Abstract:
A system and method for the network operation of a universal remote controller (URC) and the URC for realizing said system have been disclosed in the invention, said system comprises: a user service subsystem, a data storing and exchanging device and a user operation subsystem. The network operation method for said URC comprises: collecting the parameters of an existing user's remote controller (RC) via a RC sampling device, analyzing and processing the parameter data as a code program, and transferring to the server device via the Internet in order to store and exchange the data; reading the required program from the server device by the URC via the user terminal device and the Internet to realize the function of the URC. In said URC, the URC is provided with a USB interface circuit for downloading the data on the network into the URC. The invention solves the problem of a number of confused RCs in modern families The network services of the URC can be provided so that a uniform way can be found for the after-service of a plurality of types of RCs.
Abstract:
A reticle device. The device has a quartz substrate, which has a surface region. A first region comprising a plurality of binary mask patterns is formed on a first portion of the surface region. A second region comprising a plurality of first phase shift mask patterns is formed on a second portion of the surface region. A third region comprising a plurality of second phase shift mask patterns is formed on a third portion of the surface region. Accordingly, the reticle device has at least three different regions corresponding to different optical characteristics.
Abstract:
A method and a system which apply a regression clustering algorithm and a classification algorithm on the dataset are provided. In particular, a method and a system are provided which generate a plurality of different functions correlating datapoints of a dataset and determine directives by which to classify new data with respect to the plurality of different functions.
Abstract:
An aggregated data clustering method and system. First, the data points to be clustered and a size parameter are received. The size parameter specifies the number of data points to be moved at one time in the clustering algorithm. Next, the data points are clustered by using an aggregated clustering algorithm (e.g., aggregated local K-Means clustering algorithm) and the size parameter to generate clustered results. Then, a determination is made whether of not the clustered results are satisfactory. If the clustered results are satisfactory, the clustering is stopped. Otherwise, a modified or refined parameter size is received. Then, clustering is performed on the clustered results generated previously by using the aggregated clustering algorithm and the revised or refined parameter size. The steps of determining, modifying the parameter size, and aggregated clustering are repeated until satisfactory clustering results are achieved.
Abstract:
A method and associated system comprise obtaining historical auction data, determining, from the historical auction data, a first parameter that is a function of a joint bid distribution and a density function related to the joint bid distribution, selecting a bidder, obtaining a value distribution for the selected bidder, and solving an equation. The equation may include the first parameter and the selected bidder's value distribution, and not the value distribution of other bidders. The equation computes a bid value associated with the selected bidder for a given bid.
Abstract:
Computer method and apparatus provides remote communication of images with low communication bandwidth requirements. Workstations are remotely coupled to each other across a communication channel (e.g., telephone line or Internet line) and employ the invention method and apparatus. Parameter values of desired images are input at one workstation and transmitted across the communication channel to a remote workstation. In response to the input parameter values, the remote workstation generates and displays the desired images. Video e-mail messages is one application of such remote generation of desired images. Further parameter values may be input at the remote workstation for generation and display of corresponding further images at the initial workstation. Interactive video conferencing results as the workstations remotely communicate images in real-time to each other.
Abstract:
Disclosed is an amplifier circuit with cross wiring of direct-current signals and microwave signals. The circuit includes a circuit network unit formed of a direct-current feeding circuit and a microwave power signal circuit. The direct-current feeding circuit comprises a high-electron-mobility transistor (HEMT) drain power-up bonding point, a corresponding line, a feeding end of a tail-level HEMT transistor core, a first Metal-Insulator-Metal (MIM) capacitor, a first micro-strip inductor, symmetrical branch micro-strips, a second MIM capacitors. The microwave power signal circuit comprises a signal end of the tail-level HEMT transistor core, two third MIM capacitors, other electrode of the second MIM capacitors, a ground micro-strip inductors, a second micro-strip inductors, a third micro-strip inductor, a fourth MIM capacitor.
Abstract:
Provided is an amplifier circuit with cross wiring of direct-current signals and microwave signals, which includes: two branch sub-circuits being mirrors with each other and a third capacitor The sub-circuit includes a direct-current feeding circuit and a microwave signal circuit. The direct-current feeding circuit further comprising: a transistor core drain power-up port (Vds) of a heterojunction field effect transistor (FET), a first micro-strip inductor, a first capacitor, a pair of third inductors, a pair of branched second inductors. The microwave signal circuit further comprising: A pair of third inductors, a pair of first capacitors, a pair of second capacitors, a pair of ground inductors, a pair of fourth inductors, a serially connected fifth inductor.