winding loss 中文意思是什麼

winding loss 解釋
繞組(銅)損耗
  • winding : adj. 1. 卷繞的;繞線的,繞組的。2. 迂迴曲折的,蜿蜒的。n. 1. 卷繞起來的一盤(繩索等);卷繞動作;絡紗。2. 彎曲,紆曲;不正行為。3. 【采】卷揚,提升;【電學】繞組,繞法;線圈。
  • loss : n. 1. 喪失;丟失,遺失。2. 減損,損失,虧損(額);損耗;減少,下降。3. 失敗;輸掉。4. 錯過;浪費。5. 損毀;【軍事】傷亡;〈pl. 〉 傷亡及被俘人數。
  1. The paper presents the experiment equipment for the measurement of the elastic - optic effect of curled birefringence fiber, then analyzes spectrogram at winding loss, and the rule of the circle of optical fiber producing elastic - optic effect

    摘要給出測試單模雙折射光纖彎曲時彈光效應的實驗裝置,分析了彎曲損耗光譜,定性提出光纖圈產生彈光效應的規律。
  2. This paper uses field methods to calculate the winding loss and the modified steinmetz experiential equation for core loss calculation

    鐵心損耗的計算是基於steinmetz經驗公式來進行的。
  3. Analysis for magnetic field of srm is very complicated since the flux waveforms in different parts of the motor vary with motor phase, stator pole and rotor number, also with the winding connections, etc, which results in the srm losses, especially iron loss calculation difficult. the temperature analysis due to the losses has become a study hot spot

    Sr電機鐵心的磁通波形不僅與電機的相數有關,還與定、轉子齒極數、定子繞組連接方式等密切相關,從而使得sr電機磁場分析很復雜,復雜的磁通密度波形導致電機損耗特別是鐵損的計算非常困難。電機的損耗又會引起電機的溫升,因此高性能的sr電機的熱分析也成為目前的研究熱點。
  4. Each unit of transformer is tested in accordance with the following items : winding d. c resistance test. measurement of turn ratio and calibiation of voltage vector relation. measurement of impedance voltage and load loss

    直流電阻測試匝數比測量及電壓矢量關系的校定阻抗電壓及負載損耗的測量空載損耗及空載電流的測量工頻耐壓測試感應耐壓測試絕緣電阻測試局部放電測試外觀和尺寸的檢驗銘牌的檢驗等。
  5. Loss incurred by the employer upon winding up ror scheme

    認可職業退休計劃結束時,僱主蒙受的損失
  6. The effect of the primary and secondary winding widths on the power loss and energy storage are analyzed for the pcb winding pattern by using 2d - fem, it is demonstrated that when the primary and secondary have the same winding width, the transformer has the lowest ac - resistance and leakage, this suggests ways the designer can modify the winding arrangement to minimize the loss of transformer

    利用ansoft電磁場模擬軟體和本人開發的一維平面變壓器的繞組損耗計算程序對pcb繞組的並聯繞組的設計問題和pcb板繞組原副邊寬度相等問題進行了研究,提出了減少pcb板繞組的高頻損耗的設計方法。
  7. The power lost by current flowing through the winding, the power loss is equal to the square of the current multiplied by the resistance of the wire ( 1 2 r ). this power loss is transferred into heat

    電流流以線圈所產生之能量損失,此能量損失等於電流大小的平方乘上線圈的電阻( 12r ) ,這些能量損失轉換成熱能。
  8. Based on dowll model for transformer, id analytical procedure for calculate pcb winding loss has been developed, which solved the problem of pcb winding connection in parallel, with it, the designer can easy analyzed the loss of the pcb winding

    從著名學者p . l . dowell的一維變壓器模型出發,建立了計算平面變壓器繞組損耗的一維理論公式,從並聯繞組兩端電壓平衡出發,解決了平面變壓器繞組的並聯損耗計算問題,並實現通用系統的計算機演算法。
  9. Based on the relevant theoretical researches, the loss property of the magnetic core material and winding were analyzed in this thesis. and 500 khz high frequency switching mode power supply transformer was made of pc40 magnetic core material for the first time in this thesis, which has good application perspective and can lead to enormous economic profits

    本文在理論研究的基礎上,仔細分析了磁芯材料及繞組的損耗特性,首次採用pc40磁芯材料設計了500khz高頻開關電源變壓器,這在工程上有良好的應用前景和經濟效益。
  10. Various examples winding equipment used in different processed in the production, such as plastic sheet and film, aluminum foils, paper laminates, glass fiber, and sinilar web material, efficient winders make product more clean, beautiful and non - loss

    卷取設備,可廣泛用於生產線上如塑膠薄膜、鋁箔、紙、玻纖布和其它類似的布料,將有效幫助您提升生產效率,使成品更整齊、美觀無損耗。
  11. 1. nizn ferrite was developed for using in mini high frequency dc - dc converters and inductors. we measured and analysed the parameters of the nizn ferrite, which we concern about when designing the dc - dc converter. 2. the low loss sample of nizn ferrite were chosen for design - optimization of the high frequency transformer. based on the relevant theoretical researches, the loss properties of the magnetic core material and winding were analyzed in this thesis

    因此,以nizn功率鐵氧體材料為開關電源芯材為基礎,並優化各種開關電源的設計已成為國際上的熱點和技術瓶頸,本論文正是以上述背景為研究目標而開展工作的,主要進行的工作和創新有: 1 .對研製的新型高頻低功耗的功率nizn材料進行參數的測試,並針對dc - dc變換器設計關心的參數對芯材特性進行了分析,選擇在特定頻率下,功耗較小的nizn材料磁芯樣品作為變壓器優化設計的預備磁芯。
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