1. Waa maxay nuxurka aasaasiga ah ee sharciga Kirchhoff?
(1) Sharciga ugu horreeya ee Kirchhoff, oo sidoo kale loo yaqaan sharciga hadda ee Kirchhoff, oo ah KCL, waa sharci daraaseeya xiriirka ka dhexeeya qulqulka laamaha kala duwan ee wareegga. Waxa uu sheegayaa in: gunti kasta oo ku jira wareegga, wadarta qulqulka qulqulka ee ku socda guntigu ay la mid tahay wadarta qulqulka qulqulka ee ka baxaya guntigu. Muujintiisa xisaabeed waa sigma I=0;
(2) Sharciga labaad ee Kirchhoff waxaa sidoo kale loo yaqaan sharciga danabka Kirchhoff, oo ah KVL, kaas oo daraaseeya xiriirka ka dhexeeya danabka qaybaha kala duwan ee wareegga. Waxay tilmaamaysaa in: wareeg kasta oo xiran oo ku jira wareegga, wadarta danabka aljebrada ee qayb kasta ay la mid tahay eber. Muujinteeda xisaabeed waa: σ U=0;
2. Waa maxay saameynta maqaarku?
Marka uu korontada beddelkeedu dhex maro qalabka korontada, qaybinta hadda jirta isku mid ma aha meel kasta oo ku taal qaybta isgoyska ee qalabka korontada, iyadoo cufnaanta ugu yar ay ku taal bartamaha qalabka korontada, cufnaantana ay sii badanayso ayaa u dhow dusha sare ee qalabka korontada. Dhacdadan qaybinta hadda jirta waxay u egtahay inay ku taal dusha sare ee qalabka korontada, kaas oo loo yaqaan saamaynta maqaarka.
3. Waa maxay fikradaha iyo astaamaha dhawaaqa is barbar socda?
Wareegga barbar socda ee inductor-ka iyo capacitor-ka, dhacdada ah in danabka terminal-ka ee wareegga barbar socda uu ku jiro marxaladda wadarta hadda waxaa loo yaqaan resonance barbar socda. Resonance barbar socda waxaa lagu gartaa: marka resonance barbar socda la gaaro iyadoo la beddelayo capacitance C, is-hortaagga guud ee wareegga ayaa ugu badan, sidaas darteed wadarta hadda ee wareegga ayaa noqda ugu yaraan. Laakiin laan kasta, haddadiisu waxay noqon kartaa mid aad uga weyn wadarta hadda, sidaas darteed resonance barbar socda waxaa sidoo kale loo yaqaan resonance hadda. Intaa waxaa dheer, resonance barbar socda, sababtoo ah danabka terminal-ka iyo wadarta hadda waxay ku jiraan isla marxaladda, qodobka awoodda ee wareegga wuxuu gaaraa qiimaha ugu badan, taas oo ah, cos waa la mid yahay 1, resonance-ka barbar socdana ma soo saari doono resonant overvoltage oo khatar gelinaya badbaadada qalabka. Sidaa darteed, waxay na siinaysaa hab wax ku ool ah oo lagu hagaajin karo qodobka awoodda.
4. Sidee loo abuuraa eddies? Waa maxay khasaaraha hadda jira ee eddy?
Koronto beddelan ayaa la dhex mariyaa gariirad leh xudunta birta, taas oo soo saarta qulqul beddelan iyo awood kicinaysa. Hawlgalkan awooddan awgeed, xudunta ayaa samayn doonta wareeg koronto oo iskiis u kiciya, oo loo yaqaan eddy current.
Lumista tamarta ee ka dhalata qulqulka eddy waxaa loo yaqaan luminta hadda ee eddy.
5. Waa maxay habka kala-guurka? Maxaa sababa habka kala-guurka?
Habka kala-guurku waa geeddi-socod ku-meel-gaar ah, kaas oo ah geeddi-socod muddo ah laga bilaabo xaalad deggan ilaa mid kale.
Habka kala-guurka waxaa sabab u ah jiritaanka walxaha kaydinta tamarta. Qaybaha kaydinta tamarta sida inductors-ka iyo capacitors-ku ma boodi karaan wareegga, taas oo ah, hadda inductor-ka iyo danabka capacitor-ku ma beddeli karaan habka isbeddelka. Sidaa darteed, waa in uu jiraa hab loogu talagalay kala-guurka xaalad deggan oo loo gudbo xaalad kale oo wareegga ah.
6. Waa maxay mabda'a sare u qaadista?
Wareeg toosan, hadda (ama danabka) ee laan kasta waa wadarta aljabrada ee hadda (ama danabka dhammaadka) ee laga soo saaro laanta marka ilo koronto oo dhowr ah ay isku mar wada shaqeynayaan. Marka la adeegsanayo mabda'a sare u qaadista, isha danabka waa in loo arkaa mid gaaban oo isha hadda jirtana waa wareeg furan.
