CLIMBING HOLDS FOR USE IN ROCK CLIMBING AND ROCK CLIMBING SYSTEM
    1.
    发明公开
    CLIMBING HOLDS FOR USE IN ROCK CLIMBING AND ROCK CLIMBING SYSTEM 审中-公开
    登山用于岩石登山和攀岩系统

    公开(公告)号:EP3124088A8

    公开(公告)日:2017-08-16

    申请号:EP16170437.4

    申请日:2016-05-19

    发明人: Tsang, Kei Fung

    IPC分类号: A63B69/00 A63B24/00

    摘要: A climbing hold and a rock climbing system for use in rock climbing are disclosed. The climbing hold includes a climbing hold body which is provided with a conductive film and a circuit board. The rock climbing system includes a climbing wall, a main control unit, a control terminal, and a plurality of climbing holds. The main control unit includes a circuit board containing a microcontroller unit (MCU). The climbing hold circuit board and the main circuit board are electrically connected. The control terminal and the main control unit are electrically connected. When the climbing hold is being touched, the conductive film and the static electricity capacity of human body combine to cause a change in electrostatic capacity. The climbing hold circuit board can detect such a change instantaneously and send a status signal to the control terminal. Analysis can be performed by monitoring the status of every climbing hold.

    摘要翻译: 公开了一种用于攀岩的攀登架和攀岩系统。 攀爬保持架包括设置有导电膜和电路板的攀爬保持体。 该攀岩系统包括攀爬墙,主控单元,控制终端和多个攀爬梯。 主控制单元包括包含微控制器单元(MCU)的电路板。 攀爬保持电路板和主电路板电连接。 控制端子和主控制单元电连接。 当触摸攀登架时,导电膜和人体的静电容量相结合导致静电容量的变化。 攀爬保持电路板可以瞬时检测到这种变化并向控制终端发送状态信号。 可以通过监测每个攀爬舱的状态来进行分析。

    METHOD OF MANUFACTURING THREE-DIMENSIONAL DEVICE
    3.
    发明公开
    METHOD OF MANUFACTURING THREE-DIMENSIONAL DEVICE 审中-公开
    处理对三维COMPONENT

    公开(公告)号:EP0986104A1

    公开(公告)日:2000-03-15

    申请号:EP99903937.3

    申请日:1999-02-23

    IPC分类号: H01L27/00

    摘要: A method for making a three-dimensional device of the present invention includes a step for forming a cleaving layer 2, an intermediate layer 3, and a first transferred layer 41 on a translucent substrate 1 and for forming a cleaving layer 2, an intermediate layer 3, and a second transferred layer 42 on a translucent substrate 1, a step for bonding a substrate (transferring-side substrate) 21 to the side away from the substrate 1 of the transferred layer 41 with an adhesive layer 5 provided therebetween, a step for irradiating the cleaving layer 2 with illuminating light 7 so as to form intralayer and/or interfacial cleavage in the cleaving layer by ablation and for detaching the transferred layer 41 from the substrate 1 to transfer the transferred layer 41 onto the substrate 21, a step for bonding the transferred layer 41 to the side away from the substrate 1 of the transferred layer 42 with a conductive adhesive layer 22 provided therebetween, and a step for irradiating the cleaving layer 2 with the illuminating light 7 as above, and for detaching the transferred layer 42 from the substrate 1 to transfer the transferred layer 42 onto the transferred layer 41.

    AMBIENT SENSING TRANSCUCER DEVICES WITH ISOLATION
    4.
    发明公开
    AMBIENT SENSING TRANSCUCER DEVICES WITH ISOLATION 失效
    带绝缘的环境感应传感器装置

    公开(公告)号:EP0261208A1

    公开(公告)日:1988-03-30

    申请号:EP87902292.0

    申请日:1987-03-19

    发明人: LAUKS, Imants, R.

    摘要: Structure de transducteur pouvant être utilisée pour capter et détecter toutes sortes de phénomènes physiques et chimiques dans un environnement chimique. Dans cette structure, l'organe transducteur (146) et les circuits électroniques actifs (148, 140) sont créés sur des régions discrètes de la même surface d'un substrat inerte (130) et sont reliés par un organe connecteur (150). Une paroi (182) sépare les circuits électroniques actifs (148, 140) de l'organe transducteur (146) de manière à assurer la protection des circuits électroniques actifs (148, 140) de l'environnement auquel le transducteur (146) est exposé. De préférence, les circuits électroniques actifs (148, 140) se composent d'un matériau semi-conducteur formé de manière épitaxiale sur le substrat (130) pour créer une structure monolithique, le transducteur (146), les circuits électroniques actifs (148, 140) et l'organe connecteur (150) étant formés par des techniques photolithographiques conventionnelles.

