產品詳細資料

CPU 32-/64-bit Frequency (MHz) 850, 1000, 1200 Hardware accelerators TCP2, VCP2 Operating system DSP/BIOS Rating Catalog Operating temperature range (°C) 0 to 100
CPU 32-/64-bit Frequency (MHz) 850, 1000, 1200 Hardware accelerators TCP2, VCP2 Operating system DSP/BIOS Rating Catalog Operating temperature range (°C) 0 to 100
FCBGA (CMH) 688 529 mm² (23 mm × 23 mm)
  • High-Performance Fixed-Point DSP (C6457)
    • 1.18-ns, 1-ns, and 0.83-ns Instruction Cycle Time/li>
    • 850-MHz, 1-GHz, and 1.2-GHz Clock Rate
    • Eight 32-Bit Instructions/Cycle
    • 8000 and 9600 MIPS/MMACS (16-Bits)
    • Case Temperature
      • Commercial:
        • 0°C to 100°C (850 MHz)
        • 0°C to 100°C (1 GHz)
        • 0°C to 95°C (1.2 GHz)
      • Extended:
        • -40°C to 100°C (1 GHz)
        • -40°C to 95°C (1.2 GHz)
  • TMS320C64x+™ DSP Core
    • Dedicated SPLOOP Instruction
    • Compact Instructions (16-Bit)
    • Instruction Set Enhancements
    • Exception Handling
  • TMS320C64x+ Megamodule L1/L2 Memory Architecture:
    • 256K-Bit (32K-Byte) L1P Program Cache [Direct Mapped]
    • 256K-Bit (32K-Byte) L1D Data Cache [2-Way Set-Associative]
    • 16M-Bit (2048K-Byte) L2 Unified Mapped Ram/Cache [Flexible Allocation]
      • Configurable up to 1MB of L2 Cache
    • 512K-Bit (64K-Byte) L3 ROM
    • Time Stamp Counter
  • Enhanced VCP2
    • Supports Over 694 7.95-Kbps AMR
    • Programmable Code Parameters
  • Two Enhanced Turbo Decoder Coprocessors (TCP2_A and TCP2_B)
    • Each TCP2 Supports up to Eight 2-Mbps 3GPP (6 Iterations)
    • Programmable Turbo Code and Decoding Parameters
  • Endianess: Little Endian, Big Endian
  • 64-Bit External Memory Interface (EMIFA)
    • Glueless Interface to Asynchronous Memories (SRAM, Flash, and EEPROM) and Synchronous Memories (SBSRAM, ZBT SRAM)
    • Supports Interface to Standard Sync Devices and Custom Logic (FPGA, CPLD, ASICs, etc.)
    • 32M-Byte Total Addressable External Memory Space
  • 32-Bit DDR2 Memory Controller (DDR2-667 SDRAM)
  • Four 1× Serial RapidIO® Links (or One 4×), v1.3 Compliant
    • 1.25-, 2.5-, 3.125-Gbps Link Rates
    • Message Passing, DirectIO Support, Error Mgmt Extensions, Congestion Control
    • IEEE 1149.6 Compliant I/Os
  • EDMA3 Controller (64 Independent Channels)
  • 32-/16-Bit Host-Port Interface (HPI)
  • Two 1.8-V McBSPs
  • 10/100/1000 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Supports SGMII, v1.8 Compliant
    • 8 Independent Transmit (TX) and 8 Independent Receive (RX) Channels
  • Two 64-Bit General-Purpose Timers
    • Configurable as Four 32-Bit Timers
    • Configurable in a Watchdog Timer Mode
  • UTOPIA
    • UTOPIA Level 2 Slave ATM Controller
    • 8-Bit Transmit and Receive Operations up to 50 MHz per Direction
    • User-Defined Cell Format up to 64 Bytes
  • One 1.8-V Inter-Integrated Circuit (I2C) Bus
  • 16 General-Purpose I/O (GPIO) Pins
  • System PLL and PLL Controller
  • DDR PLL, Dedicated to DDR2 Memory Controller
  • Advanced Event Triggering (AET) Compatible
  • Trace-Enabled Device
  • Supports IP Security
  • IEEE-1149.1 and IEEE-1149.6 (JTAG™) Boundary-Scan-Compatible
  • 688-Pin Ball Grid Array (BGA) Package (CMH or GMH Suffix), 0.8-mm Ball Pitch
  • 0.065-µm/7-Level Cu Metal Process (CMOS)
  • 3.3-V, 1.8-V, 1.1-V I/Os, 1.1-V and 1.2-V Internal

