I-NEP Micro Inverter 600w BDM 600 Igridi ebotshelelwe kwiSolar Inverter eneWifi

Inkcazelo emfutshane:

I-NEP i-microinverters iguqula i-current eveliswa yimodyuli ye-photovoltaic (DC) i-alternative current (AC) ukuyihambisa kwisistim sombane wombane.Inkxaso ukuya kumacandelo amabini e-450W;I-Global Certification C-ETL-us, SAA, TUV, VDE-AR-N 4105, VDE 0126, G83 / 2, CEI 021, IEC61727, EN50438, njl.;Ufakelo lwe-plug-and-play lulula ngeentambo ze-AC ezakhelwe ngaphakathi kunye nezihlanganisi.
Uphawu: TORCHN
Inombolo yomba: BDM-600
Izibuko zokuThumela: Izibuko laseShanghai okanye naliphi na elinye izibuko eTshayina


Iinkcukacha zeMveliso

Iithegi zeMveliso

Ingcaciso yeMveliso

I-BDM 600 ye-solar microinverter yenzelwe ukuxhasa iipaneli ezimbini zamandla aphezulu angama-450W.Ukongezelela, iquka umhlaba odibeneyo (IG) osusa imfuno yomqhubi we-grounding (GEC) kwicala le-DC.Uyilo olukhethekileyo lwemodeli ye-BDM 600, ngaphezu kokusebenza, iyingqayizivele kunye neyokuqala, ifumaneka kuphela nge-NEP.

I-Inverter yeSola ebotshelelwe ngeWifi

Imilinganiselo: 10.91" * 5.20" * 1.97"
Ubunzima: 6.4 Ibs

Umzekelo BDM 600
Igalelo DC  
Ubukhulu bePV Power obucetyiswayo (Wp) 450 x 2
eCetyisiweyo iMax DC Open Circuit Voltage (Vdc) 60
Ungeniso lweDC lwangoku (Adc) 14 x 2
MPPT Tracking Ukuchaneka >99.5%
Uluhlu lokuKhangela lweMPPT (Vdc) 22-55
I-Isc PV (ubuninzi obupheleleyo) (Adc) 18 x 2
Ubuninzi be-Inverter Backfeed yangoku ukuya kwiArray(Adc) 0
Imveliso ye-AC  
Incopho yamandla emveliso ye-AC (Wp) 550
Ulinganiso lwamandla emveliso ye-AC (Wp) 500
IVoltage yeGridi yaMandla eSibizo (Vac) 240/208/230
IVoltage yeGridi yaMandla evumelekileyo (Vac) 211V-264* / 183V-229* / uqwalaselo *
Ubuninzi begridi yaMandla evumelekileyo (Hz) 59.3 a 60.5* / uqwalaselo*
THD <3% (ngamandla alinganisiweyo)
Power Factor (cos phi, fixed) >0.99 (ngamandla alinganisiweyo)
Isiphumo esikalisiweyo sangoku (Aac) 2 / 2.40 / 2.17
Okwangoku (inrush)(Incopho kunye nobude bexesha) 24A, 15us
Ukuphindaphinda ngokuQelekileyo (Hz) 60/50
Esona siPhumo siphezulu sangoku (Aac) 4.4 Incopho
Esona siphumo siphezulu soKhuseleko lwaNgaphandle (Aac) 10
Elona nani liphezulu leeYunithi kwiSebe ngalinye (20A)(Zonke izinto zohlengahlengiso zeNEC ziqwalaselwe) 7/6/7
Ukusebenza kakuhle kweSystem  
I-Weighted Avareged Efficiency (CEC) 95.50%
Ilahleko yeTare yasebusuku (Wp) 0.11
Imisebenzi yokhuseleko  
Ngaphezulu/Ngaphantsi koKhuseleko loMbane Ewe
Ngaphezulu/Ngaphantsi koKhuseleko lweFrequency Ewe
Ukhuseleko lwe-Anti-Islanding Ewe
Ngaphezulu koKhuseleko lwangoku Ewe
Reverse DC Polarity Protection Ewe
uKhuseleko lomthwalo ogqithisileyo Ewe
Isidanga soKhuselo NEMA-6 / IP-66 / IP-67
Ubushushu obugciniwe -40°F ukuya +149°F (-40°C ukuya +65°C)
Ubushushu bokusebenza -40°F ukuya +185°F (-40°C ukuya +85°C)
Bonisa UKUKHANYA kwe-LED
Unxibelelwano Intambo yoMbane
Ubungakanani (WHD) 0.91" * 5.20" * 1.97"
Ubunzima 6.4 Ibs
ICandelo lokusiNgqongileyo Ngaphakathi nangaphandle
Indawo emanzi Ifanelekile
Isidanga songcoliseko PD 3
Uluhlu lwe-Overvoltage II(PV), III (AC MAINS)
Ukuthotyelwa koKhuseleko lweMveliso UL 1741
CSA C22.2
No. 107.1
I-IEC/EN 62109-1
IEC/EN 62109-2
UL 1741
CSA C22.2
No. 107.1
I-IEC/EN 62109-1
IEC/EN 62109-2
Ukuthotyelwa kweKhowudi yegridi* (Jonga kwileyibhile yokuthotyelwa kwekhowudi yegridi eneenkcukacha) IEEE 1547
I-VDE-AR-N 4105*
VDE V 0126-1-1/A1
G83/2, CEI 021
AS 4777.2 & AS
4777.3, EN50438
Isiguquli seSola ngeWifi02
Igridi ebotshelelwe kwiSolar Inverter ngeWifi

