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CPU 32-/64-bit Operating system DSP/BIOS, VLX Rating Catalog Operating temperature range (°C) -40 to 105
CPU 32-/64-bit Operating system DSP/BIOS, VLX Rating Catalog Operating temperature range (°C) -40 to 105
OMFCBGA (ZNZ) 548 729 mm² (27 mm × 27 mm) OMFCBGA (GNZ) 548 729 mm² (27 mm × 27 mm) OMFCBGA (ZDK) 548 529 mm² (23 mm × 23 mm) OMFCBGA (GDK) 548 529 mm² (23 mm × 23 mm)
  • High-Performance Digital Media Processor (TMS320DM642)
    • 2-, 1.67-, 1.39-ns Instruction Cycle Time
    • 500-, 600-, 720-MHz Clock Rate
    • Eight 32-Bit Instructions/Cycle
    • 4000, 4800, 5760 MIPS
    • Fully Software-Compatible With C64x™
  • VelociTI.2™ Extensions to VelociTI™ Advanced Very-Long-Instruction-Word VLIW) TMS320C64x™ DSP Core
    • Eight Highly Independent Functional Units With VelociTI.2™ Extensions:
      • 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
  • Instruction Set Features
    • Byte-Addressable (8-/16-/32-/64-Bit Data)
    • 8-Bit Overflow Protection
    • Bit-Field Extract, Set, Clear
    • Normalization, Saturation, Bit-Counting
    • VelociTI.2™ Increased Orthogonality
  • L1/L2 Memory Architecture
    • 128K-Bit (16K-Byte) L1P Program Cache (Direct Mapped)
    • 128K-Bit (16K-Byte) L1D Data Cache (2-Way Set-Associative)
    • 2M-Bit (256K-Byte) L2 Unified Mapped RAM/Cache (Flexible RAM/Cache Allocation)
  • Endianess: Little Endian, Big Endian
  • 64-Bit External Memory Interface (EMIF)
    • Glueless Interface to Asynchronous Memories (SRAM and EPROM) and Synchronous Memories (SDRAM, SBSRAM, ZBT SRAM, and FIFO)
    • 1024M-Byte Total Addressable External Memory Space
  • Enhanced Direct-Memory-Access (EDMA) Controller (64 Independent Channels)
  • 10/100 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Media Independent Interface (MII)
    • 8 Independent Transmit (TX) Channels and 1 Receive (RX) Channel
  • Management Data Input/Output (MDIO)
  • Three Configurable Video Ports
    • Providing a Glueless I/F to Common Video Decoder and Encoder Devices
    • Supports Multiple Resolutions and Video Standards
  • VCXO Interpolated Control Port (VIC)
    • Supports Audio/Video Synchronization
  • Host-Port Interface (HPI) [32-/16-Bit]
  • 32-Bit/66-MHz, 3.3-V Peripheral Component Interconnect (PCI) Master/Slave Interface Conforms to PCI Specification 2.2
  • Multichannel Audio Serial Port (McASP)
    • Eight Serial Data Pins
    • Wide Variety of I2S and Similar Bit Stream Format
    • Integrated Digital Audio I/F Transmitter Supports S/PDIF, IEC60958-1, AES-3, CP-430 Formats
  • Inter-Integrated Circuit (I2C) Bus™
  • Two Multichannel Buffered Serial Ports
  • Three 32-Bit General-Purpose Timers
  • Sixteen General-Purpose I/O (GPIO) Pins
  • Flexible PLL Clock Generator
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • 548-Pin Ball Grid Array (BGA) Package (GDK and ZDK Suffixes), 0.8-mm Ball Pitch
  • 548-Pin Ball Grid Array (BGA) Package (GNZ and ZNZ Suffixes), 1.0-mm Ball Pitch
  • 0.13-µm/6-Level Cu Metal Process (CMOS)
  • 3.3-V I/O, 1.2-V Internal (-500)
  • 3.3-V I/O, 1.4-V Internal (A-500, A-600, -600, -720)

C64x, VelociTI.2, VelociTI, and TMS320C64x are trademarks of Texas Instruments.
All trademarks are the property of their respective owners.
TMS320C6000, and C6000 are trademarks of Texas Instruments.
Windows is a registered trademark of the Microsoft Corporation.