All trademarks are the property of their respective owners.

  • High-Performance Fixed-Point DSP (C6457)
    • 1.18-ns, 1-ns, and 0.83-ns Instruction Cycle Time/li>
    • 850-MHz, 1-GHz, and 1.2-GHz Clock Rate
    • Eight 32-Bit Instructions/Cycle
    • 8000 and 9600 MIPS/MMACS (16-Bits)
    • Case Temperature
      • Commercial:
        • 0°C to 100°C (850 MHz)
        • 0°C to 100°C (1 GHz)
        • 0°C to 95°C (1.2 GHz)
      • Extended:
        • -40°C to 100°C (1 GHz)
        • -40°C to 95°C (1.2 GHz)
  • TMS320C64x+™ DSP Core
    • Dedicated SPLOOP Instruction
    • Compact Instructions (16-Bit)
    • Instruction Set Enhancements
    • Exception Handling
  • TMS320C64x+ Megamodule L1/L2 Memory Architecture:
    • 256K-Bit (32K-Byte) L1P Program Cache [Direct Mapped]
    • 256K-Bit (32K-Byte) L1D Data Cache [2-Way Set-Associative]
    • 16M-Bit (2048K-Byte) L2 Unified Mapped Ram/Cache [Flexible Allocation]
      • Configurable up to 1MB of L2 Cache
    • 512K-Bit (64K-Byte) L3 ROM
    • Time Stamp Counter
  • Enhanced VCP2
    • Supports Over 694 7.95-Kbps AMR
    • Programmable Code Parameters
  • Two Enhanced Turbo Decoder Coprocessors (TCP2_A and TCP2_B)
    • Each TCP2 Supports up to Eight 2-Mbps 3GPP (6 Iterations)
    • Programmable Turbo Code and Decoding Parameters
  • Endianess: Little Endian, Big Endian
  • 64-Bit External Memory Interface (EMIFA)
    • Glueless Interface to Asynchronous Memories (SRAM, Flash, and EEPROM) and Synchronous Memories (SBSRAM, ZBT SRAM)
    • Supports Interface to Standard Sync Devices and Custom Logic (FPGA, CPLD, ASICs, etc.)
    • 32M-Byte Total Addressable External Memory Space
  • 32-Bit DDR2 Memory Controller (DDR2-667 SDRAM)
  • Four 1× Serial RapidIO® Links (or One 4×), v1.3 Compliant
    • 1.25-, 2.5-, 3.125-Gbps Link Rates
    • Message Passing, DirectIO Support, Error Mgmt Extensions, Congestion Control
    • IEEE 1149.6 Compliant I/Os
  • EDMA3 Controller (64 Independent Channels)
  • 32-/16-Bit Host-Port Interface (HPI)
  • Two 1.8-V McBSPs
  • 10/100/1000 Mb/s Ethernet MAC (EMAC)
    • IEEE 802.3 Compliant
    • Supports SGMII, v1.8 Compliant
    • 8 Independent Transmit (TX) and 8 Independent Receive (RX) Channels
  • Two 64-Bit General-Purpose Timers
    • Configurable as Four 32-Bit Timers
    • Configurable in a Watchdog Timer Mode
  • UTOPIA
    • UTOPIA Level 2 Slave ATM Controller
    • 8-Bit Transmit and Receive Operations up to 50 MHz per Direction
    • User-Defined Cell Format up to 64 Bytes
  • One 1.8-V Inter-Integrated Circuit (I2C) Bus
  • 16 General-Purpose I/O (GPIO) Pins
  • System PLL and PLL Controller
  • DDR PLL, Dedicated to DDR2 Memory Controller
  • Advanced Event Triggering (AET) Compatible
  • Trace-Enabled Device
  • Supports IP Security
  • IEEE-1149.1 and IEEE-1149.6 (JTAG™) Boundary-Scan-Compatible
  • 688-Pin Ball Grid Array (BGA) Package (CMH or GMH Suffix), 0.8-mm Ball Pitch
  • 0.065-µm/7-Level Cu Metal Process (CMOS)
  • 3.3-V, 1.8-V, 1.1-V I/Os, 1.1-V and 1.2-V Internal

