TMS320C25 不推荐用于新设计
虽然我们会继续生产此产品供先前的设计使用,但不推荐在新设计中使用此产品。请考虑从这些替代产品中选择一款:
open-in-new 比较替代产品
功能与比较器件相似
TMS320C6748 正在供货 低功耗 C674x 浮点 DSP- 456MHz、SATA This product is a newer generation of DSPs with higher performance & improved connectivity options.

产品详情

DSP (max) (MHz) 40 Rating Catalog Operating temperature range (°C) -40 to 85
DSP (max) (MHz) 40 Rating Catalog Operating temperature range (°C) -40 to 85
CPGA (GB) 68 594.3844 mm² 24.38 x 24.38 PLCC (FN) 68 632.5225 mm² 25.15 x 25.15
  • 80-ns Instruction Cycle Time
  • 544 Words of On-Chip Data RAM
  • 4K Words of On-Chip Secure Program EPROM (TMS320E25)
  • 4K Words of On-Chip Program ROM (TMS320C25)
  • 128K Words of Data/Program Space
  • 32-Bit ALU/Accumulator
  • 16 × 16-Bit Multiplier With a 32-Bit Product
  • Block Moves for Data/Program Management
  • Repeat Instructions for Efficient Use of Program Space
  • Serial Port for Direct Codec Interface
  • Synchronization Input for Synchronous Multiprocessor Configurations
  • Wait States for Communication to Slow Off-Chip Memories/Peripherals
  • On-Chip Timer for Control Operations
  • Single 5-V Supply
  • Packaging: 68-Pin PGA, PLCC, and CER-QUAD
  • 68-to-28 Pin Conversion Adapter Socket for EPROM Programming
  • Commercial and Military Versions Available
  • NMOS Technology:
    TMS32020 . . . 200-ns cycle time
  • CMOS Technology:
    TMS320C25 . . . 100-ns cycle time
    TMS320E25 . . . 100-ns cycle time
    TMS320C25-50 . . . 80-ns cycle time

  • 80-ns Instruction Cycle Time
  • 544 Words of On-Chip Data RAM
  • 4K Words of On-Chip Secure Program EPROM (TMS320E25)
  • 4K Words of On-Chip Program ROM (TMS320C25)
  • 128K Words of Data/Program Space
  • 32-Bit ALU/Accumulator
  • 16 × 16-Bit Multiplier With a 32-Bit Product
  • Block Moves for Data/Program Management
  • Repeat Instructions for Efficient Use of Program Space
  • Serial Port for Direct Codec Interface
  • Synchronization Input for Synchronous Multiprocessor Configurations
  • Wait States for Communication to Slow Off-Chip Memories/Peripherals
  • On-Chip Timer for Control Operations
  • Single 5-V Supply
  • Packaging: 68-Pin PGA, PLCC, and CER-QUAD
  • 68-to-28 Pin Conversion Adapter Socket for EPROM Programming
  • Commercial and Military Versions Available
  • NMOS Technology:
    TMS32020 . . . 200-ns cycle time
  • CMOS Technology:
    TMS320C25 . . . 100-ns cycle time
    TMS320E25 . . . 100-ns cycle time
    TMS320C25-50 . . . 80-ns cycle time

This data sheet provides complete design documentation for the second-generation devices of the TMS320 family. This facilitates the selection of the devices best suited for user applications by providing all specifications and special features for each TMS320 member. This data sheet is divided into four major sections: architecture, electrical specifications (NMOS and CMOS), timing diagrams, and mechanical data. In each of these sections, generic information is presented first, followed by specific device information. An index is provided for quick reference to specific information about a device.

The TMS320 family of 16/32-bit single-chip digital signal processors combines the flexibility of a high-speed controller with the numerical capability of an array processor, thereby offering an inexpensive alternative to multichip bit-slice processors. The highly paralleled architecture and efficient instruction set provide speed and flexibility to produce a MOS microprocessor family that is capable of executing more than 12.5 MIPS (million instructions per section). The TMS320 family optimizes speed by implementing functions in hardware that other processors implement through microcode or software. This hardware-intensive approach provides the design engineer with processing power previously unavailable on a single chip.

