Abstract:
A fragrance lamp structure including a carrying element, a lighting element and a driving element is provided. The carrying element has a carrying surface, a first contact surface and a second contact surface. The carrying surface and the first contact surface are opposite to each other, and so are the carrying surface and the second contact surface opposite to each other. The lighting element has a first heat output surface facing the first contact surface of the carrying element. The lighting element generates a first heat going through the first heat output surface and the first contact surface to heat up the carrying element. The driving element has a second heat output surface facing the second contact surface of the carrying element. The driving element generates a second heat going through the second heat output surface and the second contact surface to heat up the carrying element.
Abstract:
In an electric contact material of silver matrix capable of resisting arc erosion and containing no cadmium-composite, an Ag—(SnO2+In2O3) composite containing 9˜11% of (SnO2+In2O3) or an Ag—Cu oxide, composite containing 15˜25% of Cu oxide is used. The electrical contact material has a contact resistance of 5˜60 milliohms (mohm) and an arc erosion resistance capability up to 2*103˜10*103 times provided that the Vickers hardness (Hv) of the material is 100˜150, the measured current is 1˜5 amperes, and the measured voltage is 10˜20 volts. Two electrical contacts maintain an arc erosion resisting capability at the condition of a low contact resistance when the electrical contact material is formed on a surface of a metal substrate of an electric connector.
Abstract translation:在能够抵抗电弧腐蚀并且不含镉复合物的银基质的电接触材料中,含有9〜11%(SnO 2 + In 2 O 3)或Ag-Cu氧化物的Ag-(SnO 2 + In 2 O 3)复合材料包含15 使用〜25%的Cu氧化物。 电接触材料的接触电阻为5〜60毫欧(mohm),耐电弧腐蚀能力高达2×103〜10×103倍,条件是材料的维氏硬度(Hv)为100〜150, 电流为1〜5安培,测量电压为10〜20伏。 当在电连接器的金属基板的表面上形成电接触材料时,两个电触点在低接触电阻的条件下保持抗电弧侵蚀能力。
Abstract:
A miniaturization active sensing module includes a substrate unit, an active sensing unit, and an optical unit. The substrate unit includes a substrate body, a plurality of first bottom conductive pads disposed on the bottom side of the substrate body, and a plurality of first conductive tracks embedded in the substrate body. The substrate body has at least one first groove formed therein. The active sensing unit includes at least one active sensing chip embedded in the first groove. The active sensing chip has at least one active sensing area and a plurality of electric conduction pads disposed on the top side thereof, and each first conductive track has two ends electrically contacted by one electric conduction pad and one first bottom conductive pad, respectively. The optical unit includes at least one optical element, disposed on the substrate body, for protecting the active sensing area.
Abstract:
A backlight module that includes a light guide plate, a point light source having a light emitting surface, a first brightness enhancement film disposed above the light guide plate, and a second brightness enhancement film disposed between the light guide plate and the first brightness enhancement film is provided. The light guide plate has a rectangular pre-display area. A reference line intersects a margin of the rectangular pre-display area in 45 degrees. A normal of the light emitting surface intersects the reference line in a first included angle with ±18 degrees based on the reference line. The first brightness enhancement film has first prism structures extended in a first extending direction intersecting the normal in a second included angle with ±25 degrees based on the light emitting surface. The second brightness enhancement film is disposed between the light guide plate and the first brightness enhancement film.
Abstract:
A simplified peritoneal equilibration test (S-PET) is disclosed. Instead of a lengthy peritoneal equilibration test (PET), the simplified procedure requires no blood sample and may use data from as few as two or three samples to classify a peritoneal membrane of a user. Typically, a peritoneal membrane or peritoneum of a dialysis patient, or other person, is classed as a high transport membrane, high-average transport membrane, a low-average transport membrane or a low transporter membrane. The S-PET may be performed at home by a user without the need to submit a blood sample. Kits for analyzing the samples may be furnished for home use. The kits may use disposable strips, microfluidic analyzers or chemical reagents, or may alternatively include reusable analysis equipment, such as optical or conductivity analysis equipment.
Abstract:
A chip package (101) and a lens module (103) mounted on the chip package are provided. The chip package includes a substrate (20), a first chip (40), a second chip (70), and a cover (80). The first chip is mounted on the substrate and is electrically connected with the substrate via a first plurality of wires (50a). The second chip is mounted above the first chip and above the wires connected with the first chip and is electrically connected with the substrate via a second plurality of wires (50b). The cover is mounted above the second chip and the wires connected with the second chip.
Abstract:
A backlight module that includes a light guide plate, a point light source having a light emitting surface, a first brightness enhancement film disposed above the light guide plate, and a second brightness enhancement film disposed between the light guide plate and the first brightness enhancement film is provided. The light guide plate has a rectangular pre-display area. A reference line intersects a margin of the rectangular pre-display area in 45 degrees. A normal of the light emitting surface intersects the reference line in a first included angle with ±18 degrees based on the reference line. The first brightness enhancement film has first prism structures extended in a first extending direction intersecting the normal in a second included angle with ±25 degrees based on the light emitting surface. The second brightness enhancement film is disposed between the light guide plate and the first brightness enhancement film.
Abstract:
A method of image processing, the method comprising receiving an image frame including a plurality of pixels, each of the plurality of pixels including an image information, conducting a first extraction based on the image information to identify foreground pixels related to a foreground object in the image frame and background pixels related to a background of the image frame, scanning the image frame in regions, identifying whether each of the regions includes a sufficient number of foreground pixels, identifying whether each of regions including a sufficient number of foreground pixels includes a foreground object, clustering regions including a foreground object into at least one group, each of the at least one group corresponding to a different foreground object in the image frame, and conducting a second extraction for each of at least one group to identify whether a foreground pixel in the each of the at least one group is to be converted to a background pixel.
Abstract:
A composite bipolar plate for a polymer electrolyte membrane fuel cell (PEMFC) is prepared as follows: a) compounding vinyl ester and graphite powder to form bulk molding compound (BMC) material, the graphite powder content ranging from 60 wt % to 95 wt % based on the total weight of the graphite powder and vinyl ester, wherein carbon fiber 1-20 wt %, modified organo clay or noble metal plated modified organo clay 0.5-10 wt %, and one or more conductive fillers selected form: carbon nanotube (CNT) 0.1-5 wt %, nickel plated carbon fiber 0.5-10 wt %, nickel plated graphite 2.5-40 wt %, and carbon black 2-30 wt %, based on the weight of the vinyl ester resin, are added during the compounding; b) molding the BMC material from step a) to form a bipolar plate having a desired shaped at 80-200° C. and 500-4000 psi.
Abstract:
The invention provides a dynamic random access memory (DRAM) with an electrostatic discharge (ESD) region. The upper portion of the ESD plug is metal, and the lower portion of the ESD plug is polysilicon. This structure may improve the mechanical strength of the ESD region and enhance thermal conductivity from electrostatic discharging. In addition, the contact area between the ESD plugs and the substrate can be reduced without increasing aspect ratio of the ESD plugs. The described structure is completed by a low critical dimension controlled patterned photoresist, such that the processes and equipments are substantially maintained without changing by a wide margin.