I-Inverter yokuqondisa amandla yonke-kuhlanganiswa SOL IA-D3 Series, I-AC Yombili Yokuphuma, Ikhethwe Ukusebenza Nama-Battery E-Lithium Ne-Lead-Acid Kwezinkambo Zokugcina Amadla We-Solar Ezindwendweni Nokusebenza Ngokwesikhundla Nokusebenza Ngokwesifunda.
| Imodeli |
SOL IA6000-D3
|
SOL IA7000-D3
|
|
Ukukhula okuphezulu kwe-PV (kubhodi ye-STC)
|
8000W
|
8000W
|
| Umphumela Wokufakwa Kwe-DC Okuphezulu |
500V
|
500V |
| Umphumela Wokuvula | 80V | 80V |
|
MPPT Voltage Range
|
60V–450V | 60V–450V |
| Inombolo yamaphepha e-MPP | 2 | 2 |
| Inombolo yamaphepha e-PV ngasemphakathini we-MPP | 2 | 2 |
| Umkhawulo wokufaka omkhulu ngasemphakathini we-MPP | 22A | 22A |
|
Idatha yokuphuma (AC)
|
||
|
I-AC nominal power
|
6000W
|
7000W |
|
Umkhawulo wokuphuma wokugcina we-AC omkhulu
|
6000VA | 7000VA |
| Umvuzo wokuphuma we-AC owodwa |
230V
|
230V |
| Umfrequency wokugcina we-AC | 50/60Hz | 50/60Hz |
| Ukuhlanganisa Kwamandla (Isimo Lokusebenza Kwe-Line) | 95.5% | 95.5% |
| Amaphesenti we-Outgoing | 26.1A | 30.4A |
|
Imbonakalo Yebhatari (DC)
|
||
| Umthetho Wesiseko Otholakeleyo |
48V
|
48V |
| Umkhondo Oyingakanani Wokufaka Nokukhupha | 80A | 80A |
| Ukuhlanza (Kwesikhathi esingakanani) | 96.5% | 96.5% |
| Uhlobo Lobhatari | Lithium/Lead-acid | Lithium/Lead-acid |
| Amandla Okubuyisela (AC) | ||
|
Isimo esemthethweni se-AC sokuphuma kwezimali
|
6000W | 7000W |
| Isimo esemthethweni se-AC sokuphuma kwezivinini |
230V
|
230V |
| Isimo esemthethweni se-AC sokuphuma kwezifreqensi | 50/60Hz | 50/60Hz |
| Isikhathi Somsweli | 10ms ngokwesibonelo, RCD 20ms ukuphakama@ okugcina 30ms@ okubhalwe ngokuhambisana | 10ms ngokwesibonelo, RCD 20ms ukuphakama@ okugcina 30ms@ okubhalwe ngokuhambisana |
| Imininingwane Ejinje | ||
|
Amadiminsheni (Ububanzi/Uphezulu/Ugugu)
|
422*460*125mm
|
422*460*125mm |
| Isisindo |
13.5kg
|
13.8kg |
| Umoya | 5%–95% akukhathalwa ekubhalweni | 5%–95% akukhathalwa ekubhalweni |
| Ukuphakamisa | <2000m | <2000m |
| Ubungako bokuprotekela | Izinga lokushisa | Izinga lokushisa |
| Ukuxhumana | 4G/WIFI (okungasekho) | 4G/WIFI (okungasekho) |


1. Amathrakha we-MPPT amabili awawona, ukuqondisa kakhulu kwe-PV kwe-500VDC
Amathrakha amabili we-MPPT awawona ayisikhiyela amapaneli we-solar angena ngemithombo eyodwa, ukuqondisa kakhulu kwe-PV kwe-open circuit voltage kufika ku-500VDC, indawo yokuqondisa kakhulu iphakathi kwe-60~450VDC, isebenza ngokuphelele ukuthatha amandla we-solar ekhazimbulu.
