Abstract:
The disclosure relates to a system, and a method, for automatically selecting a personal media apparatus and managing data under a smart media cloud environment. Specifically, the system, and the method, for automatically selecting a personal media apparatus and managing data under a smart media cloud environment, provide functions of determining the degree of control of a device and the automatic conversion of media service between a smart media contents and a cloud media contents under a private network environment by automatically selecting and controlling, in accordance with a media contents, a variety of output device under UPnP and DLNA environments, and under the structure of converting a cloud media streaming data with a media renderer connected in a smart device.
Abstract:
Provided is a system and method for processing medical information through a medical terminal. The system includes a mobile cloud system unit and a service browser unit. The service browser unit is configured as an application in a user terminal to allow a user to use a medical information processing service, and induces access to the mobile cloud system unit taking charge of medication information processing.
Abstract:
Provided is a system and method for processing medical information through a medical terminal. The system includes a mobile cloud system unit and a service browser unit. The service browser unit is configured as an application in a user terminal to allow a user to use a medical information processing service, and induces access to the mobile cloud system unit taking charge of medication information processing.
Abstract:
A horizontal injection mold system includes a horizontal injection mold which is opened or closed in a direction perpendicular to a direction of gravity; and an insert member feeder which feeds an insert member into the horizontal injection mold, such that a resin coupling surface of the insert member faces a gate disposed in the horizontal injection mold.
Abstract:
An array of M.times.N thin film actuated mirrors for use in an optical projection system comprises an active matrix, an array of M.times.N thin film actuating structures, each of the thin film actuating structures being provided with a first and a second actuating parts, each of the first and second actuating parts including at least a thin film layer of a motion-inducing material, a pair of electrodes, each of the electrodes being provided on top and bottom of the motion-inducing thin film layer, an array of M.times.N supporting members, each of the supporting members being used for holding each of the actuating structures in place by cantilevering each of the actuating structures and also for electrically connecting each of the actuating structures and the active matrix, and an array of M.times.N mirror layers for reflecting light beams, each of the mirror layers further including a first side, a second opposing side and a center portion located therebetween, wherein the first side and the second opposited side of each of the mirror layers are secured on top of the first and second actuating parts of each of the actuating structures, respectively, such that when the first and second actuating parts in each of the actuating structures deform in response to an electrical signal applied between the first and second electrodes, the center portion of the corresponding mirror layer tilts while remaining planar, thereby allowing all of the center portion to reflect the light beams, resulting in an increased optical efficiency.
Abstract:
An array of M.times.N thin film actuated mirrors includes an active matrix; an array of M.times.N supporting members; and an array of M.times.N actuating structures, each of the actuating structures being provided with an actuating and a light reflecting portions and including a first thin film electrode, a thin film electrodisplacive member, a second thin film electrode, an elastic member, an insulating member, a temperature compensating member and a conduit. Furthermore, the method for the manufacture of the array includes the steps of: providing an active matrix; depositing a thin film sacrificial layer; creating an array of empty slots; forming a supporting member; depositing a temperature compensating layer; removing selectively the temperature compensating layer; depositing an elastic layer; forming a conduit; depositing a second thin film and a thin film electrodisplacive layers; patterning the thin film electrodisplacive and the second thin film layers; depositing a first thin film layer; removing selectively the first thin film layer; forming an insulating member; patterning the first thin film, the elastic and the temperature compensating layers; and removing the thin film sacrificial layer thereby forming the array of M.times.N thin film actuated mirrors.
Abstract:
A horizontal injection mold system includes a horizontal injection mold which is opened or closed in a direction perpendicular to a direction of gravity; and an insert member feeder which feeds an insert member into the horizontal injection mold, such that a resin coupling surface of the insert member faces a gate disposed in the horizontal injection mold.
Abstract:
Provided is an injection mold which can reduce the amount of resin that is separated from injection-molded parts and then thrown away. The injection mold includes for an embodiment an extension cylinder coupled to an upper clamp plate and having a nozzle at an end thereof; a nozzle positioner disposed under the nozzle, the nozzle positioner having a nozzle insertion groove adapted to receive the nozzle; a gate-lock-pin holder disposed under the extension cylinder and the nozzle positioner, comprising a gate lock pin which has a first end coupled to a gate molded part and a second end coupled to the gate-lock-pin holder, and adapted to separate the gate molded part from an injection-molded part; a gate stripper plate disposed under the gate-lock-pin holder and adapted to separate the gate molded part from the nozzle; and a cavity plate and a core plate disposed under the gate stripper plate and having a cavity which is shaped like the injection-molded part.
Abstract:
A constant amplitude coded bi-orthogonal demodulator demodulates the received constant amplitude bi-orthogonal modulated data, cancels the parity bits to generate the serial data, detects the occurrence of an error by dividing the demodulated data into a plurality of groups of data, outputs the serial data as demodulated data if an error does not occur, sequentially converts bit polarities of data of groups in which an error occurs if the error detector detects the error, compares distances between the received bi-orthogonal modulated data and the constant amplitude coded bi-orthogonal modulated data, and selects, as demodulated data, data of which corresponding bit polarities are changed according to the comparison results.According to the present invention, power consumption is reduced, a power amplifier can be manufactured at an inexpensive cost, interference robustness can be ensured, and data can be transmitted at a high transmission rate and a variable transmission rate.
Abstract:
A cooling apparatus and an image forming device having the cooling apparatus are provided. The cooling apparatus includes an induction opening formed at an outer frame to draw the air into the image forming device, an air duct disposed adjacent to a fixing roller in a longitudinal direction thereof, the fixing roller being heated by a heating source therein, and a blower disposed between the induction opening and the air duct to send the air into the air duct from the induction opening. The cooling apparatus moves the air longitudinally along a jam cover disposed adjacent to the fixing roller, and discharges it to the outside. Accordingly, temperatures in the image forming device and of the components therein can be prevented from overheating and being abnormally increased due to a heat emitted from the heating source. As a result, it is possible not only to prevent a performance of the image forming device from deteriorating due to the abnormal increase in the temperatures in the image forming device and of components therein, but also to prevent a user from getting burned due to the jam cover heated by the heat from the heating source during a jam removing.