7. Waa maxay faa'iidooyinka isticmaalka qalabka saddex-geesoodka ah iyo qalabka korontada?
Mugga matoorka saddex-wajilaha ah ayaa ka yar kan matoorka hal-wajilaha ah marka la soo saarayo awood koronto oo isku mid ah. Waxaa jira khadadka gudbinta iyo qaybinta saddex-wajilaha ah oo ka yar khadadka gudbinta iyo qaybinta hal-wajilaha ah, taas oo badbaadin karta agab badan. Intaa waxaa dheer, matoorada saddex-wajilaha ah waxay leeyihiin waxqabad ka wanaagsan matoorada hal-wajilaha ah. Sidaa darteed, qalabka saddex-wajilaha ah ayaa inta badan la isticmaalaa.
8. Maxaa nidaamka saddex-geesoodka ah ee saddex-geesoodka ah loogu isticmaali karaa korontada matoorrada saddex-geesoodka ah, halka nidaamka saddex-geesoodka ah ee afar-geesoodka ah loo isticmaali karo korontada iftiinka?
Maadaama matoorka saddex-geesoodka ah uu yahay culays saddex-geesood ah, ha ahaado isku xidhka xiddigaha ama isku xidhka saddex-geesoodka ah, waxa kaliya oo uu u baahan yahay in saddexda xariiq ee matoorka saddex-geesoodka ah lagu xidho saddexda xariiq ee korontada, mana u baahna xariiqda afraad ee dhexdhexaadka ah, sidaa darteed korontada nidaamka saddexda-geesoodka ah ayaa la isticmaali karaa. Culayska korontada ee nalalka waa laambad koronto, danabkeeda la qiimeeyay waa danab wejiga ah, hal dhammaad waa in lagu xidhaa xariiq wejiga ah, hal dhammaadna waa in lagu xidhaa xariiqda dhexdhexaadka ah, markaa waxaad hubin kartaa in danab kasta oo marxalad ah uusan is saamaynayn, markaa waa in la isticmaalaa nidaamka saddex-geesoodka ah ee afar-geesoodka ah, laakiin si adag ayaa loo mamnuucay in la isticmaalo hal weji oo iftiin dhulka ah.
Waa maxay xuduudaha ugu muhiimsan ee transistor-ka?
(1) qodobka kor u qaadista (β), waa in la cabbiro awoodda kor u qaadista transistor-ka;
(2) hadda oo ah heerka dheregta (Icbo), taasoo muujinaysa tayada isgoyska transistor-ka;
(3) Hirarka gelinta (Iceo), oo muujinaya waxqabadka saddex-geesoodka ah.
10. Waa maxay jawaab celinta transistor-ka? Waa maxay noocyada jawaab celinta?
Qalab-sameeyaha transistor-ka, qayb ka mid ah danabka ama hadda ku jira wax soo saarka ayaa dib loogu celiyaa gelinta iyadoo la adeegsanayo hab loo yaqaan jawaab celin.
Waxaa jira laba nooc oo jawaab celin ah: ka dib marka la soo bandhigo jawaab celinta, qodobka kordhinta ee kororka cod-bixiyaha waxaa loo yaqaan jawaab celin togan, iyo hoos u dhaca qodobka kordhinta waxaa loo yaqaan jawaab celin taban.
11. Waa maxay wareegyada kala duwan iyo wareegyada isku dhafan?
Iyada oo la adeegsanayo mabda'a ah in danabka u dhexeeya labada daraf ee kaabsootarka aan la beddeli karin, wareegga beddeli kara hirarka leydiga ah una beddeli kara hirar garaaca fiiqan waxaa loo yaqaan wareegga kala duwan, wareegga beddeli kara hirarka leydiga ah una beddeli kara hirarka sawtooth waxaa loo yaqaan wareegga isku dhafan.
12. Waa maxay doorka wareegga shaandhada?
Hagayaasha waxay u beddelaan hadda beddelkeeda koronto toos ah, laakiin qaabka hirarka ka dib sixitaanka waxaa ku jira xaddi badan oo koronto LEH. Hadda tooska ah ee noocaas ah waxaa loo isticmaali karaa oo keliya qalabka leh shuruudaha awoodda yar. Qalabka qaar, sida qalabka elektaroonigga ah iyo wareegyada xakamaynta otomaatiga ah, waxay u baahan yihiin in qaybta garaaca ee korontada DC ay aad u yar tahay. Sidaa darteed, si loo hagaajiyo tayada danabka hagaajiyaha iyo loo hagaajiyo qaabka hirarka danabka ee wareegga hagaajiyaha, wareegga shaandhada ayaa badanaa la rakibaa si loo shaandheeyo qaybta AC.
13. Sidee loo isticmaalaa hagaajiyaha silikoon ee la xakameeyo?
Wareegga hagaajiyaha, SCR-ka waqtiga ka hooseeya danabka hore, wuxuu beddelaa waqtiga gelinta garaaca garaaca kicinta, taas oo ah, inuu beddelo cabbirka Xagasha xakamaynta, culaysku wuxuu heli karaa qiimayaal kala duwan oo danabka DC ah, sidaas darteedna wuxuu xakameynayaa cabbirka danabka soo baxaya.