Our history started with the development of amorphous silicon solar cells by SANYO (merged into Panasonic in 2012) in 1975. Since then, we have achieved high quality and reliability levels through long experience and continuous improvement, backed by our quality figures. Our modules are designed to last for decades. Our constant efforts in research and development contributed to the production and commercialization of many innovative products.
» In 2014, Panasonic achieved world's highest cell conversion efficiency in R&D level. (>100cm²)
» In 2014, Panasonic achieved 1 billion solar cells in accumulative production.
The heart of each Panasonic HIT solar panel is our solar cell. In 1990, scientist at SANYO started developing the
heterojunction technology.
This is an improvement on the classic monocrystalline cell, using different materials than crystalline wafer in the p-n junction.
This invention addresses the key point in a solar technology: reduction of losses at the boundaries of the cell. With this improvement, our heterojunction cells have been continuously breaking records of efficiency and performance at high temperature ever since. In March 2016, Panasonic set the record for efficiency of a solar panel in commercial size with a panel of 275W of aperture area of 1.1562 m2.
Polycrystalline silicon, also called polysilicon or poly-Si, is a high purity, polycrystalline form of silicon, used as a raw material by the solar photovoltaic and electronics industry.
Polysilicon is produced from metallurgical grade silicon by a chemical purification process, called Siemens process. This process involves distillation of volatile silicon compounds, and their decomposition into silicon at high temperatures. An emerging, alternative process of refinement uses a fluidized bed reactor. The photovoltaic industry also produces upgraded metallurgical-grade silicon (UMG-Si)
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Scientists and engineers are constantly innovating to provide the most bleeding-edge technology to solar PV systems to boost energy generation and speed up end users' return on investment. One of the most recent introductions to increase solar panel efficiency has been the development of a new industrial process of advanced passivated emitter and rear cell (PERC) technology.
The introduction of PERC technology has increased solar efficiency, which translates to faster ROI and more savings for end users.
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With over 20 years of expertise in power technologies, Jetsor Power Systems delivers energy-efficient EV (Electric Vehicle) charging solutions including AC EV charger and DC EV charger. EV chargers offer high-performance power efficiency up to 94%, functions for system integration and our principal company has obtained global safety certifications such as UL, IEC, CHAdeMO, CQC and CNS. The comprehensive EV charging solutions are able to fulfill the needs for various applications such as parking, workplace, fleet, residential buildings, etc. Jetsor Power Systems has successfully completed numerous installations for several applications and segments in India.
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