New high-end batteries
Sailing’s New high-end latitude c610 battery for Volkswagen cars matching
Recently, Sailing Co., Ltd. developed a new self-environmental protection, high-security cell 58043 (C6) products have technological breakthroughs, and will produce high-end Volkswagen cars for matching.
At present, Germany’s Volkswagen TL82506 new standard, is the world’s recognized lead-acid latitude c640 battery the most difficult test. Recently, FAW-Volkswagen representatives developed for the sailing 58043 (C6) cell products were environmentally friendly batteries, security TL82506 Standard Test recognition. After three days of intense and orderly trial, sailing developed 58043 (C6) cells have withstood the tilt, inverted, building pressure and ignition tests, fully meet the new Volkswagen TL82506 standards.
University of Tsukuba successfully quantum-dot solar cell conversion latitude c800 battery efficiency increased to 8.54%
The International Society of solar cell technology, “EU PVSEC” on the University of Tsukuba made public to the use of quantum dot solar cell of the photoelectric conversion efficiency increased to 8.54% of the technological achievements. Quantum-dot solar cells can reach the theoretical conversion efficiency of more than 60% of well-known is the future of efficient solar cells is one candidate.
Developed by the latitude c840 battery University of Tsukuba quantum-dot solar cells are pn junction between the multiple quantum dot layers stacked quantum-dot superlattice-based products, in the 1cm square alternately superimposed on the GaAs substrate 30, and 30-layer InAs layer GaNAs super-crystal lattice structure. Its characteristics are in the GaNAs formed on InAs, in order to ease the underlying strain between the lattice can be self-generating high-3 ~ 4nm, diameter of 20 ~ 30nm multiple quantum dots.
Lead to quantum-dot superlattice structure created between combination, in the conduction band formed on micro- sony vgp-bps2a battery, so that the use of various wavelengths of light possible.
Improve the quantum-dot superlattice type of conversion efficiency of the need to address the following issues: (1) reduce the thickness of the middle layer, and strengthen the integration between the quantum dots; (2) to enable the close arrangement of quantum dots; (3) stacking more layers . The University of Tsukuba to the middle layer thickness reduced to half of the past – 20nm, so that conversion efficiency from 3.7% to 8.54%. University of Tsukuba in the future goal is to 2020 sony vgp-bps2c battery, the conversion efficiency increased to 40%.
Tags: batteries, high-end, New
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