Abstract:
A ribbon roller is fixed in a ribbon cartridge via a fixing element. The fixing element includes an accommodation means and a fastening element. The accommodation means fixes a tab of the ribbon roller, and the fastening element engages the ribbon cartridge. When transporting the ribbon cartridge, the fixing element is capable of preventing the ribbon roller from rotating so as to prevent the ribbon from wrinkling and affecting printing quality.
Abstract:
A touch display device including a touch module, a display module, a tape, and an optical clear resin is provided. The display module has a polarizer. The tape is installed between the touch module and the display module, wherein a thickness of the tape is larger than a thickness of the polarizer. The tape surrounds a margin of the display module to form an accommodating space with the polarizer. The optical clear resin is disposed in the accommodating space. The touch module and the display module are adhered to each other by the optical clear resin.
Abstract:
A display panel driving device is provided. The display panel driving device includes a host and a driving chip. The driving chip includes a store unit, a driving module and a transmitting interface unit. The host controls the transmitting interface unit to switch sources of image data received by the driving module according to content of the image data, so as to determine whether the driving module receives the image data from the store unit or not.
Abstract:
A protection frame has a frame body and a supporting arm. The frame body is mounted around the portable device. The supporting arm is mounted pivotally on the frame body to allow the user to adjust the propping angle of the portable device. Therefore, the portable device can be used at different visual angles as desired.
Abstract:
A dual directional sliding hinge is mounted in a portable device with a cover, a first base and a second base and has a main panel, a first sliding unit, a second sliding unit. The main panel is attached to the cover. The first sliding unit is attached to the first base. The second sliding unit is attached to the second base. When the first and second sliding units slide at the closing position, the cover and the first and second bases are folded to have a smallest volume. Since the first and second sliding units have different sliding distances when sliding to different directions, the functioning units on the first and second bases are revealed alternatively. Therefore, the user can decide to use different functioning units as desired.
Abstract:
A hinge is mounted in a sliding assembly for a portable device. The hinge has a hollow pintle, a first positioning ring, a second positioning ring and a resilient element. The positioning rings are mounted around the pintle and respectively have corresponding detents and protrusions to provide positioning function. The resilient element is mounted in the pintle and is mounted between the positioning rings to reduce the length of the hinge. When the second positioning ring is rotated, the second positioning ring also moves upward to lift the supporting panel of the sliding assembly and the cover of the portable device. Therefore, the cover is kept from bumping into the expanding parts of the portable device.
Abstract:
A crust bending apparatus includes a positioning assembling and a bending assembly. The positioning assembly includes a conveyance cylinder, a conveyance block, a positioning cylinder, a positioning rod, a positioning block, a holding cylinder, a holding rod, and a holding block. The bending assembly includes a bending cylinder, a bending rod, a bending block, first and second pivot pins, a line-to-rotation conversion member, and an outer casing. The bending rod has an end coupled to the bending cylinder and an opposite end forming a projection having a circular cross-section on a side surface thereof. The projection is received in a position constraint slot defined in the line-to-rotation conversion member. The apparatus is operated with power cylinder based mechanisms to replace human labor in bending a metal crust in order to reduce undesired influence of human factor and also to realize stable assembling operation and improve product passing rate and throughput.
Abstract:
A display device including a display panel and a driving circuit is provided, wherein the driving circuit includes a synchronizer and a driver. The synchronizer synchronizes a plurality of external control signals according to an internal clock and accordingly generates a plurality of internal control signals. The driver reads the internal control signals according to the internal clock and accordingly generates a plurality of driving signals to drive the display panel.
Abstract:
A composite bipolar plate for a polymer electrolyte membrane fuel cell (PEMFC) is prepared as follows: a) compounding vinyl ester and graphite powder to form bulk molding compound (BMC) material, the graphite powder content ranging from 60 wt % to 95 wt % based on the total weight of the graphite powder and vinyl ester, wherein carbon fiber 1-20 wt %, modified organo clay or noble metal plated modified organo clay 0.5-10 wt %, and one or more conductive fillers selected form: carbon nanotube (CNT) 0.1-5 wt %, nickel plated carbon fiber 0.5-10 wt %, nickel plated graphite 2.5-40 wt %, and carbon black 2-30 wt %, based on the weight of the vinyl ester resin, are added during the compounding; b) molding the BMC material from step a) to form a bipolar plate having a desired shaped at 80-200° C. and 500-4000 psi.
Abstract:
A composite bipolar plate for a polymer electrolyte membrane fuel cell (PEMFC) is prepared as follows: a) compounding vinyl ester and graphite powder to form bulk molding compound (BMC) material, the graphite powder content ranging from 60 wt % to 95 wt % based on the total weight of the graphite powder and vinyl ester, wherein carbon nanotubes together with a polyether amine dispersant or modified carbon nanotubes 0.05-10 wt %, based on the weight of the vinyl ester resin, are added during the compounding; b) molding the BMC material from step a) to form a bipolar plates having a desired shaped at 80-200° C. and 500-4000 psi.