Abstract:
Die Erfindung schafft eine mikroelektronische Bauelementanordnung (100) mit einem Sensorchip (1) zum Erfassen von Thermographiebildern. Der Sensorchip (1) weist eine Vorderseite (VS), eine Rückseite (RS) und eine Seitenfläche (SF), welche die Vorderseite (VS) mit der Rückseite (RS) verbindet, auf. Die mikroelektronische Bauelementanordnung (100) umfasst ferner zumindest eine Auswerteschaltung (A1), wobei die zumindest eine Auswerteschaltung (A1) mit dem Sensorchip (1) zumindest bereichsweise mit der Rückseite (RS) und/oder mit der Seitenfläche (SF) des Sensorchips (1) in Kontakt steht und eine Linse, wobei die Linse (L1) auf der Vorderseite (VS) des Sensorchips (1) angeordnet ist und den Sensorchip (1) bedeckt, wobei die Seitenfläche (SF) des Sensorchips (1) und/oder eine Seitenfläche (SA) der Auswerteschaltung (A1) sowie eine Seitenfläche (SL) der Linse (L1) zumindest bereichsweise Spuren eines mechanischen Abtrags aufweisen.
Abstract:
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.
Abstract:
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.
Abstract:
A transducer structure which may be used to transduce all manner of chemical and physical phenomena of a chemical environment. In this structure, the transducer means (146) and the active electronics (148) (140) are formed on discrete regions of the same surface of an inert substrate (130) and are interconnected by a connetor means (150). A wall (182) separates the active electronics (148) (140) from the transducer means (146) so as to protect the active electronics (148) (140) from the environment to which the transducer (146) is exposed. Advantageously, the active electronics (148) (140) are in a semiconductor material which is formed epitaxially on the substrate (130) to provide a monolithic structure; and the transducer (146), the active electronics (148) (140) and the connector means (150) are formed by conventional photolithographic techniques.