All trademarks are the property of their respective owners.

The TMS320C64x+™ DSPs (including the TMS320C6457 device) are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. The C6457 device is based on the third-generation high-performance, advanced VelociTI™ very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making these DSPs an excellent choice for applications including video and telecom infrastructure, imaging/medical, and wireless infrastructure (WI). The C64x+ devices are upward code-compatible from previous devices that are part of the C6000™ DSP platform.

Based on 65-nm process technology and with performance of up to 9600 million instructions per second (MIPS) [or 9600 16-bit MMACs per cycle] at a 1.2-GHz clock rate, the C6457 device offers cost-effective solutions to high-performance DSP programming challenges. The C6457 DSP possesses the operational flexibility of high-speed controllers and the numerical capability of array processors.

The C64x+ DSP core employs eight functional units, two register files, and two data paths. Like the earlier C6000 devices, two of these eight functional units are multipliers or .M units. Each C64x+ .M unit doubles the multiply throughput versus the C64x core by performing four 16-bit × 16-bit multiply-accumulates (MACs) every clock cycle. Thus, eight 16-bit × 16-bit MACs can be executed every cycle on the C64x+ core. At a 1.2-GHz clock rate, this means 9600 16-bit MMACs can occur every second. Moreover, each multiplier on the C64x+ core can compute one 32-bit × 32-bit MAC or four 8-bit × 8-bit MACs every clock cycle.

The C6457 device includes Serial RapidIO®. This high-bandwidth peripheral dramatically improves system performance and reduces system cost for applications that include multiple DSPs on a board, such as video and telecom infrastructures and medical/imaging.

The C6457 DSP integrates a large amount of on-chip memory organized as a two-level memory system. The level-1 (L1) program and data memories on the C6457 device are 32KB each. This memory can be configured as mapped RAM, cache, or some combination of the two. When configured as cache, L1 program (L1P) is a direct mapped cache whereas L1 data (L1D) is a two-way set associative cache. The level 2 (L2) memory is shared between program and data space and is 2048KB in size. L2 memory can also be configured as mapped RAM, cache, or some combination of the two. L2 is configurable up to 1MB of cache. The C64x+ Megamodule also has a 32-bit peripheral configuration (CFG) port, an internal DMA (IDMA) controller, a system component with reset/boot control, interrupt/exception control, a power-down control, and a free-running 32-bit timer for time stamp.

The peripheral set includes: an inter-integrated circuit bus module (I2C); two multichannel buffered serial ports (McBSPs); an 8-bit Universal Test and Operations PHY Interface for Asynchronous Transfer Mode (ATM) Slave [UTOPIA Slave] port; two 64-bit general-purpose timers (also configurable as four 32-bit timers); a user-configurable 16-bit or 32-bit host-port interface (HPI16/HPI32); a 16-pin general-purpose input/output port (GPIO) with programmable interrupt/event generation modes; an 10/100/1000 Ethernet media access controller (EMAC), which provides an efficient interface between the C6457 DSP core processor and the network; a management data input/output (MDIO) module (also part of the EMAC) that continuously polls all 32 MDIO addresses in order to enumerate all PHY devices in the system; a glueless external memory interface (64-bit EMIFA), which is capable of interfacing to synchronous and asynchronous peripherals; and a 32-bit DDR2 SDRAM interface.