  • High-Performance Digital Media Processor (TMS320DM642)
    • 2-, 1.67-, 1.39-ns Instruction Cycle Time
    • 500-, 600-, 720-MHz Clock Rate
    • Eight 32-Bit Instructions/Cycle
    • 4000, 4800, 5760 MIPS
    • Fully Software-Compatible With C64x™
  • VelociTI.2™ Extensions to VelociTI™ Advanced Very-Long-Instruction-Word VLIW) TMS320C64x™ DSP Core
    • Eight Highly Independent Functional Units With VelociTI.2™ Extensions:
      • 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
  • Instruction Set Features
    • Byte-Addressable (8-/16-/32-/64-Bit Data)
    • 8-Bit Overflow Protection
    • Bit-Field Extract, Set, Clear
    • Normalization, Saturation, Bit-Counting
    • VelociTI.2™ Increased Orthogonality
  • L1/L2 Memory Architecture
    • 128K-Bit (16K-Byte) L1P Program Cache (Direct Mapped)
    • 128K-Bit (16K-Byte) L1D Data Cache (2-Way Set-Associative)
    • 2M-Bit (256K-Byte) L2 Unified Mapped RAM/Cache (Flexible RAM/Cache Allocation)
  • Endianess: Little Endian, Big Endian
  • 64-Bit External Memory Interface (EMIF)
    • Glueless Interface to Asynchronous Memories (SRAM and EPROM) and Synchronous Memories (SDRAM, SBSRAM, ZBT SRAM, and FIFO)
    • 1024M-Byte Total Addressable External Memory Space
  • Enhanced Direct-Memory-Access (EDMA) Controller (64 Independent Channels)
  • 10/100 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Media Independent Interface (MII)
    • 8 Independent Transmit (TX) Channels and 1 Receive (RX) Channel
  • Management Data Input/Output (MDIO)
  • Three Configurable Video Ports
    • Providing a Glueless I/F to Common Video Decoder and Encoder Devices
    • Supports Multiple Resolutions and Video Standards
  • VCXO Interpolated Control Port (VIC)
    • Supports Audio/Video Synchronization
  • Host-Port Interface (HPI) [32-/16-Bit]
  • 32-Bit/66-MHz, 3.3-V Peripheral Component Interconnect (PCI) Master/Slave Interface Conforms to PCI Specification 2.2
  • Multichannel Audio Serial Port (McASP)
    • Eight Serial Data Pins
    • Wide Variety of I2S and Similar Bit Stream Format
    • Integrated Digital Audio I/F Transmitter Supports S/PDIF, IEC60958-1, AES-3, CP-430 Formats
  • Inter-Integrated Circuit (I2C) Bus™
  • Two Multichannel Buffered Serial Ports
  • Three 32-Bit General-Purpose Timers
  • Sixteen General-Purpose I/O (GPIO) Pins
  • Flexible PLL Clock Generator
  • IEEE-1149.1 (JTAG) Boundary-Scan-Compatible
  • 548-Pin Ball Grid Array (BGA) Package (GDK and ZDK Suffixes), 0.8-mm Ball Pitch
  • 548-Pin Ball Grid Array (BGA) Package (GNZ and ZNZ Suffixes), 1.0-mm Ball Pitch
  • 0.13-µm/6-Level Cu Metal Process (CMOS)
  • 3.3-V I/O, 1.2-V Internal (-500)
  • 3.3-V I/O, 1.4-V Internal (A-500, A-600, -600, -720)

C64x, VelociTI.2, VelociTI, and TMS320C64x are trademarks of Texas Instruments.
All trademarks are the property of their respective owners.
TMS320C6000, and C6000 are trademarks of Texas Instruments.
Windows is a registered trademark of the Microsoft Corporation.

The TMS320C64x™ DSPs (including the TMS320DM642 device) are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. The TMS320DM642 (DM642) device is based on the second-generation high-performance, advanced VelociTI™ very-long-instruction-word (VLIW) architecture (VelociTI.2™) developed by Texas Instruments (TI), making these DSPs an excellent choice for digital media applications. The C64x™ is a code-compatible member of the C6000™ DSP platform.

