Abstract:
A multi-function peripheral mainly includes a casing, a scanning module and an inkjet printing module. The scanning module is located on the top side of the casing, including a scan platform and a dynamic scanning unit for capturing image data. The inkjet printing module is located below the scan platform and includes a dynamic printing unit for moving an ink cartridge to perform printing operations. The moving path of the ink cartridge is substantially normal to the longitudinal axis of the scan platform. When the ink cartridge is moved to a cartridge replacing position located on a distal end of the dynamic printing unit, it escapes from under the scan platform to facilitate cartridge replacement operations.
Abstract:
FIG. 1 is a perspective view of a desk with a lamp; FIG. 2 is right side view of the desk with a lamp of FIG. 1, the left side view being a mirror image thereof; FIG. 3 is a front view of the desk with a lamp of FIG. 1; FIG. 4 is a rear view of the desk with a lamp of FIG. 1; FIG. 5 is a top plan view of the desk with a lamp of FIG. 1; and, FIG. 6 is bottom view of the desk with a lamp of FIG. 1. The broken lines depict portions of the desk with a lamp that form no part of the claimed design.
Abstract:
A data storage device includes a storage module, a casing, a sliding member, and an elastic member. The storage module has a plurality of pins and memory units electrically interconnected. The casing includes a base, three sidewall members, a support member, a first abutting portion, and an accommodating region defined cooperatively by the sidewall members. At least one guide block is disposed on each of the oppositely arranged sidewall members. The first abutting portion is formed on one side of the support member. The sliding member has a second abutting portion and at least one guide rail corresponding to its respective guide block. The support member is arranged between the sliding member and the base. The elastic member is held by the first and second abutting portions on opposite ends thereof The compression and restoration of the elastic member allows the sliding member to selectively conceal the pins.
Abstract:
A post for a combined light fitting includes a hollow post body composed of at least two post walls, a connector is installed in at least one end of the post body, the connector is provided with a screw connecting hole for connection with outside. All the post walls constituting the post are made of one piece of fiber plate, and on the surface of the fiber plate, at least one V-shaped groove extending along the direction of its height is formed, the V-shaped groove divides the fiber plate into several post walls, and the respective post wall is turned over inward along the V-shaped groove to form the hollow post. In addition, on the upper side and lower side of the fiber plate, positioning grooves are set along the direction of its width, the positioning grooves are perpendicular to the V-shaped groove, a connector is embedded in each of the two ends of the hollow post composed of various post walls after tuned over, and the base of the connector is embedded in the positioning groove for defining the position of the connector.
Abstract:
The antenna structure is applied for a communication system. The antenna structure has a signal emitting/receiving portion, a flex transmitting line disposed under the signal emitting/receiving portion and electrically connected to the signal emitting/receiving portion, and a connecting portion having a first end and a second end. The first end of the connecting portion is electrically connected to the flex transmitting line, and the second end of the connecting portion is connected to an assembling portion. The antenna structure further includes a bendable piece corresponding to the flex transmitting line. The bendable piece can be bent by a force to change positions, directions, or positions and directions of the signal emitting/receiving portion connected with the flex transmitting line. The bendable piece, the flex transmitting line and the signal emitting/receiving portion are covered by a sheath.
Abstract:
A collapsible lampshade includes: an upper frame defining an axis, and formed with a plurality of angularly spaced-apart connecting grooves, each of the connecting grooves extending in a radial direction with respect to the axis; a lower frame surrounding the axis; a plurality of support rods each having a first end pivotally connected to the lower frame, and a second end opposite to the first end, the second end being received releasably in and being slidable along a respective one of the connecting grooves; and a foldable cover connected to and extending between the upper frame and the lower frame.
Abstract:
FIG. 1 is a perspective left rear view of a display rack with light sources; FIG. 2 is a right side view of a display rack with light sources of FIG. 1, the left side view being a mirror image thereof; FIG. 3 is a rear view of a display rack with light sources of FIG. 1, the front side view being a mirror image thereof; FIG. 4 is a perspective left front rear view of a display rack with light sources of FIG. 1, the perspective right rear view being a mirror image thereof; FIG. 5 is a perspective left rear view of a display rack with light sources of FIG. 1, the perspective right front view is a mirror image thereof; and, FIG. 6 is bottom view of a display rack with light sources of FIG. 1, the top view being a mirror image thereof.
Abstract:
A collapsible lampshade includes: an upper frame defining an axis, and formed with a plurality of angularly spaced-apart connecting grooves, each of the connecting grooves extending in a radial direction with respect to the axis; a lower frame surrounding the axis; a plurality of support rods each having a first end pivotally connected to the lower frame, and a second end opposite to the first end, the second end being received releasably in and being slidable along a respective one of the connecting grooves; and a foldable cover connected to and extending between the upper frame and the lower frame.
Abstract:
A thin MFP includes a scanning module, a printing module, a paper advance module, a paper switch module and a paper-guiding module all disposed in a casing thereof. Both the scanning module and the printing module are fixed on the same plane. The paper advance module has a first paper advance box and a second paper advance box for guiding paper into the casing, respectively. The paper switch module mates with the paper advance module for selectively guiding paper from the first paper advance box or the second paper advance box. The paper-guiding module mates with the paper switch module for guiding paper from the paper switch module to the scanning module for scanning or to the printing module for printing. Whereby, the size of the thin MFP is reduced by changing the disposition of the scanning module and the printing module and sharing the paper-guiding module.
Abstract:
A digital lighting control system for controlling a plurality of lighting elements is provided, including a PC, a signal control unit, a signal conversion unit, and a signal dispatching unit. The signal control unit has a video signal input decoder for receiving video signal input and a PC display interface for connecting to the PC. The PC can control the lighting elements through the addresses of the lighting elements stored in the signal control unit. The signal conversion unit is connected to the signal control unit to receive control signals. The received control data is converted into data including addressing and control codes of the lighting elements. The signal dispatching unit is connected to the signal conversion unit for receiving converted addressing and control codes of the lighting elements. The signal dispatching unit dispatches the address and control code to lighting elements, which are connected to the signal dispatching unit. In addition, a plurality of signal control units can be serially connected to a PC, a plurality of signal conversion units can be serially connected to a signal control unit, and a plurality of signal dispatching units can be serially connected to a signal conversion unit. Therefore, a large area or various combinations of lighting elements can be controlled by the digital lighting control system.