Abstract:
A pixel structure electrically connected to a scan line and a data line, includes an active device, a first pixel electrode, a second pixel electrode, a capacitor coupling electrode and a charge releasing device. The active device is electrically connected to the scan line and the data line. The second pixel electrode is electrically isolated from the first pixel electrode. The capacitor coupling electrode is disposed under the second pixel electrode and electrically connected to the data line through the active device. The charge releasing device is electrically connected to the second pixel electrode. The above-described pixel structure is able to effectively solve the image sticking problem. In addition, further provides an active matrix substrate which is able to avoid the image sticking effect.
Abstract:
An adjustable connector is electrically connected with corresponding signal contacts on a circuit board by a multiple of leaf springs. As a result of the flexibility of the leaf springs, the adjustable connector can move within a small range in relation to the circuit board while keeping in electrical connection with the circuit board so as to adjust the position of the adjustable connector on the circuit board.
Abstract:
A shielding module is used for shielding an electrical device. In this case, the shielding module includes a heat-dissipating component, a casing and a connection component. The heat-dissipating component has a contacting portion to contact with the electrical device. The electrical device is located in the casing, which has an opening. The heat-dissipating component is disposed in the opening. The connection component and the casing fasten the heat-dissipating component on the electrical device. Furthermore, an electrical apparatus is provided and includes an electrical device, a heat-dissipating component, a casing, and a connection component. In this case, the electrical device is fastened on a circuit board. The heat-dissipating component has a contacting portion adjacent to the electrical device. The electrical device is disposed in the casing, which has an opening. The heat-dissipating component is disposed in the opening. The connection component and the casing fasten the heat-dissipating component on the electrical device.
Abstract:
A shielding device includes a shell and a touch portion. In this case, the shell shields an electronic device. The touch portion is disposed on the shell and touches the electronic device. An electronic apparatus, including a circuit board, a shell and a touch portion, is also provided. In this case, at least one electronic device is disposed on the circuit board. The shell shields the electronic device. The touch portion is on the shell and touches the electronic device.
Abstract:
An easily-assembled connecting mechanism and the apparatus using the same. The apparatus comprises a first and second pieces. The connecting mechanism includes a hook member and a holding member. The hook member has a head portion and a lever portion connected to the first piece; The extendable receptacle member has a plurality of cantilevered arms disposed around a through hole of the second piece. Each cantilevered arm of the extendable receptacle member has a holding portion to fix the head portion of the hook member and an inner tapered surface forming a cone. During joining of the first and second pieces, the cantilevered arms are elastically deformed, and the head of the hook member is pushed into and fixed by the holding portion of the holding member.
Abstract:
A solid state drive includes a flash memory, a cache memory, and a controlling unit. The solid state drive is in communication with a host. The flash memory includes a plurality of blocks, wherein each of the blocks has a plurality of pages. The cache memory includes a plurality of cache units. The cache units are allocated into a plurality of groups according to operating statuses of respective cache units. The controlling unit is in communication with the host, the flash memory and the cache memory. Under control of the controlling unit, a write data from the host is temporarily stored in the cache memory so as to be written into the flash memory, or a read data from the flash memory is temporarily stored in the cache memory so as to be provided to the host.
Abstract:
A repairing method for a pixel structure including an active device, a pixel electrode connected with the active device, a bottom electrode disposed under the pixel electrode, upper electrodes disposed between the pixel electrode and the bottom electrode and connected with the pixel electrode, a first dielectric layer disposed between the bottom electrode and the upper electrodes and a second dielectric layer disposed between the upper electrodes and the pixel electrode is provided. The repairing method includes removing a portion of the pixel electrode to electrically isolate the contact region over the upper electrode from the remaining portion of the pixel electrode, wherein a storage capacitor is formed by the reserved region over the upper electrode, the second dielectric layer and the remaining portion of the pixel electrode.
Abstract:
A solid state drive includes a flash memory, a cache memory, and a controlling unit. The solid state drive is in communication with a host. The flash memory includes a plurality of blocks, wherein each of the blocks has a plurality of pages. The cache memory includes a plurality of cache units. The cache units are allocated into a plurality of groups according to operating statuses of respective cache units. The controlling unit is in communication with the host, the flash memory and the cache memory. Under control of the controlling unit, a write data from the host is temporarily stored in the cache memory so as to be written into the flash memory, or a read data from the flash memory is temporarily stored in the cache memory so as to be provided to the host.
Abstract:
A fixing mechanism for fixing a detachable module is disclosed. The fixing mechanism includes a frame for covering the detachable module. The frame includes a frame body and a pivoting portion connected to the frame body. A pivoting hole is formed on the pivoting portion. The fixing mechanism further includes a casing. The casing includes a lateral plate whereon a slot is formed, a shaft portion extended from the lateral plate in a first direction and disposed on a side of the slot, and an engaging portion extended from the lateral plate in a second direction and disposed on another side of the slot for inserting into the pivoting hole of the pivoting portion so that the pivoting portion is capable of pivoting from a first position to a second position as abutting against the shat portion.
Abstract:
A display device includes a casing, a display panel assembled in the casing, and a front panel assembled at the casing to cover edges of the display panel. The front panel includes two first boards and two second boards. Each of the first boards includes a main portion and two auxiliary portions located at two sides of the main portion. The two second boards are stacked on the auxiliary portions. A method for assembling a display device is also disclosed.