Brighten your future with natural energy solution. Solar energy is one of the brightest and lightest ways to illuminate your industrial and residential area. This cost-effective and eco-friendly source of energy is a boon to the energy industry.
Jetsor Power System Pvt Ltd (Best Solar Installer in Delhi) is one of the well-known and most trusted solar power solution providers in Delhi. Our high-class and international quality solar panels make us the best solar power company in Delhi.
Jetsor Power System Pvt Ltd is an organization that solely concentrates on providing a sustainable and renewable source of energy. Professionally managed by a team of skilled employees, our only motto is to serve you with the best energy solution at the international quality standard.
Conservation of energy has always been an important issue worldwide. Thus we are trying to do a bit for our mother nature and serve our customers with the best renewable energy solution at affordable prices. Our team has successfully delivered many projects that have recorded exceptionally good output. We have established ourselves as providers of world-class, innovative and cost-effective products that are suitable for every scale of business and electricity requirement.
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.
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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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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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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Half-cell modules have solar cells that are cut in half, which improves the module’s performance and durability. Traditional 60- and 72-cell panels will have 120 and 144 half-cut cells, respectively. When solar cells are halved, their current is also halved, so resistive losses are lowered and the cells can produce a little more power. Smaller cells experience reduced mechanical stresses, so there is a decreased opportunity for cracking. Half-cell modules have higher output ratings and are more reliable than traditional panels.
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Half-cell modules have solar cells that are cut in half, which improves the module’s performance and durability. Traditional 60- and 72-cell panels will have 120 and 144 half-cut cells, respectively. When solar cells are halved, their current is also halved, so resistive losses are lowered and the cells can produce a little more power. Smaller cells experience reduced mechanical stresses, so there is a decreased opportunity for cracking. Half-cell modules have higher output ratings and are more reliable than traditional panels.
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