The C6457 device has three high-performance embedded coprocessors [one enhanced Viterbi Decoder Coprocessor (VCP2) and two enhanced Turbo Decoder Coprocessors (TCP2_A and TCP2_B)] that significantly speed up channel-decoding operations on-chip. The VCP2 operating at CPU clock ÷ 3 can decode more than 694 7.95-Kbps adaptive multi-rate (AMR) [K = 9, R = 1/3] voice channels. The VCP2 supports constraint lengths K = 5, 6, 7, 8, and 9, rates R = 3/4, 1/2, 1/3, 1/4, and 1/5, and flexible polynomials, while generating hard decisions or soft decisions. Each TCP2 operating at CPU clock ÷ 3 can decode up to fifty 384-Kbps or eight 2-Mbps turbo encoded channels (assuming 6 iterations). The TCP2 implements the max*log-map algorithm and is designed to support all polynomials and rates required by Third-Generation Partnership Projects (3GPP and 3GPP2), with fully programmable frame length and turbo interleaver. Decoding parameters such as the number of iterations and stopping criteria are also programmable. Communications between the VCP2/TCP2s and the CPU are carried out through the EDMA3 controller.

The C6457 device has a complete set of development tools, which includes: a new C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows® debugger interface for visibility into source code execution.

The TMS320C64x+™ DSPs (including the TMS320C6457 device) are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. The C6457 device is based on the third-generation high-performance, advanced VelociTI™ very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making these DSPs an excellent choice for applications including video and telecom infrastructure, imaging/medical, and wireless infrastructure (WI). The C64x+ devices are upward code-compatible from previous devices that are part of the C6000™ DSP platform.

Based on 65-nm process technology and with performance of up to 9600 million instructions per second (MIPS) [or 9600 16-bit MMACs per cycle] at a 1.2-GHz clock rate, the C6457 device offers cost-effective solutions to high-performance DSP programming challenges. The C6457 DSP possesses the operational flexibility of high-speed controllers and the numerical capability of array processors.

The C64x+ DSP core employs eight functional units, two register files, and two data paths. Like the earlier C6000 devices, two of these eight functional units are multipliers or .M units. Each C64x+ .M unit doubles the multiply throughput versus the C64x core by performing four 16-bit × 16-bit multiply-accumulates (MACs) every clock cycle. Thus, eight 16-bit × 16-bit MACs can be executed every cycle on the C64x+ core. At a 1.2-GHz clock rate, this means 9600 16-bit MMACs can occur every second. Moreover, each multiplier on the C64x+ core can compute one 32-bit × 32-bit MAC or four 8-bit × 8-bit MACs every clock cycle.

The C6457 device includes Serial RapidIO®. This high-bandwidth peripheral dramatically improves system performance and reduces system cost for applications that include multiple DSPs on a board, such as video and telecom infrastructures and medical/imaging.

The C6457 DSP integrates a large amount of on-chip memory organized as a two-level memory system. The level-1 (L1) program and data memories on the C6457 device are 32KB each. This memory can be configured as mapped RAM, cache, or some combination of the two. When configured as cache, L1 program (L1P) is a direct mapped cache whereas L1 data (L1D) is a two-way set associative cache. The level 2 (L2) memory is shared between program and data space and is 2048KB in size. L2 memory can also be configured as mapped RAM, cache, or some combination of the two. L2 is configurable up to 1MB of cache. The C64x+ Megamodule also has a 32-bit peripheral configuration (CFG) port, an internal DMA (IDMA) controller, a system component with reset/boot control, interrupt/exception control, a power-down control, and a free-running 32-bit timer for time stamp.

