製品詳細

DSP type 1 C3x DSP (max) (MHz) 75 CPU 32-bit Rating Military Operating temperature range (°C) -55 to 125
DSP type 1 C3x DSP (max) (MHz) 75 CPU 32-bit Rating Military Operating temperature range (°C) -55 to 125
CFP (HFG) 164 823.977025 mm² 28.705 x 28.705
  • High-Performance Floating-Point Digital Signal
    Processor (DSP)
    • SMx320VC33-150
      • 13-ns Instruction Cycle Time
      • 150 Million Floating-Point Operations per
        Second (MFLOPS)
      • 75 Million Instructions per Second (MIPS)
  • 34K × 32-Bit (1.1-Mbit) On-Chip Words of Dual-
    Access Static Random-Access Memory (SRAM)
    Configured in 2 × 16K plus 2 × 1K Blocks to
    Improve Internal Performance
  • x5 Phase-Locked Loop (PLL) Clock Generator
  • Very-Low Power: <200 mW at 150 MFLOPS
  • 32-Bit High-Performance CPU
  • 16-/32-Bit Integer and 32-/40-Bit Floating-Point
    Operations
  • Four Internally Decoded Page Strobes to Simplify
    Interface to I/O and Memory Devices
  • Boot-Program Loader
  • EDGEMODE Selectable External Interrupts
  • 32-Bit Instruction Word, 24-Bit Addresses
  • Eight Extended-Precision Registers
  • Fabricated Using the 0.18-µm (leff – Effective Gate
    Length) TImeline™ Technology by Texas
    Instruments
  • On-Chip Scan-Based Emulation Logic, IEEE Std
    1149.1 (JTAG)
  • On-Chip Memory-Mapped Peripherals:
    • One Serial Port
    • Two 32-Bit Timers
    • Direct Memory Access (DMA) Coprocessor for
      Concurrent I/O and CPU Operation
  • 164-Pin Low-Profile Quad Flatpack (HFG Suffix)
  • 144-Pin Non-Hermetic Ceramic Ball Grid Array
    (CBGA) (GNM Suffix)
  • Two Address Generators With Eight Auxiliary
    Registers and Two Auxiliary Register Arithmetic
    Units (ARAUs)
  • Two Low-Power Modes
  • Two- and Three-Operand Instructions
  • Parallel Arithmetic/Logic Unit (ALU) and Multiplier
    Execution in a Single Cycle
  • Block-Repeat Capability
  • Zero-Overhead Loops With Single-Cycle
    Branches
  • Conditional Calls and Returns
  • Interlocked Instructions for Multiprocessing
    Support
  • Bus-Control Registers Configure Strobe-Control
    Wait-State Generation
  • 1.8-V (Core) and 3.3-V (I/O) Supply Voltages

All trademarks are the property of their respective owners.

