Abstract:
A stacked-type solid electrolytic capacitor package structure includes a capacitor unit, a package unit and a conductive unit. The capacitor unit includes a plurality of capacitors stacked on top of one another. The package unit includes a package body enclosing the capacitors. The package body has a top surface defining a package length, a package width and an effective package, and the package width is substantially between 85% and 95% of the package length. The conductive unit includes a first conductive terminal electrically connected to the positive portion of the capacitor and a second conductive terminal electrically connected to the negative portion of the capacitor. One part of the first conductive terminal and one part of the second conductive terminal are enclosed by the package body, and another part of the first conductive terminal and another part of the second conductive terminal are exposed from the package body.
Abstract:
A stacked solid state solid electrolytic capacitor includes a plurality of capacitor units, a substrate unit and a package unit. The substrate unit includes a positive guiding substrate and a negative guiding substrate. The positive guiding substrate has a positive exposed end integrally extended therefrom along a first predetermined direction. The negative guiding substrate has a first negative exposed end integrally extended therefrom along a second predetermined direction, a second negative exposed end integrally extended therefrom along a third predetermined direction, and a third negative exposed end integrally extended therefrom along a fourth predetermined direction. The first, the second, the third and the fourth predetermined directions are different. The capacitor units are stacked on top of one another and disposed on the negative guiding substrate. The package unit encloses the capacitor units, one part of the positive and one part of the negative guiding substrate.
Abstract:
A stacked solid electrolytic capacitor with positive multi-pin structure includes a plurality of capacitor units, a substrate unit and a package unit. The positive electrode of each capacitor unit has a positive pin extended outwards therefrom. The positive pins are divided into a plurality of positive pin units that are separated from each other and electrically stacked onto each other. The negative electrode of each capacitor unit has a negative pin extended outwards therefrom. The negative pins are divided into a plurality of negative pin units. The negative pin units are separated from each other and the negative pins of each negative pin unit are electrically stacked onto each other. The substrate unit has a positive guiding substrate electrically connected to the positive pins and a negative guiding substrate electrically connected to the negative pins. The package unit covers the capacitor units and one part of the substrate unit.
Abstract:
The present invention is primarily related to a LED (Light-Emitting Diode) lamp with light reflection, which provides both the forward and the backward illumination via the configuration of reflection plate with one side or both sides regularly distributed with a plurality of protruding or hollow geometric spatial blocks, for example, pyramids or cones to enable both light transparency and reflection, and thus enlarges the practical space of prior LED lamp illumination and provides more utility and convenience.
Abstract:
A structure of holder of LED lighting tube includes a holder body, two end sockets, and two retainers. The two end sockets are respectively mounted to two ends of the holder body and each of the end sockets forms an opening. The two retainers are respectively received in the end sockets, and each of the retainers has a central portion forming a longitudinal passage, which receives and retains therein a metal clip. As such, the arrangement of power supply inside the holder body is simplified, so that the holder body and the end sockets can be manufactured in an integrally-formed manner and the metal clips can be used to clamp an LED lighting tube to thereby improving manufacturing efficiency and reducing manufacturing costs, and facilitating easy mounting and dismounting of the LED lighting tube.
Abstract:
A linear light-emitting diode (LED)-based solid-state lamp having a double safety mechanism that comprises at least three shock protection switches, fully protects a person from possible electric shock during re-lamping or maintenance. One protection switch provided at each end of the lamp is able to cut off power when the associated end of the lamp is not inserted into the lamp socket. A third protection switch can be used to turn off the power from the AC main for additional shock protection.
Abstract:
A stacked solid electrolytic capacitor with positive multi-pin structure includes a plurality of capacitor units, a substrate unit and a package unit. The positive electrode of each capacitor unit has a positive pin extended outwards therefrom. The positive pins are divided into a plurality of positive pin units that are separated from each other and electrically stacked onto each other. The negative electrode of each capacitor unit has a negative pin extended outwards therefrom. The negative pins are divided into a plurality of negative pin units. The negative pin units are separated from each other and the negative pins of each negative pin unit are electrically stacked onto each other. The substrate unit has a positive guiding substrate electrically connected to the positive pins and a negative guiding substrate electrically connected to the negative pins. The package unit covers the capacitor units and one part of the substrate unit.
Abstract:
A stacked capacitor with positive multi-pin structure includes a plurality of capacitor units, a substrate unit and a package unit. Each capacitor unit has a positive electrode that has a positive pin extended outwards therefrom. The positive pins of the capacitor units are divided into a plurality of positive pin units that are separated from each other, and the positive pins of each positive pin unit are electrically stacked onto each other. Each capacitor unit has a negative electrode, and the negative electrodes of the capacitor units are electrically stacked onto each other. The substrate unit has a positive guiding substrate electrically connected to the positive pins of the capacitor units and a negative guiding substrate electrically connected to the negative electrodes of the capacitor units. The package unit covers the capacitor units and one part of the substrate unit.
Abstract:
A camera system includes a driver rotating a rotor and an attached supporter. Two sound sensors on the supporter measure sound signals from an acoustic source. A camera on the supporter is aligned with the acoustic source when the driver rotates the supporter according to differences between the sound signals.
Abstract:
An image capturing device includes a zoom lens system, an image sensor for capturing images, and a compensating system for compensating the light attenuation of the image capturing device caused by the zoom lens system. The compensating system includes a memory unit, a judging unit, and a compensating unit. The memory unit is configured for storing a plurality of compensating expressions associated with predetermined focal lengths of the zoom lens system. The judging unit is configured for determining the focal length of the lens system when the image sensor capturing an image. The compensating unit is used for compensating for the light attenuation of the image capturing device using the compensating expression associated with the focal length determined by the judging unit.