非諧振變壓器 的英文怎麼說

中文拼音 [fēixiézhènbiàn]
非諧振變壓器 英文
non resonating transformer
  • : Ⅰ名詞1 (錯誤) mistake; wrong; errors 2 (指非洲) short for africa 3 (姓氏) a surname Ⅱ動詞1 ...
  • : Ⅰ形容詞1 (和諧) in harmony; in accord; in tune 2 (詼諧) humorous Ⅱ動詞(商量好; 辦妥) come t...
  • : 動詞1. (搖動; 揮動) shake; flap; wield 2. (奮起) brace up; rise with force and spirit
  • : 壓構詞成分。
  • : 名詞1. (器具) implement; utensil; ware 2. (器官) organ 3. (度量; 才能) capacity; talent 4. (姓氏) a surname
  1. In chapter 2, the nonlinear feature of iron core of transformer in switching power supply was studied. according to the characteristics of switching power supply, the topology structure of resonant converter was selected. the characteristics of out put voltage and current vs. frequency for the three kinds of resonant converter were analyzed and compared

    在第二章中,研究了高開關電源中高線性特性,選擇了作為高大功率開關電源的電路拓撲結構,並對三種形式的的電及電流頻率特性進行了分析比較。
  2. Since the concept of superlattice was proposed, vertical transport in superlattice has been investigated widely. the electric field domains and current self - oscillations which result from sequential resonant tunneling between different subbands of the superlattice are very significant phenomena. such kind of oscillation can be uesd to make tunable microwave oscillaors. in this thesis, low temperature transport problem, especially the formation of field domain and the condition of current self - oscillations in doped gaas / alas superlattice with weak coupling are investigated thoroughly and also by combining the macroscopic model with the microscopic one., the voltage - current characteristic and the current oscillation are simulated. the calculated result is nearly consistent with the experimental data

    由超晶格中子能級之間的順序多阱共隧穿引起的電場疇及電流自維持蕩現象是其中的一個常有意義的分支,該現象可用來製作電調微波。本論文對弱耦合摻雜gaaa alas超晶格中的縱向輸運特別是針對低溫下的場疇的形成和固定偏下電流自維持蕩產生的條件進行了深入的探討,並結合宏觀模型和微觀模型對超晶格在時作用下的電-電流特性以及固定偏作用下的電流特性進行了模擬計算。
  3. The full - bridge series resonant converter is verified experimentally by using the designed separate transformer. the experimental results for the 4mm and 10mm transformer air gap are given

    對全橋串聯構成的接觸感應電能傳輸系統進行了實驗驗證,給出了可分離氣隙分別為4mm和10mm的實驗結果。
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