
使用指南 TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (Rev. J) 2010/7/30
使用指南 TMS320DM644x DMSoC ARM Subsystem Reference Guide (Rev. C) 2010/7/21
應用說明 Migrating From TMS320DM644x v.2.1 ROM Bootloader to 2.3 Version 2010/7/20
使用指南 TMS320DM644x DMSoC Universal Serial Bus (USB) Controller User's Guide (Rev. G) 2010/6/2
應用說明 USB Compliance Checklist (Rev. A) 2010/3/10
應用說明 Booting and Flashing via the DaVinci TMS320DM644x Serial Interface (Rev. A) 2009/9/10
應用說明 LSP 2.10 DaVinci Linux Drivers (Rev. A) 2009/7/8
應用說明 Common Object File Format (COFF) 2009/4/15
使用指南 TMS320DM644x DMSoC Asynchronous External Memory Interface (EMIF) User's Guide (Rev. C) 2009/2/24
使用指南 TMS320DM644x DMSoC Host Port Interface (HPI) User's Guide (Rev. B) 2009/2/22
使用指南 TMS320C64x+ DSP Cache User's Guide (Rev. B) 2009/2/11
應用說明 De-Interlacing and YUV 4:2:2 to 4:2:0 Conversion on DM6446 Using the Resizer (Rev. B) 2008/12/17
應用說明 Booting DaVinci EVM from NAND Flash (Rev. A) 2008/12/15
應用說明 5 VIN solution using DCDC Controllers, a LDO, and a Digitally Prog. Sequencer 2008/11/24
更多文件說明 DaVinci Technology Overview Brochure (Rev. B) 2008/9/27
應用說明 Migrating from EDMA v2.0 to EDMA v3.0 TMS320C64X DSP (Rev. A) 2008/8/21
應用說明 Understanding the Davinci Preview Engine (Rev. A) 2008/7/23
應用說明 Understanding TI's PCB Routing Rule-Based DDR Timing Specification (Rev. A) 2008/7/17
應用說明 Understanding the Davinci Resizer (Rev. B) 2008/7/17
應用說明 Implementing the DDR2 PCB Layout on the TMS320DM644x DMSoC (Rev. G) 2008/6/16
應用說明 Building a Small Embedded Linux Kernel Example (Rev. A) 2008/5/27
使用指南 TMS320DM644x DMSoC Multimedia Card (MMC)/Secure Digital (SD) Card Controller UG (Rev. D) 2008/5/27
使用指南 TMS320C64x+ DSP Image/Video Processing Library (v2.0) Programmer's Reference (Rev. A) 2008/5/5
使用指南 TMS320DM644x DMSoC Universal Asynchronous Receiver/Transmitter (UART) UG (Rev. A) 2008/4/8
應用說明 TMS320DM6441 Power Consumption Summary Application Report 2008/4/8
使用指南 TMS320C64x+ DSP Little-Endian Library Programmer's Reference (Rev. B) 2008/3/6
應用說明 Creating a TMS320DM6446 Audio Encode Example Using XDC Tools (Rev. A) 2008/2/26
使用指南 TMS320DM644x DMSoC Enhanced Direct Memory Access (EDMA) Controller User's Guide (Rev. D) 2008/2/25
使用指南 TMS320DM644x DMSoC VLYNQ Port User's Guide (Rev. A) 2007/9/20
使用指南 TMS320DM644x DMSoC Audio Serial Port (ASP) User's Guide (Rev. B) 2007/9/17
應用說明 Encode Demo for the DaVinci DVEVM/DVSDK 1.2 (Rev. A) 2007/6/27
應用說明 Decode Demo for the DaVinci DVEVM/DVSDK 1.2 (Rev. A) 2007/6/27
應用說明 EncodeDecode Demo for the DaVinci DVEVM/DVSDK 1.2 (Rev. A) 2007/6/27
使用指南 TMS320DM644x DMSoC Peripherals Overview Reference Guide (Rev. C) 2007/4/18
EVM User's guide TMS320DM644x DVEVM Windows CE v5.0 Codec Engine Binary User's Guide 2007/3/23
EVM User's guide TMS320DM644x DVEVM Windows CE v5.0 BSP Codec Engine User’s Guide 2007/3/23
Product overview DaVinci Technology - Digital Video Innovation Product Bulletin (Rev. D) 2007/2/13
更多文件說明 Overview of DaVinci™ TMS320DM644x Digital Media Portfolio (Rev. B) 2007/2/13
使用指南 TMS320DM644x DMSoC Serial Peripheral Interface (SPI) User's Guide (Rev. A) 2007/2/7
應用說明 DaVinci Technology Background and Specifications (Rev. A) 2007/1/4
Product overview DaVinci-Based Third Party Reference Design Simplifies Media Player Development 2006/12/27
應用說明 Basic Application Loading over the Serial Interface for the DaVinci TMS320DM644x 2006/12/21
Product overview Portable Media Player Based on DaVinci Technology 2006/11/14
Product overview Universal IP Player Solution from ATEME 2006/11/2
Product overview TMS320DM6441 Product Bulletin 2006/10/27
Product overview DaVinci Benchmarks Product Bulletin (Rev. A) 2006/9/12
應用說明 Fast Development with DaVinci On Screen Display (OSD) 2006/7/6
使用指南 TMS320C64x+ Image/Video Processing Library Programmer's Reference 2006/3/10
使用指南 TMS320C64x+ DSP Big-Endian Library Programmer's Reference 2006/3/10
應用說明 Migrating from EDMA v2.0 to EDMA v3.0 for TMS320DM644X DMSoC 2005/12/3
使用指南 TMS320DM644x DMSoC DSP Subsystem Reference Guide 2005/12/3
使用指南 TMS320DM644x DMSoC ATA Controller User's Guide 2005/12/3
應用說明 Migrating from TMS320C64x to TMS320C64x+ (Rev. A) 2005/10/20

