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</o:shapelayout></xml><![endif]--></head><body bgcolor=white lang=EN-US link=blue vlink=purple><div class=WordSection1><p class=MsoNormal><span style='font-size:11.0pt;font-family:"Calibri","sans-serif";color:#1F497D'>Good Morning Wrenches,<o:p></o:p></span></p><p class=MsoNormal><span style='font-size:11.0pt;font-family:"Calibri","sans-serif";color:#1F497D'>I’m wondering if anyone has an advice on preferred methods and component/panel recommendations for paralleling multiple inverters. The proposed system will utilize 4 SMA6000 inverters (100 amps) and will be a ground mounted system with inverters located outdoors in the cold frigid temperatures of Vermont in a farmer’s field so the panel where we complete the parallel connections needs to be outdoor rated (although it will be sheltered from the worst of the elements). It will be a standalone system with a dedicated utility power drop/meter for the system. My understanding of using a load center in this applications is that the 120% rule will apply as it does in a typical installation per NEC690.64(B)(2)with the bus amp rating for the load center based upon the inverter feed side as well as the over current device on the utility side. <o:p></o:p></span></p><p class=MsoNormal><span style='font-size:11.0pt;font-family:"Calibri","sans-serif";color:#1F497D'>Any input regarding preferred panels and configuration is appreciated.<o:p></o:p></span></p><p class=MsoNormal><span style='font-size:11.0pt;font-family:"Calibri","sans-serif";color:#1F497D'>Thanks<o:p></o:p></span></p><p class=MsoNormal><span style='font-size:11.0pt;font-family:"Calibri","sans-serif";color:#1F497D'>Rich <o:p></o:p></span></p><div><p class=MsoNormal><o:p> </o:p></p></div></div></body></html>