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小信號(hào)放大電路的探究畢業(yè)論文設(shè)計(jì)-展示頁

2024-09-09 16:17本頁面
  

【正文】 more colorful, but also made an indelible contribution to the economic, defense and others. However, the smallsignal has its own flaws, because of itself smaller energy, it is easy to drown by the noise or interference by outside. And the main difficulty of small signal amplification circuit design is highperformance operational amplifier. The pros and cons of the operational amplifier performance determine the performance of the circuit. Compared with foreign countries, the domestic operational amplifier is relatively backward, lead to the study of the smallsignal amplifier circuit in a backward state. Based on OPA842ID, this design introduces a small signal amplification circuit of inquiry and design. The circuit is posed by five OPA842ID input level differential amplifier circuit, the intermediate stage voltage amplifying circuit and the output stage power amplifying circuit to plete the acquisition of the small signal, the voltage amplification and power amplification. At the same time, it effectively suppresses or eliminates the temperature drift of the circuit and the monmode signal, making the amplified signal distortion smaller. After pleted the circuit design, using Multisim circuit simulation software to simulate. By applying a sinusoidal voltage signal, from the quiescent operating point of the circuit analysis, AC analysis and so on to simulation, to draw the simulation results of the voltage gain, bandwidth, etc, further validate the correctness and feasibility of the circuit theory design. Key words : Small Signal Amplifier circuit OPA842ID Multisim 第 3 頁 目 錄 第一章 緒論 .................................................. 5 本課題的背景及意義 ................................................ 5 本課題的主要研究內(nèi)容 .............................................. 5 第二章 小信號(hào)放大電路的系統(tǒng)方案 ............................... 6 系統(tǒng)方案介紹 ...................................................... 6 系統(tǒng)框圖 .......................................................... 6 相關(guān)子模塊的方案論證 .............................................. 6 輸入級(jí)差分放大電路 ........................................... 6 中間級(jí)電壓放大電路 ........................................... 7 輸出級(jí)功率放大電路 ........................................... 8 第三章 常見的問題及解決方法 .................................. 9 電源電壓波動(dòng) ...................................................... 9 電源電壓波動(dòng)對(duì)電路的影響 ..................................... 9 解決方法 .................................................... 10 溫度變化對(duì)電路中各元器件的影響及解決方法 ......................... 10 溫度對(duì)電阻阻值的影響及解決方法 .............................. 10 溫度對(duì)運(yùn)放參數(shù)及特性的影響及解決方法 ........................ 12 運(yùn)放輸入偏置電流對(duì)電路的影響及解決方法 ........................... 13 電路負(fù)載特性及解決方法 ........................................... 14 第四章 小信號(hào)放大電路的設(shè)計(jì) ................................. 16 信號(hào)的采集 ....................................................... 16 電壓放大倍數(shù) Av1 ............................................. 16 帶寬分析 .................................................... 17 信號(hào)的放大 ....................................................... 18 電壓放大倍數(shù) Av2 ............................................. 18 帶寬分析 .................................................... 18 信號(hào)的功率放大 ................................................... 19 電壓放大倍數(shù) Av3 ............................................. 19 帶寬分析 .................................................... 20 系統(tǒng)相關(guān)參數(shù)的計(jì)算 ............................................... 21 電壓放大倍數(shù) Av .............................................. 21 帶寬分析 .................................................... 21 第五章 電路元器件的排布及電源線和地線的處理 .................. 22 制作成品可能遇到問題 ............................................. 22 電路元器件的排布 ................................................. 22 電源線和地線的處理 ............................................... 22 第 4 頁 結(jié)束語 ...................................................... 23 參考文獻(xiàn) .................................................... 24
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