The peripheral set includes: an inter-integrated circuit bus module (I2C); two multichannel buffered serial ports (McBSPs); an 8-bit Universal Test and Operations PHY Interface for Asynchronous Transfer Mode (ATM) Slave [UTOPIA Slave] port; two 64-bit general-purpose timers (also configurable as four 32-bit timers); a user-configurable 16-bit or 32-bit host-port interface (HPI16/HPI32); a 16-pin general-purpose input/output port (GPIO) with programmable interrupt/event generation modes; an 10/100/1000 Ethernet media access controller (EMAC), which provides an efficient interface between the C6457 DSP core processor and the network; a management data input/output (MDIO) module (also part of the EMAC) that continuously polls all 32 MDIO addresses in order to enumerate all PHY devices in the system; a glueless external memory interface (64-bit EMIFA), which is capable of interfacing to synchronous and asynchronous peripherals; and a 32-bit DDR2 SDRAM interface.

The C6457 device has three high-performance embedded coprocessors [one enhanced Viterbi Decoder Coprocessor (VCP2) and two enhanced Turbo Decoder Coprocessors (TCP2_A and TCP2_B)] that significantly speed up channel-decoding operations on-chip. The VCP2 operating at CPU clock ÷ 3 can decode more than 694 7.95-Kbps adaptive multi-rate (AMR) [K = 9, R = 1/3] voice channels. The VCP2 supports constraint lengths K = 5, 6, 7, 8, and 9, rates R = 3/4, 1/2, 1/3, 1/4, and 1/5, and flexible polynomials, while generating hard decisions or soft decisions. Each TCP2 operating at CPU clock ÷ 3 can decode up to fifty 384-Kbps or eight 2-Mbps turbo encoded channels (assuming 6 iterations). The TCP2 implements the max*log-map algorithm and is designed to support all polynomials and rates required by Third-Generation Partnership Projects (3GPP and 3GPP2), with fully programmable frame length and turbo interleaver. Decoding parameters such as the number of iterations and stopping criteria are also programmable. Communications between the VCP2/TCP2s and the CPU are carried out through the EDMA3 controller.

The C6457 device has a complete set of development tools, which includes: a new C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows® debugger interface for visibility into source code execution.