With performance of up to 5760 million instructions per second (MIPS) at a clock rate of 720 MHz, the DM642 device offers cost-effective solutions to high-performance DSP programming challenges. The DM642 DSP 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)- with VelociTI.2™ extensions. The VelociTI.2™ extensions in the eight functional units include new instructions to accelerate the performance in video and imaging applications and extend the parallelism of the VelociTI™ architecture. The DM642 can produce four 16-bit multiply-accumulates (MACs) per cycle for a total of 2880 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 5760 MMACS. The DM642 DSP also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000™ DSP platform devices.

The DM642 uses a two-level cache-based architecture and has a powerful and diverse set of peripherals. The Level 1 program cache (L1P) is a 128-Kbit direct mapped cache and the Level 1 data cache (L1D) is a 128-Kbit 2-way set-associative cache. The Level 2 memory/cache (L2) consists of an 2-Mbit 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: three configurable video ports; a 10/100 Mb/s Ethernet MAC (EMAC); a management data input/output (MDIO) module; a VCXO interpolated control port (VIC); one multichannel buffered audio serial port (McASP0); an inter-integrated circuit (I2C) Bus module; two multichannel buffered serial ports (McBSPs); three 32-bit general-purpose timers; a user-configurable 16-bit or 32-bit host-port interface (HPI16/HPI32); a peripheral component interconnect (PCI); a 16-pin general-purpose input/output port (GP0) with programmable interrupt/event generation modes; and a 64-bit glueless external memory interface (EMIFA), which is capable of interfacing to synchronous and asynchronous memories and peripherals.

The DM642 device has three configurable video port peripherals (VP0, VP1, and VP2). These video port peripherals provide a glueless interface to common video decoder and encoder devices. The DM642 video port peripherals support multiple resolutions and video standards (e. g., CCIR601, ITU-BT.656, BT.1120, SMPTE 125M, 260M, 274M, and 296M).

These three video port peripherals are configurable and can support either video capture and/or video display modes. Each video port consists of two channels - A and B with a 5120-byte capture/display buffer that is splittable between the two channels.

For more details on the Video Port peripherals, see the TMS320C64x Video Port/VXCO Interpolated Control (VIC) Port Reference Guide (literature number SPRU629).

The McASP0 port supports one transmit and one receive clock zone, with eight serial data pins which can be individually allocated to any of the two zones. The serial port supports time-division multiplexing on each pin from 2 to 32 time slots. The DM642 has sufficient bandwidth to support all 8 serial data pins transmitting a 192-kHz stereo signal. Serial data in each zone may be transmitted and received on multiple serial data pins simultaneously and formatted in a multitude of variations on the Philips Inter-IC Sound (I2S) format.

In addition, the McASP0 transmitter may be programmed to output multiple S/PDIF, IEC60958, AES-3, CP-430 encoded data channels simultaneously, with a single RAM containing the full implementation of user data and channel status fields.

McASP0 also provides extensive error-checking and recovery features, such as the bad clock detection circuit for each high-frequency master clock which verifies that the master clock is within a programmed frequency range.

The VXCO interpolated control port (VIC) provides digital-to-analog conversion with resolution from 9-bits to up to 16-bits. The output of the VIC is a single bit interpolated D/A output. For more details on the VIC port, see the TMS320C64x Video Port/VXCO Interpolated Control (VIC) Port Reference Guide (literature number SPRU629).

The ethernet media access controller (EMAC) provides an efficient interface between the DM642 DSP core processor and the network. The DM642 EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or full-duplex, with hardware flow control and quality of service (QOS) support. The DM642 EMAC makes use of a custom interface to the DSP core that allows efficient data transmission and reception. For more details on the EMAC, see the TMS320C6000 DSP Ethernet Media Access Controller (EMAC) / Management Data Input/Output (MDIO) Module Reference Guide (literature number SPRU628).

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 DSP, 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 DSP, allowing the DSP to poll the link status of the device without continuously performing costly MDIO accesses. For more details on the MDIO, see the TMS320C6000 DSP Ethernet Media Access Controller (EMAC) / Management Data Input/Output (MDIO) Module Reference Guide (literature number SPRU628).

