SM320C6472-HIREL
- Six On-Chip TMS320C64x+ Megamodules
- Endianess: Little Endian, Big Endian
- C64x+ Megamodule Main Features:
- High-Performance, Fixed-Point TMS320C64x+ DSP
- 500/625/700 MHz
- Eight 32-Bit Instructions/Cycle
- 4000 MIPS/MMACS (16-Bits) at 500 MHz
- Dedicated SPLOOP Instruction
- Compact Instructions (16-Bit)
- Instruction Set Enhancements
- Exception Handling
- L1/L2 Memory Architecture:
- 256K-Bit (32K-Byte) L1P Program RAM/Cache
[Direct Mapped, Flexible Allocation] - 256K-Bit (32K-Byte) L1D RAM/Cache
[2-Way Set-Associative, Flexible Allocation] - 4.75M-Bit (608K-Byte) L2 Unified Mapped RAM/Cache
[4-Way Set-Associative, Flexible Allocation] - L1P Memory Controller
- L1D Memory Controller
- L2 Memory Controller
- 256K-Bit (32K-Byte) L1P Program RAM/Cache
- Time Stamp Counter
- One 64-Bit General-Purpose/Watchdog Timer
- Shared Peripherals and Interfaces
- EDMA Controller (64 Independent Channels)
- Shared Memory Architecture
- Shared L2 Memory Controller
- 768K-Byte of RAM
- Boot ROM
- Three Telecom Serial Interface Ports (TSIPs)
- Each TSIP is 8 Links of 8 Mbps per Direction
- 32-Bit DDR2 Memory Controller (DDR2-533 SDRAM)
- 256 M-Byte × 2 Addressable Memory Space
- Two 1x Serial RapidIO® Links, v1.2 Compliant
- 1.25-, 2.5-, 3.125-Gbps Link Rates
- Message Passing, DirectIO Support, Error Management
Extensions, and Congestion Control - IEEE 1149.6 Compliant I/Os
- UTOPIA
- UTOPIA Level 2 Slave ATM Controller
- 8/16-Bit Transmit and Receive Operations up to
50 MHz per Direction - User-Defined Cell Format up to 64 Bytes
- Two 10/100/1000 Mb/s Ethernet MACs (EMACs)
- Both EMACs are IEEE 802.3 Compliant
- EMAC0 Supports:
- MII, RMII, SS-SMII, GMII, and RGMII
- 8 Independent Transmit (TX) Channels
- 8 Independent Receive (RX) Channels
- EMAC1 Supports:
- RMII, SS-SMII and RGMII
- 8 Independent Transmit (TX) Channels
- 8 Independent Receive (RX) Channels
- Both EMACs (EMAC0 and EMAC1) Share MDIO Interface
- 16-Bit Host-Port Interface (HPI)
- One Inter-Integrated Circuit (I2C) Bus
- Six Shared 64-Bit General-Purpose Timers
- System PLL and PLL Controller
- Secondary PLL and PLL Controller, Dedicated to EMAC
- Third PLL and PLL Controller Dedicated to DDR2 Memory Controller
- 16 General-Purpose I/O (GPIO) Pins
- IEEE-1149.1 (JTAG™) Boundary-Scan-Compatible
- 737-Pin Ball Gird Array (BGA) Package (ZTZ/GTZ Suffix),
0.8-mm Ball Pitch - 0.09-µm/7-Level Cu Metal Process (CMOS)
- 3.3-, 1.8-, 1.5-, 1.2-V I/O Supplies
- 1.0-/1.1-, 1.2-V Core Supplies
- Commercial Temperature [0°C to 85°C]
- Extended Temperature [40°C to 100°C]
- Only 625-MHz Device Offered in GTZ Package
The SM320C6472 device is a Texas Instruments next-generation fixed-point digital signal processor (DSP) targeting high-performance computing applications, including high-end industrial, mission-critical, high-end image and video, communication, media gateways, and remote access servers. This device was designed with these applications in mind. A common key requirement of these applications is the availability of large on-chip memories to handle vast amounts of data during processing. With 768K-Byte of shared RAM and 608K-Byte local L2 RAM per C64x+ Megamodule, the SM320C6472 device can eliminate the need for external memory, thereby reducing system power dissipation and system cost and optimizing board density.
The SM320C6472 device has six optimized TMS320C64x+™ megamodules, which combine high performance with the lowest power dissipation per port. The TMS320C6472 device includes three different speeds: 500 MHz, 625 MHz, and 700 MHz. The C64x+ megamodules are the highest-performance fixed-point DSP generation in the TMS320C6000™ DSP platform. The C64x+ megamodule is based on the third-generation high-performance, advanced VelociTI™ very-long-instruction-word (VLIW) architecture developed by Texas Instruments (TI), making devices like SM320C6472 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.
The C64x+ megamodule 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+ megamodule core .M unit doubles the multiply throughput versus the C64x core by performing four 16-bit x 16-bit multiply-accumulates (MACs) every clock cycle. Thus, eight 16-bit x 16-bit MACs can be executed every cycle on the C64x+ core. At a 500-MHz clock rate, this means 4000 16-bit MMACs can occur every second. Moreover, each multiplier on the C64x+ megamodule core can compute one 32-bit x 32-bit MAC or four 8-bit x 8-bit MACs every clock cycle.
The C64x+ megamodule integrates a large amount of on-chip memory organized as a two-level memory system. The level-1 (L1) program and data memories on this C64x+ megamodule 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 where as L1 data (L1D) is a two-way set associative cache. The level 2 (L2) memory is shared between program and data space and is 608K-Byte in size. L2 memory can also be configured as mapped RAM, cache, or some combination of the two. 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: three Telecom Serial Interface Port (TSIPs); an 16/8 bit Universal Test and Operations PHY Interface for Asynchronous Transfer Mode (ATM) Slave [UTOPIA Slave] port; two 10/100/1000 Ethernet media access controllers (EMACs), which provide an efficient interface between the C6472 DSP core processor and the network; a management data input/output (MDIO) module (shared by both EMACs) that continuously polls all 32 MDIO addresses in order to enumerate all PHY devices in the system; a Serial RapidIO® with two 1x lanes and support for packet forwarding; a 32-bit DDR2 SDRAM interface; 12 64-bit general-purpose timers; an inter-integrated circuit bus module (I2C); 16 general-purpose input/output ports (GPIO) with programmable interrupt/event generation modes; and a 16-bit multiplexed host-port interface (HPI16).
The C6472 device has a complete set of development tools which includes: a C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows® debugger interface for visibility into source code execution.
TI 不提供設計支援
此產品沒有 TI 針對新專案提供的持續設計支援,例如新內容或軟體更新。若有提供,您可在此頁面找到相關資訊、工具和軟體。
技術文件
| 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 | Fixed-Point Digital Signal Processor. datasheet (Rev. B) | 2010/10/7 | |||
| 應用說明 | Introduction to TMS320C6000 DSP Optimization | 2011/10/6 |
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)。
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 (...)
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 (...)
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 (...)
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 (...)
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 (...)
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
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
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 (...)
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 (...)
| 封裝 | 針腳 | CAD 符號、佔位空間與 3D 模型 |
|---|---|---|
| FCBGA (GTZ) | 737 | Ultra Librarian |