3BHB003149P201卡件,GVC707AE01中文使用說(shuō)明
隔離式轉(zhuǎn)換器通常使用PWM(脈沖寬度調(diào)制)控制器來(lái)調(diào)節(jié)輸出電壓且不受輸入電壓或輸出負(fù)載影響,而有效的調(diào)節(jié)范圍僅4:1,由最小開(kāi)啟時(shí)間與最大關(guān)斷時(shí)間之比來(lái)定義。
之所以有最小開(kāi)啟時(shí)間的原因是它是功率級(jí)的反應(yīng)時(shí)間。如果脈沖寬度減得太多,那么功率開(kāi)關(guān)晶體管將無(wú)法迅速地做出反應(yīng)。此外,在這個(gè)極窄的脈沖中的任何抖動(dòng)都會(huì)被功率級(jí)放大,從而導(dǎo)致輸出電壓的調(diào)節(jié)性降低(如果1ms脈沖的抖動(dòng)為100μs,輸出電壓變化為10%)。在另一端,在最小輸入電壓下,驅(qū)動(dòng)晶體管無(wú)法一直保持開(kāi)啟狀態(tài),因此必須以最小的關(guān)斷時(shí)間將其關(guān)斷。
3BHB003149P201卡件,GVC707AE01中文使用說(shuō)明脈沖的關(guān)斷時(shí)間必須足以讓變壓器復(fù)位,所以通常比最小開(kāi)啟時(shí)間長(zhǎng)得多。這兩個(gè)脈沖寬度的限制說(shuō)明了PWM控制器不能在超過(guò)4:1的輸入電壓范圍內(nèi)工作,并同時(shí)保持正常的調(diào)節(jié)性能。標(biāo)準(zhǔn)的工業(yè)DC/DC轉(zhuǎn)換器輸入電壓范圍由電信系統(tǒng)定義(12V、24V或48VDC電池電源)。鐵路應(yīng)用還會(huì)使用更高的72V、96V或110V電池電壓。最常見(jiàn)的干線鐵路總線電壓是110Vdc,但是輕軌和電車通常使用較低的電池電壓。針對(duì)機(jī)車車輛用電子設(shè)備的EN50155標(biāo)準(zhǔn)在最新版本中還包括了28V和36V的選項(xiàng):我們可以馬上看到EN50155標(biāo)準(zhǔn)的輸入電壓范圍和傳統(tǒng)的DC/DC輸入電壓規(guī)格存在的問(wèn)題。傳統(tǒng)的三種DC/DC轉(zhuǎn)換器(標(biāo)稱24V、48V和110V)適用于所有標(biāo)準(zhǔn)鐵路電源電壓包括瞬態(tài),但是增加的28V電池電壓會(huì)打破這個(gè)模式。雖然28V系統(tǒng)的標(biāo)稱電源電壓在24V DC/DC轉(zhuǎn)換器的輸入范圍內(nèi),但是最大電源電壓過(guò)高。雖然28V的最大輸出電壓在48V DC/DC轉(zhuǎn)換器的范圍內(nèi),但最小電壓又太低,結(jié)果都不適合!
針對(duì)這個(gè)難題有兩種解決方案:增加一個(gè)標(biāo)稱36V輸入DC/DC轉(zhuǎn)換器,讓四種不同設(shè)計(jì)涵蓋所有輸入電壓,或者設(shè)計(jì)一個(gè)11:1輸入范圍的轉(zhuǎn)換器,讓一個(gè)轉(zhuǎn)換器涵蓋所有可能的情況。
此時(shí)您可能會(huì)想:“等等!首先我們聽(tīng)到4:1是極限,而現(xiàn)在提出了11:1的解決方案!” 是的,雖然沒(méi)有辦法解決4:1輸入范圍問(wèn)題,但是您可以將兩個(gè)轉(zhuǎn)換器組合在一起,先是一個(gè)低輸入電壓的前置轉(zhuǎn)換器升壓,接著是高輸入電壓隔離4:1轉(zhuǎn)換器。升壓轉(zhuǎn)換器的拓?fù)鋬?yōu)勢(shì)在于輸入電壓高于設(shè)定輸出電壓時(shí),功率晶體管會(huì)一直處于關(guān)斷狀態(tài),然后輸入電壓直接通過(guò)二極管的負(fù)壓降(圖3)。
explosive gas atmospheres Part 1: general standard. It is safer and more reliable than the traditional shore power system and meets the shore power demand of hazardous wharf. The variable frequency power supply of the core part of the system is two sets of Senlan sb70p series variable frequency power supply, with a single capacity of 1mva, adopting the DC common busbar scheme. Sb70p series low-voltage shore power variable-frequency power supply is a new generation of high-performance variable-frequency power supply customized and developed based on Senlan's 22 year mature low-voltage platform technology and the application requirements of shore power supply. It has the advantages of fast dynamic response, strong overload capacity and high control accuracy. It is second to none in terms of system topology selection, control performance, or heat dissipation system design. It has the following characteristics:
1) Topology: the front end adopts 12 pulse rectification, the middle link adopts common DC bus, and the output adopts LCL filter. With high carrier frequency,