摘要:
Heat is removed from a small hand-held portable computer by dissipating the heat from surfaces that are not typically held by the user during hand-held operation. The heat is dissipated from fins located at a rear underside casing of the portable computer. Heat-generating internal electronic components or their heat sinks are placed in close proximity to the fins. Heat may also be dissipated from the backside of the display screen. The dissipation of the heat allows the portable computer to operate at higher frequencies.
摘要:
Heat is removed from a docked portable computer. Due to the heat removal, the portable computer can operate at full design voltage and frequency while docked, and thereby provide maximum performance, without sacrificing performance in order to generate less heat. A docking station provides a thermal docking connection. The thermal docking connection is implemented using a first set of fins of the portable computer that is mated to a second set of fins in the docking station. The second set of fins in the docking station is then, via use of heat conductive materials, exposed to forced airflow from a fan within the docking station. Other embodiments of heat-removal methods, such as larger surface areas, peltia devices, water cooling, and others, can be used to pull additional heat from the docked portable computer. Thus, the docking station acts as an nullair-conditionernull for the portable computer, and allows the portable computer to operate at higher frequencies.
摘要翻译:从对接的便携式计算机中移除热量。 由于散热,便携式计算机可在停靠时以全设计电压和频率工作,从而提供最大性能,而不牺牲性能以产生较少的热量。 对接站提供热对接连接。 热对接连接使用便携式计算机的第一组翅片来实现,该第一组散热片与对接站中的第二组散热片交配。 然后,对接站中的第二组散热片通过使用导热材料暴露于对接站内的风扇的强制气流。 散热方法的其他实施方案,例如较大的表面积,皮肤ia ia ia devices devices devices,,,,,,,,,,,,,,,,,,,,,, 因此,对接站用作便携式计算机的“空调”,并且允许便携式计算机以更高的频率操作。