![]() Sony brings hybridization to compact fuel cells |
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May 8, 2008
Sony Corp delivered a lecture on a fuel-cell system for use in mobile devices at Small Fuel Cells 2008. The lecture was titled “Micro Fuel Cell System for Mobile Consumer Electronic Devices.”
The fuel-cell unit is composed of six cells and uses methanol with a purity of 99%. In addition to the power management of the fuel cell and the Li-polymer rechargeable battery, the control circuit controls the micropump and protects the Li-polymer rechargeable battery. As a result of hybridization with the Li-polymer rechargeable battery, the latest fuel-cell system reportedly enables the maximum output of 3 W or higher, although the fuel-cell unit by itself can only output about 1 W. The fuel-cell unit generates power at a constant output in a high efficiency range. And the load change in the device is handled by an output from the Li-polymer rechargeable battery. Thus, when the electric load is light, the battery is charged by the fuel-cell unit. And when the load is heavy, the power is supplied from both the fuel cell unit and the Li-polymer rechargeable battery.
The high energy efficiency results from a high-density, low-crossover membrane electrode assembly (MEA) using a fullerene-based electrolyte film and a platinum-based new catalyst material. Sony has promoted the development of a fullerene-based electrolyte film for years. Moreover, the energy efficiency was improved by the regulator, which can properly control the amount of methanol flow, the company says. Regarding the durability, Sony suggested that the output of the latest system decreased by only 5% after the continuous operation of 900 hours. According to the company, the control circuit has functions unnecessary for the actual product, such as a data collection function, because the latest fuel cell system is a prototype used for R&D. Therefore, the actual system may be much smaller, the company said. Sony reveals fuel cell at Small Fuel Cells 2008: http://techon.nikkeibp.co.jp/english/NEWS_EN/20080502/151303/ SOURCE: Tech-On |
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