Abstract:
An electrical connector includes a connector body (10) having a front end (11) and a rear end (12), a plurality of passageways (13) extending from the front end towards the rear end, and terminals (20) within the passageways. The terminal includes an extension section (26) extending a distance away from the rear end of the connector body. A supporting member (15) is disposed adjacent the rear end for supporting at least a portion of the extension section. Thus, the arrangement of the supporting member will prevent the free extension sections of the prior art from being deflected or damaged.
Abstract:
A light source apparatus (8) includes a rear plate (80), a front plate (89) formed with an anode layer (82), and a cathode (81) interposed therebetween. The cathode includes a plurality of electrically conductive carriers (812) and a plurality of field emitters (816) formed thereon. The field emitters are uniformly distributed on anode-facing surfaces of the conductive carriers. The anode layer includes a plurality of curving portions (820) corresponding to the conductive carriers. Preferably, the field emitters extend radially outwardly from the corresponding conductive carriers. The conductive carriers are parallel with each other, and are located substantially on a common plane. Each of the conductive carriers can be connected with a pulling device arranged at least one end thereof, and an example of the pulling device is a spring. The conductive carriers may be cylindrical, prism-shaped or polyhedral.
Abstract:
A double-faced light emitting diode display includes a pair of parallel shield panels (20, 20′), and a light emitting module (30) located between the shield panels. Each shield panel includes a video contrast enhancement assembly. The light emitting module includes an opaque insulative substrate (31) with a pair of pixel matrixes symmetrically formed on opposite surfaces (310, 310′) thereof and a circuit driving system formed at at least one of the surfaces. Each pixel matrix includes a plurality of pixel units (320, 320′). Symmetrically opposite pairs of pixel units are electrically interconnected so that the shield panels can simultaneously display same images. The double-faced light emitting diode display has a simple structure, a small size, low cost and full color display capability, and can be advantageously applied in traffic signal boards, large-scale display boards, surround cinemas and so on.
Abstract:
A double-faced plasma display panel includes two parallel viewing screens (20, 20′), and a discharge structure (30) located between the viewing screens. Each viewing screen includes a transparent substrate (21, 21′), with a plurality of transparent electrodes (23, 24, 23′, 24′), a transparent dielectric layer (22, 22′), and a protection layer (25, 25′) formed at an inner surface of the transparent substrate. The discharge structure includes an opaque insulative substrate (31), with a plurality of addressing electrodes (37, 37′), an opaque dielectric layer (38, 38′), a plurality of separation walls (39, 39′), and a fluorescent layer (40, 40′) formed at each of opposite surfaces (310, 310′) thereof. Symmetrically opposite pairs of same electrodes are electrically interconnected so that the viewing screens can simultaneous display a same image. Only a single driving system is needed to achieve the simultaneous display.
Abstract:
A field emission device (100) generally includes a front substrate (101) and a rear substrate (111) opposite thereto. The front substrate is formed with an anode (102). The rear substrate is formed with cathodes (112) facing the anode. A plurality of insulating portions (121) are formed on the rear substrate, each of which is arranged between every two neighboring cathodes. A plurality of gate electrodes are formed on top surfaces of the insulating portions 121. Each of the gate electrodes has a getter layer (123) thereon.
Abstract:
A battery connector adapted to hold a battery, comprises an insulative housing, a first conductive contact and a second conductive contact. The insulative housing defines a receiving chamber which having a horizontal bottom. The first conductive contact comprises a retention portion retained in the periphery of the receiving chamber, a resilient portion extending in a horizontal direction from the retention portion and pivotal about an axis of the retention portion along a vertical direction, a hook portion extending from a distal end of the resilient portion, and a spring arm extending from a location adjacent the distal end of the resilient portion. The second conductive contact is disposed in the bottom and having a resilient contacting portion for electrically engaging with the battery.
Abstract:
A battery connector comprises an insulative housing comprising mounting surface and a top surface opposite to the mounting surface. A receiving chamber is defined in the housing from the top surface with first and second conductive terminals spatially arranged within the chamber. The chamber features at least a rounded corner for conforming to a rounded edge of a battery to be inserted so as to prevent the battery from being inserted incorrectly. The rounded corner has a curve surface tangent to two inner side walls of the chamber.
Abstract:
A method for treating a neurofibroma, e.g. dermal neurofibroma, a subdermal neurofibroma, or a superficial plexiform neurofibroma, in a subject in need of such treatment is disclosed. The method comprises locally applying a composition to a neurofibroma either topically or intralesionally. This method does not encompass systemic administration of the composition to the subject to have an effect on the neurofibromas. Compositions useful for such treatments and methods of preparing the compositions are disclosed.
Abstract:
An electronic circuit connecting structure of a flat display panel substrate is described. The electronic circuit connecting structure includes a plurality of conductive terminals on the flat display panel substrate and a plurality of conductive protrusions formed on the conductive terminals. In addition, an electronic circuit connecting method for the flat display panel substrate is also disclosed therein.
Abstract:
An exercise device includes two cranks rotatably coupled to an upright support of a base, two handles pivotally coupled to the upright support, and two foot supports each having a front portion pivotally coupled to the pivot rod of the cranks with a link and each having a rear portion pivotally coupled to the rear portion of the base, and the lower portions of the handles are pivotally coupled to the foot supports to allow the moving stroke of the foot supports to be controlled by the handles. The handles may be pivotally coupled together with a coupling device. A foot pedal may be pivotally supported on each of the foot supports and pivotally coupled to the handles.