女人自慰AV免费观看内涵网,日韩国产剧情在线观看网址,神马电影网特片网,最新一级电影欧美,在线观看亚洲欧美日韩,黄色视频在线播放免费观看,ABO涨奶期羡澄,第一导航fulione,美女主播操b

電子發燒友App

硬聲App

0
  • 聊天消息
  • 系統消息
  • 評論與回復
登錄后你可以
  • 下載海量資料
  • 學習在線課程
  • 觀看技術視頻
  • 寫文章/發帖/加入社區
會員中心
創作中心

完善資料讓更多小伙伴認識你,還能領取20積分哦,立即完善>

3天內不再提示
電子發燒友網>電子資料下載>電子書籍>一個電腦輔助設計和合成環境的模擬集成電路

一個電腦輔助設計和合成環境的模擬集成電路

2009-07-18 | rar | 17408 | 次下載 | 免費

資料介紹

Due to the ever decreasing feature size of silicon technology the complexity that can be integrated on a single chip has reached the system level. Soon, as much as 100 million transistors will be integrated on one ICs. We have truly entered the System-on-a-Chip (SoC) era. The existing design methodologies are insufficient for handling these designs, hence a growing design productivity gap develops: design productivity can not keep up with the design needs created by SoCs. Although these SoCs are primarily digital, they interface to the real world, which is analog. Analog building blocks thus become increasingly more important in a world
dominated by digital techniques. In this work, research into design automation for analog circuits has been carried out. Two complementary approaches have been investigated.
Firstly, an automatic analog synthesis system, AMGIE, has been built. The AMGIE
system is targeted towards the automatic synthesis from specifications down to layout of moderate-complexity analog circuits (device count lower than 100) that have a high reuse factor. It uses a performance-driven, hierarchical top-down refinement, bottom-up assembly design methodology. Two libraries are required for its operation: (1) a cell (topology) library containing a set of alternative implementation templates and (2) a technology library containing technology parameters. Five design tools automate the different design tasks. Topology
selection selects among the topologies in the library the most likely candidate using a sequence of three filters. The sizing and optimization tool determines the sizes and biasing of the selected schematic by using a (modified) equation-based optimization methodology. The derivation of the sizing plan has been automated using a setup environment supported by design tools. The layout tool LAYLA [Lam 99| uses a direct performance-driven macro-cell place & route methodology to generate the layout of the sized schematic. Verification steps after sizing and layout extraction verify the design. Potential design problems are dispatched
to the redesign wizard. The redesign wizard provides corrective design procedures to help the designer resolve the detected problem.
A comparison experiment between different sizing approaches indicates that the implemented modified equation-based optimization approach is the most appropriate when a high reuse factor is to be expected. A second experiment, the design of an OTA circuit by EE Master students, indicates that the AMGIE system creates a new breed of analog designers: system-level designers or less experienced analog designers that are capable of successfully designing moderate-complexity analog circuits in a few hours. The AMGIE system can however also handle more complex circuits, as has been demonstrated by the design, fabrication and measurement of an analog signal processing building block: a charge-sensitive amplifier– pulse-shaping amplifier combination.
The design automation approach used in the AMGIE approach, however, relies on accu
mulated design expertise under the form of a cell library which is reused by less experienced designers. Sometimes, the performance specifications of an analog block can not be obtained using existing analog design knowledge and techniques: these are high-challenge designs that require design creativity. In this case full automation is not possible, but the designer can still be supported. The systematic design methodology that is presented in this work is targeted towards the design of these high-performance analog blocks. It leaves room for analog design creativity: coming up with new ideas to solve hard design problems. The methodology steers this creativity to be productive, by linking every design choice that has to be made to the requested specifications. The design productivity is further increased by support through analog
CAD tools.
The Mondriaan tool presented in this work is such a tool. It automates the layout generation of the highly-regular analog blocks often found in high-speed converter architectures. It automates the back-end process of routing and technology mapping while giving the designer a more abstract view of the layout problem: a floorplan which determines the final position and connectivity of the cell array.
The presented systematic design methodology has then been applied to the design of highspeed current-steering D/A-converters. The first phase in the design flow is the specification phase. Using behavioral modeling and simulation the specification of the D/A-converter functionblock have been derived. The second phase in the design flow is the synthesis of the converter. A top-down refinement, bottom-up, mixed-signal design strategy has been adopted.
In the bottom-up path, Mondriaan was used to generate the layout of the analog modules, while a standard cell place & route tool was used to create the digital layout. In the last phase of the design a behavioral model is extracted that mimics the actual silicon part. This research has resulted in the first 14-bit accurate current-steering D/A-converter in CMOS technology that does not require trimming or tuning. This performance was obtained by creating the novel random walk switching scheme.
Both presented approaches increase analog design productivity. This is demonstrated in the text with design time reports for all the experiments that have been carried out.

