会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Method for manufacturing plastic metalization three-dimensional wiring
    • 制造塑料金属化三维布线的方法
    • JP2013125820A
    • 2013-06-24
    • JP2011273104
    • 2011-12-14
    • Chuan-Ling Hu泉凌 胡Lanto Electronic Ltd聯滔電子有限公司
    • HU CHUAN-LINGCAI ZHEN LONGCHEN YU WEIZHANG CHEN HAO
    • H05K3/00C23C18/16C23C18/30H05K3/06H05K3/14H05K3/18H05K3/24
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing plastic metalization three-dimensional wiring as a method for manufacturing three-dimensional metalization layout wiring to be formed on a three-dimensional plastic body.SOLUTION: The method for manufacturing plastic metalization three-dimensional wiring includes the steps of: subjecting a plastic body having a 3D structure to a surface pretreatment; then subjecting the resulting body to a metalization treatment for deposition to form a metal thin film layer; then subjecting the resulting body to a photoresist application treatment to form a photoresist protective layer; then subjecting the resulting body to an exposure/lithography treatment to form a patterned photoresist protective layer; then subjecting the exposed metal thin film layer to an etching treatment to form a patterned metal wiring layer; then subjecting the patterned photoresist protective layer to a peeling treatment; and then subjecting the patterned metal wiring layer to a surface layer treatment to form a metal protective layer. In this manner, the method can directly form a circuit pattern having a three-dimensional layout on the plastic body having the 3D structure, and can eliminate the need for separately installing a circuit carrier inside the plastic body, thereby responding to needs of weight saving and compactification.
    • 要解决的问题:提供一种用于制造塑料金属化三维布线的方法,作为三维金属化布线布线的制造方法,该三维金属化布局布线将形成在三维塑料体上。 解决方案:塑料金属化三维布线的制造方法包括以下步骤:对具有3D结构的塑料体进行表面预处理; 然后对所得体进行金属化处理以沉积以形成金属薄膜层; 然后对所得到的体进行光致抗蚀剂施加处理以形成光致抗蚀剂保护层; 然后对所得到的物体进行曝光/光刻处理以形成图案化的光致抗蚀剂保护层; 然后对暴露的金属薄膜层进行蚀刻处理以形成图案化的金属布线层; 然后对图案化的光致抗蚀剂保护层进行剥离处理; 然后对图案化的金属布线层进行表面层处理以形成金属保护层。 以这种方式,该方法可以在具有3D结构的塑料体上直接形成具有三维布局的电路图案,并且可以消除在塑料体内单独安装电路载体的需要,从而响应减轻重量的需要 和压实。 版权所有(C)2013,JPO&INPIT
    • 5. 发明授权
    • Speaker and method for fabricating same
    • 扬声器及其制造方法
    • US08705788B2
    • 2014-04-22
    • US12978570
    • 2010-12-26
    • Chao XuXing-Zhi HuangRong-Lin Ling-HuXiong Zhang
    • Chao XuXing-Zhi HuangRong-Lin Ling-HuXiong Zhang
    • H04R1/00
    • H04R31/006H04R9/045H04R25/00
    • A method for fabricating a speaker is disclosed. The speaker is equipped with a case having a through cavity, an inner surface forming the cavity and an outer surface, a magnetic bowl coupled to the case, a magnet positioned in the magnetic bowl, a pole plate covering the magnet, a magnetic gap formed by the magnet and the magnetic bowl, a diaphragm supported by the case and vibrating along a vibrating direction, a voice coil connected to the diaphragm, and a hearing aid coil formed on the case. The method includes the steps of: providing a case made of thermoplastic doped with organometallic additive; activating the organometallic additive in the case by a laser beam for forming initial pattern of the hearing aid coil in the inner surface of the case; and bathing the case in copper solution for providing the initial pattern with copper plating layer.
