KJ3241X1-BK1卡件,12P4710X032使用手冊(cè)
該現(xiàn)象是由材料的微孔連續(xù)遭受破壞而引起的。如果是有機(jī)材料,等離子體會(huì)導(dǎo)致碳化??障对斐捎谰眯远搪?,降低了整體的絕緣厚度,從而在剩余的絕緣層上產(chǎn)生更強(qiáng)的電壓場(chǎng),并最終導(dǎo)致完全失效。PD效應(yīng)在“起始”電壓突然開(kāi)始,該電壓取決于空隙中的氣體、壓力和空隙大小,以帕邢曲線[1]為特征。若為開(kāi)關(guān)電壓,那么起始電壓會(huì)由頻率決定。
KJ3241X1-BK1卡件,12P4710X032使用手冊(cè)另外,也不應(yīng)完全對(duì)材料的擊穿電壓信以為真。例如,玻璃被認(rèn)為是優(yōu)異絕緣體,具有約60kV/mm的擊穿電壓,但這是在頻率為60Hz的情況下。如果頻率為1MHz,絕緣擊穿電壓的數(shù)值衰減到十分之一,約為5kV/mm。對(duì)于一些絕緣間距為<10μm的柵極驅(qū)動(dòng)IC,則需要仔細(xì)考慮高頻效應(yīng)。
因此,開(kāi)關(guān)電壓的峰值、dV/dt和頻率是評(píng)估絕緣可靠性的關(guān)鍵參數(shù)。由過(guò)沖和寄生電容和電感的諧振引起的瞬態(tài)電壓也應(yīng)要加到系統(tǒng)電壓中進(jìn)行評(píng)估。在推挽和橋式電路中,隔離了柵極驅(qū)動(dòng)信號(hào)和功率回路,解決了上下橋臂耦合到柵極的電壓瞬變的問(wèn)題。然而在高頻和高轉(zhuǎn)換速率下,上橋臂的隔離器件仍然承受非常高共模電壓應(yīng)力。大多數(shù)工業(yè)控制系統(tǒng)都在24VDC電源軌上運(yùn)行。選擇該電壓的原因很多,包括它足以供電給閥門、螺線管和繼電器,但又足夠低以確保安全觸摸。另外它是標(biāo)準(zhǔn)鉛酸蓄電池電壓,因此很容易導(dǎo)入備用冗余電源系統(tǒng)。24VDC電源軌供電,電纜的線損會(huì)比較大,因此它在高功率負(fù)載情況下的效率并不高:直流電源電壓從24V增加到48V時(shí)總電流將減半,電纜損耗將減至四分之一,代表同一條電源電纜可以承受四倍的負(fù)載。
選擇24V而非48V作為標(biāo)準(zhǔn)工業(yè)電源電壓的主要原因是48V鉛酸電池又大又重,很難找到可以匹配如此高輸入電壓的DC/DC轉(zhuǎn)換器和穩(wěn)壓器。即使是24V電源也常常會(huì)下降到12V的總線電壓,為1V/2.5V/3.3V的低壓負(fù)載回路供電。
最近有兩項(xiàng)進(jìn)展改變了整個(gè)局面,讓48V電源更具吸引力。
第一個(gè)改變形勢(shì)的是GaN HEMT。這是一種新型的開(kāi)關(guān)晶體管,開(kāi)關(guān)速度比硅的技術(shù)快得多。如果使用100 kHz DC/DC降壓型轉(zhuǎn)換器來(lái)有效地將48V電源降壓至1.2V,電壓比率會(huì)是40:1。增加1%的負(fù)載調(diào)節(jié)能力,開(kāi)關(guān)晶體管必須應(yīng)付小于2. 5ns抖動(dòng)的PWM信號(hào)。這是一般開(kāi)關(guān)穩(wěn)壓器技術(shù)的極限但仍在GaN晶體管的規(guī)格范圍之內(nèi),因此得以現(xiàn)實(shí)48V至1V的轉(zhuǎn)換器。48V至1V降壓型轉(zhuǎn)換器的PWM控制信號(hào)
第二種改變局勢(shì)的技術(shù)是輕混合動(dòng)力電動(dòng)汽車。The frequency converter control node is the core to realize the frequency conversion control of the water pump, and it is also the most important functional component of this control system. The frequency converter control node receives the network variables representing the current temperature sent by the temperature measurement node, compares them with the expected temperature set by the upper computer, and then uses the PID control algorithm to give the control signal of the frequency converter. Here, the AI module is used to realize the current output of 4-20mA. PID control parameters of the node, such as proportional amplification coefficient and integral / differential time, are provided by the upper computer through network variables. Design of computer monitoring and management software computer monitoring and management software adopts WIN2000 operating system platform, application software adopts visual c development, and is based on LNs network operating system. The main functions of the monitoring and management software are: (1) data display and control functions: