Abstract:
A blind spot area warning and illustrating device includes a light guiding member including a light output face and a light incident face having grooves. The light guiding member further includes an operating face opposite to the light output face and having reflective faces. Each reflective face is at an acute angle to the light output face. A cover is mounted around the light guiding member. The light output face of the light guiding member is aligned with a light transmitting area of a mirror of a side view mirror. A light emitting diode lamp is mounted in the cover and is aligned with the light incident face. When the light emitting diode lamp is activated to emit light, the grooves diffuse the light emitted by the light emitting diode lamp, and the reflective faces reflect the diffused light to uniformly pass outwardly through the light output face.
Abstract:
A nozzle plate and an atomizing module using the nozzle plate are disclosed. The atomizing module is installed at a cavity and includes a piezoelectric circular plate, a braking circular plate and a nozzle plate. The braking circular plate is installed on a side of the piezoelectric circular plate. The nozzle plate is a circular disc clamped between the piezoelectric circular plate and the braking circular plate, and the nozzle plate includes firing holes and first protrusions. Each first protrusion is non-circular and protruded in a direction towards the piezoelectric circular plate or the braking circular plate to form a multi-curved surface structure radially or circularly arranged into a specific geometric pattern. The nozzle plate can increase the atomizing area, atomizing quantity and liquid-gas exchange rate to prevent excessive stresses from concentrating at the center of the nozzle plate or vibrations from cracking or breaking the nozzle plate.
Abstract:
A blind spot warning and turn signal indication light-emitting device for a vehicle side view mirror includes a mirror seat, a blind spot warning unit and a turn signal indication unit both mounted on the mirror seat. The blind spot warning unit includes a light guiding member having a light incident face aligned with a light emitting diode lamp and provided with a plurality of grooves to diffuse light emitted by the light emitting diode lamp. The turn signal indication unit includes a turn signal light guide having a light incident surface aligned with light emitting elements and provided with a plurality of troughs to diffuse light emitted by the light emitting elements. The turn signal light guide further includes an operating surface having reflective surfaces to reflect the diffused light to uniformly pass outwardly through a mirror of the vehicle side view mirror.
Abstract:
A nebulization apparatus with a packaging and fixing structure includes a piezoelectric driving device, an adhesive agent, a nebulization plate, a packaging layer and a fixing base. A ditch at the piezoelectric driving device is provided for filling an adhesive agent and installing the nebulization plate that is fixed to the driving device by the adhesive agent. The packaging layer covers the piezoelectric driving device. The fixing base fixes the piezoelectric driving device. Preferably, the packaging layer is made of a polymer material for insulating moisture and preventing short circuits of the piezoelectric driving device. The ditch and the adhesive agent enhance the attaching strength of the piezoelectric driving device and the nebulization plate to extend the life of the nebulization apparatus, and the adhesive agent can electrically insulate the nebulization plate and the piezoelectric driving device, such that the nebulization plate will have no electrochemical action with the liquid.
Abstract:
A nebulization structure with a nozzle plate includes a nozzle plate and a driving element. The nozzle plate is composed of a polymer and a support plate, and the support plate includes a plurality of connecting portions and a through hole, and the polymer covers the support plate and has a plurality of penetrating holes corresponding to the through hole. The driving element is coupled to the nozzle plate through the connecting portions for producing a high-frequency vibration wave through a piezoelectric effect after power is supplied and driving the nozzle plate to vibrate and break up the molecular structure of a solution into a mist, so as to achieve the nebulization effect. The nebulization structure can be installed in a nebulization apparatus to achieve a high-efficiency nebulization effect by the nozzle plate and the driving element, so as to facilitate the manufacturing process and save costs.
Abstract:
The present invention discloses an atomization structure comprising a carrier, a cover plate, a piezoelectric driving device and an atomization piece. The carrier includes at least one first support portion, the cover plate comprises at least one second support portion, and the carrier is covered by the plate covers. The piezoelectric driving device is disposed between the carrier and the cover plate, the atomization piece is clamped by one end of the piezoelectric driving device. The actuating effect of the piezoelectric driving device would not be absorbed but kept by point contacting the first support portions and the second support portions to clamp and support the piezoelectric driving device.
Abstract:
A method for controlling and switching operational modes of an additional lamp for a vehicle includes confirming a pre-set operating mode of the additional lamp. The additional lamp is switched from the pre-set operating mode to another operating mode only when a continuous first signal and intermittent plural second signals come from the vehicle. When the brake is operating and the additional lamp is in a non-flickering mode, the additional lamp generates non-flickering light. When the brake is operating and the additional lamp is in the flickering mode, the additional lamp generates flickering light. The additional lamp is turned off when the braking operation stops. When the braking operation continues and the additional lamp is in the flickering mode, the additional lamp keeps outputting flickering light. When the braking operation continues and the additional lamp is in the non-flickering mode, the additional lamp keeps outputting non-flickering light.
Abstract:
A method of designing an integrated circuit includes deploying an active area in a first standard cell. At least one gate electrode is routed, overlapping the active area in the first standard cell. At least one metallic line structure is routed, overlapping the active area in the first standard cell. The at least one metallic line structure is substantially parallel to the gate electrode. A first power rail is routed substantially orthogonal to the at least one metallic line structure in the first standard cell. The first power rail overlaps the at least one metallic line structure. The first power rail has a flat edge that is adjacent to the at least one metallic line structure. A first connection plug is deployed at a region where the first power rail overlaps the at least one metallic line structure in the first standard cell.
Abstract:
An integrated circuit includes at least one first gate electrode of at least one active transistor. At least one first dummy gate electrode is disposed adjacent to a first side edge of the at least one first gate electrode. At least one second dummy gate electrode is disposed adjacent to a second side edge of the at least one first gate electrode. The second side edge is opposite to the first side edge. At least one guard ring is disposed around the at least one first gate electrode, the at least one first dummy gate electrode, and the at least one second dummy gate electrode. An ion implantation layer of the at least one guard ring substantially touches at least one of the at least one first dummy gate electrode and the at least one second dummy gate electrode.
Abstract:
A nebulization apparatus includes a nebulization plate, a piezoelectric driving device connected to the nebulization plate for vibrating the nebulization plate, a liquid droplet conveying pipe located below the nebulization plate, a water tank for containing the liquid droplet conveying pipe and an active water supply device connected to the liquid droplet conveying pipe and the water tank. The active water supply device supplies working liquid to the liquid droplet conveying pipe, such that the droplet is attracted by surface tension and attached onto the nebulization plate to form the camber water film to nebulize the working liquid.