The I2C0 port on the TMS320DM642 allows the DSP to easily control peripheral devices, boot from a serial EEPROM, and communicate with a host processor. In addition, the standard multichannel buffered serial port (McBSP) may be used to communicate with serial peripheral interface (SPI) mode peripheral devices.

The TMS320C64x™ DSPs (including the TMS320DM642 device) are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. The TMS320DM642 (DM642) device is based on the second-generation high-performance, advanced VelociTI™ very-long-instruction-word (VLIW) architecture (VelociTI.2™) developed by Texas Instruments (TI), making these DSPs an excellent choice for digital media applications. The C64x™ is a code-compatible member of the C6000™ DSP platform.

With performance of up to 5760 million instructions per second (MIPS) at a clock rate of 720 MHz, the DM642 device offers cost-effective solutions to high-performance DSP programming challenges. The DM642 DSP 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)- with VelociTI.2™ extensions. The VelociTI.2™ extensions in the eight functional units include new instructions to accelerate the performance in video and imaging applications and extend the parallelism of the VelociTI™ architecture. The DM642 can produce four 16-bit multiply-accumulates (MACs) per cycle for a total of 2880 million MACs per second (MMACS), or eight 8-bit MACs per cycle for a total of 5760 MMACS. The DM642 DSP also has application-specific hardware logic, on-chip memory, and additional on-chip peripherals similar to the other C6000™ DSP platform devices.

The DM642 uses a two-level cache-based architecture and has a powerful and diverse set of peripherals. The Level 1 program cache (L1P) is a 128-Kbit direct mapped cache and the Level 1 data cache (L1D) is a 128-Kbit 2-way set-associative cache. The Level 2 memory/cache (L2) consists of an 2-Mbit 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: three configurable video ports; a 10/100 Mb/s Ethernet MAC (EMAC); a management data input/output (MDIO) module; a VCXO interpolated control port (VIC); one multichannel buffered audio serial port (McASP0); an inter-integrated circuit (I2C) Bus module; two multichannel buffered serial ports (McBSPs); three 32-bit general-purpose timers; a user-configurable 16-bit or 32-bit host-port interface (HPI16/HPI32); a peripheral component interconnect (PCI); a 16-pin general-purpose input/output port (GP0) with programmable interrupt/event generation modes; and a 64-bit glueless external memory interface (EMIFA), which is capable of interfacing to synchronous and asynchronous memories and peripherals.

The DM642 device has three configurable video port peripherals (VP0, VP1, and VP2). These video port peripherals provide a glueless interface to common video decoder and encoder devices. The DM642 video port peripherals support multiple resolutions and video standards (e. g., CCIR601, ITU-BT.656, BT.1120, SMPTE 125M, 260M, 274M, and 296M).

These three video port peripherals are configurable and can support either video capture and/or video display modes. Each video port consists of two channels - A and B with a 5120-byte capture/display buffer that is splittable between the two channels.

For more details on the Video Port peripherals, see the TMS320C64x Video Port/VXCO Interpolated Control (VIC) Port Reference Guide (literature number SPRU629).

The McASP0 port supports one transmit and one receive clock zone, with eight serial data pins which can be individually allocated to any of the two zones. The serial port supports time-division multiplexing on each pin from 2 to 32 time slots. The DM642 has sufficient bandwidth to support all 8 serial data pins transmitting a 192-kHz stereo signal. Serial data in each zone may be transmitted and received on multiple serial data pins simultaneously and formatted in a multitude of variations on the Philips Inter-IC Sound (I2S) format.

In addition, the McASP0 transmitter may be programmed to output multiple S/PDIF, IEC60958, AES-3, CP-430 encoded data channels simultaneously, with a single RAM containing the full implementation of user data and channel status fields.

McASP0 also provides extensive error-checking and recovery features, such as the bad clock detection circuit for each high-frequency master clock which verifies that the master clock is within a programmed frequency range.

The VXCO interpolated control port (VIC) provides digital-to-analog conversion with resolution from 9-bits to up to 16-bits. The output of the VIC is a single bit interpolated D/A output. For more details on the VIC port, see the TMS320C64x Video Port/VXCO Interpolated Control (VIC) Port Reference Guide (literature number SPRU629).

