Abstract:
A game machine includes a chest, a frame vertically disposed in an upper portion of the chest for containing prizes, a shoot unit disposed in the chest and corresponding to the frame, a ball recover unit disposed in a lower portion of the chest and a control unit disposed on the chest for controlling the shoot unit and the ball recover unit. The player can shoot a ball to strike a wanted prize by using the shoot unit. The player can take the prize after being stricken and falling from the frame. After shooting the ball, the control unit drives the ball recover unit to recover the shot ball and feed into the shoot unit for next operation.
Abstract:
A game machine includes a cabinet, a shutter, a sensor and a drive mechanism. The cabinet has a chute for guiding items therein to a hatch accessible to a user. The shutter is normally disposed in a closed position in the cabinet to cover the chute in order to prevent the item from entering the hatch. The sensor is provided for detecting whether an item is deposited on the shutter, and if yes, sending out a signal. Upon reception of the signal, the drive mechanism is activated to cause the shutter to move to an opening position uncovering the chute to allow entry of the detected item into the hatch.
Abstract:
A game machine includes a frame and a control unit mounted on the frame. A rack assembly and a moving unit are respectively positioned in the frame, wherein the rack assembly is provided for containing prizes and a hammering device is mounted onto the moving unit. The moving unit and the hammering device are respectively electrically connected to the control unit. After inserting coin, the player can use the control unit to operate the moving unit for moving the hammering device to a purposed position. Finally, the player operates the hammering device to strike the rack assembly for forming vibration to move the selected prize and the prize is used as a reward after falling from the rack assembly.
Abstract:
A pixel structure including a substrate, a scan line, a data line, a common line, an active device, a pixel electrode, a passivation layer and a transition auxiliary electrode is provided. The scan line and the data line on the substrate intersect with each other to define a pixel region. The common line on the substrate is parallel to the scan line. The active device disposed within the pixel region is electrically connected to the scan line and the data line. The pixel electrode disposed within the pixel region is electrically connected to the active device. The passivation layer is between the data line and the pixel electrode. The transition auxiliary electrode is adjacent to the periphery of the pixel electrode and electrically connected to the common line through a contact hole of the passivation layer. The transition auxiliary electrode and the pixel electrode are made of the same film.
Abstract:
A fabricating method of a TFT array substrate includes following steps: providing a substrate having a pixel region and a bonding pad region surrounding the pixel region; forming a patterned polysilicon layer within the pixel region on the substrate; forming a first patterned insulating layer to cover the patterned polysilicon layer; forming a first patterned transparent conductive layer on the first patterned insulating layer; forming a first metal layer on the first patterned transparent conductive layer; forming a second patterned insulating layer to cover the first metal layer; forming a second patterned transparent conductive layer on the second patterned insulating layer; forming a second metal layer on the second patterned transparent conductive layer; forming a third patterned insulating layer to cover the second metal layer; and forming a third patterned transparent conductive layer on the third patterned insulating layer.
Abstract:
A decision feedback equalizer having a adjusting device and method thereof are described. The decision feedback equalizer having an adjusting device includes a feed-forward filter, a decision device, a feedback filter, the adjusting device, and a summation device. The feed-forward filter generates a forwarding signal (Sff) based on an input signal (Si). The decision device generates a first decision (Sd1) signal and a second decision signal (Sd2) which are associated with the summation signal (Ssu). The feedback filter receives the second decision signal (Sd2) for generating a feedback signal (Sfb). The adjusting device adjusts the first decision signal (Sd1) according to a first weighting value (V1) for generating a first adjusted signal (Sa1) and transmitting the first adjusted signal (Sa1) to the feed-forward filter. The adjusting device further adjusts the feedback signal (Sfb) according to a second weighting value (V2) for generating a second adjusted signal (Sa2). The summation device receives the forwarding signal (Sff) and the second adjusted signal (Sa2) for generating a summation signal (Ssu) and issuing the summation signal (Ssu) to the decision device.
Abstract:
A device utilizes a plasma for a liquid crystal alignment. The alignment is processed in a vacuum chamber in a simple way. A general chemical vapor deposition is coordinated to reduce cost. The present invention is a novel contactless process avoiding particle contamination, residual static charge and scratch. And multiple are as of the present invention can be used for alignment.
Abstract:
A liquid crystal display includes a display panel, a processor, a timing control circuit, and a switch cell layer. The switch cell layer includes a liquid crystal layer, a first driving circuit, and a second driving circuit. The switch cell layer is installed on the display panel. When the display panel displays at least one two-dimensional region and at least one three-dimensional region according to an image signal, the processor determines positions of the at least one two-dimensional region and the at least one three-dimensional region on the display panel according to the image signal. The timing control circuit is for generating an address signal according to the positions. The first driving circuit and the second driving circuit drive first enable lines coupled to the first driving circuit in groups and second enable lines coupled to the second driving circuit in groups respectively according to the address signal.
Abstract:
The present invention provides a gift storage device of a gift game machine and a selection output means thereof. The gift game machine has the selection output means movable in X, Y, Z axes to correspond to a plurality of gift storage devices. Each gift storage device includes a gift support for allowing gifts to hang thereon and a rotary feeding set controlled by the selection output means. A spiral element of the rotary feeding set rotates to push the gifts on the gift support, so that the gifts can move on the gift support until they leave the gift support. Each gift storage device is positioned to a back plate of the gift game machine via an insertion frame. Tabs and insertion troughs are provided between the gift storage device and the insertion frame, so that the gift storage device can be disassembled or assembled easily.
Abstract:
The present invention provides a gift storage device of a gift game machine and a selection output means thereof. The gift game machine has the selection output means movable in X, Y, Z axes to correspond to a plurality of gift storage devices. Each gift storage device includes a gift support for allowing gifts to hang thereon and a rotary feeding set controlled by the selection output means. A spiral element of the rotary feeding set rotates to push the gifts on the gift support, so that the gifts can move on the gift support until they leave the gift support. Each gift storage device is positioned to a back plate of the gift game machine via an insertion frame. Tabs and insertion troughs are provided between the gift storage device and the insertion frame, so that the gift storage device can be disassembled or assembled easily.