Abstract:
A high-powered diode holder and a package thereof are disclosed. The high-powered diode holder includes a base and a plurality of metal electrodes. The base is made of ceramic. In the interior part of one end of the base, there is a functional area that is indented inwards. In the functional area, there are a plurality of through-hole units and a plurality of conducting areas whose polarities are different. The second end of the base is connected with a heat-conducting base. The metal electrodes are individually connected with the base, and the metal electrodes are electrically connected with the corresponding conducting areas respectively. In the functional area, there are a plurality of LED chips that correspond to the through-hole units respectively. The LED chips and the conducting areas are connected with conducting-wires respectively, and a package resin element covers the functional areas of the base.
Abstract:
A dual polarization antenna device for creating a dual band function, includes: a first dielectric body, a patch layer, a first phase difference changing structure, a second dielectric body, a common metal layer, a ground layer, a second phase difference changing structure, a first antenna feed pin, and a second antenna feed pin. The first dielectric body, the patch layer, the first phase difference changing structure, the common metal layer, and the first antenna feed pin are combined together to form an upper polarization antenna structure. The second dielectric body, the common metal layer, the second phase difference changing structure, and the ground layer are combined together to form a lower polarization antenna structure. Therefore, the upper polarization antenna structure and the lower polarization antenna structure are combined to create both the dual polarization and the dual band functions.
Abstract:
Eyewear includes two ends portion and a frame having a bridge. The bridge has two outer sides each including a groove extending inward and having at least one face section that is magnetically attracting or magnetically attracted. Each lens portions includes a lens and a protrusion formed on an inner end of the lens and received in the groove of one of the outer sides. A magnetically attracted or attracting element is mounted on at least one face of the protrusion of each lens portion and has magnetic attraction with the at least one face section of the groove of one of the outer sides. The walls of the grooves reliably catch and support the protrusions such that the lens portions are coupled with the frame at more than one point. A reliable coupling effect is provided by three-dimensional coupling and magnetic attraction between the coupling portions and the frame.
Abstract:
A dual polarization antenna device for creating a dual band function, includes: a first dielectric body, a patch layer, a first phase difference changing structure, a second dielectric body, a common metal layer, a ground layer, a second phase difference changing structure, a first antenna feed pin, and a second antenna feed pin. The first dielectric body, the patch layer, the first phase difference changing structure, the common metal layer, and the first antenna feed pin are combined together to form an upper polarization antenna structure. The second dielectric body, the common metal layer, the second phase difference changing structure, and the ground layer are combined together to form a lower polarization antenna structure. Therefore, the upper polarization antenna structure and the lower polarization antenna structure are combined to create both the dual polarization and the dual band functions.
Abstract:
A method of displaying an image for a document projector is disclosed. The method includes capturing the image of an object to get an input image; generating a frame; overlapping the frame and the input image, wherein the frame separates the input image into an emphasized area and a not-emphasized area to form an output image; and displaying the output image.
Abstract:
An antenna apparatus includes a hollow column, a conductive cable, a first metal wire, a column structure, and a second metal wire. The conductive cable is received in the hollow column, and the conductive cable electrically contacts the hollow column via a second conductive wire layer thereof. One side of the first metal wire is electrically connected with a first conductive wire layer of the conductive cable. The column structure has a column body, a metal layer formed on the column body, at least one spiral groove formed on the metal layer for exposing a part of the column body, and two conductive covers respectively disposed on two sides of the column body. Moreover, one of the two conductive covers is electrically connected with the other side of the first metal wire. Furthermore, one side of the second metal wire is electrically connected with the other conductive cover.