2. Isimo Sesikhundla Somthombo: Ukusebenza Ngokwesifunda Ukukhula Kwamandla + Ukusebenza Ngokwesikhundla Ukususa
Yenza ukusetshenziswa kwezinye futhi ukubonakaliswa kwezinye kwezikhathi zokuxhumana ne-grid; sebenza ngokwesibonelo njengesikhala sokusebenzisa amandla ngaphandle kwe-grid ngemva kokukhupha kwamandla, kusukile ngokusebenzisa i-CT yamadloti yokugcina ukubuyiselwa kwamandla.
3. Ukwenza Okuningi Kwamanqamuzo Okufanayo Kusukela Ku-9 Amasimu Ukwenza Isikhala Esikhulu Sokusebenzisa Amadlozi
Kusindisani ukuxhumana ngokufanayo kwe-CAN bus, amandla okufanayo okuphezulu kuka-9 ayasebenza ngokuhambisana ukwenza isikhala esikhulu, sifanele kwezindlu ezikhulu, izindlu zokushaya amadlozi, futhi izilwanyana zezindawo zokusebenzisa amandla okuqondile zokusebenzisa amandla okuqondile.
4. Izinyathelo Zokutheka Kwe-AC Ezimbili Futhi Ukutheka Okuphezulu Ngokwezinye (ATS)
Izigaba ezimbili zezinyathelo zokutheka kwe-AC ukuqondisa izinto ezingcono noma eziningi zokusebenzisa amandla; ukutheka okuphezulu phakathi kwe-PV, ibhatthari, i-grid, ne-generator ngemva kwe-20ms, ukusebenzisa amandla ngokuphezulu njengesikhala sokusebenzisa amandla ngokuphezulu (UPS).
5. Ukufanele Kwezibhatthari Ezimbili Futhi Ukuthenga Okuphezulu Kwamandla
Kufanele kakhulu nezibhatthari ze-lithium iron phosphate zesi-48V nasezibhatthari zesi-lead-acid; ukuthenga okuphezulu kwamandla okuqondile kusiza ekuthengeni kwamandla, kusindisani ukuxhumana nokubonakalisa kwe-BMS okuphezulu kwezibhatthari.
6. Ukukhetha Ukubona Ngokwezinye Ngokwe-WIFI Nokubona Ngokwe-APP Yokubona Ngokwezinye
I-moduli ye-WIFI liyisikhundla esiyakwenzeka, abasebenzi bafunda ngokushesha ukugenerwa kwe-PV, i-SOC yebhatthiri, umthelela wokusebenza nokudatha yokuguqula ngokushesha ngefonini yabo, okunconywa kakhulu ukusebenzisa isistimu ngendlela eyasemaphandleni.
7. Ukulinda Okuphelele Okuqondile Nokusebenza Kwezinhloso Zonke
Kufakiwe ngokuphelele ukulinda okuphelele kwe-overvoltage, ukulinda okuphelele kwe-undervoltage, ukulinda okuphelele kwe-overload, ukulinda okuphelele kwe-short circuit, ukulinda okuphelele kwe-overheating; ukusebenza okuphelele kwe-10℃~60℃, ukuzameka kwezinhloso zezwe elizulu, ezinye nezinhloso zezwe elibomvu.

