General purpose, programmable media processor
    105.
    发明公开
    General purpose, programmable media processor 失效
    通用可编程媒体处理器

    公开(公告)号:EP1879103A3

    公开(公告)日:2008-12-24

    申请号:EP07112545.4

    申请日:1996-08-16

    Abstract: A wireless device for processing streams of media data in a wireless bi-directional communications network. The bi-directional communications network is capable of transmitting and receiving media data streams which comprise a combination of at least two of audio, video, radio, graphics, encryption, authentication, and networking information. The wireless device has at least one programmable media processor (12) for receiving, processing and transmitting the stream of media data over the bi-directional communications network. The processor executes group instructions to read a plurality of data elements of the media data stream from a register file (110), to perform, on the data elements, group operations including both group integer and group floating point operations capable of dynamically partitioning the data by each specifying one of a plurality of data element sizes, and to write concatenated results in the register file.

    Abstract translation: 一种用于在无线双向通信网络中处理媒体数据流的无线设备。 双向通信网络能够发送和接收包括音频,视频,无线电,图形,加密,认证和联网信息中的至少两种的组合的媒体数据流。 无线设备具有至少一个可编程媒体处理器(12),用于通过双向通信网络接收,处理和发送媒体数据流。 处理器执行组指令以从寄存器文件(110)读取媒体数据流的多个数据元素,以对数据元素执行包括能够动态分区数据的组整数和组浮点操作的组操作 每个指定多个数据元素大小中的一个,并将连接结果写入寄存器文件。

    General purpose, programmable media processor
    107.
    发明公开
    General purpose, programmable media processor 失效
    Programmierbarer Allzweckmedienprozessor

    公开(公告)号:EP1876535A2

    公开(公告)日:2008-01-09

    申请号:EP07111473.0

    申请日:1996-08-16

    Abstract: A general purpose, programmable media processor (12) for processing and transmitting a media data streams. The media processor (12) incorporates an execution unit (100) that maintains substantially peak data through out of media data streams. The execution unit (100) includes a dynamically partionable multi-precision arithmetic unit (102), programmable switch (104) and programmable extended mathematical element (106). A high bandwidth external interface (124) supplies media data streams at substantially peak rates to a general purpose register file (110) and the execution unit. A memory management unit, and instruction and data cache/buffers (118, 120) are provided. The general purpose, programmable media processor (12) is disposed in a network fabric consisting of fiber optic cable, coaxial cable and twisted pair wires to transmit, process and receive single or unified media data streams.

    Abstract translation: 一种用于处理和发送媒体数据流的通用可编程媒体处理器(12)。 媒体处理器(12)包括执行单元(100),其通过媒体数据流保持基本上峰值数据。 执行单元(100)包括动态分离多精度运算单元(102),可编程开关(104)和可编程扩展数学元件(106)。 高带宽外部接口(124)以基本上峰值的速率将媒体数据流提供给通用寄存器文件(110)和执行单元。 提供存储器管理单元,以及指令和数据高速缓冲存储器/缓冲器(118,120)。 通用的可编程媒体处理器(12)被布置在由光纤电缆,同轴电缆和双绞线组成的网络结构中,以传输,处理和接收单个或统一的媒体数据流。

    METHOD FOR FORMING A LITHOGRAPHIC PATTERN IN A PROCESS FOR MANUFACTURING SEMICONDUCTOR DEVICES
    110.
    发明公开
    METHOD FOR FORMING A LITHOGRAPHIC PATTERN IN A PROCESS FOR MANUFACTURING SEMICONDUCTOR DEVICES 失效
    方法用于制造工序的光刻图案用于制造半导体器件的。

    公开(公告)号:EP0634028A1

    公开(公告)日:1995-01-18

    申请号:EP93912115.0

    申请日:1993-03-29

    CPC classification number: G03F7/70466 G03F7/2022

    Abstract: A method of printing a sub-resolution device feature (16) having first and second edges spaced in close proximity to one another on a semiconductor substrate (20) includes the steps of first depositing a radiation-sensitive material on the substrate, then providing a first mask image segment (11) which corresponds to the first edge. The first mask image segment is then exposed with radiation (10) using an imaging tool (12) to produce a first pattern edge gradient (14). The first pattern edge gradient defines the first edge of the feature in the material. A second mask image segment (13) is then provided corresponding to the second feature edge. This second mask image segment is exposed to radiation (10) to produce a second pattern edge gradient (17) which defines the second edge of the feature. Once the radiation-sensitive material has been developed, the two-dimensional feature is reproduced on the substrate.

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