Abstract:
An electrolier flag is provided that is able to emit light by itself and revolves around a flag-rod under the effects of the wind. The integral flag unit is made form a transparent material and includes a banner portion and a lamp reflector portion. The lamp reflector of the flag is attached on a tube holding a string of bulbs by a pivotal connection, so that the light rays from the bulbs are conducted into the banner by the lamp reflector.
Abstract:
A steric retiform lamp is provided where a string of lamps are connected into a meshwork forming a steric cylinder or cone shape. A cylindrical or a conical lamp network net is formed by a complete cord connecting all the bulbs in series, wherein the cord is constructed into a multiple-concentric-ring structure sequentially, by fastening the start end and the final end of the cord together. Each bulb-holder of the inner ring is linked to the adjacent external ring in a point to point wiring arrangement.
Abstract:
An artificial decorating tree with embellishing lamps is provided which includes several hollow joints, sockets, connectors, branches, embellishing lamps and a set of electric cords. The decorating tree is assembled with plug-in joints and internal wiring coupled to lamps supported from branches, thereby avoiding the use of exposed light strings external to the artificial tree structure.
Abstract:
A method of joining superconductor materials is described. A microwave chamber including a first heat absorption plate and a second heat absorption plate corresponding to the first absorption plate is provided. A first superconductor material and a second superconductor material are disposed between the first heat absorption plate and the second heat absorption plate in the microwave chamber. The first superconductor material and the second superconductor material have an overlapping region therebetween, and a pressure is applied to the first heat absorption plate and the second heat absorption plate. Microwave power is supplied to the microwave chamber. The first heat absorption plate and the second heat absorption plate transform the microwave power into thermal energy so as to join the first superconductor material and the second superconductor material at the overlapping region.
Abstract:
A linear-type microwave-excited plasma source mainly comprises a reacting chamber, a rectangular waveguide and a linear biased slot in between. A linear quartz plate with an o-ring embedded in the biased slot is required so as to keep the reaction chamber in low pressure condition. Plasma will be excited in the reacting chamber by microwave powers radiating from the biased slot. A linear-type movable dielectric material can be disposed in the waveguide to control the radiation intensity of microwave, such that the length of the linear-type plasma source is able be extended without increasing input microwave powers and thus large-area low-cost plasma-processing applications can be implemented.
Abstract:
A broadband antenna includes a coupling loop and a number of radiation bodies. The coupling loop is electrically coupled to a chip and the chip records several pieces of data. The radiation bodies respectively form a number of resonance loops with the coupling loop for providing a number of resonance frequencies of the broadband antenna. The coupling loop can feed in signals for reading data in the chip according to the resonance frequencies.
Abstract:
An antenna configured for a radio frequency identification (RFID) device, the antenna comprising a first conductive element over a substrate, the first conductive element extending between a first end and a second end, and a second conductive element over the substrate, the second conductive element including a first path extending between a third end and a fourth end, a second path extending from the third end to a fifth end, and a third path extending from the third end to a sixth end, wherein the first end of the first conductive element is separated from but near one of the fifth end of the second path and the sixth end of the third path of the second conductive element.
Abstract:
The present invention provides a formative lamp with edge-lighting, which is consisted of two formative shells and the sandwich lighting plate. Wherein the formative shells are molded into the desired pattern and outline, and the lighting plate is made of high transmissivity material, and molded into the pattern outline as same as the shell's. In combination, the string lamps and the cords can be pre-inserted on the lighting plate, finally cover the formative shells from the both sides. When cut-in the power, the lamps inserted on the lighting plate is lighten, the light ray not only shine through the formative shells, but also via the high transparency lighting plate to generate an edge-lighting source along with the edge of the formative pattern. Hence, due to the brightness difference of the formative shells and the edge-lighting source of the lighting plate, the outline of the formative lamp is drawn out to increase the funny of the product.