Abstract:
본 발명에 따른 박막 밸브 장치는 생물학적 또는 생화학적 분석에 요구되는 유체를 저장하거나, 생물학적 또는 생화학적 반응을 수행할 수 있는 하나 이상의 챔버, 상기 하나 이상의 챔버를 연결하여 상기 유체의 이동을 가능하게 하는 유로, 상기 유로 상에 연통하도록 배치되는 유공, 상기 유공을 폐쇄하기 위한 유공 폐쇄막, 유공과 유공 폐쇄막으로 구성된 박막 밸브, 적층되어 상기 유로, 유공 및 챔버를 형성하는 복수개의 기질, 상기 적층된 복수개의 기질, 상기 유로, 상기 유공, 상기 챔버, 및 상기 박막 밸브가 집적화된 디스크, 상기 박막 밸브에 열원을 공급하기 위한 열원 장치, 및 상기 열원 장치로부터 공급된 후 상기 유공 폐쇄막을 통과한 열원량을 측정하기 위한 열원 감지기 및 포커싱 액츄에이터를 제어하기 위한 피드백 제어 장치를 포함한다.
Abstract:
Die Erfindung bezieht sich auf ein miniaturisiertes optoelektronisches System zur Erzeugung statischer oder bewegter Bilder von Szenen oder einzelnen Objekten (11) und zur Ermittlung und Auswertung der spektralen Eigenschaften der Objekte (11) innerhalb einer Szene oder auch von einzeln abgebildeten Objekten (11). Erfindungsgemäß umfasst ein System dieser Art optische Bauelemente und Strahlengänge zur Erzeugung statischer oder bewegter Bilder einer Szene oder eines einzelnen Objektes (11), optische Bauelemente und Strahlengänge zur Bestimmung der Spektraleigenschaften eines oder mehrerer, in der Szene enthaltener Objekte (11) oder des einzelnen Objektes (11), mindestens einen Bildsensor als optoelektronischen Wandler, elektronische Bauelemente zur Verarbeitung der Ausgangssignale des Bildsensors, eine Informationsausgabeeinheit, ausgebildet zur Ergebnisdarstellung sinnlich, vorzugsweise visuell wahrnehmbaren Darstellung der Spektraleigenschaften in Zuordnung zu den Objekten (11), und Mittel zur Stromversorgung von elektronischen Bauelementen, wobei eine Ausführung des Systems in Form eines Handgerätes, auch als Handheld bezeichnet, vorgesehen ist.
Abstract:
Pixel-level monolithic optical element configurations for uncooled infrared detectors and focal plane arrays in which a monolithically integrated or fabricated optical element may be suspended over a microbolometer pixel membrane structure of an uncooled infrared detector element A monolithic optical element may be, for example, a polarizing or spectral filter element, an optically active filter element, or a microlens element that is structurally attached by an insulating interconnect to the existing metal interconnects such that the installation of the optical element substantially does not impact the thermal mass or thermal time constant of the microbolometer pixel structure, and such that it requires little if any additional device real estate area beyond the area originally consumed by the microbolometer pixel structure interconnects.
Abstract:
Light sensors (1) are used in lighting applications, especially in combination with LEDs, to control and/or adapt the color point of light sources. Costs and/or performance of the light sensor (1) are essential in order to guarantee cost- effective light sources with reproducible color points. This aim is achieved by a light sensor (1) comprising a light diffuser (10), an optical non-transparent housing (11) having at least one window (12), at least one interference filter (13) and at least two photo sensors (14). The light diffuser (10) is arranged in such a way that light from outside the optical non-transparent housing (11) has to pass the light diffuser (10) so as to enter the interior of the optical non-transparent housing (11) via the window (12). The interference filter (13) and the at least two photo sensors (14) are arranged in the interior of the optical non-transparent housing (11), which interference filter (13) is arranged between the window (12) and the at least two photo sensors (14).