下載該資料的人也在下載 下載該資料的人還在閱讀
更多 >

評論

查看更多

下載排行

本周

  1. 1DC電源插座圖紙
  2. 0.67 MB   |  2次下載  |  免費
  3. 2AN158 GD32VW553 Wi-Fi開發指南
  4. 1.51MB   |  2次下載  |  免費
  5. 3AN148 GD32VW553射頻硬件開發指南
  6. 2.07MB   |  1次下載  |  免費
  7. 4AN111-LTC3219用戶指南
  8. 84.32KB   |  次下載  |  免費
  9. 5AN153-用于電源系統管理的Linduino
  10. 1.38MB   |  次下載  |  免費
  11. 6AN-283: Σ-Δ型ADC和DAC[中文版]
  12. 677.86KB   |  次下載  |  免費
  13. 7SM2018E 支持可控硅調光線性恒流控制芯片
  14. 402.24 KB  |  次下載  |  免費
  15. 8AN-1308: 電流檢測放大器共模階躍響應
  16. 545.42KB   |  次下載  |  免費

本月

  1. 1ADI高性能電源管理解決方案
  2. 2.43 MB   |  450次下載  |  免費
  3. 2免費開源CC3D飛控資料(電路圖&PCB源文件、BOM、
  4. 5.67 MB   |  138次下載  |  1 積分
  5. 3基于STM32單片機智能手環心率計步器體溫顯示設計
  6. 0.10 MB   |  130次下載  |  免費
  7. 4使用單片機實現七人表決器的程序和仿真資料免費下載
  8. 2.96 MB   |  44次下載  |  免費
  9. 53314A函數發生器維修手冊
  10. 16.30 MB   |  31次下載  |  免費
  11. 6美的電磁爐維修手冊大全
  12. 1.56 MB   |  24次下載  |  5 積分
  13. 7如何正確測試電源的紋波
  14. 0.36 MB   |  17次下載  |  免費
  15. 8感應筆電路圖
  16. 0.06 MB   |  10次下載  |  免費

總榜

  1. 1matlab軟件下載入口
  2. 未知  |  935121次下載  |  10 積分
  3. 2開源硬件-PMP21529.1-4 開關降壓/升壓雙向直流/直流轉換器 PCB layout 設計
  4. 1.48MB  |  420062次下載  |  10 積分
  5. 3Altium DXP2002下載入口
  6. 未知  |  233088次下載  |  10 積分
  7. 4電路仿真軟件multisim 10.0免費下載
  8. 340992  |  191367次下載  |  10 積分
  9. 5十天學會AVR單片機與C語言視頻教程 下載
  10. 158M  |  183335次下載  |  10 積分
  11. 6labview8.5下載
  12. 未知  |  81581次下載  |  10 積分
  13. 7Keil工具MDK-Arm免費下載
  14. 0.02 MB  |  73810次下載  |  10 積分
  15. 8LabVIEW 8.6下載
  16. 未知  |  65988次下載  |  10 積分