    摘要翻译: 传感器结构可用于捕获和检测化学环境中的各种物理和化学现象。 在该结构中,换能器(146)和有源电子器件(148,140)在惰性基板(130)的相同表面的离散区域上形成并且由连接器构件(150)连接。 壁(182)将有源电子装置(148,140)与换能器(146)分开,以为换能器(146)所暴露的环境的有源电子装置(148,140)提供保护。 。 优选地,有源电子电路(148,140)由外延形成在衬底(130)上的半导体材料构成以形成单片结构,换能器(146),有源电子器件(148,140) 140)和连接器构件(150)通过传统的光刻技术形成。

    IMAGING METHOD, IMAGING DEVICE, AND ELECTRONIC DEVICE

    公开(公告)号:EP3229467A4

    公开(公告)日:2018-04-18

    申请号:EP16874512

    申请日:2016-07-27

    发明人: ZHOU QIQUN

    摘要: The present disclosure discloses an imaging method. The imaging method comprises: providing an image sensor, the image sensor comprising a photosensitive pixel array and a filter arranged on the photosensitive unit array, the filter comprising a filter cell array, and each filter cell covering a plurality of photosensitive pixels to form a merged pixel; and reading outputs of the photosensitive pixel array, and adding the outputs of the photosensitive pixels of the same merged pixel to obtain a pixel value of the merged pixel, thereby producing a merged image. Images, having higher signal to noise ratio, brightness, and definition, and less noise, can be captured by using the imaging method in low light. The present disclosure also discloses an imaging device using the imaging method and an electronic device using the imaging device.

    CLIMBING HOLDS FOR USE IN ROCK CLIMBING AND ROCK CLIMBING SYSTEM
    6.
    发明公开
    CLIMBING HOLDS FOR USE IN ROCK CLIMBING AND ROCK CLIMBING SYSTEM 审中-公开
    KLETTERGRIFFE ZUR VERWENDUNG BEIM FELSKLETTERSPORT UND FELSKLETTERSYSTEM

    公开(公告)号:EP3124088A1

    公开(公告)日:2017-02-01

    申请号:EP16170437.4

    申请日:2016-05-19

    发明人: Tsang, Kei Fung

    IPC分类号: A63B69/00 A63B24/00

    摘要: A climbing hold and a rock climbing system for use in rock climbing are disclosed. The climbing hold includes a climbing hold body which is provided with a conductive film and a circuit board. The rock climbing system includes a climbing wall, a main control unit, a control terminal, and a plurality of climbing holds. The main control unit includes a circuit board containing a microcontroller unit (MCU). The climbing hold circuit board and the main circuit board are electrically connected. The control terminal and the main control unit are electrically connected. When the climbing hold is being touched, the conductive film and the static electricity capacity of human body combine to cause a change in electrostatic capacity. The climbing hold circuit board can detect such a change instantaneously and send a status signal to the control terminal. Analysis can be performed by monitoring the status of every climbing hold.

    摘要翻译: 公开了攀岩用攀岩系统和攀岩系统。 爬坡包括设置有导电膜和电路板的爬坡保持体。 攀岩系统包括攀岩墙,主控制单元,控制终端以及多个爬梯。 主控制单元包括一个包含微控制器单元(MCU)的电路板。 爬电保持电路板和主电路板电连接。 控制端子和主控制单元电连接。 触摸攀岩时,人体的导电膜和静电容量相结合,导致静电容量的变化。 爬电保持电路板可以立即检测到这种变化,并向控制终端发送状态信号。 可以通过监视每次攀登的状态来进行分析。

    Ionengenerator
    9.
    发明公开
    Ionengenerator 失效
    离子发生器。

    公开(公告)号:EP0021204A1

    公开(公告)日:1981-01-07

    申请号:EP80103172.5

    申请日:1980-06-09

    IPC分类号: H01J27/02 H01J37/08

    CPC分类号: H01L27/00 H01J27/20 H01J37/08

    摘要: Ein lonengenerator in einer Vakuumkammer erzeugt einen lonenstrom hoher Stromdichte. In einem Vorratsraum befindet sich flüssiges oder gasförmiges ionisierbares Material. Eine begrenzende Wand besteht aus einem lonenleiter, in dem mittels einer Spannungsdifferenz ein elektrisches Feld erzeugt wird, das die Diffusion von Ionen quer durch den lonenleiter erzwingt und den lonenstrom in Richtung auf das Target beschleunigt.

    摘要翻译: 在真空室中的离子发生器产生的高电流密度的离子电流。 在储是液态或气态电离材料。 一个限制壁由其中通过迫使穿过离子导体的离子的扩散,并加速的方向至目标的离子电流的电压差产生的电场的离子导体构成。