<p id="awurb"></p>
<big id="awurb"></big>

    <sub id="awurb"></sub>
    又大又粗又硬又爽黄毛少妇,国产免费踩踏调教视频,日韩中文亚洲欧美视频二,麻豆国产传媒精品视频,亚洲国产精品久久亚洲精品 ,国产999精品2卡3卡4卡,欧美xxxx欧美精品,午夜精品福利亚洲国产
    Muen
    News

    News

    Enterprise service provider

    location : Home > News > Technical information

    Use your inverter with the right power

    2023-05-20 13:07:17

    Low voltage fault


    The VFD reports a low voltage fault when the DC link voltage of the drive drops below 62% of the nominal level at the high setting (480 VAC) and 50% of the nominal value of the low setting (400 VAC).


    The + 10% and - 15% voltage tolerances in most manuals are recommended operating ranges to allow the driver on hand to maintain high efficiency and proper motor current. The drive can be below these tolerances, but the reduced voltage can have unpredictable effects on motor current, motor temperature and overall performance.


    More specifically, if the line voltage parameter of the driver is set to high and 480 VAC is being applied, the driver will generate a low voltage fault when the DC link voltage drops to 62% of the nominal - e.g., 480 VAC · 0.62 · √ 2 = 421 VDC. The nominal DC link voltage is 480 VAC · √ 2 = 679 VDC.


    Notes on switching


    Although it is generally accepted to switch VFD from line supply to standby generator in many applications, there are some limitations. Most importantly, the phase to phase voltage input voltage swing of many portable standby generators is greater than the phase to phase voltage tolerance recommended by the driver, usually less than 2%. To prevent voltage oscillations, VFDs are equipped with surge protectors in the input rectifier circuits - but external protection (e.g. surge arresters) may be required for severe input disturbances. Large variance will produce large ripple on DC bus capacitance, which will cause capacitor and other power components to be damaged over time.


    Another potential problem arises when switching from line power to standby generators. Most drivers take at least two minutes to power up again; failure to follow this guideline may damage the charging relay circuit, or at least damage the input fuse or trip the circuit breaker.


    3% line reactor may improve the current surge caused by moderate input power voltage.


    Another solution is to add a voltage monitor with an appropriate time delay. They have protection trip levels to shut down the drive in the event of under voltage, over voltage, loss of phase and phase to phase voltage imbalance. These devices ensure that the VFD is not exposed to unbalanced input power or power up until the voltage is within tolerance and the appropriate delay time is met.


    Isolation transformer


    The final recommendation - the most expensive solution - is to use isolation transformers. This ensures complete isolation of input power issues associated with grounding and noise that may affect the drive. Does isolation transformer provide better protection than line reactor? Yes. When does the application need isolation transformer? This type of transformer is recommended when installed close to the substation.


    There are many advantages in inserting driver isolation transformer between VFD and its power supply. Isolation ensures that there is no direct electrical connection between the source and the load - but for any transformer other than an autotransformer. The unique feature of the drive isolation transformer is the grounding electrostatic (Faraday) shield placed between and around the primary and secondary windings. This shielding reduces the capacitance coupling involved in the transmission of common mode voltage interference by one million times. Without this shielding, the capacitor allows high frequency noise and transient voltage spikes to pass through the transformer.


    Common mode transients are transients that occur between the ground and the neutral point of an AC system. Although the two parts of a circuit are usually combined at one point, they cannot be considered to have the same potential throughout the power system. The common mode transient interference results from the normal operation of switching power supply, driver operation, arc welding machine, lightning, and even stepping motor. Some isolation transformers also prevent "normal mode" transients between the line and neutral.


    Consider an application in which the daily utility power supply of a substation capacitor bank in an industrial park causes a transient voltage spike - amplified by reflection of field capacitors in a nearby factory. Suppose a facility in the park has several small drives rated at 7.5 HP. Normal mode transients can cause these drives to shut themselves down, resulting in costly process downtime. This interruption can be prevented by isolating the transformer.


    Frequency converter manufacturer


    label

    QR code

    The public,

    Mobile station
    The public, Mobile station

    Contact

    未標題-8.png 0755-81719517
    未標題-10.png0755-81719530 未標題-11.pngamb@ambition.com.cn
    未標題-12.pngFloor 1, 5 and 6, building 7, lijincheng science and technology industrial park, gongye dong road, longhua new district, shenzhen

    Navigation

    Home          About

    Product      Case

    Solution      Service

    Job      News

    Contact          

    Copyright © Shenzhen Ambition Electronic Co., Ltd Record number:備案號:粵ICP備12045920號
    主站蜘蛛池模板: 国产成人av三级在线观看| 激情五月亚洲综合图区| 护士张开腿被奷日出白浆| 中文字幕亚洲精品乱码| 国产不卡一区不卡二区| 国产免费爽爽视频| 午夜无码成人免费视频| 亚洲色欲网熟女少妇| 国产精品午夜福利91| 亚洲a成人片在线观看| 国产午夜无码视频在线观看| 最新国产aⅴ精品无码| 国产成人小视频| 欧美成人看片黄A免费看| 国产成人午夜精华液| 久本草在线中文字幕亚洲| 亚洲春色cameltoe一区| 国产中文三级全黄| 国产一区二区三区乱码| 精品无码久久久久成人漫画| 人人爽久久涩噜噜噜丁香| 狠狠噜天天噜日日噜色综合 | 性无码免费一区二区三区屯线| 亚洲色大成网站www永久麻豆| 亚洲国产成人久久精品APP| 奇米影视色777四色在线首页| 国产精品特黄aaaa片在线观看| 免费无码黄十八禁网站| 亚洲韩国日本高清一区| 国产精品中文原创av巨作首播| 国产精品成人无码a片在线看| 无码av免费网站| 农村欧美丰满熟妇xxxx| 欧美肥胖老妇bbw| 无码日韩做暖暖大全免费不卡| 久久精品一本到东京热| 日本深夜福利在线观看| 中国少妇内射xxxxx-百度| 大粗鳮巴久久久久久久久| 人妻中出无码中字在线| 国产亚洲精品久久久久久牛牛|