The ethernet media access controller (EMAC) provides an efficient interface between the DM642 DSP core processor and the network. The DM642 EMAC support both 10Base-T and 100Base-TX, or 10 Mbits/second (Mbps) and 100 Mbps in either half- or full-duplex, with hardware flow control and quality of service (QOS) support. The DM642 EMAC makes use of a custom interface to the DSP core that allows efficient data transmission and reception. For more details on the EMAC, see the TMS320C6000 DSP Ethernet Media Access Controller (EMAC) / Management Data Input/Output (MDIO) Module Reference Guide (literature number SPRU628).

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 DSP, 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 DSP, allowing the DSP to poll the link status of the device without continuously performing costly MDIO accesses. For more details on the MDIO, see the TMS320C6000 DSP Ethernet Media Access Controller (EMAC) / Management Data Input/Output (MDIO) Module Reference Guide (literature number SPRU628).

The I2C0 port on the TMS320DM642 allows the DSP to easily control peripheral devices, boot from a serial EEPROM, and communicate with a host processor. In addition, the standard multichannel buffered serial port (McBSP) may be used to communicate with serial peripheral interface (SPI) mode peripheral devices.

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 TMS320DM642 Video/Imaging Fixed-Point Digital Signal Processor 数据表 (Rev. N) 2010-10-12
* 勘误表 TMS320C641x、TMS320DM64x、TMS320DRA342 的 ZNZ、ZDK 封装已停产并转换 PDF | HTML PDF | HTML 2026-7-23
* 勘误表 TMS320DM642 DSP Silicon Errata, Silicon Revisions 2.0, 1.2, 1.1, 1.0 (Rev. K) 2010-2-4
用户指南 Emulation and Trace Headers Technical Reference Manual (Rev. I) 2012-8-9
应用手册 Introduction to TMS320C6000 DSP Optimization 2011-10-6
用户指南 TMS320C64x DSP Video Port/ VCXO Interpolated Control (VIC) Port Reference Guide (Rev. G) 2010-11-12
用户指南 TMS320C64x/C64x+ DSP CPU and Instruction Set Reference Guide (Rev. J) 2010-7-30
应用手册 Interfacing a CMOS Sensor to the TMS320DM642 Using Raw Capture Mode (Rev. A) 2010-1-27
用户指南 TMS320C6000 DSP Peripherals Overview Reference Guide (Rev. Q) 2009-7-2
用户指南 TMS320C6000 DSP Multi-channel Audio Serial Port (McASP) Reference Guide (Rev. J) 2008-11-20
应用手册 Migrating from TMS320DM642 to TMS320DM6467 2008-11-17
应用手册 Migrating from TMS320DM642 to TMS320DM648/DM6437 2008-8-19
应用手册 TMS320C6000 EMIF-to-External SDRAM Interface (Rev. E) 2007-9-4
应用手册 Migrating from TMS320DM642 to TMS320DM6437 2007-6-29
应用手册 Migrating from TMS320DM642/3/1/0 to the TMS320DM648/7 2007-6-7
应用手册 Thermal Considerations for the DM64xx, DM64x, and C6000 Devices 2007-5-20
用户指南 TMS320C6000 DSP External Memory Interface (EMIF) Reference Guide (Rev. E) 2007-4-11
产品概述 TMS320C6000 DSP TCP/IP Stack Software (Rev. C) 2007-4-4
用户指南 TMS320C6000 DSP Inter-Integrated Circuit (I2C) Module Reference Guide (Rev. D) 2007-3-26
用户指南 TMS320C6000 DSP Peripheral Component Interconnect (PCI) Reference Guide (Rev. C) 2007-1-25
用户指南 TMS320C6000 DSP Multichannel Buffered Serial Port (McBSP) Reference Guide (Rev. G) 2006-12-14
用户指南 TMS320C6000 DSP Enhanced Direct Memory Access (EDMA) Controller Reference Guide (Rev. C) 2006-11-15
用户指南 TMS320C64x DSP Two-Level Internal Memory Reference Guide (Rev. C) 2006-2-28
用户指南 TMS320C6000 DSP Host-Post Interface (HPI) Reference Guide (Rev. C) 2006-1-1
应用手册 TMS320DM642 Hardware Designer's Resource Guide (Rev. A) 2005-10-25
应用手册 Migrating from TMS320C64x to TMS320C64x+ (Rev. A) 2005-10-20
产品概述 TMS320DM64x Digital Media Processors - Product Bulletin (Rev. C) 2005-8-30
用户指南 TMS320C6000 DSP Power-Down Logic and Modes Reference Guide (Rev. C) 2005-3-1
应用手册 TMS320DM64x Power Consumption Summary (Rev. F) 2005-2-18
用户指南 TMS320C6000 DSP 32-bit Timer Reference Guide (Rev. B) 2005-1-25
应用手册 Video Scaling Example on the DM642 EVM 2004-9-27
应用手册 Use and Handling of Semiconductor Packages With ENIG Pad Finishes 2004-8-31
应用手册 Driver Examples on the DM642 EVM (Rev. A) 2004-8-31
