Abstract:
A display device includes a side I/O module sandwiched between a front frame and a rear cover to form a casing having a lateral side. The I/O module includes an L-shaped connector including a back plate fastened securely to the rear cover, and a side plate extending perpendicularly from the back plate and fastened the front frame so to prevent removal of the rear cover from the front frame in such a manner that the side plate is flush with the lateral side of the casing. A terminal substrate is mounted on the back plate opposite to the rear cover, and has a plurality of parallelly arranged terminal-receiving ports extending into the opening in the side plate so as to expose the ports exteriorly of the outer casing to facilitate insertion of terminals therein.
Abstract translation:显示装置包括夹在前框架和后盖之间的侧面I / O模块,以形成具有侧面的壳体。 I / O模块包括L形连接器,其包括牢固地紧固到后盖的背板和从背板垂直延伸并紧固前框架的侧板,以防止后盖从前框架中移除 侧板与壳体的侧面齐平。 端子基板安装在与后盖相对的背板上,并且具有延伸到侧板中的开口中的多个平行布置的端子接收端口,以便露出外壳外部的端口以便于插入端子 其中。
Abstract:
A new method and structure is provided for the creation of a copper dual damascene interconnect. A dual damascene structure is created in the layer of dielectric, optionally a metal barrier layer is deposited over exposed surfaces of the dual damascene structure. A copper seed layer is deposited, the dual damascene structure is filled with copper. An anneal is applied to the created copper interconnect after which excess copper is removed from the dielectric. Of critical importance to the invention, a thin layer of oxide is then deposited as a cap layer over the copper dual damascene interconnect, an etch stop layer is then deposited over the thin layer of oxide for continued upper-level metallization.
Abstract:
A liquid-filled ornament includes a body having a transparent casing having an opening and filled with liquid, a display object in the liquid, and a sealing wall extending across and sealing the opening. The ornament includes a driving mechanism having rotatable magnets and located on an outer side of the sealing wall, and a driven mechanism having rotatable magnets and located on an inner side of the sealing wall and immersed in the liquid. The magnets of the driven mechanism are rotated by the magnets of the driving mechanism through magnetic interaction. The driven mechanism includes a first stationary disc on which the display object is mounted and a second disc supported on the first disc and rotated by the magnetic interaction. A ball bearing is disposed between the two discs. The second disc includes paddles that stir bits of a solid material, resembling snow, dispersing the bits throughout the liquid.
Abstract:
A lens for a linear light source may include a top and a bottom, the bottom including an incident surface, and a first supporting surface and a second supporting surface respectively at each side of the incident surface, and the top including an emergent surface, wherein the top further comprises a total internally reflective surface, and wherein in a cross section, the emergent surface is joined with the first supporting surface, the total internally reflective surface is joined with the second supporting surface, one part of light from the linear light source incidents into the incident surface and emerges after refracted by the emergent surface, and the other part of light incidents into the incident surface and reflected by the total internally reflective surface and then emerges after refracted by the emergent surface.
Abstract:
A method of modeling a fermentation process comprises providing a first principles model of a fermentation process; determining the concentration of at least one substrate in a fermentation composition at a first time; and predicting the concentration of at least one component of the fermentation composition at a second time using the first principles model, wherein the second time is after the first time.
Abstract:
A server management system and a method for server management, wherein the server management system comprises baseboard management controllers (BMCs) located at each of a plurality of servers, wherein each BMC comprises: a connection establishment interface component configured to establish connection with one processing device in response to a request of establishing connection with the processing device and to receive a server management instruction from the processing device; and a wireless network communication component configured to enable the BMCs to establish a wireless network through their wireless network communication component; wherein, the server that establishes connection with the processing device is designated as an interface server, and the wireless network communication component of the BMC of the interface server is further able to broadcast the server management instruction received by the connection establishment interface component to managed servers via the established wireless network.
Abstract:
A high efficiency micro projection optical engine includes a light source module, a lens assembly, a micro display panel and a projection lens. An image of the luminous surface of light emitting elements of the light source module is formed in the vicinity of the micro display panel. The micro display panel is arranged on the path of emission light of the lens assembly to modulate incident light and obtain image light with image information. The projection lens is used to project the image information on the micro display panel and form an image onto a screen. The optical engine enhances efficiency by means of critical illumination.
Abstract:
This invention relates to a semiconductor device and a manufacturing method therefor for reducing stacking faults caused by high content of Ge in an embedded SiGe structure. The semiconductor device comprises a Si substrate with a recess formed therein. A SiGe seed layer is formed on sidewalls of the recess, and a first SiGe layer having a Ge content gradually increased from bottom to top is formed on the recess bottom. A second SiGe layer having a constant content of Ge is formed on the first SiGe layer. The thickness of the first SiGe layer is less than the depth of the recess. The Ge content in the SiGe seed layer is less than the Ge content in the second SiGe layer, and the Ge content at the upper surface of the first SiGe layer is less than or equal to the Ge content in the second SiGe layer.
Abstract:
A process for the fabrication of semiconductor devices on a substrate, the semiconductor devices including at least one metal layer. The process includes, removing the substrate and applying a second substrate; and annealing the at least one metal layer by application of a beam of electromagnetic radiation on the at least one metal layer.