pyroelectric 中文意思是什麼

pyroelectric 解釋
adj. 形容詞 熱電(學)的。
n. 名詞 熱電物質。
n. 名詞 -ity 熱電(現象);熱電學。

  1. The simulation of absorptance and response characteristics for pyroelectric thin films infrared sensors

    薄膜熱釋電紅外探測器吸收和響應性能的模擬研究
  2. Bolometers and pyroelectric detectors are the most common thermal detectores in uncooled ir sensors technolgy

    非製冷熱成像探測器目前以微測輻射熱計和熱釋電探測器為主流。
  3. Test method for the dielectric constant of pyroelectric materials

    熱釋電材料介電常數的測定方法
  4. Latest research on plct series pyroelectric thin film

    系列熱釋電薄膜的最新研究進展
  5. Methods of measurement for pyroelectric television cameras

    熱釋電電視攝像機測量方法
  6. Generic specification for pyroelectric television cameras

    熱釋電電視攝像機總技術條件
  7. Methods of measurement for the pyroelectric vidicon

    熱釋電視象管測試方法
  8. Application of pyroelectric thin films in infrared detectors

    壓電薄膜在微傳感器中的應用
  9. Test method for curie temperature of pyroelectric materials

    熱釋電材料居里溫度tc的測試方法
  10. Preparation of pz - pt - pmn pyroelectric ceramics

    熱釋電陶瓷的制備研究
  11. Method for measurement of pyroelectric coefficient of fine ceramics

    細陶瓷熱電系數的測量方法
  12. Construction analysis of pyroelectric detectors

    熱釋電器件結構分析
  13. Iv ) for the strong interfacial coupling, there exist three pyroelectric peaks in the temperature curve of pyroelectric coefficient, and with the decrease of the interfacial coupling, the number of the pyroelectric peaks will decrease gradually

    我們還發現,較強的界面耦合導致熱電系數的溫度曲線上的三個熱電峰的出現;而界面耦合強度的減弱及鐵電超晶格尺寸的減少將導致某些熱電峰的消失。
  14. Within the framework of the tim ( transverse field model ), using the eft ( effective field theory ) and the mft ( mean field theory ), considering the long - range effects and the interfacial effect, we studied the transition properties of the ferroelectric thin film, pyroelectric coefficient and dielectric susceptibility and triple hysteresis loop of the ferroelectric bilayer structure theoretically

    我們應用平均場、有效場等方法,在橫場伊辛模型框架內,考慮贗自旋間長程相互作用和界面效應,對鐵電薄膜、雙層薄膜的相變、熱釋電、介電,以及電滯回線等性質進行了較深入的研究。
  15. The experimental results showed that the substrate of pyroelectric sensor could significantly affect the detectivity. the porous silicon dioxide and pet plastic film substrate could effectively decrease the thermal conduction and the thermal fluctuation noise of the pyroelectric element, increase the voltage responsivity and the detectivity obviously

    結果表明,多孔氧化硅和pet塑料可有效降低熱釋電元件的對外熱傳導,明顯提高傳感器的電壓響應率和降低熱釋電元件的熱噪聲。
  16. The principle and structure of pyroelectric infrared detector consisted of pyroelectric infrared sensor, fresnel lens and an application - specific controller, which is compatible with 0. 6 m 1p1m n - well cmos technology, is introduced in the paper

    本文介紹了組成熱釋電紅外探測器的三大部件:熱釋電紅外傳感器、菲涅耳透鏡、專用控制晶元的結構和原理,並提出了一種0 . 6 m1p1mn - wellcmos工藝專用控制晶元的設計方案。
  17. The preparation of pzt ferroelectric thin films and its application in pyroelectric ir sensor

    鋯鈦酸鉛鐵電薄膜的制備及在紅外探測器中的應用
  18. Abstract : recent studies on ferroelectric thin films, multilayered films and heterostructures are reviewed. the advantages and disadvantages of different processing methods for ferroelectric thin films are discussed. applications of the films, especially in ferroelectric memories, microelectromechanical systems and pyroelectric infrared detectors are described. some key problems are outlined

    文摘:綜述了鐵電薄膜、多層膜和異質結構研究的新進展,分析了鐵電薄膜不同制備方法的優缺點.重點介紹了鐵電薄膜在鐵電存儲器、微電子機械繫統及熱釋電紅外探測器方面的應用.指出了目前鐵電薄膜及器件設計研究需要重點解決的一些問題
  19. It is found that the pyroelectric coefficient and susceptibility increase with the decrease of the magnitude of the long - range interaction and the interfacial coupling when the temperature is lower than the phase transition temperature

    我們發現,在相變溫度以下,隨著雙層薄膜的界面耦合的減弱,鐵電雙層薄膜的熱電系數和介電極化率增加。
  20. We also find that the strong long - range interaction, the large transverse field and weak interfacial coupling can lead to the disappearance of some of the peaks of the pyroelectric coefficient and susceptibility of the ferroelectric bilayer. we believe that it is the reason why these phenomena always take place in the experimental studies

    我們還發現,較強的長程相互作用,較大的橫場以及相對較弱的界面耦合作用將會導致鐵電雙層薄膜的熱電系數和介電極化率的某些峰消失,這可以用來解釋在實驗中常常觀測不到熱釋電系數和介電極化率的某些峰值的原因。
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