产品详情

DSP type 1 C2x DSP (max) (MHz) 50 CPU 32-bit Rating Military Operating temperature range (°C) -55 to 125
DSP type 1 C2x DSP (max) (MHz) 50 CPU 32-bit Rating Military Operating temperature range (°C) -55 to 125
CFP (HFH) 320 1936 mm² 44 x 44 CPGA (GF) 305 2232.5625 mm² 47.25 x 47.25
  • Single-Chip Parallel Multiple Instruction/Multiple Data (MIMD) Digital Signal Processor (DSP)
  • More Than Two Billion RISC-Equivalent Operations per Second
  • Master Processor (MP)
    • 32-Bit Reduced Instruction Set Computing (RISC) Processor
    • IEEE-754 Floating-Point Capability
    • 4K-Byte Instruction Cache
    • 4K-Byte Data Cache
  • Four Parallel Processors (PP)
    • 32-Bit Advanced DSPs
    • 64-Bit Opcode Provides Many Parallel Operations per Cycle
    • 2K-Byte Instruction Cache and 8K-Byte Data RAM per PP
  • Transfer Controller (TC)
    • 64-Bit Data Transfers
    • Up to 400 Megabytes per Second (MBps) Transfer Rate
    • 32-Bit Addressing
    • Direct DRAM/VRAM Interface With Dynamic Bus Sizing
    • Intelligent Queuing and Cycle Prioritization
  • Video Controller (VC)
    • Provides Video Timing and Video Random-Access Memory (VRAM) Control
    • Dual-Frame Timers for Two Simultaneous Image-Capture and/or Display Systems
  • Big- or Little-Endian Operation
  • 50K-Byte On-Chip RAM
  • 4G-Byte Address Space
  • 20-ns Cycle Time
  • 3.3-V Operation
  • IEEE Standard 1149.1 Test Access Port (JTAG)
  • Operating Temperature Range
       –55°C to 125°C - M-Temperature
       –40°C to 85°C - A-Temperature

IEEE Standard 1149.1–1990, IEEE Standard Test Access Port and Boundary-Scan Architecture

  • Single-Chip Parallel Multiple Instruction/Multiple Data (MIMD) Digital Signal Processor (DSP)
  • More Than Two Billion RISC-Equivalent Operations per Second
  • Master Processor (MP)
    • 32-Bit Reduced Instruction Set Computing (RISC) Processor
    • IEEE-754 Floating-Point Capability
    • 4K-Byte Instruction Cache
    • 4K-Byte Data Cache
  • Four Parallel Processors (PP)
    • 32-Bit Advanced DSPs
    • 64-Bit Opcode Provides Many Parallel Operations per Cycle
    • 2K-Byte Instruction Cache and 8K-Byte Data RAM per PP
  • Transfer Controller (TC)
    • 64-Bit Data Transfers
    • Up to 400 Megabytes per Second (MBps) Transfer Rate
    • 32-Bit Addressing
    • Direct DRAM/VRAM Interface With Dynamic Bus Sizing
    • Intelligent Queuing and Cycle Prioritization
  • Video Controller (VC)
    • Provides Video Timing and Video Random-Access Memory (VRAM) Control
    • Dual-Frame Timers for Two Simultaneous Image-Capture and/or Display Systems
  • Big- or Little-Endian Operation
  • 50K-Byte On-Chip RAM
  • 4G-Byte Address Space
  • 20-ns Cycle Time
  • 3.3-V Operation
  • IEEE Standard 1149.1 Test Access Port (JTAG)
  • Operating Temperature Range
       –55°C to 125°C - M-Temperature
       –40°C to 85°C - A-Temperature

IEEE Standard 1149.1–1990, IEEE Standard Test Access Port and Boundary-Scan Architecture

The SMJ320C80 is a single-chip, MIMD parallel processor capable of performing over two billion operations per second. It consists of a 32-bit RISC master processor with a 100-MFLOPS (million floating-point operations per second) IEEE floating-point unit, four 32-bit parallel processing digital signal processors (DSPs), a transfer controller with up to 400-MBps off-chip transfer rate, and a video controller. All the processors are coupled tightly through an on-chip crossbar that provides shared access to on-chip RAM. This performance and programmability make the ’C80 ideally suited for video, imaging, and high-speed telecommunications applications.

The SMJ320C80 is a single-chip, MIMD parallel processor capable of performing over two billion operations per second. It consists of a 32-bit RISC master processor with a 100-MFLOPS (million floating-point operations per second) IEEE floating-point unit, four 32-bit parallel processing digital signal processors (DSPs), a transfer controller with up to 400-MBps off-chip transfer rate, and a video controller. All the processors are coupled tightly through an on-chip crossbar that provides shared access to on-chip RAM. This performance and programmability make the ’C80 ideally suited for video, imaging, and high-speed telecommunications applications.

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类型 标题 下载最新的英语版本 日期
* 数据表 SMJ320C80 Digital Signal Processor 数据表 (Rev. B) 2002年 6月 30日
更多文献资料 SM320C80/SMJ320C80 (Rev. C) 2000年 8月 7日
用户指南 TMS320C8x Emulator Installation Guide (Rev. A) 1997年 2月 1日
应用手册 Modified Goertzel Algorithm in DTMF Detection Using the TMS320C80 DSP 1996年 6月 1日
应用手册 Acoustic Echo Cancellation Algorithms and Implementation on the TMS320C80 1996年 5月 1日
用户指南 TMS320C80 to TMS320C82 Software Compatibility User's Guide 1995年 11月 1日
应用手册 TMS320C8x System-Level Synopsis (Rev. B) 1995年 9月 1日
用户指南 TMS320C8x (MVP) Video Controller User's Guide (Rev. A) 1995年 1月 1日

设计和开发

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)。

仿真模型

SM320C80 and SMJ320C80 BSDL Model

SGUM006.ZIP (7 KB) - BSDL Model
设计工具

PROCESSORS-3P-SEARCH — 基于 Arm® 的 MPU、基于 Arm 的 MCU 和 DSP 第三方搜索工具

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封装 引脚 下载
CFP (HFH) 320 查看选项
CPGA (GF) 305 查看选项

订购和质量

包含信息:
  • RoHS
  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
包含信息:
  • 制造厂地点
  • 封装厂地点

支持和培训

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