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    • 3. 发明公开
    • 열전달 구조를 포함하는 전자 장치
    • KR20200129880A
    • 2020-11-18
    • KR20190054936
    • 2019-05-10
    • SAMSUNG ELECTRONICS CO LTD
    • SONG YONGJAEYEO MOONKIYOON CHONGOKIM JIHONGLEE KYUHWANLEE HAEJINCHO CHIHYUNCHOI JONGCHULHEO CHANGRYONG
    • G06F1/20H05K7/20
    • 열전달구조를포함하는전자장치와관련된다양한실시예들이기술된바, 한실시예에따르면, 전자장치는, 힌지구조, 상기힌지구조를통해회동가능하게연결된제1 하우징구조, 상기힌지구조를통해회동가능하게연결되며, 접힌상태(folded status)에서, 상기힌지구조를중심으로상기제1 하우징구조와대면하는제2 하우징구조, 상기힌지구조에실장되는제1 체결부재, 상기힌지구조에실장되고, 상기접힌상태(folded status)에서, 상기제1 체결부재와분리되고, 상기제1 하우징구조및 상기제2 하우징구조가서로펼쳐진상태(unfolded status)에서, 상기제1 체결부재와커플링(coupling)되는제2 체결부재, 상기제1하우징구조내에배치되고, 적어도하나의제1소자를실장한제1 인쇄회로기판, 상기제1 하우징구조의적어도일부및 상기힌지구조의적어도일부에배치된제1 열전달구조, 및상기제2 하우징구조의적어도일부및 상기힌지구조의적어도일부에배치된제2 열전달부재를포함하며, 상기제1 열전달구조는, 상기적어도하나의제1 소자의적어도일부면과대면된제1 열전달영역, 및상기제1 열전달영역의적어도일부면및 상기제1 체결부재의적어도일부에배치된제1 열전달부재를포함하며, 상기펼쳐진상태(unfolded status)에서, 상기제1 열전달부재의적어도일부분및 상기제2 열전달부재의적어도일부분은서로대면되고, 상기접힌상태(folded status)에서, 상기제1 열전달부재및 상기제2 열전달부재는분리되도록구성될수 있으며, 이외에도다양한다른실시예들이가능하다.
    • 5. 发明申请
    • AN APPARATUS AND METHOD FOR WAKING UP A PROCESSOR
    • 一种处理器的装置和方法
    • WO2014035119A3
    • 2014-04-24
    • PCT/KR2013007682
    • 2013-08-27
    • SAMSUNG ELECTRONICS CO LTD
    • HEO CHANGRYONGPARK KENHYUNGPARK KIYEONKIM YONGYI
    • G06F1/32
    • G06F1/3293G06F1/1694G06F1/3206G06F1/3215G06F1/3231G06F3/167Y02D10/122Y02D10/173
    • An apparatus and method for waking up a main processor (MP) in a low power or ultra-low power device preferably includes the MP, and a sub-processor (SP) that utilizes less power than the MP to monitor ambient conditions than the MP, and may be internalized in the MP. The MP and SP can remain in a sleep mode while an interrupt sensor monitors for changes in the ambient environment. A sensor is preferably an interrupt-type sensor, as opposed to polling-type sensors conventionally used to detect ambient changes. The MP and SP may remain in sleep mode, as a low-power or an ultra-low power interrupt sensor operates with the SP being in sleep mode, and awakens the SP via an interrupt indicating a detected change. The SP then wakes the MP after comparing data from the interrupt sensor with values in storage or with another sensor.
    • 用于在低功率或超低功率设备中唤醒主处理器(MP)的装置和方法优选地包括MP以及比MP更少的功率以比MP来监视环境条件的子处理器(SP),而不是MP ,并可能内部在MP。 当中断传感器监视周围环境的变化时,MP和SP可以保持睡眠模式。 与常规用于检测环境变化的轮询型传感器相反,传感器优选地是中断型传感器。 MP和SP可能保持在睡眠模式,因为低功耗或超低功耗中断传感器在SP处于睡眠模式下运行,并通过指示检测到的变化的中断唤醒SP。 然后,SP将中断传感器的数据与存储中的数据或其他传感器进行比较后,唤醒MP。