Abstract:
A coating device includes a rotatable base, a board for holding workpieces, a positioning shaft positioned on the rotatable base, two eccentric wheels, a rack, and two reciprocating shafts. The two eccentric wheels are fixed on the positioning shaft and extend from the positioning shaft along two opposite directions. The two eccentric wheels are parallel to and spaced from each other. The rack is rotatably connected to the rotatable base. The rack is capable of rotating around the positioning shaft. Each reciprocating shaft is positioned on the rack. Each reciprocating shaft includes a hinge portion rotatably connected to an end of the board and a sliding portion slidably connected to the edge of a corresponding eccentric wheel. The two eccentric wheels are capable of driving the two reciprocating shafts to move alternately toward and away from the positioning shaft along radial directions of the positioning shaft.
Abstract:
A coating device includes two workspaces, two first slide rails, two second slide rails, two transporting loops, a number of rotating platforms, and a number of loading poles. The first slide rails are respectively fixed on the bottoms of the workspaces. The second slide rails are respectively fixed on the tops of the workspaces. The transporting loops are movably positioned on the first slide rails respectively. The rotating platforms are rotatably positioned on the transporting loops and capable of being driven by the transporting loops to rotate and slide along the first slide rails. The loading poles are positioned between the rotating platforms and the second slide rails, and are used for holding substrates. The loading poles are capable of being transported from one workspace to another workspace.
Abstract:
An exemplary light emitting diode street lamp includes a light emitting diode array, a brightness sensor, a humidity sensor, and a controlling system. The brightness sensor senses the brightness of the environment. The humidity sensor senses the humidity of the environment. The controlling system is electrically connected to the light emitting diode array, the humidity sensor and the brightness sensor. Three ranges of humidity and three ranges of brightness are predefined in the controlling system. The controlling system controls the light emitting diode array to emit an amount of light according to a relationship between the sensed humidity value and the humidity ranges, and according to a relationship between the sensed brightness value and the brightness ranges.
Abstract:
A sputtering type deposition apparatus includes a chamber device and a target. The chamber device defines an access chamber, a first entrance from exterior to the access chamber, a depositing chamber, and a second entrance from the access chamber to the depositing chamber. The chamber device includes an access door, a separating door, and a carrier. The access door is disposed at the first entrance and configured to open or close the first entrance. The separating door is disposed at the second entrance and configured to open or close the second entrance. The carrier is disposed in the access chamber and configured to carry a substrate from the access chamber to the depositing chamber. The target is received in the depositing chamber.
Abstract:
A tail light for an automobile includes a plurality of first illuminating elements and a plurality of second illuminating elements. The first illuminating elements are arranged to form a logo pattern of the automobile, and each of the first and second illuminating elements are configured for providing an adjustable illuminating brightness. The tail light is capable of selectively operating between a braking state and a non-braking state. In the braking state, the illuminating brightness of the first illuminating elements is greater than that of the second illuminating elements. In the non-braking state, the illuminating brightness of the first illuminating elements is less than that of the second illuminating elements.
Abstract:
An exemplary road traffic mirror includes a casing, a mirror, a monitor, a processor, and an indicating module. The mirror and the hollow casing define a chamber therein, and the mirror includes a transparent glass and a reflection film formed on the transparent glass, wherein the reflection film is a narrow band pass film. The monitor is configured to automatically monitor road conditions and generate corresponding road condition signals. The processor is configured to analyze the road condition signals, and to generate switching signals. The indicating module is received in the chamber and facing the mirror, wherein the indicating module is configured to be activated by the switching signal and emit corresponding light rays, the light rays of the indicating module passing through the reflection film and forming an indication sign on the outside of the road traffic mirror.
Abstract:
An infrared absorbing filter includes a glass plate molded by melting a composition of raw materials and cooling the melted composition. The composition of raw materials includes 28-33 by percentage weight (wt %) of phosphorus pentoxide (P2O5), 14-33 wt % of A oxide (A2O), 0.15-4 wt % of B oxide (BO), 2.5-8 wt % of copper oxide (CuO), 1.4-1.65 wt % of aluminum oxide (Al2O3). Wherein A is one of alkali metals, A2O is one of oxidizing alkali metals, B is one of alkaline earth metals, BO is one of oxidizing alkaline earth metals.
Abstract translation:红外吸收滤光器包括通过熔化原料组合物并冷却熔融的组合物而模制的玻璃板。 原料的组成包括五氧化二磷(P 2 O 5)的重量百分比(wt%),氧化铝(A2O)为14-33wt%,氧化硼(BO)为0.15-4wt%,氧化硼(BO))为2.5-8wt% 重量百分比的氧化铜(CuO),1.4-1.65%(重量)的氧化铝(Al2O3)。 其中A为碱金属之一,A2O为氧化性碱金属之一,B为碱土金属之一,BO为氧化碱土金属之一。
Abstract:
A multilayer substrate includes a base layer, a coating layer and an intermediate layer positioned between the base layer and the coating layer. The intermediate layer contains chromium and nitrogen. A content of the chromium in the intermediate layer gradually decreases from the base layer to the coating layer.
Abstract:
A device for manufacturing lenses includes a tray, a cover, and a sheet. The tray defines supporting holes arranged in rows and columns. The cover defines through holes arranged in rows and columns. The sheet is positioned between the tray and the cover, and defines restricting passages. Each of the plurality of restricting passages corresponds to a column of corresponding supporting holes and a column of corresponding through holes.
Abstract:
The present invention relates to an efficient microbial protein production system. A target protein is expressed as a portion of a fusion protein with the coat protein of Cymbidium mosaic virus (CyMV) in E. coli. Accordingly, the present invention provides nucleic acid expression vectors comprising a sequence encoding a protein of interest fused to CyMV coat protein, as well as methods of utilizing such vectors to produce the protein of interest.