用户指南 TMS320C6000 Chip Support Library API Reference Guide (Rev. J) 2004-8-13
应用手册 JPEG Motion on the DM642 EVM (Rev. A) 2004-7-16
应用手册 JPEG Network on the DM642 EVM (Rev. A) 2004-7-16
应用手册 JPEG Netcam on the DM642 EVM (Rev. A) 2004-7-16
应用手册 JPEG Netcam2 on the DM642 EVM (Rev. A) 2004-7-16
应用手册 The TMS320DM642 Video Port Mini-Driver for TVP5146 and TVP5150 decoder 2004-7-16
应用手册 使用 DM642 DSP 和 THS8200 驱动器的高分辨率视频 (Rev. A) 2004-5-3
应用手册 Interfacing an LCD Controller to a DM642 Video Port (Rev. B) 2004-5-3
应用手册 TMS320C6000 Tools: Vector Table and Boot ROM Creation (Rev. D) 2004-4-26
应用手册 TMS320C6000 Board Design: Considerations for Debug (Rev. C) 2004-4-21
用户指南 TMS320C6000 DSP EMAC/MDIO Module Reference Guide (Rev. A) 2004-3-26
用户指南 TMS320C6000 DSP General-Purpose Input/Output (GPIO) Reference Guide (Rev. A) 2004-3-25
应用手册 TMS320C6000 McBSP Initialization (Rev. C) 2004-3-8
应用手册 TMS320C6000 EDMA IO Scheduling and Performance 2004-3-5
更多文献资料 Video/Imaging Benchmarks (Rev. A) 2004-3-1
产品概述 Video Security over IP (VSIP) Development Platform Product Bulletin 2003-11-5
应用手册 On-Screen-Display Driver Examples For DM642 EVM Demo Software Release Report 2003-10-14
应用手册 Adapting the SPRA904 Motion Detection Application Report to the DM642 EVM 2003-10-10
应用手册 Audio Demonstration on the DM642 EVM 2003-8-31
应用手册 Audio Echo on the DM642 EVM 2003-8-31
应用手册 JPEG Loop Back on the DM642 EVM 2003-8-31
应用手册 H.263 Loop Back on the DM642 EVM 2003-8-31
应用手册 MPEG-2 Encoder on the DM642 EVM 2003-8-31
应用手册 MPEG-2 Loop Back on the DM642 EVM 2003-8-31
应用手册 An Audio Example Using Reference Frameworks on the DM642 EVM 2003-8-31
应用手册 MPEG-2 High Definition Decoder on the DM642 EVM 2003-8-31
应用手册 The TMS320DM642 Video Port Mini-Driver (Rev. A) 2003-8-14
用户指南 TMS320C6000 DSP Designing for JTAG Emulation Reference Guide 2003-7-31
产品概述 TMS320DM64x Digital Media Development Tools Product Bulletin 2003-7-31
应用手册 A DSP/BIOS AIC23 Codec Device Driver for the TMS320DM642 EVM 2003-6-30
应用手册 TMS320DM642 EVM Daughtercard Specification Revision 1.0 2003-6-25
用户指南 TMS320C6000 DSP Cache User's Guide (Rev. A) 2003-5-5
应用手册 Using IBIS Models for Timing Analysis (Rev. A) 2003-4-15
用户指南 TMS320DM642 Technical Overview 2002-9-13
应用手册 TMS320C6000 McBSP Interface to an ST-BUS Device (Rev. B) 2002-6-4
应用手册 TMS320C6000 HPI to PCI Interfacing Using the PLX PCI9050 (Rev. C) 2002-4-17
应用手册 TMS320C6000 Board Design for JTAG (Rev. C) 2002-4-2
应用手册 TMS320C6000 EMIF to External Flash Memory (Rev. A) 2002-2-13
应用手册 Cache Usage in High-Performance DSP Applications with the TMS320C64x 2001-12-13
应用手册 Using a TMS320C6000 McBSP for Data Packing (Rev. A) 2001-10-31
应用手册 TMS320C6000 Enhanced DMA: Example Applications (Rev. A) 2001-10-24
应用手册 Interfacing theTMS320C6000 EMIFto a PCI Bus Using the AMCC S5933 PCI Controller (Rev. A) 2001-9-30
应用手册 TMS320C6000 Host Port to MC68360 Interface (Rev. A) 2001-9-30
应用手册 Using the TMS320C6000 McBSP as a High Speed Communication Port (Rev. A) 2001-8-31
应用手册 TMS320C6000 Host Port to the i80960 Microprocessors Interface (Rev. A) 2001-8-31
应用手册 TMS320C6000 EMIF to External Asynchronous SRAM Interface (Rev. A) 2001-8-31
应用手册 TMS320C6000 System Clock Circuit Example (Rev. A) 2001-8-15
应用手册 TMS320C6000 McBSP to Voice Band Audio Processor (VBAP) Interface (Rev. A) 2001-7-23
应用手册 TMS320C6000 McBSP: AC'97 Codec Interface (TLV320AIC27) (Rev. A) 2001-7-10
应用手册 TMS320C6000 McBSP: Interface to SPI ROM (Rev. C) 2001-6-30
应用手册 TMS320C6000 Host Port to MPC860 Interface (Rev. A) 2001-6-21
应用手册 TMS320C6000 McBSP: IOM-2 Interface (Rev. A) 2001-5-21
用户指南 TMS320C64x Technical Overview (Rev. B) 2001-1-30
应用手册 Circular Buffering on TMS320C6000 (Rev. A) 2000-9-12
应用手册 TMS320C6000 McBSP as a TDM Highway (Rev. A) 2000-9-11
应用手册 TMS320C6000 u-Law and a-Law Companding with Software or the McBSP 2000-2-2
应用手册 General Guide to Implement Logarithmic and Exponential Operations on Fixed-Point 2000-1-31
应用手册 TMS320C6000 C Compiler: C Implementation of Intrinsics 1999-12-7
应用手册 TMS320C6000 McBSP: I2S Interface 1999-9-8

