1. <pre id="wklex"><td id="wklex"><style id="wklex"></style></td></pre>
      • <kbd id="wklex"></kbd>
        <ruby id="wklex"><samp id="wklex"></samp></ruby>
        <ol id="wklex"></ol>
        <dfn id="wklex"></dfn>

          <sub id="wklex"><p id="wklex"></p></sub>
          自拍一区在线视频观看,国产AV无码专区亚洲AV中文,婷婷开心色四房播播,久久综合综合久久狠狠狠97色,久久亚洲aⅴ精品网站婷婷,中文无码字幕一区到五区免费,91麻精品国产91久久久久,四虎4hu亚洲精品
          Hello! Welcome to the website of Dongguan Youchen Electronic Technology Co., Ltd.

          Youchen Technology

          Chip Capacitor/Electrolytic Capacitor/Ceramic Capacitor Supplier
          18929295505
          admin@dgyouchen.com
          Current Page: Home > News > Common problem
          News

          Factors Influencing the Life of Electrolytic capacitor (I)

          2019-07-25

          Electrolytic capacitor are widely used in different fields of power electronics, mainly for smoothing, energy storage or filtering after AC voltage rectification, and also for non precision timing delay. In the MTBF prediction of switching power supply, the model analysis results show that Electrolytic capacitor is the main factor affecting the life of switching power supply, so it is very important to understand and influence the factors of capacitor life.

          1. The life of Electrolytic capacitor depends on its internal temperature.

          Therefore, the design and application conditions of Electrolytic capacitor will affect the life of Electrolytic capacitor. From the design point of view, the design method, materials and processing technology of Electrolytic capacitor determine the life and stability of the capacitor. For the application, the service voltage, ripple current, switching frequency, installation form, heat dissipation mode, etc. all affect the life of Electrolytic capacitor.

          2. Abnormal failure of Electrolytic capacitor

          Some factors may cause the Electrolytic capacitor to fail, such as extremely low temperature, capacitor temperature rise (welding temperature, ambient temperature, AC ripple), excessive voltage, instantaneous voltage, Very high frequency or reverse bias voltage; Among them, the temperature rise is the biggest factor affecting the working life (Lop) of Electrolytic capacitor.

          The conductivity of capacitance is determined by the ionization capacity and viscosity of electrolyte. When the temperature decreases, the viscosity of the electrolyte increases, resulting in a decrease in ion mobility and conductivity. When the electrolyte freezes, the ion mobility is very low, resulting in a very high resistance. On the contrary, excessive heat will accelerate the evaporation of the electrolyte, and when the amount of electrolyte decreases to a certain limit, the lifespan of the capacitor will also end. When working in cold areas (generally below -25 ℃), heating is required to ensure the normal working temperature of Electrolytic capacitor. For example, outdoor UPS is equipped with heating plates in Northeast China.

          Capacitors are prone to breakdown under overvoltage conditions, while surge voltage and instantaneous high voltage are common in practical applications. Especially in China, which has a vast territory and complex power grids in various regions, the AC power grid is very complex, often exceeding 30% of the normal voltage, especially for single-phase input. Phase deviation will exacerbate the normal range of AC input. The test shows that the commonly used 450V/470uF105 ℃ imported ordinary 2000 hour Electrolytic capacitor will leak and emit gas after 2 hours under 1.34 times of the rated voltage, and the top will burst. According to statistics and analysis, the failure of the Electrolytic capacitor output from the communication switching power supply PFC close to the grid is mainly due to the grid surge and high-voltage damage. The voltage of aluminum Electrolytic capacitor is generally selected for secondary derating, and it is more reasonable to reduce it to 80% of the rated value.

          3. Analysis of Life Impact Factors

          In addition to abnormal failure, the life of Electrolytic capacitor has an exponential relationship with temperature. Because of the use of non solid electrolyte, the life of the Electrolytic capacitor also depends on the evaporation rate of the electrolyte, resulting in a reduction in electrical performance. These parameters include capacitance, leakage current and Equivalent series resistance (ESR).

