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Portable computer power sources

机译:便携式计算机电源

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摘要

The designers of any portable computer face a dilemma when choosing the power source for their product. The product can be either smaller and lighter than the competition-and possibly suffer from shorter run-time-or it may have superior run-time at the expense of added weight and volume. The balance between these options is a delicate one that impacts product acceptance and ultimately the manufacturer's revenue stream. Of course a high energy density power source represents only half of the run-time equation. The use of lower power hardware to achieve a given level of functionality can have an equally differentiating effect; and much work is currently underway to improve hardware power efficiency (Fadel, 1993). As levels of circuit integration increase emphasis upon power reduction is critical to achieve reliable operation at a reasonable temperature without some form of active cooling. These diametrically opposed design requirements, small size and light weight versus longer run-time, are set against the backdrop of a quickly changing electronics industry and a battery industry that is inherently slower to develop new products
机译:任何便携式计算机的设计人员在为其产品选择电源时都面临困境。该产品可能比竞争对手的产品更小,更轻-并可能遭受更短的运行时间-或者它可能具有更长的运行时间,但会增加重量和体积。这些选择之间的平衡是一个微妙的平衡,影响产品接受度并最终影响制造商的收入来源。当然,高能量密度的电源仅代表运行时间方程式的一半。使用较低功率的硬件来实现给定级别的功能可以产生同等的效果。目前正在进行许多工作来提高硬件的能效(Fadel,1993)。随着电路集成水平的提高,对降低功耗的重视对于在合理的温度下实现可靠​​的运行而无任何形式的主动冷却至关重要。这些截然相反的设计要求,体积小,重量轻,运行时间更长,是在电子行业瞬息万变和电池行业固有地开发新产品的速度较慢的背景下提出的

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