TMS320C6652

現行

產品詳細資料

CPU 32-/64-bit Frequency (MHz) 600 PCIe 2 PCIe Gen2 Operating system TI RTOS Rating Catalog Operating temperature range (°C) -40 to 100
CPU 32-/64-bit Frequency (MHz) 600 PCIe 2 PCIe Gen2 Operating system TI RTOS Rating Catalog Operating temperature range (°C) -40 to 100
FCBGA (CZH) 625 441 mm² (21 mm × 21 mm)
  • One TMS320C66x DSP Core Subsystem (CorePac)
    • C66x Fixed- and Floating-Point CPU Core: Up to 850 MHz for C6654 and 600 MHz for C6652
  • Multicore Shared Memory Controller (MSMC)
    • Memory Protection Unit for DDR3_EMIF
  • Multicore Navigator
    • 8192 Multipurpose Hardware Queues with Queue Manager
    • Packet-Based DMA for Zero-Overhead Transfers
  • Peripherals
    • PCIe Gen2 (C6654 Only)
      • Single Port Supporting 1 or 2 Lanes
      • Supports up to 5 GBaud Per Lane
    • Gigabit Ethernet (GbE) Subsystem (C6654 Only)
      • One SGMII Port (C6654 Only)
      • Supports 10-, 100-, and 1000-Mbps Operation
    • 32-Bit DDR3 Interface
      • DDR3-1066
      • 4GB of Addressable Memory Space
    • 16-Bit EMIF
    • Universal Parallel Port
      • Two Channels of 8 Bits or 16 Bits Each
      • Supports SDR and DDR Transfers
    • Two UART Interfaces
    • Two Multichannel Buffered Serial Ports (McBSPs)
    • I2C Interface
    • 32 GPIO Pins
    • SPI Interface
    • Semaphore Module
    • Eight 64-Bit Timers
    • Two On-Chip PLLs
  • Commercial Temperature:
    • 0°C to 85°C
  • Extended Temperature:
    • –40°C to 100°C
  • One TMS320C66x DSP Core Subsystem (CorePac)
    • C66x Fixed- and Floating-Point CPU Core: Up to 850 MHz for C6654 and 600 MHz for C6652
  • Multicore Shared Memory Controller (MSMC)
    • Memory Protection Unit for DDR3_EMIF
  • Multicore Navigator
    • 8192 Multipurpose Hardware Queues with Queue Manager
    • Packet-Based DMA for Zero-Overhead Transfers
  • Peripherals
    • PCIe Gen2 (C6654 Only)
      • Single Port Supporting 1 or 2 Lanes
      • Supports up to 5 GBaud Per Lane
    • Gigabit Ethernet (GbE) Subsystem (C6654 Only)
      • One SGMII Port (C6654 Only)
      • Supports 10-, 100-, and 1000-Mbps Operation
    • 32-Bit DDR3 Interface
      • DDR3-1066
      • 4GB of Addressable Memory Space
    • 16-Bit EMIF
    • Universal Parallel Port
      • Two Channels of 8 Bits or 16 Bits Each
      • Supports SDR and DDR Transfers
    • Two UART Interfaces
    • Two Multichannel Buffered Serial Ports (McBSPs)
    • I2C Interface
    • 32 GPIO Pins
    • SPI Interface
    • Semaphore Module
    • Eight 64-Bit Timers
    • Two On-Chip PLLs
  • Commercial Temperature:
    • 0°C to 85°C
  • Extended Temperature:
    • –40°C to 100°C

The C6654 and C6652 are high performance fixed- and floating-point DSPs that are based on TI’s KeyStone multicore architecture. Incorporating the new and innovative C66x DSP core, this device can run at a core speed of up to 850 MHz for C6654 and 600 MHz for C6652. For developers of a broad range of applications, both C6654 and C6652 DSPs enable a platform that is power-efficient and easy to use. In addition, the C6654 and C6652 DSPs are fully backward compatible with all existing C6000™ family of fixed- and floating-point DSPs.

TI’s KeyStone architecture provides a programmable platform integrating various subsystems (C66x cores, memory subsystem, peripherals, and accelerators) and uses several innovative components and techniques to maximize intradevice and interdevice communication that lets the various DSP resources operate efficiently and seamlessly. Central to this architecture are key components such as Multicore Navigator that allows for efficient data management between the various device components. The TeraNet is a nonblocking switch fabric enabling fast and contention-free internal data movement. The multicore shared memory controller allows access to shared and external memory directly without drawing from switch fabric capacity.