  • High-Performance Floating-Point Digital Signal
    Processor (DSP)
    • SMx320VC33-150
      • 13-ns Instruction Cycle Time
      • 150 Million Floating-Point Operations per
        Second (MFLOPS)
      • 75 Million Instructions per Second (MIPS)
  • 34K × 32-Bit (1.1-Mbit) On-Chip Words of Dual-
    Access Static Random-Access Memory (SRAM)
    Configured in 2 × 16K plus 2 × 1K Blocks to
    Improve Internal Performance
  • x5 Phase-Locked Loop (PLL) Clock Generator
  • Very-Low Power: <200 mW at 150 MFLOPS
  • 32-Bit High-Performance CPU
  • 16-/32-Bit Integer and 32-/40-Bit Floating-Point
    Operations
  • Four Internally Decoded Page Strobes to Simplify
    Interface to I/O and Memory Devices
  • Boot-Program Loader
  • EDGEMODE Selectable External Interrupts
  • 32-Bit Instruction Word, 24-Bit Addresses
  • Eight Extended-Precision Registers
  • Fabricated Using the 0.18-µm (leff – Effective Gate
    Length) TImeline™ Technology by Texas
    Instruments
  • On-Chip Scan-Based Emulation Logic, IEEE Std
    1149.1 (JTAG)
  • On-Chip Memory-Mapped Peripherals:
    • One Serial Port
    • Two 32-Bit Timers
    • Direct Memory Access (DMA) Coprocessor for
      Concurrent I/O and CPU Operation
  • 164-Pin Low-Profile Quad Flatpack (HFG Suffix)
  • 144-Pin Non-Hermetic Ceramic Ball Grid Array
    (CBGA) (GNM Suffix)
  • Two Address Generators With Eight Auxiliary
    Registers and Two Auxiliary Register Arithmetic
    Units (ARAUs)
  • Two Low-Power Modes
  • Two- and Three-Operand Instructions
  • Parallel Arithmetic/Logic Unit (ALU) and Multiplier
    Execution in a Single Cycle
  • Block-Repeat Capability
  • Zero-Overhead Loops With Single-Cycle
    Branches
  • Conditional Calls and Returns
  • Interlocked Instructions for Multiprocessing
    Support
  • Bus-Control Registers Configure Strobe-Control
    Wait-State Generation
  • 1.8-V (Core) and 3.3-V (I/O) Supply Voltages

All trademarks are the property of their respective owners.

The SMx320VC33 DSP is a 32-bit, floating-point processor manufactured in 0.18-µm four-level-metal CMOS (TImeline) technology. The SMx320VC33 is part of the SM320C3x™ generation of DSPs from Texas Instruments.

The SM320C3x internal busing and special digital-signal-processing instruction set have the speed and flexibility to execute up to 150 MFLOPS. The SMx320VC33 optimizes speed by implementing functions in hardware that other processors implement through software or microcode. This hardware-intensive approach provides performance previously unavailable on a single chip.

The SMx320VC33 can perform parallel multiply and ALU operations on integer or floating-point data in a single cycle. Each processor also possesses a general-purpose register file, a program cache, dedicated ARAUs, internal dual-access memories, one DMA channel supporting concurrent I/O, and a short machine-cycle time. These features result in high performance and ease of use. General-purpose applications are greatly enhanced by the large address space, multiprocessor interface, internally and externally generated wait states, one external interface port, two timers, one serial port, and multiple-interrupt structure.

The SM320C3x supports a wide variety of system applications from host processor to dedicated coprocessor. High-level-language support is easily implemented through a register-based architecture, large address space, powerful addressing modes, flexible instruction set, and well-supported floating-point arithmetic.

The SM/SMJ320VC33 is a superset of the TMS320C31. Designers now have an additional 1Mb of on-chip SRAM, a maximum throughput of 150 MFLOPS, and several I/O enhancements that allow easy upgrades to current systems or creation of new baselines. This data sheet provides information required to fully use the new features of the SM/SMJ320VC33 device. For general TMS320C3x architecture and programming information, see the TMS320C3x User’s Guide (SPRU031).

The SMx320VC33 device is packaged in 164-pin low-profile quad flatpacks (HFG suffix) and in 144-ball fine pitch ball grid arrays (GNL and GNM suffix).

The SMx320VC33 DSP is a 32-bit, floating-point processor manufactured in 0.18-µm four-level-metal CMOS (TImeline) technology. The SMx320VC33 is part of the SM320C3x™ generation of DSPs from Texas Instruments.

The SM320C3x internal busing and special digital-signal-processing instruction set have the speed and flexibility to execute up to 150 MFLOPS. The SMx320VC33 optimizes speed by implementing functions in hardware that other processors implement through software or microcode. This hardware-intensive approach provides performance previously unavailable on a single chip.

