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Inkqubo yokufudumeza imibhobho (ukufudumeza kwe-impedance)
Inkqubo yokufudumeza imibhobho (ukufudumeza kwe-impedance) Ukwaziswa kwemveliso Inkqubo yokufudumeza yombhobho isebenzisa umbhobho uqobo njengento yokufudumeza, kwaye ngokuthe ngqo kufudumeza umbhobho ngombane ophantsi kunye nomsinga ophezulu. Inkqubo ibandakanya ukuguqula amandla, ulawulo lwephaneli kunye nezinto zokwahlula i-flange ukugcina iqondo lobushushu lombhobho okanye ukwandisa iqondo lobushushu lolwandle ukuthintela ukuqina kunye nokuvalwa kwe- Indawo ebandayo ephezulu. Ukusetyenziswa kwemibhobho yeoyile ekrwada kunye nokugalela i-asphalt, isalfure kunye nezinye ii-oyile ezinzima zokuhambisa imibhobho, umbhobho we-oyile wokufudumeza umbhobho wobushushu bemikhosi yemibhobho ephakathi yemveliso yeempawu zokugcina imibhobho eyodwa njengesifudumezo into, akukho nto eyongezelelweyo yokufudumeza, ukusebenza kwe-thermal kuphezulu kakhulu.
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Inkqubo yokuhambisa umbane wokufudumeza umbane (Ngokukhethekileyo yemibhobho yokufudumeza ngokungcwatyiweyo ngokuthe ngqo)
Intshayelelo kwiNkqubo yamandla eQhushu yombane (Ngokukodwa iimibhobho yokufudumeza ngokuthe ngqo) Inkqubo yombane yokufudumeza umbane sisixhobo esiphambili esisetyenziselwa ukufakelwa kombane kwangaphambi kokufudumeza kombhobho wamanzi ashushu angcwatywa ngqo kwidolophu. ine. Ngokudibanisa umbane kumbhobho wentsimbi osebenzayo ngentambo ukwenza isekethe evaliweyo, iguqula ukutshintsha umsinga kwi-voltage esezantsi, amandla ombane aphezulu, esetyenziswa kwicandelo lombhobho oshushu kwangaphambili. Ukusebenzisa umgaqo wokuvelisa ubushushu ukusuka kumbhobho wentsimbi, umbhobho ushushu kubushushu obuyilelweyo bokushushu. Inkqubo iqulethe umguquli wamandla aphezulu, ikhabhinethi yokulawula, ibhokisi yokudibana yesiphelo, kunye ne-flange yokodwa, phakathi kwezinye izinto. Ukusetyenziswa kokufudumeza okuphakathi kwedolophu: ukufakwa kwemibhobho yamanzi ashushu engcwatyiweyo ngqo, ukwakhiwa kwenethiwekhi yokufudumeza kumgama omde, kunye nobushushu kunye nokuveliswa kwamandla okucocekileyo.
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Amandla aphezulu e-DC arc heater unikezelo lwamandla ombane
Intshayelelo kwiXesha lamandla aMandla ePhakamileyo e-DC Arc Heaters: Ukunikezelwa kwamandla okulungisa iindlela ezininzi kwi-DC arc yee-heaters ezinamandla aphezulu zisebenzisa itekhnoloji yokulungisa amaninzi. Isebenzisa isiguquli sokulungisa ezininzi kunye nekhabhinethi yamandla elungisa, ihambisa umjelo ophezulu, Amandla aphezulu e-DC okwangoku ukunika amandla e-DC e-arc heaters. Izicelo zibandakanya ukufudumeza okuphezulu kwe-DC arc, uvavanyo lwe-aerospace, kuvavanyo lwepropathi yobushushu obuphezulu, Izixhobo zokuvelisa iplasma, kunye neetonela zomoya eziphezulu. Iimpawu eziphambili zemveliso: imveliso yangoku yeemodi ezininzi kunye nokuphuma kwamandla ombane ukuhlangabezana neemfuno zokusebenza zeentlobo ezahlukeneyo zee-DC arc heaters; ixhasa amanqanaba amandla aphezulu ukuya kuthi ga kwi-50 MW yokufudumeza kwe-DC arc.