For fixed-point use, the C66x core has 4× the multiply accumulate (MAC) capability of C64x+ cores. In addition, the C66x core integrates floating-point capability and the per-core raw computational performance is an industry-leading 27.2 GMACS per core and 13.6 GFLOPS per core (@850 MHz frequency). The C66x core can execute 8 single precision floating-point MAC operations per cycle and can perform double- and mixed-precision operations and is IEEE 754 compliant. The C66x core incorporates 90 new instructions (compared to the C64x+ core) targeted for floating-point and vector math oriented processing. These enhancements yield sizeable performance improvements in popular DSP kernels used in signal processing, mathematical, and image acquisition functions. The C66x core is backward code-compatible with TI’s previous generation C6000 fixed- and floating-point DSP cores, ensuring software portability and shortened software development cycles for applications migrating to faster hardware.

The C6654 and C6652 DSPs integrate a large amount of on-chip memory. In addition to 32KB of L1 program and data cache, 1024KB of dedicated memory can be configured as mapped RAM or cache. All L2 memories incorporate error detection and error correction. For fast access to external memory, this device includes a 32-bit DDR-3 external memory interface (EMIF) running at a rate of 1066 MHz and has ECC DRAM support.

This family supports a number of high-speed standard interfaces including PCI Express Gen2 and Gigabit Ethernet (PCIe and Gigabit Ethernet are not supported on the C6652). This family of DSPs also includes I2C, UART, Multichannel Buffered Serial Port (McBSP), Universal Parallel Port (uPP), and a 16-bit asynchronous EMIF, along with general-purpose CMOS IO.

The C6654 and C6652 devices have a complete set of development tools, which includes: an enhanced C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows® debugger interface for visibility into source code execution.

TI’s KeyStone Multicore Architecture provides a high performance structure for integrating RISC and DSP cores with application-specific coprocessors and I/O. The KeyStone architecture is the first of its kind that provides adequate internal bandwidth for nonblocking access to all processing cores, peripherals, coprocessors, and I/O. This internal bandwidth is achieved with four main hardware elements: Multicore Navigator, TeraNet, and Multicore Shared Memory Controller.

Multicore Navigator is an innovative packet-based manager that controls 8192 queues. When tasks are allocated to the queues, Multicore Navigator provides hardware-accelerated dispatch that directs tasks to the appropriate available hardware. The packet-based system on a chip (SoC) uses the two Tbps capacity of the TeraNet switched central resource to move packets. The Multicore Shared Memory Controller lets processing cores access shared memory directly without drawing from the capacity of TeraNet, so packet movement cannot be blocked by memory access.

The C6654 and C6652 are high performance fixed- and floating-point DSPs that are based on TI’s KeyStone multicore architecture. Incorporating the new and innovative C66x DSP core, this device can run at a core speed of up to 850 MHz for C6654 and 600 MHz for C6652. For developers of a broad range of applications, both C6654 and C6652 DSPs enable a platform that is power-efficient and easy to use. In addition, the C6654 and C6652 DSPs are fully backward compatible with all existing C6000™ family of fixed- and floating-point DSPs.

TI’s KeyStone architecture provides a programmable platform integrating various subsystems (C66x cores, memory subsystem, peripherals, and accelerators) and uses several innovative components and techniques to maximize intradevice and interdevice communication that lets the various DSP resources operate efficiently and seamlessly. Central to this architecture are key components such as Multicore Navigator that allows for efficient data management between the various device components. The TeraNet is a nonblocking switch fabric enabling fast and contention-free internal data movement. The multicore shared memory controller allows access to shared and external memory directly without drawing from switch fabric capacity.

For fixed-point use, the C66x core has 4× the multiply accumulate (MAC) capability of C64x+ cores. In addition, the C66x core integrates floating-point capability and the per-core raw computational performance is an industry-leading 27.2 GMACS per core and 13.6 GFLOPS per core (@850 MHz frequency). The C66x core can execute 8 single precision floating-point MAC operations per cycle and can perform double- and mixed-precision operations and is IEEE 754 compliant. The C66x core incorporates 90 new instructions (compared to the C64x+ core) targeted for floating-point and vector math oriented processing. These enhancements yield sizeable performance improvements in popular DSP kernels used in signal processing, mathematical, and image acquisition functions. The C66x core is backward code-compatible with TI’s previous generation C6000 fixed- and floating-point DSP cores, ensuring software portability and shortened software development cycles for applications migrating to faster hardware.