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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 TMS320C6457 Communications Infrastructure Digital Signal Processor datasheet (Rev. B) 2010/7/9
* 勘誤表 TMS320C6457 DSP Silicon Errata (Silicon Revisions 1.0, 1.1, 1.2, 1.3 and 1.4) (Rev. A) 2010/1/22
應用說明 How to Migrate CCS 3.x Projects to the Latest CCS (Rev. A) PDF | HTML 2021/5/19
使用指南 SYS/BIOS (TI-RTOS Kernel) User's Guide (Rev. V) 2020/6/1
應用說明 Using DSPLIB FFT Implementation for Real Input and Without Data Scaling PDF | HTML 2019/6/11
應用說明 TMS320TCI6484 and TMS320C6457 SERDES Implementation Guidelines (Rev. B) PDF | HTML 2019/4/30
應用說明 Error Detection and Correction Mechanism of TMS320C64x+/C674x (Rev. A) 2013/7/19
使用指南 TMS320C6457 DSP EMAC / MDIO User's Guide (Rev. A) 2012/5/2
應用說明 Introduction to TMS320C6000 DSP Optimization 2011/10/6
使用指南 TMS320C6457 DSP DDR2 Memory Controller User's Guide (Rev. D) 2011/6/22
使用指南 Bootloader User's Guide for the TMS320C645x/C647x DSP (Rev. G) 2011/6/3
應用說明 TMS320C6457 Power Consumption Application Report (Rev. A) 2011/3/25
應用說明 Tuning VCP2 and TCP2 Bit Error Rate Performance 2011/2/11
使用指南 TMS320C6457 DSP Serial RapidIO (SRIO) User's Guide (Rev. D) 2011/2/3
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 TMS320C6457 DSP Host Port Interface (HPI) User's Guide (Rev. A) 2010/7/30
使用指南 TMS320C6457 DSP External Memory Interface (EMIF) User's Guide (Rev. B) 2010/7/30
使用指南 TMS320C6457 DSP Multichannel Buffered Serial Port (McBSP) User's Guide (Rev. A) 2010/5/18
應用說明 TMS320C6457/TMS320TCI6484/TMS320TCI6487/88 DDR2 Implementation Guidelines (Rev. D) 2010/1/28
使用指南 TMS320C6457 DSP Viterbi-Decoder Coprocessor 2 Reference (VCP2) Guide (Rev. A) 2009/12/8
使用指南 TMS320C6457 DSP Inter-Integrated Circuit (I2C) Module User's Guide (Rev. A) 2009/10/28
應用說明 TMS320TCI6484 and TMS320C6457 DSPs Hardware Design Guide (Rev. B) 2009/10/8
使用指南 TMS320C6457 DSP Universal Test & Operations PHY Interface for ATM 2 (UTOPIA2) UG 2009/3/11
使用指南 TMS320C6457 DSP General-Purpose Input/Output (GPIO) User's Guide 2009/3/11
使用指南 TMS320C6457 DSP Power/Sleep Controller (PSC) User's Guide 2009/3/11
使用指南 TMS320C6457 DSP 64-Bit Timer User's Guide 2009/3/11
使用指南 TMS320C6457 DSP Enhanced (EDMA3) Controller User's Guide 2009/3/11
使用指南 TMS320C6457 DSP Turbo-Decoder Coprocessor 2 Reference Guide 2009/3/11
使用指南 TMS320C6457 DSP Software-Programmable Phase-Locked Loop (PLL) Controller UG 2008/3/11
應用說明 Migrating from TMS320C64x to TMS320C64x+ (Rev. A) 2005/10/20
使用指南 High-Speed DSP Systems Design Reference Guide 2005/5/20

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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 (...)

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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 (...)

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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 (...)

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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 (...)

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軟體開發套件 (SDK)

BIOSMCSDK-C64XPLUS — SYS/BIOS MCSDK for C647x and C645x

NOTE: K2x, C665x and C667x devices are now actively maintained on the Processor-SDK release stream. See links above.

Our Multicore Software Development Kits (MCSDK) provide highly-optimized bundles of foundational, platform-specific drivers to enable development on selected TI ARM and DSP devices. (...)

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軟體開發套件 (SDK)

BIOSMCSDK-C66X — SYS/BIOS MCSDK for C66x

NOTE: K2x, C665x and C667x devices are now actively maintained on the Processor-SDK release stream. See links above.

Our Multicore Software Development Kits (MCSDK) provide highly-optimized bundles of foundational, platform-specific drivers to enable development on selected TI ARM and DSP devices. (...)

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軟體開發套件 (SDK)

LINUXMCSDK — Linux MCSDK for C66x, C647x and C645x

NOTE: K2x, C665x and C667x devices are now actively maintained on the Processor-SDK release stream. See links above.

Our Multicore Software Development Kits (MCSDK) provide highly-optimized bundles of foundational, platform-specific drivers to enable development on selected TI ARM and DSP devices. (...)

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軟體開發套件 (SDK)

MEDIMGSTK-C66X — TI Embedded Processor Software Tool Kit for Medical Imaging (STK-MED) - for C66x and C64x+ based processors

The TI Embedded Processor Software Toolkit for Medical Imaging (STK-MED) is a collection of several standard ultrasound and optical coherence tomography (OCT) algorithms for TI’s C66x™ and C64x+™ architecture. The algorithms showcase how medical imaging functions can leverage the C66x and (...)
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IDE、配置、編譯器或偵錯程式

CCSTUDIO — Code Composer Studio™ integrated development environment (IDE)

CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)

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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 (...)

