Abstract in simplified Chinese:一种接触式影像传感设备,用以传感一物体之影像,该接触式影像传感设备包含一壳体、一发光单元及一传感模块,该壳体包含一沟槽及一大致平行于该沟槽之穿槽,该发光单元设置于该沟槽,该传感模块包含一透镜数组及一传感单元,该透镜数组设置于该穿槽并具有复数个沿着一轴线排列透镜单元,该透镜数组与该物体之间具有一第一距离,该传感单元具有复数个沿平行该轴线排列之并对应该等透镜单元设置之传感组件,该传感单元与该透镜数组具有一第二距离,且该第一距离为第二距离的两倍。
Abstract in simplified Chinese:一种液态镜头自动对焦模块的组装方法,首先,备有一电路板,将一影像传感器电性链接于该电路板上,再将固态镜头的基座背面黏贴于该电路板上,并位于影像传感器上方,该固态镜头的基座上设有一凸出部,该凸出部与基座内部配置有复数镜片,再将一液态镜头配置于该凸出部上方,于液态镜头上配置有第一电极及第二电极;接着,将一中空盖体盖于液态镜头、第一电极及第二电极,使该盖体与固态镜头稳固结合,在盖体盖于该基座后,使部份的第一电极及第二电极一端外露;最后,将外露的第一电极、第二电极与电路板电性链接,在确认第一电极及第二电极与电路板呈电性链接时,即完成液态镜头自动对焦模块的组装。
Abstract in simplified Chinese:一种镜头基座之接合结构,系用以连接一玻璃片,该结构系主要包括一基座,该基座中央具有一圆柱状穿槽,用以容设镜片组,又于该基座底部具有一矩形凹槽,该凹槽系与该穿槽位置相重叠,该凹槽底部系为一接合面,用以与涂布黏胶并与玻璃片相互贴合,且于该穿槽与凹槽相接之周缘形成一环形倒角,使该凹槽与该玻璃片相互贴合后,该玻璃片与环形倒角形成一环型容置空间,借此以容置自玻璃板与接合面所产生之溢胶。
Abstract in simplified Chinese:一种影像扫描模块制程方法,该应用于影像扫描之CCDM扫描模块制程方法包括:提供一电路基板;将一般应用电子组件固装于电路基板;将感光组件以及经封装或未封装之IC电子组件固装于上述电路基板设置位置;利用Wire Bonding技术将感光组件及IC电子组件的电讯与电路基板链接,完成影像传感基板之制作;提供一模块壳座,并将至少一反射镜及透镜组件组装于模块壳座设置位置;将上述影像传感基板相对模块壳座之基板组装区锁装,直接形成与透镜组件产生聚焦影像一端位置之准对配置,完成影像扫描模块的制作。
Abstract:
本案係指一種掃瞄器光學模組之透鏡固定結構與方法,係用以固定一透鏡於一溝槽(Slot)中,該溝槽係設置於一掃瞄器光學模組之一殼體(Housing)上,且係由一第一槽壁及一第二槽壁所構成,而該殼體上更設有一導光棒(Selguide),該導光棒係平行於該第二槽壁且位於該第二槽壁相對於該溝槽的一側,其中該導光棒具有一光線射出面,該透鏡固定方法包括下列步驟:減小該第二槽壁位於該溝槽側的脫模角(Come Off Angle)至0度;加高該第二槽壁的高度,惟仍須使得該第二槽壁之高度小於或等於該光線射出面之高度;將該透鏡置入該溝槽中;以及於該第一槽壁與該透鏡、該第二槽壁與該透鏡之間分別填充固定膠,使得二邊之點膠高度一致。
Abstract in simplified Chinese:本案系指一种扫瞄仪光学模块之透镜固定结构与方法,系用以固定一透镜于一沟槽(Slot)中,该沟槽系设置于一扫瞄仪光学模块之一壳体(Housing)上,且系由一第一槽壁及一第二槽壁所构成,而该壳体上更设有一导光棒(Selguide),该导光棒系平行于该第二槽壁且位于该第二槽壁相对于该沟槽的一侧,其中该导光棒具有一光线射出面,该透镜固定方法包括下列步骤:减小该第二槽壁位于该沟槽侧的脱模角(Come Off Angle)至0度;加高该第二槽壁的高度,惟仍须使得该第二槽壁之高度小于或等于该光线射出面之高度;将该透镜置入该沟槽中;以及于该第一槽壁与该透镜、该第二槽壁与该透镜之间分别填充固定胶,使得二边之点胶高度一致。
Abstract:
An optical inspection system includes at least one lighting module, a plurality of image-sensing units, and an editing and computing unit. Each lighting module is configured to generate a light beam for illuminating an object; each image-sensing unit is configured to capture an inspecting image of the object, wherein two adjacent inspecting images of the object has a repeated image; the editing and computing unit receiving the inspecting images captured by the image-sensing unit is configured to position the inspecting images in accordance with the repeated images and then recombinant the inspecting images for creating a full inspecting image.