1. Isistimu Yesolar Yekhaya Yokuthanda
I-Grid-connected peak shaving + ukubuyisa amandla ngemva kokukhuphuka kwamandla kwevillas, amahashi ase-suburban, amabiliyoni e-urban residential, ukuncima izibhalo zezinsuku zokusebenza zokusebenza
2. Isistimu Yekhaya Ekhona Ngaphandle Kwesifundo (Off-Grid) Kwezindlu Zokuthanda Ezimboni Nezindlu Zokuthanda Ezimboni
Isilungelo sokusala amandla esolar esingasendaweni yokwenzela amahashi angakwazi ukuthola i-grid yamandla engekho, isikhiwo esifana ne-generator njengokubuyisa ngemva kokukhuphuka kwamandla
3. Ukugcina Imandla Kwesifazende Nasezindlu Zokulima
Ukuthabatha amandla okwenza isikhathi esihlukene kwezinkambo zokuhlanza amanzi, izinkambo zokuzalisa, ukubeka amandla kwezindlu zokulima nokusebenza kwezinto zokuzilimela zokuzilimela
4. Izindlu Zokusebenza Nezindawo Zokusebenza Ezincane
I-peak shaving ukuncima izindlela zokusebenza zokusebenza zokusebenza, amandla okubuyisa ukuvikela ukukhuphuka kwamandla kwe-grid
5. Isithuthi Samandla Sasekupheleni Nasezindawo Ezingasenzi
Isisindo sesithunzi sokugcina umsebenzi wokusebenzisa isithunzi esingakwazi ukuzinikela ngokuphelele kwezilandi, amakhaya okufishela nezindawo zokuhlala ephakeme emaphandleni okukhanya
6. Umthelela Wokubaluleka Okungahlanganisiweyo Wekhaya Nokusebenza
Ukuguqula okuzenzakalelayo kwesikhathi sokuhlela umkhulu okanye ukungafani kwe-grid, ukuvikela izinkambo ezingcono
7. Iziprojekthi Zokugcina Amandla Okukhulu
izinhlanganiso ezine zokuphinda kabili zokuphinda kabili kusukela ku-9 ku-63kW, ukuthuthukisa izisindo zesithunzi sezinkambo zokusebenzisa isithunzi esingaphelele
Umbuzo 1: Ngizokuthola izampuli ukuzama?
Impendulo: Yebo, kufuneka ubuyise izampuli ukuzama ubukhulu nokuzama kwezomnotho.
Umbuzo 2: Niyatholakala kwi-OEM/ODM?
Impendulo: Yebo, siyatholakala kwi-OEM/ODM ngokuvumela kwakho.
Umbuzo 3: I-imeyili yokuhambisa yethu iphi?
Impendulo: Kuma-prodhayi ethile ezingaphakathi kwezindawo, sizokuphiya imeyili yokuhambisa yamiyo yezinsuku ezi-5–10 zokusebenza emva kokubhalwa kwakho. Kuma-prodhayi amaningi noma kuma-prodhayi okuhlelwa ngokwakho kwi-OEM/ODM, izikhathi zokuhambisa ziyadeterminiwa ngokubhekisele kwezinkampani zokusebenza nezidingo zokuhlelwa. Isitafu sakuthu sokuthengisa sizokuphiya isikhathi eside emva kokubhekisa kwezidingo zakho.
IQ4: Iyiphi indlela yokupakisha okusebenzayo?
A: Sibona isikrini esithile sokupakisha esinesikhombisa esinezinkampani ezimibili, futhi uma unembono eyodwa ngokupakisha, sithola usizo lwesikhombisa esihlanganisiwe.
IQ5: Iziphi izindlela zokuhlawula?
A: Siqhubeka ngokusebenzisa i-T/T, i-L/C, i-WEST UNION, i-ALI TRADE ASSURANCE, imali yomhlabathi.
Umbuzo 6: Isikhathi sesibonelo sakho sithi?
A: Sisiza ngokusibonela kusukela emva kokufika kweminyaka eyodwa, futhi sisenza umbuso wokuhlela izindlela zokusebenza ngokuphelele.
Umbuzo 7: Indlela yokwenza ukulawula ubuquality kwezindawo zakho zokuproducwa ziyini?
