Abstract:
A seat assembly is revealed. A connection slot is formed around a circumference of a rear side of a support and an assembly block is projectingly arranged at a center of the connection slot. At least one channel penetrating from one side to the other side of the assembly block is formed on the assembly block. A cloth surface is covered from a front side to a rear side of the support and a circumference thereof is mounted into the connection slot. A frame formed by injection molding is to cover the circumference of the rear side of the support and fill into the connection slot and the channel so as to connect and secure the cloth surface with the frame as well as the support by multiple bends of the cloth surface and infiltration of frame material into pores of the cloth surface.
Abstract:
A machining device used to machine a workpiece into a tube includes a punch and a cavity die. The cavity die includes a cavity and an extruding portion. The extruding portion is curved. The unilateral clearance between the punch and the cavity die is less than a thickness of the sidewall. A method for manufacturing a tube is also provided.
Abstract:
An address generator of a communication data interleaver and a communication data decoding circuit are provided. The address generator includes a first operation unit and a second operation unit. The first operation unit receives a first parameter and a first operation result. The first operation unit performs a recursive operation according to the first parameter and the first operation result and outputs the first operation result. The second operation unit receives the first operation result, a second operation result, and a second parameter. According to a transmission mode signal, whether the second operation unit generates a second operation result is determined by performing a recursive operation according to the first operation result, the second parameter, and the second operation result, or by calculating the first operation result and the second parameter.
Abstract:
A white organic light-emitting diode includes two symmetric emission layers and a middle emission layer. The two symmetric emission layers emit a first color light with approximately the same frequency components. The middle emission layer is located between the two symmetric emission layers. The middle emission layer emits a second color light with frequency components different from main frequency components of the first color light. When the voltage applied to the organic light-emitting diode changes and leads to a decrease of luminescent intensity of one of the symmetric emission layers, the other symmetric emission layer automatically increases the luminescent intensity to compensate for the reduced light intensity.
Abstract:
A mesh chair includes a mesh supporting frame, and a mesh positioned over and joined on the mesh supporting frame; the mesh supporting frame has several joining post portions spaced apart on a loop-shaped side thereof; the mesh is stretched to a tense state and joined on the mesh supporting frame with the joining post portions of the frame being passed through the openings on the periphery thereof; afterwards, a wrapping layer is formed over and around the joint between the mesh and the mesh supporting frame by injection molding to join the mesh and the mesh supporting frame together; thus, the mesh is firmly joined on the mesh supporting frame, having such a tension and elasticity as to provide supporting force to a sitter on the mesh chair.
Abstract:
An organic electro-luminescent device. The device comprises two electrodes and an organic electro-luminescent structure interposed therebetween. The electrodes are disposed on a substrate, one serving as an anode and the other as a cathode. The organic electro-luminescent structure comprises a fluorescent emissive layer, a phosphorescent emissive layer and a nondoped organic material layer interposed therebetween. The phosphorescent emissive layer has a host material. The nondoped organic material layer has a highest occupied molecular orbital (HOMO) energy level no higher than that of the host material in the phosphorescent emissive layer.
Abstract:
An organic electroluminescent device (OELD) is provided. The OELD includes a substrate, an anode, a cathode, a hole transport layer, an electron transport layer and an emission layer. The anode and the cathode are disposed on the substrate. The hole transport layer is disposed between the anode and the cathode. The electron transport layer is disposed between the hole transport layer and the cathode. The emission layer is disposed between the hole transport layer and the electron transport layer. The emission layer includes a host and a dopant. The chemical structure of the dopant is shown as the formula [I]: “M” is a metal atom whose atomic weight is greater than 40. “S” is selected from a group consisting of alkyl, alkoxy, haloalkyl, halogen, hydrogen and any other substituents.
Abstract:
An organometallic complex having formula (I) wherein M is a transition metal; each A1 and A2 is independently a monodentate ligand, or A1 and A2 are covalently joined together to form a bidentate ligand; R1 is H, C1-18 alkyl, C1-18 alkoxy, C3-18 heteroalkyl, C3-20 aryl, C3-20 heteroaryl, or C3-20 cycloalkyl; R2 is the same or different and is H, C1-18 alkyl, C1-18 alkoxy, C3-18 heteroalkyl, C3-20 aryl, C3-20 heteroaryl, or C3-20 cycloalkyl, or two R2 groups link together with the carbon atoms to which they are attached to form a 4- to 12-member aromatic or heteroaromatic ring; R3 is the same or different and is H, CN, tricyanovinyl, halogen, CX3, C1-18 alkyl, C1-18 alkoxy, C3-18 heteroalkyl, C3-20 aryl, C3-20 heteroaryl, or C3-20 cycloalkyl, wherein X is halogen; m is the charge of M; n is 1, 2, or 3.
Abstract translation:具有式(I)的有机金属配合物,其中M是过渡金属; 每个A 1和A 2独立地是单齿配体,或共价连接在一起的A 1和A 2 以形成双齿配体; R 1是H,C 1-18烷基,C 1-18烷氧基,C 3-18-18杂环烷基 ,C 3-20芳基,C 3-20杂芳基或C 3-20环烷基; R 2相同或不同,为H,C 1-18烷基,C 1-18烷氧基,C 3〜 18个杂烷基,C 3-20芳基,C 3-20杂芳基或C 3-20环烷基,或两个R 2个基团与它们所连接的碳原子一起形成4-12个芳族或杂芳族环; R 3相同或不同,为H,CN,三氰基乙烯基,卤素,C 1-3,C 1-18烷基,C 1-18个烷氧基,C 3-18个杂烷基,C 3-20芳基,C 3-20杂芳基,或 C 3-20环烷基,其中X是卤素; m是M的电荷; n为1,2或3。
Abstract:
A socket connector (10) includes an housing (12) including a pair of side walls (14) and a pair of end walls (16) commonly defining a cavity (18) for receiving a chip carrier therein. A plurality of passageways (20) are disposed in two side walls (14) of the housing (12) for receiving a corresponding number of contacts (22) therein. A bottom surface (36) is provided with the housing (12) for supportably receiving the chip carrier in the cavity. A plurality of openings (38) are provided in the bottom surface (36) along two opposite sides thereof wherein each opening (38) corresponds to every two adjacent passageways (20). A dividing bar (40) of the bottom surface (36) is provided between every two adjacent openings (38). A pair of shortened abutment wings (42) extend laterally by two sides of the dividing bar (40) and on the under-surface (44) of the bottom surface (36) whereby the surface-mounting contact tails (34) of two adjacent contacts (22) by two sides of every dividing bar (40) can be engageably aligned with the corresponding abutment wings (42), respectively, for maintaining the contact tails (34) in the same plane.
Abstract:
A verification system of a basic input output system and a verification method thereof are provided. The verification system includes a server, a microcontroller, and a verification device. The server includes a platform controller hub and the basic input output system. The server outputs a log file of the basic input output system by a system management bus controller in the platform controller hub. The microcontroller is coupled to the server. The microcontroller receives the log file and converts the log file into a readable character. The verification device is coupled to the microcontroller. The verification device receives and displays the readable character.