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I-Thyristor / IGIBT DC yokufudumeza umbane
Intshayelelo yemveliso: Ukunikezelwa kwamandla okufudumeza kweDC sisixhobo sokulungisa esibonelela ngamandla okufudumeza kweDC kwizixhobo ezinje ngesafire Amaziko, Amaziko e-crystal enye, kunye nee-graphite reactors. Isebenzisa ulawulo lokumodareyitha lobubanzi lwe-IGBT okanye ulungiso lwe-thyristor ukuphuma umbane ophantsi, amandla aphezulu e-DC, ukubonisa ukuchaneka okuphezulu kunye nozinzo olugqithisileyo. Isicelo Ii-reactors zegrafite, i-vacuum fane / iziko lomoya, ukufudumeza kwesinyithi kunye ne-electrolysis. Iimpawu zemveliso: Itekhnoloji yokutshintsha rhoqo ephezulu isusa ukungcangcazela kunye nengxolo kufudumo lwemagnethi yeziko elinye lekristale, ukuphucula umgangatho wemveliso; uyilo lolawulo olufakiweyo, imeko yamandla aphezulu, ukusebenza okuphezulu kokuguqulwa, kunye nokugqwetha okuphantsi kwe-harmonic.
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Unikezelo lwamandla olunikezelwe ukupholisa i-electrolytic / unyango lwamanzi omdaka
Intshayelelo kwiiPolishi zombane kunye neNyango yamanzi angcolileyo: Ezi zinto zamandla ziyilelwe unyango lomhlaba kunye nezicelo zokukhusela esingqongileyo, zibonelela ngokuphakathi ukuya kwimveliso yamandla asezantsi. Ukusebenzisa itekhnoloji yokutshintsha rhoqo ephezulu, zibonisa i-ripple esezantsi kunye nokuchaneka okuphezulu, ukwenza ukuba zilungele iinkqubo ezinje ngentsimbi engagquma kunye nokuthotywa kombane wamanzi amdaka. Isicelo: Ukupholisa i-electrolytic yentsimbi, unyango lwamanzi amdaka nge-electrolysis, unyango lomphezulu we-electrochemical, kunye nokulungiswa kokubola. Iimpawu zemveliso: Inqanaba elikhawulezayo leMicrosecond ngokuphendula ngokukhawuleza; ixhotyiswe ngolawulo lwekhompyuter kunye namandla onxibelelwano, Ukuxhasa unxibelelwano olufana ne-RS485 kunye neProffibus; ulwakhiwo lwamkela…
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Unikezelo lwamandla aphezulu lwe-electrolysis (ushishino lwe-electrochemical)
Intshayelelo kwizibonelelo zaMandla ephezulu zombane (zomzi-mveliso wombane) Izinto zamandla aphezulu ze-electrolytic ziinkqubo ezinkulu zokulungisa ezenzelwe ishishini le-electrochemical. Zilungele i-electrolysis yesinyithi ezingezizo i-ferrous ezinje ngobhedu, i-aluminium, i-magnesium kunye ne-zinc, kunye neenkqubo ezinkulu zemichiza efana ne-electrolysis ye-brine ukuvelisa isoda yecautic kunye ne-chlorine. Imveliso yangoku inokufikelela kumashumi amawaka ee-amperes, kwaye izixhobo zihlala zamkela uhlobo lwekhabhinethi okanye isakhiwo esivulekileyo. Izicelo zibandakanya i-non-ferroud electrolytic cogiting (copper, zinc, lead), imveliso ye-electrolytic ye-castic soda kunye ne-potash, Ukunyibilika kwezinyithi ezixabisekileyo ezinje ngegolide nesilivere, ukunyibilika komhlaba kunqabileyo (e. g., I-NdFeB), izityalo zekhabhoni, kunye nokunyibilika kwedayimani. Iimpawu zemveliso: ukuphuma ngoku ukusuka kwi-1 000 A ukuya kwi-50.
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Ubonelelo lwamandla olunikezelwe kwimveliso yehydrogen nge-electrolysise
Intshayelelo kwizibonelelo zaMandla ezinikezelwe kwimveliso yeHydrogen ye-Electrolytic: Ukubonelela kwamandla okuvelisa i-hydrogen ye-electrolytic yizixhobo zokulungisa ezidibanisa igridi yamandla kwi-electrolyzer, ukuguqula ukutshintsha komsinga kwindawo ezizinzileyo ngokuthe ngqo ukuqhuba i-electrolysis yamanzi yokuveliswa kwe-hydrogen. Kuxhomekeke kuhlobo lwe-electrolyzer (alkaline ALK / PEM) kunye nendlela yezobuchwephesha, Ukubonelela kwamandla okuvelisa i-hydrogen kuhlelwa kwiindidi ezimbini: i-thyristor esekwe kunye ne-IGBT esekwe. Isicelo se-alkaline electrolysis (ALK) kunye ne-PEM electrolysis kwimveliso ye-hydrogen eluhlaza kwiiprojekthi zomoya-solar-hybrid: I-decarbonization yeshishini kunye ne-hydrogen metalurgy eluhlaza. Iimpawu zemveliso: Ukunikezelwa kwamandla okuvelisa i-hydrogen okusekwe kwi-IGBT kunye nexesha lokuphendula elingaphantsi kwe-100 ms, ukunceda impendulo kwangoko kutshintsho olukhawulezayo kwi-photovoltaic kunye nokuveliswa kwamandla omoya.
