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:
A temperature indicating device includes a temperature sensing element, for sensing the temperature of an object and transforming the temperature into a signal; an illuminating unit, for emitting light of predetermined colors; a control unit, for receiving the signal from the temperature sensing element, and driving the illuminating unit to emit light of a predetermined color corresponding to the sensed temperature according to the signal; a power supply, for supplying power to the temperature sensing element, the control unit, and the illuminating unit; and a body, wherein the temperature sensing element, the illuminating unit, the control unit, and the power supply are located inside the body.
Abstract:
An electronic musical score display device comprises an electronic display panel displaying at least one page of musical score data; a manipulator that will transmit a page turn signal wirelessly, generated from a pressure contact such as the pressing of a foot; and a microprocessor that controls the divided pages of musical score data being shown on the electronic display panel, which after receiving the page turn signal will perform a page turn action. Therefore, a performer is not required to manually turn pages on the electronic musical score display device by hand, so the performance is not interrupted due to page turning, thereby increase the performance quality.
Abstract:
In one embodiment, sub-micron size granules of TiO2, ZrO2, or other white colored non-phosphor inert granules are mixed with a silicone encapsulant and applied over an LED. In one experiment, the granules increased the light output of a GaN LED more than 5% when the inert material was between about 2.5-5% by weight of the encapsulant. Generally, a percentage of the inert material greater than 5% begins to reduce the light output. If the LED has a yellowish YAG phosphor coating, the white granules in the encapsulant make the LED appear whiter when the LED is in an off state, which is a more pleasing color when the LED is used as a white light flash in small cameras. The addition of the granules also reduces the variation of color temperature over the view angle and position over the LED, which is important for a camera flash and projection applications.
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.
Abstract:
Toxic chemical substrate management systems for use in a factory having a material management system are disclosed. The toxic chemical substrate management system includes at least a server, a processing unit and a database. The server is coupled to the material management system to receive toxic chemical substrate information, comprising identification to be stored in the database. The server receives an instruction, and the processing unit manages operations of the toxic chemical substrate according to the identification and the instruction. The operations include request, use, storage and return of the toxic chemical substrate. The toxic chemical substrate management system further provides interfaces to query the stock, use volume, operating amount, type of the toxic chemical substrate, and suppliers and operating region thereof.
Abstract:
A hanger assembly includes a mounting seat, a hooking member extending upwardly from the mounting seat and adapted to engage a backrest of a chair, first and second extendable arms connected pivotally to the mounting seat, an upright bar coupled to the mounting seat and displaceable in an upright direction relative to the mounting seat, and a hanging member disposed on the upright bar.
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:
The present invention discloses a standard lamp, which comprises a lamp seat installed in a standard. The lamp seat is electrically connected with a circuit board. At least one USB interface includes a cartridge disposed in the standard and a USB socket module disposed inside the cartridge. A wall of the cartridge, which is corresponding to the socket of the USB socket module, has at least one opening. The interface of an external USB data line can be passed through the opening and inserted into the socket of the USB socket module. The USB socket module is separated from the circuit board and electrically connected with the circuit board through cables. Therefore, the USB interface is reduced to a smaller size and requires less space for installation. Thus, the position for installing the USB interface has higher selectivity, and the overall esthetics of the standard is improved.