          Refer to the formula for the expected life of RIFA company:

          PLOSS=(IRMS) ² XESR (1)

          Th=Ta PLOSSxRth (2)

          Loop=Ax2Hours (3)

          B=reference temperature value (typical value is 85 ℃)

          A=capacitor life at reference temperature (varies depending on the diameter of the capacitor)

          C=Number of degrees of temperature rise required to reduce capacitor life by half

          From the above formula, we can clearly see that there are several direct factors affecting the life of Electrolytic capacitor: ripple current (IRMS) and Equivalent series resistance (ESR), ambient temperature (Ta), and total thermal resistance (Rth) transferred from the hot spot to the surrounding environment. The point where the internal temperature of the capacitor is the highest is called the hot spot temperature (Th). The hot spot temperature value is the main factor affecting the working life of capacitors. The following factors determine the external temperature (ambient temperature Ta) of the hot spot temperature value in practical applications, the total thermal resistance (Rth) transmitted from the hot spot to the surrounding environment, and the energy loss caused by AC current (PLOSS). The internal temperature rise of a capacitor is linearly related to energy loss.

          During capacitor charging and discharging, the current flowing through the resistor causes energy loss, and the change in voltage also causes energy loss when passing through the dielectric. In addition, the energy loss caused by leakage current leads to an increase in the internal temperature of the capacitor.

          Previous Page:Causes affecting the life of Electrolytic capacitor (II)

          Next Page:Life of aluminum Electrolytic capacitor
          Youchen Technology
          Dongguan Youchen Electronic Technology Co., Ltd
          Tel: 0769-85328400 8533526885336465
          Fax: 0769-85308615
          Email: admin@dgyouchen.com
          Website: www.tomsonbags.cn
          Address: Floor 3, No. 7 Xinfeng Road, Shangsha Fourth Industrial Zone, Chang'an Town, Dongguan City, Guangdong Province
          Yue ICP Bei No. 13008404
          All rights reserved:Dongguan Youchen Electronic Technology Co., Ltd
          In-line aluminum electrolytic capacitor manufacturer, SMT aluminum electrolytic capacitor manufacturer, direct sales, brand selection, model selection, price
          Follow us:

          Do you need our help? Welcome to leave your email!
          Subscription
          18929295505  
          2324774509
          admin@dgyouchen.com
          主站蜘蛛池模板: 苍溪县| 日韩精品亚洲专区在线影视| 尹人香蕉久久99天天拍欧美p7| 国产成人啪精品视频免费网站软件| 国产女做a精品视频免费| 538porm在线看国产亚洲| 亚洲欧美中文字幕日韩二区| baoyu污污网站入口免费 | 日韩精品人妻在线播放| 亚欧视频无码在线观看| 欧美xxxx视频免费观看| 人妻久久999精品1024| 国产欧美日韩综合在线第一| 国产精品久久久久久久久久98| 欧美日韩国产VA另类| 国产成人亚综合91精品首页| 亚洲中文无码AV在线| 欧美极品免费专区高清在线| 久久精品亚州中文字幕| 国产一区二区三区免费视频| 1024手机在线观看旧版国产| 国产成人亚洲欧美日韩| 丝袜 亚洲 另类 欧美| 国产在线高清一级毛片| 国产精品乱码一区二区三| 国产精品毛片内在线看| 一级成人欧美一区在线观看| 亚洲av毛片成人精品| 国产拍揄自揄精品视频网站| 国产在热线精品视频国产一二| 天天爽夜夜爽夜夜爽| 亚洲成a人片在线看| 亚洲AV日韩专区在线观看| 亚洲人成色99999在线观看| 日本人妻丰满熟妇区| 国产av无码专区亚洲草草| 中文字幕一区二区三区乱码不卡| 美女视频黄a视频免费全过程| 中文字幕日韩人妻一区| 欧美人与z0zoxxxx视频| 日本中文字幕二区三区|