Abstract in simplified Chinese:本揭露内容系提供一种干涉分光组件封装设备。干涉分光组件封装设备包括一干涉分光组件使一预定波长范围的光线穿透、一感光单元以及一透光结构。透光结构包括一透光柱状结构及一吸光层,吸光层环绕透光柱状结构,并且吸收前述预定波长范围的光线。干涉分光组件、透光柱状结构和感光单元沿透光柱状结构的延伸方向对齐设置,且当一入射光入射时,系通过干涉分光组件和透光柱状结构后被感光单元接收。
Abstract in simplified Chinese:本发明系关于一种可进行操作以获取距离数据及光谱数据之光电模块,其包含一解调像素数组及一光谱滤光器数组。该等解调像素可具有一本质波长相依敏感度,其中在一些情况中,该本质波长相依敏感度可由一强度平衡微透镜数组偏移。在一些情况中,该本质波长相依敏感度可由一组合滤光器数组偏移,而在其他情况中,该本质波长相依敏感度可由一强度平衡滤光器数组偏移。仍在其他情况中,该等解调像素可依此进行操作以便偏移该本质波长相依敏感度。
Abstract in simplified Chinese:一种高密度多信道检测设备,用以检测一样本。此高密度多信道检测设备至少包含:光源、准直透镜、分光镜以及高密度多信道影像设备。光源是用以射出一光束。准直透镜配置在光源前且在光束的光路上,将光束修正为平行光。分光镜用以将准直透镜射出的光束反射至样本,并使从样本反射的光束穿透该分光镜。高密度多信道影像设备配置在接收穿透该分光镜光束的位置上,对样本进行检测。高密度多信道影像设备具有光收集器以及接收来自光收集器光束的多信道内核模块,并且利用光收集器,使入射到多信道内核模块的光束为平行于多信道内核模块的光轴。
Abstract:
A radiation detection technique employs field enhancing structures and electroluminescent materials to converts incident Terahertz (THz) radiation into visible light and/or infrared light. In this technique, the field-enhancing structures, such as split ring resonators or micro- slits, enhances the electric field of incoming THz light within a local area, where the electroluminescent material is applied. The enhanced electric field then induces the electroluminescent material to emit visible and/or infrared light via electroluminescent process. A detector such as avalanche photodiode can detect and measure the emitted light. This technique allows cost-effective detection of THz radiation at room temperatures.
Abstract:
An electronic device may be provided with a display mounted in a housing. A color sensing ambient light sensor may measure the color of ambient light. The color sensing ambient light sensor may be mounted in alignment with an ambient light sensor window formed in an inactive area of the display. The color sensing ambient light sensor may be formed from detectors on a semiconductor substrate. The detectors may include detectors that have spectral sensitivity profiles matching those of color matching functions. The color sensing ambient light sensor may include an infrared light detector. Light redirecting structures such as a diffuser, prism film, negative lens film, or privacy film may be used in directing light into the ambient light sensor. The color sensing ambient light sensor may be calibrated by exposing the sensor to light sources of different types.
Abstract:
Systems and methods for remote and/or portable detection are provided. The system can include a source (305) of coherent laser pulses, components (315,320) for converting the coherent laser pulses into first beam pulses (391) at a first wavelength value, second beam pulses (392) at a second wavelength value, and third beam pulses (393) at a third wavelength value. Systems can further include optical components (330) configured to delay at least one of the first beam pulses, the second beam pulses, and the third beam pulses in order to create delayed beam pulses, and a focusing component (340) configured direct a substantially collinear combination of the delayed beam pulses and two of a set of: the first beam pulses, the second beam pulses, and the third beam pulses, onto a sample (355).
Abstract:
Die Erfindung betrifft ein Verfahren und eine Lichtquellenvorrichtung zur Bereitstellung von Licht zur Beleuchtung eines Objekts. Dabei werden durch ein lineares Verschieben eines nebeneinander angeordnete, Licht unterschiedlicher Wellenlängenbereiche ausstrahlende LED-Einheiten aufweisenden Lichtarrays die LED-Einheiten nacheinander ausgewählt, die jeweils ausgewählte LED-Einheit eingeschaltet, das von der jeweils eingeschalteten LED-Einheit abgestrahlte Licht auf ein linear verschiebbares Filter fokusiert und das linear verschiebbare Filter derart verschoben, dass aus dem auf das Filter auftreffenden Licht Licht mit einem kleineren Wellenlängenbereich hindurchtritt.
Abstract:
The present invention relates to optical devices for imaging and spectroscopic applications where optical field curvature is a predominant characteristic. In particular, the invention relates to imaging optics and an optical device for mapping a curved image field. The optical device for mapping a curved image field comprises a focal plane array 20 having a plurality of light processing elements 21 and a focal plane adapter 110 mounted in front of the focal plane array 20 configured to transmit the curved image field to the light processing elements 21 of the focal plane array 20. The focal plane adapter 110 comprises a plurality of waveguides 111 wherein first ends of the waveguides 111 facing the incident curved image field are arranged on a curved surface 12, the curved surface 12 being adapted to a profile of an optical field curvature of the curved image field so that the plurality of waveguides 111 divide the curved image field along a curved focal plane of the image field into a plurality of image segments. The second ends of the waveguides 111 are allocated to the light processing elements 21 to map the plurality of image segments onto the allocated light processing elements 21.