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Ukunikezelwa kwamandla okuLawulwa kweSilicon (uhlobo lwe-SCR)
Intshayelelo yemveliso: I-SCR-based Electrolytic Rectifier Power Supps I-SCR-based base-electrolytic linikezelo lamandla asebenzisa ii-thyristors njenge-SCR izixhobo zombane kwaye zisebenzisa isigaba sokutshintsha kwenqanaba lokuqhuba umbane kunye nommiselo wangoku, ukuyenza ilungele ukusetyenziswa kwe-electrolysis yamandla aphezulu. Ukubonakaliswa kukuqina nokuqina, kunye neendleko eziphantsi, sisisombululo esivuthiweyo kumacandelo e-hydrometelllurgy kunye nemveliso ye-hydrogen. Izicelo zibandakanya amandla aphezulu e-electrolytic metalurgy (aluminium, magnesium, zinc, njl.), imveliso ye-hydrogen nge-electrolysis yamanzi (i-alkaline electrolyzers), i-causttic soda kunye nemveliso ye-chlorine nge-brine electrolysis, kunye nokufudumeza kombane kwizityalo zekhabhoni kunye nezixhobo eziguqukayo. Iimpawu eziphambili zemveliso: imveliso yangoku ukuya kuthi ga kwi-0-50,000 A, uluhlu lwamandla ngalunye iyunithi, kunye nemveliso yeDC.
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高频开关电解电源(IGBT/PWM型)
高频开关电解电源(IGBT/PWM型)产品介绍高频开关电解电源采用IGBT功率器件和PWM调制技术,将交流电转换为低压大电流直流电,用于电解、电镀、氧化等电化学工艺。相比传统可控硅整流电源,具有体积小、效率高、纹波低、控制精度高等显著优势。应用有色金属电解:铜、铝、锌、镁、铅、锰等电解制氢与电解食盐水电镀与电解抛光电解污水与电化学处理产品特点体积与重量为可控
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高压直流脉冲电源
产品介绍高压直流脉冲电源在输出直流高压的基础上叠加高压脉冲,用于需要脉冲电场或脉冲功率的工业及医疗场景。脉冲频率和脉宽可调,适应不同工艺需求。应用静电除尘(脉冲增强型)不可逆电穿孔肿瘤消融准分子激光器材料表面处理产品特点脉冲频率100Hz~500Hz可调脉宽1μs~100μs可调直流与脉冲可叠加输出具备抗干扰能力,适应恶劣电磁环境用于医疗领域时可切换射频消融与不可逆电
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模块化高压直流电源
产品介绍模块化高压直流电源采用多模块串并联架构,通过输入并联、输出串联或并联方式实现高电压大功率输出。适用于需要高可靠性、可扩展性的工业及科研场景。应用高功率射频放大器偏置科研实验装置工业激光器粒子加速器产品特点模块化设计,支持N+1冗余和在线扩容多脉波整流输入,谐波畸变低支持并机输出,可扩展至MW级功率具备远程控制接口,支持精确调节与实时监控多重保护功能:过压、过流
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高压直流远程供电系统(直流远供)
产品介绍高压直流远程供电系统采用“近端升压、远端降压”架构,将近端交流电转换为高压直流电(通常280V~800V),通过电缆远距离传输至远端设备,再降压为负载所需电压。单线串联方案可大幅降低线缆成本约80%。应用5G基站拉远供电高速公路监控设备供电隧道照明及机电设备偏远地区通信基站产品特点传输损耗较交流供电降低约30%采用单线串联技术,各远端负载电流相等,系统稳定性高
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通信用高压直流供电系统(HVDC)
