Abstract:
Provided is an LED lamp heat dissipation structure, including: a metal plate and an LED lamp substrate. The metal plate has a first predetermined shape portion, wherein a center of the metal plate is defined to have a second predetermined shape portion, an outer edge of the metal plate is formed to be a tapered portion with outward corrugations and with a center at the second predetermined shape portion, the tapered portion has a predetermined inclination angle with respect to the second predetermined shape portion, two surfaces of the second predetermined are defined as an inner surface and an outer surface, respectively, and the tapered portion surrounds the inner surface to define an inner space. The LED lamp substrate is closely attached to the inner surface. The heat generated from the LED lamp substrate can be efficiently transferred to an ambient air through the LED lamp heat dissipation structure.
Abstract:
Provided is a telescopic tube having a stabilizing structure, including: a first tube having an internal and external end, wherein at least three longitudinal stabilizing lines are protruded from an outer wall of the internal end, and at least one stabilizing line has a blocking surface disposed at one end thereof near the external end; and a second tube having an inner diameter larger than an outer diameter of the first tube and a diameter of an outer periphery of the stabilizing lines, and having an upper and lower end, wherein the upper end is provided with a blocking portion having an opening. The second tube is sleeved outside the first tube, the external end penetrates through the opening to expose outside the second tube, and the internal end remains therein. Therefore, the first tube can be stably slidable inside the second tube due to the stabilizing lines.
Abstract:
A clamp sleeve, including: a body and a first fastening assembly. The body has first and second ends, and includes a receiving portion therein. The receiving portion has first and second openings at the first and second ends. The body is provided with a gap, the gap has two ends extending to the first and second openings, and the gap is communicated with the receiving portion. The body is provided with first extending portions at two sides of the gap along a longitudinal direction, the first extending portions is provided with a first connecting sheet near the first opening, and the first connecting sheet is connected to each of the first extending portions and connected with the first opening. The first connecting sheet is provided with a first thin thread intersecting with the gap. The first fastening assembly is disposed on the first extending portions.
Abstract:
A telescopic tube assembly having a fixing structure, including: a first tube having at a receiving end offset toward a predetermined direction to form an inward offset arc portion and an outward arc portion opposite to each other; a second tube having an inserting end, wherein an inner diameter of the first tube is greater than an outer diameter of the second tube; and a fastening structure disposed at the receiving end of the first tube, wherein the inserting end of the second tube is inserted into the first tube through the receiving end; by locking the fastening structure, the second tube is pushed against the inward offset arc portion and fixed with the first tube; by loosening the fastening structure, the second tube is released from the inward offset arc portion and is movable relative to the first tube.
Abstract:
Provided is an LED ring lamp structure, including: an annular base provided with a plurality of bumps and a plurality of grooves radially and alternately arranged on the annular base; and an LED strip light shaped in a long strip, bendable and deformable, and capable of emitting light after being supplied with power. A plurality of LED light emitting portions are evenly disposed on the LED strip light. The plurality of LED light emitting portions are correspondingly arranged on respective bumps, remaining portions of the LED strip light are evenly disposed in respective grooves, and an arrangement of the LED light emitting portions is changed from a linear arrangement to an annular arrangement. The LED light emitting portions are arranged toward a same predetermined direction.
Abstract:
Disclosed is an integrated lamp stand, including: a support stand having three leg tubes, a center tube assembly, and a sliding connector slidably sleeved on the center tube assembly; a pivot member coupled on a top of the center tube assembly; and a lamp body pivotably connected to the pivot member. In an expanded state, the leg tubes are expanded, the sliding connector is moved to a predetermined position of the center tube assembly, the center tube assembly is elongated, and the lamp body is adjusted to a predetermined angle. In a collapsed state, the leg tubes are collapsed, the sliding connector is moved to another predetermined position of the center tube assembly, the center tube assembly is adjusted to a minimum length, and the lamp body is adjusted to another predetermined angle, whereby the lamp body and the support stand are collapsed to a slender shape.
Abstract:
An in-tube fixing assembly, which fixes an object inside or at an end of a tube, includes a primary tube having an inner space and an inner wall defining the inner space; a fixing member inserted partially or wholly into the inner space from an opened end of the primary tube and provided with at least one through hole at an appropriate position, the through hole provided with an accommodation part extending in a direction from the through hole toward the inner wall of the primary tube by a predetermined angle; and at least one screw member, one end of which is defined as an operation end and the other end defined as an insertion end, a diameter of the screw member configured to gradually decrease from the operation end to the insertion end, wherein the screw member is inserted into the through hole in a direction from the opened end to the inner space of the primary tube, such that when the insertion end is rotatably inserted into the accommodation part from the through hole, the insertion end of the screw member abuts against the inner wall of the primary tube to form a small recess thereon, the small recess and the accommodation part respectively form a first engaging thread and a second engaging thread, that are complementary to a shape of the screw member.
Abstract:
A lamp shade, comprising a multi-axis carrier; a plurality of support bars being pivotally connected to the multi-axis carrier to be pivotable between an open-up position and a folded position, the pivot axes of the plurality of support bars being parallel to each other or coaxial; and a cloth member mounted on the plurality of support bars, having an opening portion whose two corresponding sides being provided with two fastening elements; wherein when the support bars pivotally rotated to radially distribute is in the open-up position, the fastening elements is in the connected position, so as to the cloth member be extended to form a lampshade by a plurality of support bars, and by separating the fastening elements the plurality of support bars reversely pivot to be close to each other in the folded position so as to the cloth member co-pivot and fold.
Abstract:
A method of fabricating a hybrid orientation substrate is described. A silicon substrate with a first orientation having a silicon layer with a second orientation directly thereon is provided, and then a stress layer is formed on the silicon layer. A trench is formed between a first portion and a second portion of the silicon layer through the stress layer and into the substrate. The first portion of the silicon layer is amorphized. A SPE process is performed to recrystallize the amorphized first portion of the silicon layer to be a recrystallized layer with the first orientation. An annealing process is performed at a temperature lower than 1200° C. to convert a surface layer of the second portion of the silicon layer to a strained layer. The trench is filled with an insulating material after the SPE process or the annealing process, and the stress layer is removed.