Details

Single crystal components: 132 pieces
Output power: 635-670W
Maximum efficiency: 21.6%
Power tolerance: 0~+5W
One sided backboard, two sided glass

670W ultra high power, 21.6% module efficiency
The Supreme series is based on the 210mm large size silicon wafer, PERC single crystal battery, using an innovative density version design, power can reach 670W, efficiency up to 21.6%. The excellent temperature coefficient and low irradiation performance of the Supreme series improve the energy generation of the components, which is large and extraordinary. Instead of simply stacking power, the efficiency of the components is improved simultaneously.

Low voltage, high series power, single series power increased by 34%
In order to improve system efficiency and reduce BOS as the permanent goal of component design, the R&D team adopts the design idea of low voltage and high series power. Take the 670W supreme component as an example. Under typical conditions, 28 components can be installed per string. Compared with other brand products, the single series power is increased by about 34%, which can reduce the consumption of bracket by 15% and the basic use of bracket by 17%. At the same time, it can save 11% cable consumption and 7% construction cost. BOS decreases by 0.08-0.09 yuan and LCOE decreases by about 1.2%, which creates an innovative technological breakthrough and promotes the photovoltaic industry into the 600W+ era.

Supreme Component System integration solution
The Supreme series components are compatible with the market mainstream inverter and bracket systems. TRW tracking support solution, based on TRW Supreme series components, with customized TRW tracking support, the new system design solution to ensure the safety and reliability of the system, in order to bring the performance of 210 components to the extreme. In addition, for the special battery structure of the 210 module, Trina Intelligent Allocation research and development team has developed adaptive intelligent tracking algorithm, which brings an additional 3%-8% power generation gain compared to the traditional astronomical algorithm.
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