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C64X-DSPLIB — Download TMS320C64x DSP Library

TMS320C6000 數位訊號處理器函式庫 (DSPLIB) 是適合 C 編程人員的平台最佳化 DSP 函式庫。此函式庫包括可呼叫 C 語言的通用訊號處理常式,通常用於運算密集的即時應用。相較於同等標準 ANSI C 語言程式碼,使用這些常式可以實現更高性能。DSPLIB 透過立即可用的 DSP 功能與原始程式碼,能夠大幅縮短應用程式開發時間。

查看基準測試:DSP 核心基準測試

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C64XPLUS-IQMATHSRC — C64x+ IQMath 函式庫 - 原始程式碼

德州儀器 TMS320C64x+ IQmath 函式庫是高度最佳化的高精度數學函式庫集合,使 C/C++ 編程人員可以在 TMS320C64x+ 裝置上將浮點算法無縫植入定點程式碼中。這些常式通常用於計算密集型即時應用,在這些應用中,最佳執行速度與高精度至關重要。使用這些常式,您可以達到比標準 ANSI C 語言編寫的同等程式碼更快的執行速度。另外,透過提供即用型高精度函式,TI IQmath 函式庫可以大幅縮短 DSP 應用程式的開發時間。IQmath 函式庫版本也包括使用 IQmath 核心實作複數 FFT 和 FIR 核心的範例。

原始程式碼 - 透過內嵌 IQMath (...)

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C67X-DSPLIB — Download TMS320C67x DSP Library

TMS320C6000 數位訊號處理器函式庫 (DSPLIB) 是適合 C 編程人員的平台最佳化 DSP 函式庫。此函式庫包括可呼叫 C 語言的通用訊號處理常式,通常用於運算密集的即時應用。相較於同等標準 ANSI C 語言程式碼,使用這些常式可以實現更高性能。DSPLIB 透過立即可用的 DSP 功能與原始程式碼,能夠大幅縮短應用程式開發時間。

查看基準測試:DSP 核心基準測試

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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 (...)

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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 (...)
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SPRC264 — TMS320C5000/6000 映像庫 (IMGLIB)

C5000 6000 影像處理庫 (IMGLIB) 是適合 C 程式設計工具的最佳化影像/影片處理函式庫。此函式庫包括 C 可呼叫通用影像/影片處理常式,這些常式通常用於運算密集型即時應用。相較於同等標準 ANSI C 語言程式碼,使用這些常式可以實現更高性能。IMGLIB 透過立即可用的 DSP 功能與原始程式碼,能夠大幅縮短應用程式開發時間。

查看基準測試:DSP 核心基準測試

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SPRC924 — TMS320C6457 Chip Support Library

此版本的 TMS320C6457 CSL 包含 C6457 模組的週邊設備編程(功能與暫存器層級)API。這組 API 提供可由更高層級軟體使用的週邊設備抽象。

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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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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。

 

 

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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。

 

 

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ADT-3P-DSPVOIPCODECS — 適應性數位技術 DSP VOIP、語音和音訊轉碼器

Adaptive Digital is a developer of voice quality enhancement algorithms, and best-in-class acoustic echo cancellation software that work with TI DSPs. Adaptive Digital has extensive experience in the algorithm development, implementation, optimization and configuration tuning. They provide (...)
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模擬型號

C6457 CMH and GMH BSDL Model

SPRM381.ZIP (17 KB) - BSDL 模型
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模擬型號

C6457 CMH IBIS Model (Rev. A)

SPRM360 (904 KB) - IBIS 模型
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封裝 針腳 CAD 符號、佔位空間與 3D 模型
FCBGA (CMH) 688 Ultra Librarian

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