产品介绍通信用高压直流供电系统是将交流电转换为高压直流电,为通信设备、数据中心IT负载提供不间断供电的电源系统。系统采用模块化架构,包含交流配电单元、整流模块、蓄电池组、直流配电单元及监控模块,输出电压标称值为240V、336V或800V。应用通信基站供电数据中心/IDC机房金融、政府机构数据机房5G基站远程供电产品特点较传统UPS系统节电约30%模块化设计,支持N+
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N+1冗余远供系统_电力载波远供监控_悬浮供电远供系统
产品概述本系统是集N+1冗余供电、电力载波远程监控与对地悬浮安全供电三大核心技术于一体的高压直流远程供电解决方案。系统由局端升压设备、远端降压设备和监控管理单元组成,将机房直流基础电源(-48V)或交流电升压为高压直流电(典型DC280V~800V),通过供电电缆远距离输送至远端设备,再降压为负载所需电压。三大核心技术协同工作:N+1冗余确保局端和远端功率模块配置冗余备份,单模块故障时系
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Ukubonelelwa kwamandla okulungisa i-electrophoresis
产品概述电泳整流电源是专为电泳涂装(电泳涂漆)工艺设计的直流供电设备,核心功能是将交流电转换为电压电流可调的直流电,为电泳槽中的阳极和工件(阴极)之间施加直流电场,使电泳涂料在工件表面均匀沉积成膜。电泳涂装是将被涂物浸渍在水溶性涂料中,两极间通直流电,靠电流产生的物理化学作用使涂料以不溶于水的状态在工件表面析出,形成均一涂膜的涂装技术。整流电源作为电泳涂装线的关键配套设备,其性能直接决定
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Ukufumana amandla okulungisa ubushushu
产品概述加热整流电源是专为工业电加热场景设计的直流供电设备,核心功能是将三相交流电转换为电压可调的直流电,为石墨加热元件、电阻发热管、感应加热线圈等负载提供稳定的直流电能。其工作原理为:交流电经整流变压器隔离降压后,由可控硅或二极管整流器件转换为可调直流输出,通过闭环控制确保加热功率的稳定性和精确性。在工业加热领域,直流加热相比传统交流加热具有显著优势:直流电加热避免了交流电的集肤效应和
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Ukunikezelwa kwamandla okulungisa i-Oxidation.
产品概述氧化整流电源是专为金属表面阳极氧化处理工艺设计的直流供电设备,核心功能是将三相交流电转换为电压电流可调的直流电,为氧化槽中的铝、镁、钛等金属工件提供稳定的阳极氧化电流。其工作原理为:交流电经整流变压器隔离降压后,由可控硅或高频开关器件整流为可调直流输出,通过稳流/稳压闭环控制确保氧化膜生长均匀致密。阳极氧化工艺对电源的核心要求是电流稳定性和输出波形可控性。普通阳极氧化电流密度为1
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Ukubonelelwa kwamandla okulungisa umbane
产品概述电解整流电源是专为电解工艺设计的大功率直流供电设备,核心功能是将三相交流电转换为低电压、大电流、高稳定度的可调直流电,为电解槽提供持续稳定的直流电能。其工作原理为:三相交流电经整流变压器隔离降压后,通过可控硅或高频开关器件整流为可调直流输出,采用同相逆并联或模块并联技术实现电流均衡分配。电解整流电源广泛应用于有色金属电解(铜、铝、锌、铅、锰等)、氯碱化工、电解水制氢、电解制氯、金
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高电压整流直流电源
产品概述高电压整流直流电源是一种将交流电转换为高幅值直流电压输出的特种电源设备,输出电压通常在数千伏至数百千伏级别,输出功率从数百瓦至数十千瓦不等。其核心功能是为需要高压直流偏置或供电的负载提供稳定、低纹波的直流电能。与常规直流电源不同,高电压整流直流电源的核心技术难点在于高压绝缘设计、电场均匀化控制以及输出储能能量的限制。当输出电压达到数十千伏时,空气绝缘已无法满足要求,需要采用油绝缘
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大电流整流直流电源
产品概述大电流整流直流电源是一种专为工业电化学及特种冶炼场景设计的大功率直流供电设备,核心特征在于超大输出电流能力(通常从数千安培至数十万安培),同时维持较低的输出电压。其基本工作原理为:三相交流电经整流变压器隔离降压后,由可控硅或二极管整流器件转换为可调的直流输出,通过同相逆并联或模块并联技术实现电流的均衡分配。与常规直流电源不同,大电流整流电源的核心技术难点不在于电压调节,而在于超大
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