The C6654 and C6652 DSPs integrate a large amount of on-chip memory. In addition to 32KB of L1 program and data cache, 1024KB of dedicated memory can be configured as mapped RAM or cache. All L2 memories incorporate error detection and error correction. For fast access to external memory, this device includes a 32-bit DDR-3 external memory interface (EMIF) running at a rate of 1066 MHz and has ECC DRAM support.

This family supports a number of high-speed standard interfaces including PCI Express Gen2 and Gigabit Ethernet (PCIe and Gigabit Ethernet are not supported on the C6652). This family of DSPs also includes I2C, UART, Multichannel Buffered Serial Port (McBSP), Universal Parallel Port (uPP), and a 16-bit asynchronous EMIF, along with general-purpose CMOS IO.

The C6654 and C6652 devices have a complete set of development tools, which includes: an enhanced C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows® debugger interface for visibility into source code execution.

TI’s KeyStone Multicore Architecture provides a high performance structure for integrating RISC and DSP cores with application-specific coprocessors and I/O. The KeyStone architecture is the first of its kind that provides adequate internal bandwidth for nonblocking access to all processing cores, peripherals, coprocessors, and I/O. This internal bandwidth is achieved with four main hardware elements: Multicore Navigator, TeraNet, and Multicore Shared Memory Controller.

Multicore Navigator is an innovative packet-based manager that controls 8192 queues. When tasks are allocated to the queues, Multicore Navigator provides hardware-accelerated dispatch that directs tasks to the appropriate available hardware. The packet-based system on a chip (SoC) uses the two Tbps capacity of the TeraNet switched central resource to move packets. The Multicore Shared Memory Controller lets processing cores access shared memory directly without drawing from the capacity of TeraNet, so packet movement cannot be blocked by memory access.

