Abstract:
A phase change memory and the method for manufacturing the same are disclosed. The phase change memory includes a word line, a phase change element, a plurality of heating parts, and a plurality of bit lines. The phase change material layer is electrically connected to the word line and the heating parts. Each heating part is electrically connected to a respective bit line.
Abstract:
A locking device includes a case defining at least one slot therein, a hook module including at least one hook for passing through the at least one slot, a linkage module includes at least one first lever configured for shifting the at least one hook to move between a locking position and a releasing position, and a positioning module for releasably engaging with the first lever. When the at least one hook is shifted to the releasing position, the first lever is blocked by the positioning module, when the at least one hook is shifted to the locking position, the first lever is released by the positioning module.
Abstract:
A wireless-linked remote ecological environment monitoring system is proposed, which is characterized by the use of a sensor network such as WSN (wireless sensor network) installed at the remote site for collecting ecological data, and the use of a public wireless communication system such as GSM (Global System for Mobile Communications) for transferring all the collected ecological data to a back-end host server unit where the ecological data are compiled into webpages for posting on a website. This feature allows the research/management personnel to browse the ecological data simply by linking a network workstation via a network system such as the Internet to the website, without having to travel to the remote site and collect ecological data by human labor.
Abstract:
A case structure for an electronic device of the present invention at least includes a main body and at least one side piece detachably mounted to at least one side of the main body such that different sizes of case structures could be manufactured only by changing the size of the side piece while keeping the main body unchanged, thereby reducing molding cost for developing new electronic devices, saving a large amount of time needed to design, test and modify cases as well as saving human resources and reducing the manufacturing cost.
Abstract:
Methods for forming dual damascene structures in low-k dielectric materials that facilitate reducing photoresist poison issues are provided herein. In some embodiments, such methods may include plasma etching a via through a first mask layer into a low-k dielectric material disposed on a substrate. The first mask layer may then be removed using a process including exposing the first mask layer to a first plasma comprising an oxygen containing gas and at least one of a dilutant gas or a passivation gas, and subsequently exposing the first mask layer to a second plasma comprising an oxygen containing gas and formed using one of either plasma bias power or plasma source power. An anti-reflective coating may then be deposited into the via and atop the low-k dielectric material. A trench may then be plasma etched through a second mask layer formed atop the anti-reflective coating into the low-k dielectric material.
Abstract:
A solar cell, comprising: a substrate, including p-n doping structure formed within said substrate; material attached to the back of said substrate, where said material includes glass mixture, aluminum material, organic medium and additive. Wherein said glass needs to be formed by combining two or more glasses: the main composition for post-mixed glass should include Al2O3, Bi2O5, B2O3, SiO2, PbO, Tl2O3 and other metal and non-metal oxides. For the material composition, aluminum powder content is 60˜80 mass %, with approximately 90 to 99.99% purity. Additives include C10˜C24 stearic acid, with the content of less than 5 mass %. The C10˜C24 stearic acid may include oleic acid. Organic medium content is roughly 20˜35 mass %. Wherein said organic medium includes 60˜90 mass % ether class organic solvent, 10˜20 mass % cellulosic resin and 1˜5 mass % of leveling agent, rheological agent or thixotropic agent.
Abstract:
The present invention relates to a motor driving system. The motor driving system includes a motor, a transmission member, a follower member, a position-detecting light emitter, a position-detecting light receiver, and a positioning-status sensing element. The positioning-status sensing element includes a plurality of notches or openings. The positioning-status sensing element is moved between the position-detecting light emitter and the position-detecting light receiver such that a light beam emitted from the position-detecting light emitter is successively penetrated through the notches or openings to be received by the position-detecting light receiver. According to the light-receiving status of the position-detecting light receiver, the speed of the motor is reduced.
Abstract:
A tool combination includes a handle member having a chamber for receiving a tool stem which has a non-circular engaging hole, a driving shank selectively engaged into the passage of the tool stem and engaged with the non-circular engaging hole of the tool stem for being rotated by the tool stem, the driving shank includes a non-circular engaging hole for engaging with a tool element, and a wrench driving tool includes a stud selectively attached to the tool stem for being rotated by the tool stem, and a retaining device may detachably retain either the driving shank or the wrench driving tool to the tool stem and for changeably operating as a screw driver and a driving wrench.