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43 results found
  • White Papers
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    • White Papers
    UL 3741 Cost Comparison Whitepaper: DC-Optimized vs Non-DC-Optimized Solutions
    UL 3741 Cost Comparison Whitepaper: DC-Optimized vs Non-DC-Optimized Solutions W hitepaper National Electric Code (NEC) History Evolution of Rapid Shutdown Requirements An Intro to UL 3741 Non-DC-Optimized Solution: Racking PVHCS at 1000V Max DC-Optimized Solution: SolarEdge PVHCS at 125V Max Balance of System (BoS) BoS Costs Estimated AC BoS Costs Increased for Longer AC Cable Runs PV Array Wire…
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    29 Feb 2024
    • White Papers
    BoS &EPC Comparison: DC-Optimized Solution Vs. Traditional String Solution
    Balance of System and Energy Production Comparison: DC-Optimized Solution Vs. Traditional String Solution Technical Paper Table of Contents Introduction…………………………………………………………………………………...........................................…01 Higher BoS Savings Over Traditional String Inverters……………………………………………………...02 Increased Energy Yield & Revenue…………………………………………………………………………………..04 Comparison…
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    01 Apr 2024
    • White Papers
    Prevent PV System Crosstalk and Maximize Site Safety with the SolarEdge DC-Optimized Solution
    W hite Paper Prevent PV System Crosstalk and Maximize Site Safety with the SolarEdge DC-optimized Solution Background Electromagnetic interference, known as crosstalk, may occur in commercial rooftop PV installations using Power Line Communications (PLC) for inverter data transmissions. When crosstalk occurs, it can have adverse affects on the PV system’s Rapid Shutdown (RSD) functionality,…
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    09 Apr 2024
    • White Papers
    太陽能拓撲架構在遮蔭條件下的性能
    太陽能拓撲架構在遮蔭條件下的性能 白 皮 書「在各項測試中,SolarEdge系統產出的發電量皆超越串列型變流 器。SolarEdge系統就遮蔭造成的發電損失,每年平均回收24.8%的 發電,反觀微型變流器系統則只有23.2%。」 says Matt Donovan, PV Evolution Labs. 總結 在一項由PV Evolutions Lab(PVEL)進行的National Renewable Energy Laboratory(NREL)標準化遮蔭研究 中,SolarEdge 系統的表現優於SMA變流器及Enphase微型變流器系統。這項研究模擬了一般住宅用屋頂型太陽能(PV)系 統處於部分遮蔭的各種情境,以及評估不同功率轉換的拓撲架構對系統性能的影響。 在有輕度、中度及重度遮蔭的情況下,SolarEdge系統的發電量比SMA串列變流器系統分別高1.9%、5.0%及8.4…
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    01 Dec 2022
    • White Papers
    太陽電池システムにおける安全性リスクと解決策
    ホ ワ イ ト ペ ー パ ー 太陽電池システムにおける 安全性リスクと解決策 本文章では、消防士に対する太陽電池システムの安全性に関する問題について議論し、ソーラー エッジシステムがどのようにこの安全性に関する問題を軽減するかについて概説します。 消火活動 リスク ― 感電死 : 火災現場にかけつけた消防士やその他の最初の対応者は、安全措置として、燃えている建物に 通じる電源を切るのが普通 です。しかし、建物に太陽電池が設置されている場合、システムが電 力系統に接続されなくても太陽電池モジュール は電圧を発生し続けています。 電気システムで は、安全特別低電圧(SELV)は120V以下の安全な電圧のことを指します。 この 条 件 下 で は 、感 電 死 の リ ス ク は 低 く な り ま す 。 し か し 、3 ~ 4 枚 の接 続 モジ ュ ールが あ る だ け で 、1…
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    01 Dec 2022
    • White Papers
    Sách trắng_Những rủi ro an toàn và giải pháp trong Hệ thốngPV cho Châu Âu và Châu Á Thái Bình Dương
    Sách trắng Những rủi ro an toàn và giải pháp trong Hệ thống PV cho Châu Âu và Châu Á Thái Bình Dương Mục đích của tài liệu này là để thảo luận về các vấn đề an toàn của hệ thống điện năng lượng mặt trời đối với nhân viên cứu hỏa, và phác thảo cách thức mà hệ thống SolarEdge có thể giảm thiểu những vấn đề an toàn này. Chức năng tắt trong biến tần truyền thống chỉ ngắt dòng điện, và điện áp vẫn cao…
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    01 Dec 2022

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