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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 TMS320C6652 and TMS320C6654 Fixed and Floating-Point Digital Signal Processor datasheet (Rev. E) PDF | HTML 2019/9/4
* 勘誤表 TMS320C6652/54/55/57 Multicore Fixed and Floating-Point DSP SR1.0 (Rev. C) 2016/5/19
應用說明 DDR3 Design Requirements for KeyStone Devices (Rev. D) PDF | HTML 2022/7/7
應用說明 Keystone Error Detection and Correction EDC ECC (Rev. A) 2021/6/25
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 Keystone Bootloader Resources and FAQ 2019/5/29
應用說明 Keystone Multicore Device Family Schematic Checklist PDF | HTML 2019/5/17
應用說明 Hardware Design Guide for KeyStone Devices (Rev. D) PDF | HTML 2019/3/21
應用說明 KeyStone I DDR3 interface bring-up PDF | HTML 2019/3/6
應用說明 Thermal Design Guide for DSP and Arm Application Processors (Rev. B) 2017/8/14
使用指南 Phase-Locked Loop (PLL) for KeyStone Devices User's Guide (Rev. I) 2017/7/26
應用說明 KeyStone I DDR3 Initialization (Rev. E) 2016/10/28
Product overview TMS320C6657/55/54 Power efficient high performance for process-intensive apps (Rev. A) 2016/5/23
應用說明 TI DSP Benchmarking PDF | HTML 2016/1/13
應用說明 Plastic Ball Grid Array [PBGA] Application Note (Rev. B) 2015/8/13
使用指南 Enhanced Direct memory Access 3 (EDMA3) for KeyStone Devices User's Guide (Rev. B) PDF | HTML 2015/5/6
使用指南 Multicore Navigator (CPPI) for KeyStone Architecture User's Guide (Rev. H) PDF | HTML 2015/4/9
使用指南 DDR3 Memory Controller for KeyStone I Devices User's Guide (Rev. E) 2015/1/20
使用指南 Power Sleep Controller (PSC) for KeyStone Devices User's Guide (Rev. C) 2014/9/4
更多文件說明 KeyStone Lab Manual - Training 2014/6/5
使用指南 System Analyzer User's Guide (Rev. F) 2013/11/18
使用指南 DSP Bootloader for KeyStone Architecture User's Guide (Rev. C) 2013/7/15
白皮書 Accelerating high-performance computing development with Desktop Linux SDK 2013/7/8
使用指南 Memory Protection Unit (MPU) for KeyStone Devices User's Guide (Rev. A) 2013/6/28
使用指南 C66x CorePac User's Guide (Rev. C) 2013/6/28
Product overview OpenMP Programming for TMS320C66x Multicore DSPs (Rev. A) 2012/11/5
Product overview TMS320C66x high-performance multicore DSPs for video surveillance 2012/9/6
使用指南 Universal Parallel Port (uPP) for KeyStone Architecture User's Guide 2012/6/11
使用指南 Multichannel Buffered Serial Port (MCBSP) User's Guide for KeyStone Devices 2012/5/25
白皮書 Leveraging multicore processors for machine vision applications 2012/5/9
使用指南 Serial Peripheral Interface (SPI) for KeyStone Devices User’s Guide (Rev. A) 2012/3/30
使用指南 Chip Interrupt Controller (CIC) for KeyStone Devices User's Guide (Rev. A) 2012/3/27
白皮書 Superior performance at breakthrough size, weight & power 2012/3/26
使用指南 64-Bit Timer (Timer64) for KeyStone Devices User's Guide (Rev. A) 2012/3/22
使用指南 Multicore Shared Memory Controller (MSMC) for KeyStone Devices User's Guide (Rev. A) 2011/10/15
應用說明 Introduction to TMS320C6000 DSP Optimization 2011/10/6
使用指南 Debug and Trace for KeyStone I Devices User's Guide (Rev. A) 2011/9/22
使用指南 Inter-Integrated Circuit (I2C) for KeyStone Devices User's Guide 2011/9/2
白皮書 KeyStone Multicore SoC Tool Suite: one platform for all needs 2011/6/17
使用指南 External Memory Interface (EMIF16) for KeyStone Devices User's Guide (Rev. A) 2011/5/24
白皮書 Software and Hardware Design Challenges Due to Dynamic Raw NAND Market 2011/5/19
應用說明 TMS320C66x DSP Generation of Devices (Rev. A) 2011/4/25
白皮書 KeyStone Memory Architecture White Paper (Rev. A) 2010/12/21
應用說明 Optimizing Loops on the C66x DSP 2010/11/9
使用指南 General-Purpose Input/Output (GPIO) forKeyStone Devices User's Guide 2010/11/9
使用指南 C66x CPU and Instruction Set Reference Guide 2010/11/9
應用說明 Clocking Design Guide for KeyStone Devices 2010/11/9
使用指南 Universal Asynchronous Receiver/Transmitter (UART) for KeyStone Devices UG 2010/11/9
使用指南 C66x DSP Cache User's Guide 2010/11/9
使用指南 Flip Chip Ball Grid Array Package Reference Guide (Rev. A) 2005/5/23
應用說明 AN-1281 Bumped Die (Flip Chip) Packages (Rev. A) 2004/5/1

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TMDSEVM6657 — TMS320C6657 Lite 評估模組

The TMS3206657 Lite Evaluation Module (EVM), is an easy-to-use, cost-efficient development tool that helps developers quickly get started with designs using the C6657 or C6655 or C6654 family of DSPs. The EVM includes an on-board, single C6657 processor with robust connectivity options that allows (...)

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Sheldon Instruments designs and manufactures DSP based, COTS data acquisition and control hardware for PCIe/PCI, PCI104e/PCI104, XMC/PMC, and CompactPCI systems, along with drivers and real time development software for a variety of applications and markets.

Learn more about Sheldon Instruments at (...)
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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)

PROCESSOR-SDK-RTOS-C665X — RTOS Processor SDK for C665X

處理器 SDK (軟體開發套件) 是一套專為 TI 嵌入式處理器所設計的整合軟體平台,提供簡易設定,可迅速且立即執行基準測試與示範。  所有 TI 代表產品的處理器 SDK 版本均相同,開發人員能順暢地在其他裝置上再次使用軟體,與移轉軟體至其他裝置。  有了處理器 SDK 和 TI 嵌入式處理器解決方案,讓開發可調式平台解決方案從此變得更輕鬆簡單。

C66x 的處理器 SDK v.02.xx 版本包含對 TI-RTOS 作業系統的支援。

RTOS 主要特點:

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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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模擬型號

C6652 Power Consumption Model

SPRM676.ZIP (176 KB) - 功率模型
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FCBGA (CZH) 625 Ultra Librarian

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