Abstract:
A detecting device is used to detect the connection of an electronic device. The detecting device includes a circuit board and a connector module. The circuit board includes a power terminal and a signal processing unit. The connector module includes a body and a detecting member. The body has a connecting port and a connecting sidewall. The detecting member is disposed on the connecting sidewall and electrically connected to the power terminal and the signal processing unit, and it has a potential. When a plug of the electronic device is connected to the connecting port, the plug contacts the detecting member to change the potential. The change of the potential is detected by the signal processing unit such that the connection between the electronic device and the connector module is confirmed.
Abstract:
A substrate-free LED device is provided. The LED device comprises a substrate, an epitaxial layer disposed on the substrate, a first electrode disposed on a portion of the epitaxial layer, a second electrode disposed on another portion of the epitaxial layer, and a protection layer, disposed over the epitaxial layer. It is noted that in the LED device, the substrate comprises, for example but not limited to, high heat-sink substrate, and the protection layer comprises, for example but not limited to, high heat-sink, high transparent material.
Abstract:
A substrate-free LED device is provided. The LED device comprises a substrate, an epitaxial layer disposed on the substrate, a first electrode disposed on a portion of the epitaxial layer, a second electrode disposed on another portion of the epitaxial layer, and a protection layer, disposed over the epitaxial layer. It is noted that in the LED device, the substrate comprises, for example but not limited to, high heat-sink substrate, and the protection layer comprises, for example but not limited to, high heat-sink, high transparent material.
Abstract:
A light source module of scanning device includes a light guide rod and a light emitting diode. The light guide rod has a top surface, a bottom surface and two end portions. The top surface and the bottom surface are disposed opposite to each other. The light emitting diode is disposed adjacent to one of the end portions.
Abstract:
A multipurpose illumination device, specifically related to an illumination instrument that can be used as an electric torch, a night-light, an emergency aid or an indicator light. The device includes a column with three sections. A main section, which is a middle of the three, has a main light, a battery, circuits, a button switch and a power supply plug. An upper section located above the main section is made of transparent or semi-transparent material. A pedestal located below the main section is made of semi-transparent material.
Abstract:
A circuit board capable of indicating the temperature of hot elements thereon is disclosed. The circuit board includes a substrate, a hot element and a thermochromic material. The hot element may be a chip set or a CPU. The thermochromic material may be inorganic thermochromic materials, or organic thermochromic materials, such as polymers, liquid crystals, dyes, or combinations thereof.
Abstract:
A light emitting diode is provided, wherein a first semiconductor layer is disposed on a substrate, and a second semiconductor layer is disposed on the first semiconductor layer. The first and the second semiconductor layers are doped with different type dopants. In addition, a second electrode is disposed on the second semiconductor layer, and a first electrode is disposed on the first semiconductor layer to surround the second electrode. A dielectric layer is disposed on the substrate to isolates the first electrode from the second electrode. A redistributing circuit is disposed on the dielectric layer. The redistributing circuit is electrically connected to the first electrode and the second electrode to provide a first extending electrode and a second extending electrode. The light emitting diode can prevent the crowding effect and provide better reliability and light emitting efficiency.
Abstract:
A method of removing non-polar colorants of a color filter array rapidly from a bottom layer starts by performing a cracking process to decompose cross-linked polymeric molecules of non-polar R/G/B colorants to smaller fragments. A plasma cleaning process is performed to oxidize the cracked non-polar R/G/B colorants. Then, a solvent cleaning process is performed by using a non-polar solvent to remove the non-polar R/G/B colorants from the bottom layer.
Abstract translation:从底层快速除去滤色器阵列的非极性着色剂的方法开始于将非极性R / G / B着色剂的交联聚合物分子分解成较小碎片的裂解过程。 进行等离子体清洁处理以氧化破裂的非极性R / G / B着色剂。 然后,通过使用非极性溶剂从底层除去非极性R / G / B着色剂进行溶剂清洗处理。