The SMx320VC33 can perform parallel multiply and ALU operations on integer or floating-point data in a single cycle. Each processor also possesses a general-purpose register file, a program cache, dedicated ARAUs, internal dual-access memories, one DMA channel supporting concurrent I/O, and a short machine-cycle time. These features result in high performance and ease of use. General-purpose applications are greatly enhanced by the large address space, multiprocessor interface, internally and externally generated wait states, one external interface port, two timers, one serial port, and multiple-interrupt structure.

The SM320C3x supports a wide variety of system applications from host processor to dedicated coprocessor. High-level-language support is easily implemented through a register-based architecture, large address space, powerful addressing modes, flexible instruction set, and well-supported floating-point arithmetic.

The SM/SMJ320VC33 is a superset of the TMS320C31. Designers now have an additional 1Mb of on-chip SRAM, a maximum throughput of 150 MFLOPS, and several I/O enhancements that allow easy upgrades to current systems or creation of new baselines. This data sheet provides information required to fully use the new features of the SM/SMJ320VC33 device. For general TMS320C3x architecture and programming information, see the TMS320C3x User’s Guide (SPRU031).

The SMx320VC33 device is packaged in 164-pin low-profile quad flatpacks (HFG suffix) and in 144-ball fine pitch ball grid arrays (GNL and GNM suffix).

ダウンロード 字幕付きのビデオを表示 ビデオ

技術資料

star =TI が選定したこの製品の主要ドキュメント
結果が見つかりませんでした。検索条件をクリアしてから、再度検索を試してください。
3 をすべて表示
種類 タイトル 最新の英語版をダウンロード 日付
* データシート SMx320VC33 Digital Signal Processor データシート (Rev. F) PDF | HTML 2015年 6月 14日
* SMD SMJ320VC33 SMD 5962-00539 2016年 6月 21日
その他の技術資料 SM302VC33GNMM150, SMJ320VC33HFGM150, SM320VC33GNMEP (Rev. C) 2002年 12月 18日

設計と開発

その他のアイテムや必要なリソースを参照するには、以下のタイトルをクリックして詳細ページをご覧ください。

設計ツール

PROCESSORS-3P-SEARCH — Arm® ベースの MPU、Arm ベースのマイコン、DSP に対応するサードパーティ各社を検索するためのツール

TI は複数の企業と提携し、TI の各種プロセッサを使用した幅広いソフトウェア、ツール、SOM (システム・オン・モジュール) を提供する方法で、量産までの開発期間短縮を支援しています。この検索ツールをダウンロードすると、サード・パーティーの各種ソリューションを手早く参照し、お客様のニーズに適したサード・パーティーを見つけることができます。掲載されている各種ソフトウェア、ツール、モジュールの製造と管理を実施しているのは、TI (テキサス・インスツルメンツ) ではなく独立系サード・パーティー各社です。

検索ツールは、製品の種類別に以下の分類を採用しています。

  • ツールに該当するのは、IDE (...)
パッケージ ピン数 ダウンロード
CFP (HFG) 164 オプションの表示

購入と品質

記載されている情報:
  • RoHS
  • REACH
  • デバイスのマーキング
  • リード端子の仕上げ / ボールの原材料
  • MSL 定格 / ピーク リフロー
  • MTBF/FIT 推定値
  • 材質成分
  • 認定試験結果
  • 継続的な信頼性モニタ試験結果
記載されている情報:
  • ファブの拠点
  • 組み立てを実施した拠点

推奨製品には、この TI 製品に関連するパラメータ、評価基板、またはリファレンス デザインが存在する可能性があります。

サポートとトレーニング

TI E2E™ フォーラムでは、TI のエンジニアからの技術サポートを提供

コンテンツは、TI 投稿者やコミュニティ投稿者によって「現状のまま」提供されるもので、TI による仕様の追加を意図するものではありません。使用条件をご確認ください。

TI 製品の品質、パッケージ、ご注文に関するお問い合わせは、TI サポートをご覧ください。​​​​​​​​​​​​​​

ビデオ