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    • 6. 发明授权
    • Thermal diffuser and radiator
    • 散热器和散热器
    • US06735077B2
    • 2004-05-11
    • US10074336
    • 2002-02-12
    • Naoya YamazakiKazuhiro IinoTakashi ShirakamiYoshiaki Tada
    • Naoya YamazakiKazuhiro IinoTakashi ShirakamiYoshiaki Tada
    • H05K720
    • H05K7/20418H01L23/473H01L2924/0002H01L2924/00
    • The present invention relates to a thermal diffuser which having a path for close thermal coupling uniformly between an electronic component mounted in an electronic equipment and a desired thermal conductor, and also to a radiator for radiating heat generated in this electronic component via the thermal diffuser. The object of the present invention is to realize flexible adaptability to various devices which are to undergo temperature control at low cost, and to efficiently achieve the temperature control. For this purpose, the thermal diffuser of the present invention has a plate-shaped structure which can be welded or bonded to the case of the electronic component to undergo heat exchange with the exterior and has a channel formed in mesh by a plurality of protrusions with confined heat medium recirculating therethrough.
    • 本发明涉及一种热扩散器,其具有用于在安装在电子设备中的电子部件和期望的热导体之间均匀地紧密地热耦合的路径,以及散热器,用于经由热扩散器散热在该电子部件中产生的热。 本发明的目的是实现对要以低成本进行温度控制的各种装置的灵活适应性,并且有效地实现温度控制。 为此,本发明的热扩散器具有能够与电子部件的壳体焊接或结合的板状结构,与外部进行热交换,并具有通过多个突起形成的通道, 限制热介质循环通过。
    • 7. 发明申请
    • DETERMINING APPARATUS AND DETERMINING METHOD
    • 确定装置和确定方法
    • US20110295524A1
    • 2011-12-01
    • US13109596
    • 2011-05-17
    • Yoshiaki TadaNaoya YamazakiKazuhiro IinoTakashi Shirakami
    • Yoshiaki TadaNaoya YamazakiKazuhiro IinoTakashi Shirakami
    • G06F19/00
    • H05K7/20181
    • A determining method includes: holding a cooled device in a container; detecting a temperature inside the container; detecting a temperature outside the container; facilitating a airflow through an air filter that allows air to flow therethrough between the container and a space outside the container; calculating a packing density of components of the cooled device; detecting a power consumption of the cooled device; detecting the number of revolutions of a fan that facilitates the flow of air through the air filter; and determining that the air filter is clogged when the power consumption is less than or equal to a power threshold value, the number of revolutions is within a specified range, and a difference between the temperature inside the container and the temperature outside the container exceeds a temperature threshold value that depends on the packing density and the power consumption.
    • 确定方法包括:将冷却的装置保持在容器中; 检测容器内的温度; 检测容器外部的温度; 促进通过空气过滤器的气流,其允许空气在容器和容器外部的空间之间流过; 计算冷却装置的部件的堆积密度; 检测冷却装置的功率消耗; 检测有助于空气流过空气过滤器的风扇的转数; 并且当功率消耗小于或等于功率阈值时确定空气过滤器堵塞,转数在规定范围内,并且容器内部的温度与容器外部的温度之间的差超过 温度阈值取决于包装密度和功耗。