Inkonzo yokuhlola evela kumntu wesithathu ayinyanzelekanga

System Architechture

I-Solar Inverter01
I-Solar Inverter02

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Izinto ezilungileyo zeMicroinverters

1. Iipaneli ze-PV ze-micro-inverter zinamandla amakhulu okumelana nezithunzi zendawo, ngoko ke ipaneli nganye ye-PV inokusebenza kufuphi nendawo ephezulu yamandla.
2. I-inverter ihlanganiswe kunye neemodyuli ze-PV, ukwandiswa kwenkqubo kukulungele kwaye kulula, kwaye i-modularization, i-hot-swapping kunye ne-plug-and-play yoyilo nayo inokufezekiswa.
3. I-Photovoltaic micro-inverters inokufakwa kwii-angles ezahlukeneyo kunye neendlela.Lufakelo olusasazwayo olulungelelaniswa ngokufanelekileyo kwaye lunokusebenzisa ngokupheleleyo indawo.
4. Inokunyusa ukuthembeka kwenkqubo ukusuka kwiminyaka emi-5 ukuya kwiminyaka engama-20.Ukuthembeka okuphezulu kwenkqubo ikakhulu ngokulungiselela ukutshatyalaliswa kobushushu ukususa i-fan, kunye nephaneli ye-photovoltaic.umonakalo awuchaphazeli ezinye iintambo.
5. Ulwazi olufana namandla okuphuma kweepaneli ze-photovoltaic ziqokelelwa ngebhasi ye-AC yegridi yamandla.Ukusebenzisa unxibelelwano lomthwali wentambo yombane kule nkqubo kuya kuzuzisa inkqubo yonke.Ukujongwa kwenkqubo kukulungele kakhulu, kwaye kwangaxeshanye, kunokugcina imigca yonxibelelwano, ayifuni imigca eyongezelelweyo yonxibelelwano, kwaye ayiyi kubangela nayiphi na imithwalo kuxhulumaniso lwenkqubo.Ulwakhiwo lwenziwe lula kakhulu.
6. Iipaneli ze-photovoltaic kwinkqubo ye-photovoltaic yendabuko iya kuchaphazela ukusebenza kakuhle ngenxa ye-angle yokufakela kunye nomthunzi oyingxenye, kwaye kuya kubakho iziphene ezifana nokungahambi kakuhle kwamandla.
I-inverter iyakwazi ukulungelelanisa utshintsho oluqhubekayo lwendalo yangaphandle, enokuphepha ezi ngxaki.
7. Ukuphumelela kokuguqulwa kwepaneli ye-photovoltaic kwi-photovoltaic micro-inverter ayiyi kuchaphazeleka ngumthunzi wepaneli ye-photovoltaic enye okanye umonakalo we-micro-inverter enye,impembelelo, enokuthi iphucule ukuguqulwa kwe-photoelectric ukusebenza kakuhle kwenkqubo yonke.


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