设计与开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

调试探针

TMDSEMU200-U — XDS200 USB 调试探针

XDS200 是用于调试 TI 嵌入式器件的调试探针(仿真器)。对于大多数器件,建议使用较新、成本较低的 XDS110 (www.ti.com/tool/TMDSEMU110-U)。XDS200 在单个仓体中支持更广泛的标准(IEEE1149.1、IEEE1149.7、SWD)。所有 XDS 调试探针在所有具有嵌入式跟踪缓冲器 (ETB) 的 Arm® 和 DSP 处理器中均支持内核和系统跟踪。

XDS200 通过 TI 20 引脚连接器(带有适用于 TI 14 引脚、Arm Cortex® 10 引脚和 Arm 20 引脚的多个适配器)连接到目标板,并通过 USB2.0 高速 (...)

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调试探针

TMDSEMU560V2STM-U — XDS560™ 软件 v2 系统跟踪 USB 调试探针

XDS560v2 是 XDS560™ 系列调试探针中性能最高的一款,同时支持传统 JTAG 标准 (IEEE1149.1) 和 cJTAG (IEEE1149.7)。  请注意,它不支持串行线调试 (SWD)。

对于带有嵌入式缓冲跟踪器 (ETB) 的所有 ARM 和 DSP 处理器,所有 XDS 调试探针均支持核心和系统跟踪。  对于引脚上的跟踪,则需要使用 XDS560v2 PRO TRACE

XDS560v2 通过 MIPI HSPT 60 引脚连接器(带有多个用于 TI 14 引脚、TI 20 引脚和 ARM 20 引脚的适配器)连接到目标板,并通过 USB2.0 高速 (...)

