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:
Provided is a solder alloy having excellent wettability on both of a Cu surface and an Ni surface. The solder alloy has such an alloy composition that 0.6 to 0.9 mass% of Cu and 0.01 to 0.1 mass% of Al are contained, 0.02 to 0.1 mass% of Ti and/or 0.01 to 0.05 mass% of Co may be contained as required and the remainder is made up by Sn.
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.
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:
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.
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:
An electronic device (38) for mounting on a curved or flexible support (42) and a method for fabrication of the same. The electronic device comprises a flexible substrate (18) and a layer (2) of rigid material over the substrate having electronic components on its upper surface. Weakened regions (6) of the rigid layer (2) define contiguous portions of the rigid layer, and flexible connectors (16) extend between components on different portions. The rigid layer (2) can be fractured along the weakened regions (6) to afford flexibility.
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.