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

偵錯探測器

TMDSEMU200-U — XDS200 USB 偵錯探測器

XDS200 是為 TI 嵌入式裝置偵錯的偵錯探測器(模擬器)。對於大多數裝置,建議使用較新、成本較低的 XDS110 (www.ti.com/tool/TMDSEMU110-U)。XDS200 支援單一 Pod 中廣泛的標準(IEEE1149.1、IEEE1149.7、SWD)。所有 XDS 偵錯探針在所有配備嵌入式追蹤緩衝器 (ETB) 的 Arm® 與 DSP 處理器中均支援核心與系統追蹤。

XDS200 透過 TI 20 接腳連接器(配備適用 TI 14 接腳、Arm Cortex® 10 接腳和 Arm 20 接腳的多重轉接器)連接到目標電路板,並透過 USB2.0 高速 (...)

支援產品和硬體
有庫存
限制:
??asset.out-of-stock-ti_zh_TW??
無法提供
偵錯探測器

TMDSEMU560V2STM-U — XDS560™ 軟體 v2 系統追蹤 USB 偵錯探測器

XDS560v2 是 XDS560™ 系列偵錯探測器中性能最高的,且同時支援傳統 JTAG 標準 (IEEE1149.1) 與 cJTAG (IEEE1149.7)。  請注意,其不支援序列線偵錯 (SWD)。

所有 XDS 偵錯探測器均在所有配備嵌入式追蹤緩衝器 (ETB) 的 ARM 與 DSP 處理器中支援核心與系統追蹤。  對於針腳上的追蹤,則需要 XDS560v2 PRO TRACE

XDS560v2 透過 MIPI HSPT 60 針腳接頭 (具有用於 TI 14 針腳、TI 20 針腳和 ARM 20 針腳的多轉接器) 連接到目標電路板,並透過 USB2.0 高速 (...)

支援產品和硬體
有庫存
限制:
??asset.out-of-stock-ti_zh_TW??
無法提供
偵錯探測器

TMDSEMU560V2STM-UE — XDS560v2 System Trace USB 與乙太網路偵錯探測器

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 (...)

支援產品和硬體
有庫存
限制:
??asset.out-of-stock-ti_zh_TW??
無法提供
偵錯探測器

LB-3P-TRACE32-DSP — 適用於數位訊號處理器 (DSP) 的 Lauterbach TRACE32 偵錯和追蹤系統

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 (...)

支援產品和硬體
軟體開發套件 (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 (...)

支援產品和硬體
軟體開發套件 (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 (...)

支援產品和硬體
應用軟體及架構

TMDMFP — 多媒體框架產品 (MFP) - 轉碼器引擎、框架元件和 XDAIS

Multimedia Framework Products (MFP)

A major advantage of programmable signal processors over fixed-function devices is their ability to accelerate multiple multimedia functions and provide flexible environments to enable user customization. However, sharing scarce embedded hardware resources between (...)

支援產品和硬體
驅動程式或資料庫

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 (...)

支援產品和硬體
驅動程式或資料庫

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 (...)