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调试探针

TMDSEMU560V2STM-UE — Spectrum Digital XDS560v2 系统跟踪 USB 和以太网

XDS560v2 System Trace 是 XDS560v2 系列高性能 TI 处理器调试探针(仿真器)的第一种型号。XDS560v2 是 XDS 系列调试探针中性能最高的一款,同时支持传统 JTAG 标准 (IEEE1149.1) 和 cJTAG (IEEE1149.7)。

XDS560v2 System Trace 在其巨大的外部存储器缓冲区中加入了系统引脚跟踪。这种外部存储器缓冲区适用于指定的 TI 器件,通过捕获相关器件级信息,获得准确的总线性能活动和吞吐量,并对内核和外设进行电源管理。此外,对于带有嵌入式缓冲跟踪器 (ETB) 的所有 ARM 和 DSP 处理器,所有 XDS (...)

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调试探针

LB-3P-TRACE32-DSP — 适用于数字信号处理器 (DSP) 的 Lauterbach TRACE32 调试和跟踪系统

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 (...)

来源:Lauterbach GmbH
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驱动程序或库

NDKTCPIP — TI-RTOS 网络

TI-RTOS Networking(以前称为 NDK 或网络开发者套件)将双模式 IPv4/IPv6 堆栈与一些网络应用结合在一起。作为 TI-RTOS 的一部分,TI-RTOS Networking 支持适用于支持以太网的 MCU 以及基于高性能 TMS320C6000™ DSP 的器件。

支持的产品和硬件
驱动程序或库

SPRC090 — Download TMS320C6000 Chip Support Library

芯片支持库 (CSL) 提供了一个应用程序编程接口 (API),用于配置和控制 DSP 片上外设,以实现易用性、各种 C6000 器件间的兼容性以及硬件抽象。通过提供标准化和可移植性,可缩短开发时间。特性部分列出的功能专为以下器件而设计:C6201、C6202、C6203、C6204、C6205、C6211、C6410、C6412、C6413、C6414、C6415、C6416、C6418、C6701、C6711、C6712、C6713、DA610、DM640、DM641 和 DM642。

特性

模块名称外设说明
CACHE高速缓存
DAT与器件无关的数据复制/填充
DMA直接存储器存取
EDMA (...)
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驱动程序或库

SPRC122 — C62x/C64x Fast Run-Time Support Library

C62x/64x FastRTS Library 是优化型浮点函数库,适用于使用 TMS320C62x 或 TMS320C64x 器件的 C 语言编程器。这些例程通常用于计算密集型实时应用,最佳执行速度是这些应用的关键。通过将当前的浮点库 (RTS) 函数替换为 FastRTS Library,可以在不重写现有代码的情况下大大加快执行速度。

该版本还包括 FastRTS Library 中可用函数子集的 C 语言实施。C 代码可让用户内联这些函数并获得更高性能。

特性

单精度和双精度数学函数单精度和双精度转换函数
浮点加法将浮点值转换为 32 位带符号整数值
将 32 位带符号整数值转换为浮点值
(...)
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驱动程序或库

TELECOMLIB — 用于 TMS320C64x+ 和 TMS320C55x 处理器的电信和媒体库 - FAXLIB、VoLIB 和 AEC/AER

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 (...)

支持的产品和硬件
仿真模型

DM642 GDK BSDL Model

SPRM112.ZIP (8 KB) - BSDL 模型
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仿真模型

DM642 GDK/GNZ IBIS Model

SPRM111.ZIP (110 KB) - IBIS 模型
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仿真模型

DM642 GNZ BSDL Model

SPRM113.ZIP (8 KB) - BSDL 模型
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封装 引脚 CAD 符号、封装和 3D 模型
OMFCBGA (ZNZ) 548 Ultra Librarian
OMFCBGA (GNZ) 548 Ultra Librarian
OMFCBGA (ZDK) 548 Ultra Librarian
OMFCBGA (GDK) 548 Ultra Librarian

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