The TMS320 family consists of three generations of digital signal processors. The first generation contains the TMS32010 and its spinoffs. The second generation includes the TMS32020, TMS320C25, and TMS320E25, which are described in this data sheet. The TMS320C30 is a floating-point DSP device designed for even higher performance. Many features are common among the TMS320 processors. Specific features are added in each processor to provide different cost/performance tradeoffs. Software compatibility is maintained throughout the family to protect the user's investment in architecture. Each processor has software and hardware tools to facilitate rapid design.

This data sheet provides complete design documentation for the second-generation devices of the TMS320 family. This facilitates the selection of the devices best suited for user applications by providing all specifications and special features for each TMS320 member. This data sheet is divided into four major sections: architecture, electrical specifications (NMOS and CMOS), timing diagrams, and mechanical data. In each of these sections, generic information is presented first, followed by specific device information. An index is provided for quick reference to specific information about a device.

The TMS320 family of 16/32-bit single-chip digital signal processors combines the flexibility of a high-speed controller with the numerical capability of an array processor, thereby offering an inexpensive alternative to multichip bit-slice processors. The highly paralleled architecture and efficient instruction set provide speed and flexibility to produce a MOS microprocessor family that is capable of executing more than 12.5 MIPS (million instructions per section). The TMS320 family optimizes speed by implementing functions in hardware that other processors implement through microcode or software. This hardware-intensive approach provides the design engineer with processing power previously unavailable on a single chip.

The TMS320 family consists of three generations of digital signal processors. The first generation contains the TMS32010 and its spinoffs. The second generation includes the TMS32020, TMS320C25, and TMS320E25, which are described in this data sheet. The TMS320C30 is a floating-point DSP device designed for even higher performance. Many features are common among the TMS320 processors. Specific features are added in each processor to provide different cost/performance tradeoffs. Software compatibility is maintained throughout the family to protect the user's investment in architecture. Each processor has software and hardware tools to facilitate rapid design.

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类型 标题 下载最新的英语版本 日期
* 数据表 Second-Generation Digital Signal Processors 数据表 (Rev. B) 1990年 11月 1日
应用手册 TMS320 Hardware Applications ( Contains Scanned Text) 1997年 10月 1日
应用手册 Implementing Field-Oriented Control of AC Motors with the TMS320C25 DSP 1997年 7月 1日
应用手册 Sensorless Control of a Trapezoidal Brushless DC Motor Using the TMS320C25 DSP 1997年 7月 1日
应用手册 TMS320C25 Logical Shifts in Parallel With ALU Operations 1997年 6月 1日
应用手册 Interfacing the TLC2543 ADC to the TMS320C25 DSP 1997年 2月 25日
用户指南 Addendum to TMS320C2xx Data Sheet & User's Guides, SPRS028/SPRU093/SPRU014C (Rev. A) 1996年 9月 15日
应用手册 Design of Active Noise Control Systems With the TMS320 Family 1996年 6月 1日
应用手册 Engine Knock Detection Using Spectral Analysis With TMS320C25 or TMS320C30 DSPs 1995年 1月 1日
应用手册 Setting Up TMS320 DSP Interrupts in 'C' 1994年 11月 1日
应用手册 8 X 8 Discrete Cosine Transforms on TMS320C25/TMS320C30 (Contains Scanned Text) 1994年 10月 1日
应用手册 A DSP GMSK Modem for Mobitex and Other Wireless Infrastructures 1994年 10月 1日
应用手册 Adaptive Filters With TMS320C25 or TMS320C30 ( Contains Scanned Text) 1994年 10月 1日
应用手册 Automated Dialing of Cellular Telephones Using Speech Recognition 1994年 10月 1日
应用手册 Speaker Independent Speech Recognition on the TMS320C2x and TMS320C5x DSPs 1994年 10月 1日
应用手册 Minimizing Quantization Effects Using the TMS320 DSP Family 1994年 7月 1日
应用手册 Transmission of Still and Moving Images Over Narrowband Channels 1994年 2月 1日
用户指南 Addendum To The TMS320C2x C Source Debugger User's Guide 1992年 6月 1日
用户指南 TMS320C2x C Source Debugger User's Guide 1991年 4月 1日
应用手册 Interfacing the TLC32040 Family to the TMS320 Family (Rev. A) 1988年 1月 1日

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  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
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