支援產品和硬體
驅動程式或資料庫

SPRC122 — C62x/C64x Fast Run-Time Support Library

C62x/64x FastRTS 庫是一款經過最佳化的浮點函式庫,適用於使用 TMS320C62x 或 TMS320C64x 裝置的 C 編程人員。這些常式通常用於計算密集型即時應用,在這些應用中,最佳執行速度至關重要。透過將當前的浮點庫 (RTS) 函式替換為 FastRTS 函式庫,您無需重寫現有的程式碼,即可顯著提高執行速度。

該版本還包括用於 FastRTS 庫提供的函式子集的 C 語言實作。C 程式碼允許使用者內嵌這些函式並獲得顯著改進的性能。

特色

單精度和雙精度數學函式單精度和雙精度轉換函式
浮點加法浮點數轉換為 32 位元有號整數
32 位元有號整數轉換為浮點數
浮點除法浮點數轉換為 (...)
支援產品和硬體
驅動程式或資料庫

SPRC831.ZIP — Video Imaging Co-Processor Signal Processing Libraryv3.2.0

德州儀器 VICP 訊號處理函式庫是一系列可在 VICP 硬體加速器上執行的高度微調軟體演算法。該函式庫允許應用程式開發人員有效利用 VICP 性能,而無需花費大量時間為加速器開發軟體。VICP 訊號處理函式庫提供經過良好測試、性能調整的演算法,可大幅縮短應用程式開發時間。DSP 上釋放出的 MIPS 可讓應用程式開發人員在最終應用程式中納入更多差異化功能。

VICP 硬體加速器是一種平行 MAC 引擎。由於具備靈活的架構,加速器可接管各種運算密集型任務的執行,有效增強 DSP 性能。

VICP 支援各種演算法以啟用額外的 DSP 資源
  • 矩陣運算/陣列運算:
    • 例如:矩陣乘法/轉置。塊相加/平均/方差
    • (...)
支援產品和硬體
驅動程式或資料庫

SPRC847.GZ — Download: VICP Signal Processing Library [Linux] v3.3.0

德州儀器 VICP 訊號處理函式庫是一系列可在 VICP 硬體加速器上執行的高度微調軟體演算法。該函式庫允許應用程式開發人員有效利用 VICP 性能,而無需花費大量時間為加速器開發軟體。VICP 訊號處理函式庫提供經過良好測試、性能調整的演算法,可大幅縮短應用程式開發時間。DSP 上釋放出的 MIPS 可讓應用程式開發人員在最終應用程式中納入更多差異化功能。

VICP 硬體加速器是一種平行 MAC 引擎。由於具備靈活的架構,加速器可接管各種運算密集型任務的執行,有效增強 DSP 性能。

VICP 支援各種演算法以啟用額外的 DSP 資源
  • 矩陣運算/陣列運算:
    • 例如:矩陣乘法/轉置。塊相加/平均/方差
    • (...)
支援產品和硬體
驅動程式或資料庫

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 (...)

支援產品和硬體
軟體轉碼器

C64XPLUSCODECSPCH — Speech Codecs for C64x+-based Devices

TI 轉碼器免費提供,附帶生產授權,且可供立即下載。全部經過生產測試,可輕鬆整合到視訊和語音應用之中。按一下 GET SOFTWARE (取得軟體) 按鈕 (上方) 以存取經過測試的最新轉碼器版本。該頁面及每個安裝程式中都包含產品規格表和版本說明。

 

 

其他資訊:

支援產品和硬體
軟體轉碼器

C64XPLUSCODECSVID — C64x+ Video Codecs - Software and Documentation

TI 轉碼器免費提供,附帶生產授權,且可供立即下載。全部經過生產測試,可輕鬆整合到視訊和語音應用之中。按一下 GET SOFTWARE (取得軟體) 按鈕 (上方) 以存取經過測試的最新轉碼器版本。該頁面及每個安裝程式中都包含產品規格表和版本說明。

 

 

其他資訊:

支援產品和硬體
軟體轉碼器

DM644XCODECS — Codecs for DM644x - Software and Documentation

TI 轉碼器免費提供,附帶生產授權,且可供立即下載。全部經過生產測試,可輕鬆整合到音訊、視訊和語音應用之中。按一下 GET SOFTWARE (取得軟體) 按鈕 (上方) 以存取經過測試的最新轉碼器版本。該頁面及每個安裝程式中都包含產品規格表和版本說明。

 

 

其他資訊:

支援產品和硬體
模擬型號

DM6441 ZWT IBIS Model

SPRM345.ZIP (112 KB) - IBIS 模型
支援產品和硬體
模擬型號

DM6441 ZWT Rev. 1 BSDL Model

SPRM330.ZIP (8 KB) - BSDL 模型
支援產品和硬體
模擬型號

DM6441 ZWT Rev. 2 BSDL Model

SPRM331.ZIP (8 KB) - BSDL 模型
支援產品和硬體
封裝 針腳 CAD 符號、佔位空間與 3D 模型
NFBGA (ZWT) 361 Ultra Librarian

訂購與品質

支援與培訓

內含 TI 工程師技術支援的 TI E2E™ 論壇

內容係由 TI 和社群貢獻者依「現狀」提供,且不構成 TI 規範。檢視使用條款

若有關於品質、封裝或訂購 TI 產品的問題,請參閱 TI 支援。​​​​​​​​​​​​​​

影片系列

觀看所有影片

影片