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200 Watt Mono Solar Panel - Half Cut HPBC - 170 x 59 cm

200 Watt Mono Solar Panel - Half Cut HPBC - 170 x 59 cm

SKU:LS-200-MP-HC-HPBC

Regular price $249.99 NZD
Regular price Sale price $249.99 NZD
Sale Sold out

Warranty & Returns

For Tiny homes, batches and houses: 10 years for product defects in materials and workmanship. 25 years for 80% of warranted minimum power. and 5 Year Marine & vehicle warranty.

We have a 7 day change of mind return policy, subject to a restocking fee.

200W monocrystalline solar panel, perfect for caravans, motorhomes, boats and off-grid solar applications. Sleek design, featuring a black frame and state of the art HPBC (Hybrid Passivated Back Contact) solar technology, including monocrystalline half-cells.  Manufactured according to International Quality standard (ISO9001).  Includes 90cm cable ending in MC4 Connector Plugs. 

Max-Power (Pm) 200W
Dimensions 1700mm x 585mm x 35mm
Max-Power Voltage (Vm) 29.07v
Max-Power Current (Im) 6.88A
Short-Circuit Current (Isc) 7.65A
Open-Circuit Voltage (Voc) 34.18V
Max-System Voltage 1000V (IEC) VDC
Weight 9.9 kg


Certifications and standards: include IEC61215, IEC61730 and Class C fire rating conformity to CE.  Includes a waterproof IP67 Junction box and the strong aluminium frame can bear snow loads up to 5400Pa and wind loads of up to 2400Pa.  Features high-transmission, low iron, tempered glass, 3.2mm thick. 

  

    Monocrystalline

    At LUX Solar we only source monocrystalline panels as they offer the highest efficiency. Monocrystalline panels are manufactured from a single rod of silicon thus the crystal structure inside the silicon is uniform, with very few impurities. Polycrystalline panels on the other hand are made up of smaller crystal structures that introduce grain boundaries in each solar cell. This causes inefficiencies in the conduction of electrons due to defects associated with the crystal boundary.

    HPBC

    HPBC (Hybrid Passivated Back Contact) solar cells, are the latest solar technology that introduces unobstructed front shading by metal contacts. This pioneering approach optimizes photon collection, resulting in enhanced conversion efficiency. The HPBC cell sets a new industry standard, significantly enhancing light absorption and photovoltaic conversion capability, resulting in substantially improved module power output.

    The result is panels capable of generating more energy under higher temperatures and lower light. Some studies have shown that that HPBC cells can produce output up to 10% higher under the same conditions as PERC products.

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