Abstract:
A wafer-level lens structure for contact image sensor (CIS) module includes a printed circuit board (PCB) and an image sensor electrically connected to the PCB and comprising a circuit area and a light sensitive area. The light sensitive area comprises an optoelectronic conversion array, a first lens array arranged on the optoelectronic conversion array and comprising a plurality of first cover lens, each of first cover lens having a first curved face to focus the external image light to the optoelectronic conversion array, and an aperture array arranged on the first lens array and comprising a plurality of apertures to expose the first curved face, the aperture array controlling a light amount passing through the cover lens. The first curved face of the cover lens has such a curvature that a predetermined focus point can be achieved by the plurality of first cover lens.
Abstract:
An early detection electronic device of diabetic foot for lesion in the blood circulation detects foot temperatures and includes a base, a first temperature detector, a second temperature detector, and a microprocessor. The base includes a platform part, a first arranging part, and a second arranging part. The first arranging part is connected to the platform part and the second arranging part. The first temperature detector is arranged on the first arranging part and detects foot temperature along a first axis. The second temperature detector is arranged on the second arranging part and detects foot temperature along a second axis. There is an included angle between the first axis and the second axis. The microprocessor receives the temperatures detected by the first temperature detector and the second temperature detector, and generates a warning signal when the first temperature is lower than the second temperature.
Abstract:
A self-powered wireless mouse apparatus includes a mouse wheel module and a back-end processing module. The mouse wheel module includes a mouse wheel, a stator plate, a plurality of coils and a rotation shaft. The mouse wheel includes a multipolar magnetic body. The coils are arranged on the stator plates. The rotation shaft is connected to the mouse wheel and the stator plate. The back-end processing module includes an alternating current to direct current conversion circuit and an energy storing apparatus. The multipolar magnetic body is driven so that the coils generate induced alternating current voltages when the mouse wheel is rotated. The alternating current to direct current conversion circuit converts the induced alternating current voltages of the coils into direct current voltages and then stores the direct current voltages in the energy storing apparatus to supply power to the self-powered wireless mouse apparatus.
Abstract:
A wireless mouse apparatus includes a mouse wheel module and an encoder signal processing and induced electromotive force processing circuit. The mouse wheel module includes a mouse wheel, two stator plates, a plurality of coils and a rotation shaft. The mouse wheel includes a multipolar magnetic body. The coils are arranged on the stator plates. The rotation shaft is connected to the mouse wheel and the stator plates. The encoder signal processing and induced electromotive force processing circuit is used for decoding two signals of phase lead or lag produced representative of rotating of the mouse wheel in the two directions of scroll down or scroll up. The encoder signal processing and induced electromotive force processing circuit converts the alternating current induced electromotive forces into direct current induced electromotive forces and then stores in an energy storing apparatus.