Abstract:
A composition for forming a dielectric layer includes a liquid organometallic compound serving as a precursor with high dielectric constant, a photo-sensitive polymer or a non-photo-sensitive polymer and a solvent, wherein the liquid organometallic compound includes metal alkoxide, and the metal of the metal alkoxide includes Al Ti, Zr, Ta, Si, Ba, Ge and Hf. The dielectric layer formed by the composition includes the photo-sensitive polymer or the non-photo-sensitive polymer and an amorphous metal oxide formed therein.
Abstract:
An image sensor module comprises an image sensor chip, at least one lens layer, and at least one bonding layer. The image sensor chip has an image capturing zone manufactured with an image capturing element, and a partition zone surrounding the image capturing zone. The at least one lens layer is stacked on the image sensor chip, having a transparent substrate and a lens mounted on the transparent substrate and adapted to focus the projected image onto the image capturing zone of the image sensor chip. The at least one bonding layer is arranged corresponding to the partition zone of the image sensor chip and bonded between the image sensor chip and the at least one lens layer, mixing of a glue agent and a plurality of spacer elements with which the height of each the spacer elements is determined to be the height of the bonding layer.
Abstract:
A compound semiconductor material for forming an active layer of a thin film transistor device is disclosed, which has a group II-VI compound doped with a dopant ranging from 0.1 to 30 mol %, wherein the dopant is selected from a group consisting of alkaline-earth metals, group IIIA elements, group IVA elements, group VA elements, group VIA elements, and transitional metals. The method for forming an active layer of a thin film transistor device by using the compound semiconductor material of the present invention is disclosed therewith.
Abstract:
A remote control method of tile display is disclosed for a tile display system, which contains a host computer, several projector modules, and a screen. The images produced by the projector modules are simultaneously displayed on the screen as a single image. The remote control method includes the steps of: obtaining setting parameters of each projector using a control program on the host computer via a network; storing the setting parameters of each projector in a storage module of the host computer; simultaneously generating a projector parameter table for each projector; updating the projector parameter table when the parameters of any projector are modified; generating a control message for the corresponding projector according to the new parameter table; transmitting the control message to the corresponding projector via the network; and converting the control message into one recognizable by the projector in order to make corresponding modifications.
Abstract:
The present invention provides a document management device including a file receiving device for receiving a document; an optical identification device for performing optical identification on a non-textural content in the received document; a feature mark identifier for setting up a feature mark for the document; and a database for storing the document, which can be output from the database directly or through the file receiving device. The present invention also discloses a document management method. The device and method of the present invention have functions of identification, classification, search, and save.
Abstract:
A Bluetooth peripheral includes a sleeve, a Bluetooth earphone received in the sleeve, and a stylus latched to the sleeve. The invention also discloses a portable electronic device using the Bluetooth peripheral.
Abstract:
Aspheric lens structures with dual aspheric surfaces and fabrication methods thereof are disclosed. An aspheric lens structure includes a first lens component with an aspheric top surface disposed on a second lens component, wherein the interface between the first lens component and the second lens component is spherical. The second lens component includes an aspheric back surface, wherein the radius of curvature of the aspheric top surface of the first lens component is different than the radius of curvature of the aspheric back surface of the second lens component. The second lens component may also include a planar back surface with a third lens component disposed on the planar back surface of the second component. The third lens component includes an aspheric back surface, wherein the radius of curvature of the aspheric top surface of the first lens component is different than the radius of curvature of the aspheric back surface of the third lens component.
Abstract:
A portable electronic device includes a touch pen comprising a main body, a first pen head, a first elastic member, and a first sleeve. The first elastic member interconnects the main body and the first pen head. The first sleeve is slidably sleeved on the main body or the first elastic member so as to expose at least a part of the first elastic member. The first elastic member is bendable.
Abstract:
A backlight module includes a frame, a plurality of light tubes disposed on the frame, an optical sheet, a first light tube fixing component disposed on a side of the frame, and a second light tube fixing component disposed on a bottom surface of the frame. The frame includes a plurality of holes defined on a bottom surface of the frame. The first light tube fixing component is used for fixing the plurality of light tubes on the frame. The first light tube fixing component includes light proof member and a light reflective component. The light proof member is used for blocking light from the plurality of light tubes. The light reflective component is used for reflecting light from the plurality of light tubes toward the optical sheet. The light proof member and the light reflective component are integrally formed. The second light tube includes a substrate plate, a plurality of supporting holders disposed on a first side of the substrate plate, and a plurality of engaging portions disposed on a second side opposite to the first side. Each engaging portion is made of light proof materials and corresponds to one of the plurality of holes. The substrate plate, the plurality of supporting holders, and the plurality of engaging portions are integrally formed.
Abstract:
This invention relates to a process for fabricating ZnO nanowires with high aspect ratio at low temperature, which is associated with semiconductor manufacturing process and a gate controlled field emission triode is obtained. The process comprises providing a semiconductor substrate, depositing a dielectric layer and a conducting layer, respectively, on the semiconductor substrate, defining the positions of emitter arrays on the dielectric layer and conducting layer, depositing an ultra thin ZnO film as a seeding layer on the substrate, growing the ZnO nanowires as the emitter arrays by using hydrothermal process, and etching the areas excluding the emitter arrays, then obtaining the gate controlled field emission triode.