<sup id="mmmmm"><ul id="mmmmm"></ul></sup>
<tfoot id="mmmmm"><noscript id="mmmmm"></noscript></tfoot>

  • <nav id="mmmmm"></nav>
    <nav id="mmmmm"></nav>
    <nav id="mmmmm"></nav>
  • <tr id="mmmmm"><small id="mmmmm"></small></tr>
  • 一区二区三区AV波多野结衣,狠狠色丁香五月综合婷婷,亚洲AV性色精品国产小电影,亚洲亚色中文字幕剧情,午夜免费啪视频在线无码,老湿福利影院,午夜体验区,国产精品无码专区在线播放
    Hello! Welcome to the website of Dongguan Youchen Electronic Technology Co., Ltd.

    Youchen Technology

    Chip Capacitor/Electrolytic Capacitor/Ceramic Capacitor Supplier
    18929295515
    admin@dgyouchen.com
    Current Page: Home > News > Common problem
    News

    Causes affecting the life of Electrolytic capacitor (II)

    2019-07-25

    1. Design considerations

    In non solid electrolyte capacitors, the dielectric is an anodic aluminum foil oxide layer. The electrolyte serves as the electrical contact between the cathode aluminum foil and the anode aluminum foil oxide layer. The paper dielectric layer that absorbs the electrolyte becomes the isolation layer between the cathode aluminum foil and the anode aluminum foil, and the aluminum foil is connected to the terminal of the capacitor through an electrode connector.

    By reducing the ESR value, the internal temperature rise caused by ripple current in the capacitor can be reduced. This can be achieved by using multiple electrode lugs, laser welding electrodes and other measures.

    The ESR value and ripple current determine the temperature rise of the capacitor. One of the main measures to ensure a satisfactory ESR value for capacitors is to use one or more metal electrode connectors to connect the external electrodes and the core package, reducing the impedance between the core package and the pins. The more electrode connectors on the core package, the lower the ESR value of the capacitor. With the help of laser welding technology, more electrode leads can be added to the core package, so that the capacitance can reach a lower ESR value. This also means that capacitors can withstand higher ripple currents and have a lower internal temperature rise, which means a longer working life. This is also beneficial for improving the capacitance's ability to withstand vibrations, otherwise it may lead to internal short circuits, high leakage currents, loss of capacitance, an increase in ESR value, and an open circuit in the circuit.

    By maintaining good mechanical contact between the capacitor core package and the bottom of the aluminum shell, as well as by passing through the heat sink in the middle of the core package, the internal heat of the capacitor can be effectively released from the bottom of the aluminum shell to the bottom plate connected to it.

    The internal heat conduction design is extremely important for the stability and working life of capacitors. In EvoxRifa's design, the negative aluminum foil is extended to the bottom of the capacitor aluminum shell thickness that can be directly contacted. This bottom becomes the heat sink of the core package, allowing the heat from the hot spot to be released. If a bolted installation method is used to safely install the capacitor onto the substrate (usually aluminum), a more comprehensive thermal conductivity solution with lower thermal resistance (Rth.) can be obtained.

    The loss of electrolyte can be greatly reduced by using a phenolic plastic cover with electrodes wrapped around it as a whole and a double specially designed sealing pad that tightly engages with the aluminum shell.

    The evaporation of electrolyte through the sealing gasket determines the working time of the long-life Electrolytic capacitor. When the electrolyte of the capacitor evaporates to a certain extent, the capacitor will eventually fail (this result will accelerate due to internal temperature rise). The double-layer sealing system designed by EvoxRifa company can slow down the evaporation rate of the electrolyte, allowing the capacitor to reach its longest working life.

    The above characteristics ensure that capacitors have a long working life in the required field.

    3.2 Application factors affecting service life

    According to the lifespan formula, the application factors that affect lifespan are ripple current (IRMS), ambient temperature (Ta), and the total thermal resistance (Rth) transmitted from the hot spot to the surrounding environment.

    1. Ripple current

    The ripple current directly affects the hot spot temperature inside the Electrolytic capacitor. The allowable range of ripple current can be obtained by consulting the operation manual of Electrolytic capacitor. If it exceeds the range, parallel connection can be used to solve it.

    2. Environmental temperature (Ta) and thermal resistance (Rth)

    According to the formula of hot spot temperature, the application environment temperature of aluminum Electrolytic capacitor is also an important factor. In application, environmental heat dissipation mode, heat dissipation intensity, distance between Electrolytic capacitor and heat source, installation mode of Electrolytic capacitor, etc. can be considered.

    The heat inside a capacitor always conducts from the hottest "hot spot" to the relatively cooler parts around it. There are several ways of heat transfer: one is through aluminum foil and electrolyte conduction. If the capacitor is installed on a heat sink, a portion of the heat will also be transferred to the environment through the heat sink. Different installation methods, spacing, and heat dissipation methods will affect the thermal resistance of capacitors to the environment. The total thermal resistance transmitted from the "hotspot" to the surrounding environment is represented by Rth. Using a clamp installation method, the capacitor is installed on a heat sink with a thermal resistance of 2 ℃/W, resulting in a thermal resistance value of Rth=3.6 ℃/W; By using a bolt installation method, the capacitance is installed on a heat sink with a thermal resistance of 2 ℃/W and a forced air cooling rate of 2m/s, resulting in a capacitance thermal resistance value of Rth=2.1 ℃/W. (Taking PEH200OO427AM capacitor as an example, the ambient temperature is 85 ℃).

    Previous Page:Factors Influencing the Life of Electrolytic capacitor (III)

    Next Page:Factors Influencing the Life of Electrolytic capacitor (I)
    Youchen Technology
    Dongguan Youchen Electronic Technology Co., Ltd
    Tel: 0769-85328400 8533526885336465
    Fax: 0769-85308615
    Email: admin@dgyouchen.com
    Website: www.766xa.com
    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: 狠狠五月深爱婷婷网| 亚洲欧美日韩综合俺去了| 日韩欧美国产综合字幕| 亚洲精品高清av在线播放 | 国产欧美在线观看不卡| 中文字幕精品一二三四五六七八 | 亚洲成片一级香蕉在线观看| 亚洲男人的天堂精品一区二区| 亚洲欧美专区综合伊人久久| 午夜一级做a爰片久久毛片| 青青青国产免费全部免费观看| 亚洲女人av久久天堂| 在线观看 av香蕉| 亚洲精品免费一二三区| 国产呦系列欧美呦日韩呦| 亚洲成熟丰满熟妇高潮XXXXX| 色噜噜成人综合网站| 亚洲欧美天堂综合久久| 久久精品国产一区二区蜜芽| 九九久久国产精品大片| 99免费在线观看视频| A级毛片免费高清视频不卡| 无码毛片视频一区二区本码| 欧美日韩精品一区二区三区高清视频| 国产亚洲一本大道中文在线| 免费夜色污私人影院在线观看| 日韩在线2020专区| 99热这里只有精品在线观看| www.内射| 久久综合九色综合欧洲98| 亚洲H在线播放在线观看H| 国产丝袜在线精品丝袜| 亚洲精品另类有吗中文字幕| 亚洲欧美日韩第一区中文字幕| 亚洲欧美综合精品成人导航| 中国人与黑人牲交free欧美| 国产真实乱子伦精品视手机观看 | 国精品午夜福利视频不卡757| 久久久精品人妻一区二区三区蜜桃 | 国产精品自线在线播放| 青州市|