    • 公开了一种用于制造扬声器的方法。 扬声器配备有具有通孔的壳体,形成空腔的内表面和外表面,耦合到壳体的磁性碗,位于磁性碗中的磁体,覆盖磁体的磁极板,形成的磁隙 通过磁体和磁性碗,由壳体支撑并沿振动方向振动的隔膜,连接到隔膜的音圈和形成在壳体上的助听器线圈。 该方法包括以下步骤:提供由掺杂有机金属添加剂的热塑性塑料制成的壳体; 在激光束的情况下激活有机金属添加剂,用于在壳体的内表面形成助听器线圈的初始图案; 并在铜溶液中洗浴以提供具有镀铜层的初始图案。
    • 7. 发明申请
    • SPEAKER AND METHOD FOR FABRICATING SAME
    • 扬声器及其制造方法
    • US20120163644A1
    • 2012-06-28
    • US12978570
    • 2010-12-26
    • Chao XuXing-Zhi HuangRong-Lin Ling-HuXiong Zhang
    • Chao XuXing-Zhi HuangRong-Lin Ling-HuXiong Zhang
    • H04R25/00C08J7/06
    • H04R31/006H04R9/045H04R25/00
    • A method for fabricating a speaker is disclosed. The speaker is equipped with a case having a through cavity, an inner surface forming the cavity and an outer surface, a magnetic bowl coupled to the case, a magnet positioned in the magnetic bowl, a pole plate covering the magnet, a magnetic gap formed by the magnet and the magnetic bowl, a diaphragm supported by the case and vibrating along a vibrating direction, a voice coil connected to the diaphragm, and a hearing aid coil formed on the case. The method includes the steps of: providing a case made of thermoplastic doped with organometallic additive; activating the organometallic additive in the case by a laser beam for forming initial pattern of the hearing aid coil in the inner surface of the case; and bathing the case in copper solution for providing the initial pattern with copper plating layer.
    • 公开了一种用于制造扬声器的方法。 扬声器配备有具有通孔的壳体,形成空腔的内表面和外表面,耦合到壳体的磁性碗,位于磁性碗中的磁体,覆盖磁体的磁极板,形成的磁隙 通过磁体和磁性碗,由壳体支撑并沿振动方向振动的隔膜,连接到隔膜的音圈和形成在壳体上的助听器线圈。 该方法包括以下步骤:提供由掺杂有机金属添加剂的热塑性塑料制成的壳体; 在激光束的情况下激活有机金属添加剂,用于在壳体的内表面形成助听器线圈的初始图案; 并在铜溶液中洗浴,以提供具有镀铜层的初始图案。
    • 8. 发明申请
    • Feed Point Adjustable Planar Antenna
    • 馈点可调平面天线
    • US20080297418A1
    • 2008-12-04
    • US11757366
    • 2007-06-02
    • Chuan-Ling HuYu-Wei ChenChang-Lun LiaoChia-Sheng Liu
    • Chuan-Ling HuYu-Wei ChenChang-Lun LiaoChia-Sheng Liu
    • H01Q1/38H01Q1/48
    • H01Q9/42H01Q5/371
    • The feed point adjustable planar antenna includes a ground component, a main radiation plane, a branch line extended from the main radiation plane, and a ground pin electrically connecting the radiation component with the ground component. If it needs to fine tune the frequency band interval after the design of the antenna is completed, the feed position of the coaxial cable to the branch line can be changed to achieve the fine tuning without cutting the antenna. The ground pin extends from a side edge of the ground component and the branch line is adjacent to the ground component. The branch line and the ground component form a larger coupling range than the conventional planar antenna does. In the mean time, the coaxial cable also has a larger feed range than the conventional planar antenna does.
    • 馈电点可调平面天线包括接地部件,主辐射平面,从主辐射平面延伸的分支线,以及将辐射部件与接地部件电连接的接地引脚。 如果在天线设计完成后需要对频段间隔进行微调,则可以改变同轴电缆到分支线的馈电位置,以便在不切割天线的情况下实现微调。 接地引脚从接地部件的侧边缘延伸,并且支线与接地部件相邻。 分支线路和地面部件形成比传统平面天线更大的耦合范围。 同时,同轴电缆还具有比常规平面天线更大的馈送范围。