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    • 1. 发明公开
    • 실시간 3차원 초음파 프로브 제어시스템 및 제어방법
    • 用于实时3D动态图像的超声探头
    • KR1020140039479A
    • 2014-04-02
    • KR1020120105631
    • 2012-09-24
    • (주)엠에이피테크주식회사 삼광
    • 고호성소태섭김준형최홍수
    • G01B17/06G01N29/04
    • G01N29/06G01B17/06G01N29/0609G01N29/11G01N29/2437
    • The present invention relates to a control system for a real-time 3D ultrasonic probe and a control method thereof, which can realize a real-time 3D dynamic image of the inside of an object to be inspected. The control system for a real-time 3D ultrasonic probe can realize a real-time 3D image using a piezoelectric element which generates ultrasonic waves, by comprising: an ultrasonic probe unit including multiple piezoelectric elements which are arranged in a matrix structure, multiple switches which activate the piezoelectric elements in a row unit, and multiple passive elements which are connected with piezoelectric elements arranged in a column unit in order to vertically cross the piezoelectric elements in a row unit and operate the piezoelectric elements; and a control unit which controls the switches and the passive elements respectively, and transmits and receives electric signals to and from the piezoelectric elements through the passive elements. In addition, the number of control signal wires connected with the ultrasonic probe unit for controlling the switches and the passive elements is smaller than the total number of the piezoelectric elements. [Reference numerals] (100) Ultrasonic probe unit; (200) Control unit; (AA) Passive element 1C; (BB) Piezoelectric element 1R1C; (CC) Piezoelectric element 2R1C; (DD) Piezoelectric element 50R1C; (EE) Passive element 2C; (FF) Piezoelectric element 1R2C; (GG) Piezoelectric element 2R2C; (HH) Piezoelectric element 50R2C; (II) Passive element 50C; (JJ) Piezoelectric element 1R50C; (KK) Piezoelectric element 2R50C; (LL) Piezoelectric element 50R50C
    • 本发明涉及一种用于实时3D超声波探头的控制系统及其控制方法,其可以实现待检查物体内部的实时3D动态图像。 一种实时三维超声波探头的控制系统可以通过以下方式实现使用产生超声波的压电元件的实时三维图像,该压电元件包括​​:包括以矩阵结构排列的多个压电元件的超声波探头单元,多个开关, 激活行单元中的压电元件,以及多个无源元件,其与以柱单元布置的压电元件连接,以便以行单元垂直交叉压电元件并操作压电元件; 以及控制单元,其分别控制开关和无源元件,并通过无源元件向压电元件发送和接收电信号。 此外,与用于控制开关的超声波探头单元和无源元件连接的控制信号线的数量小于压电元件的总数。 (附图标记)(100)超声波探头单元; (200)控制单元; (AA)被动元件1C; (BB)压电元件1R1C; (CC)压电元件2R1C; (DD)压电元件50R1C; (EE)被动元件2C; (FF)压电元件1R2C; (GG)压电元件2R2C; (HH)压电元件50R2C; (II)被动元件50C; (JJ)压电元件1R50C; (KK)压电元件2R50C; (LL)压电元件50R50C
    • 3. 发明公开
    • 근거리무선통신용 안테나 제조방법
    • NFC天线的制造方法
    • KR1020140047915A
    • 2014-04-23
    • KR1020120114262
    • 2012-10-15
    • 주식회사 삼광
    • 김준형박정호최진영차영옥
    • H01Q1/24H01Q13/08
    • The present invention provides a method for manufacturing an antenna for near field communication which is capable of facilitating coating of a connector area on an antenna pattern by printing conductive ink and improving reliability of the antenna by increasing the attachment force of the connector area. The method for manufacturing an antenna for near field communication includes: a pattern formation step of forming an antenna pattern by printing conductive ink on one surface of a film; a reinforcement area formation step of forming a reinforcement area on the film to be electrically connected to the antenna pattern; and a connector area formation step of coating a connector area on the reinforcement area. [Reference numerals] (AA) Start; (BB) End; (S111) Pattern formation step; (S112) Reinforcement area formation step; (S113) Insulation layer formation step; (S114) Connector area formation step; (S115) Adhesive layer formation step
    • 本发明提供一种用于制造近场通信用天线的方法,其能够通过印刷导电油墨来促进天线图案上的连接器区域的涂布,并通过增加连接器区域的附着力来提高天线的可靠性。 制造近场通信用天线的方法包括:图案形成步骤,通过在膜的一个表面上印刷导电油墨来形成天线图案; 加强区域形成步骤,在所述膜上形成与所述天线图案电连接的加强区域; 以及在加强区域上涂覆连接器区域的连接器区域形成步骤。 (附图标记)(AA)开始; (BB)结束; (S111)图案形成步骤; (S112)加固区形成步骤; (S113)绝缘层形成工序; (S114)连接器区域形成步骤; (S115)粘合层形成工序