A: Ubuciko bungumkhakha wethu wezindawo. Sisebenzisa isigaba sokulawula ubuciko esikhethekileyo esilawula konke kuzo zizindawo zokuproducwa, kusukela kusukela kubukhona kwezinto ezihlukene kuze kufika ekugcineni. Njengoba isikhathi sokuphatha isikhathi, iprodukthi ngine isifunda esingama-7 esikhulu sokulawula ubuciko kabusha ngaphambi kokuthunyelwa, okuhlinzekile ukuthi kuyasebenza ngokuphelele ngezindlela zezwe noma kuzo zizindlela zokuthanda kwezinkampani.
Umbuzo 8: Ngani ngizokwamukela inkampani yakho?
A: Ngokusebenzisa izikhathi eziningi zeminyaka emi-20 yokuthuthukisa i-inverters, u-Minvon wabuyisela isistimu esikhulu sokuphatha ubunzima obuhle okubhalwe ngokufanele kwi-ISO 9001, ISO 14001, kanye ne-ISO 45001. Izinto zethu zihlala zinamandla we-CE, CCC, kanye ne-RoHS, ekuvumelana nokulinganisa kwezinhlelo zokulawula zasezweni. Singakuphinda amaphuzu okuzilungiselela kwezinye izindaba kanye nezincwadi zokuhlola kwesifundazwe uma kusolwa ukuthi sibone ubunzima bethu bokubonisa ukuthi sithembekile kanye nokuthembeka.






Isiri sika MINVON SOL IA-D3 sokuphepha isikhathi esifanayo sokuzisa amandla nesolasi sisebenza ngamandla angu-6kW ne-7kW nokuvimba kwamandla okuqondana ne-48V DC, kuyasebenza kahle ngezinhlayiya zoka-LiFePO4 zokuvimba amandla okuqondana ne-48V nezinhlayiya zokuvimba amandla okuqondana ne-lead-acid.
Iqukwele ngemithambo yombhalo wokuphatha amasola okuqondisa kahle, kusinika ukuthi i-PV inakwazi ukubuka i-voltage yokuqala yekhodi yasekhanda yomkhosi we-500VDC futhi isikhundla sokusebenza esikhulu se-60–450VDC, okukhulu kakhulu ukuthuthukisa ubungakanani besikhundla sokusebenzisa amasola. Le mifanekiso yohlanganisi iyisikhiyana yezinyathelo zokugcina izinsiza zokusebenza nesikhundla sokuphatha amandla ngaphandle kwesikhundla sokusebenza, nangokwenza ukuthi i-CT yasendlini ikhuluma ngokuvimbela ukuthi amandla akhulula emuva kumkhosi wokusebenza wokuphatha amandla.
Ayisivumela ukuthi kubekwe amaqembu angu-9 ngokuhambisana ngokusebenzisa i-CAN communication, okukhulu kakhulu ukuthuthukisa umkhosi wokusebenza wokuphatha amandla ukuze kufikelelele izinkinga zokusebenza kwezindlu ezinkulu nezihlabathi. Amathambo amabili okuphatha amandla ngokwesibizo ayisepha izinkinga eziphambili nezinkinga ezingenakwazi ukuziphatha ngokuphambili ukuze kubhekwe ngokuphambili ukuphatha amandla, i-ATS yasendlini iyisikhiyana esihambisana ngokushesha phakathi kwezamasola, i-battery, i-grid yomkhosi wokusebenza nesigeneretha ngemuva kwe-20ms, akukho ukuphazimula kokuphatha amandla kwezinto zokusebenza zomkhakha.
Imoduli yokuxhumana ye-WIFI engenakwenzeka iyasebenza ngokusebenzisa i-APP yomobile ukubuka ngokushesha kwezindawo zokuphatha amandla, ukugcina nokusetshenziswa kwamanani. Amaphunga amaningi okulawula amandla ayisisekelo esebenza ngendlela efanelekileyo emanzini engeziweyo ephakathi kwe-10℃~60℃, yilokho okuhambisana kakhulu ngezinkambo zokusebenza kwezinkambo zokugcina amandla we-solar ezindwendweni nezinkambo ezincane.