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    • 2. 发明公开
    • RFID APPARATUS FOR BEING IMPLANTED INTO RUBBER TIRE AND PROCESSING METHOD THEREFOR
    • 被植入橡胶轮胎的RFID装置及其处理方法
    • EP3179412A1
    • 2017-06-14
    • EP15828913.2
    • 2015-06-10
    • MESNAC CO., LTD.
    • DONG, LanfeiYAO, YongCHEN, HaijunSUN, PeifengTENG, Xuezhi
    • G06K19/077
    • G06K19/07764G06K19/07754
    • Provided are A RFID device implanted inside rubber tires, and a processing method for the RFID device, the RFID device comprises a radio frequency chip (1), antenna pins (2) on the radio frequency chip (1), and antennae (3) connected to the antenna pins (2), characterized in that the antenna pins (2) are connected to the antennae (3) with bolt-shaped structures (4), the radio frequency chip (1), the antenna pin (2), the bolt-shaped structure (4) and one end of the antenna (3) are packaged in a sleeve (5) with smooth surface, the other end of the antennae (3) extends out from the sleeve (5). Therefore, the substrate used in the RFID tag of the prior arts is removed, and hence, the processing and quality problems caused by the solder of chip or substrate and the damage of rubber caused by being cut by the sharp edges are avoided, and therefore the production efficiency and the quality of product is enhanced, and the connection between antenna pins (2) and antennae (3) is solid.
    • 本发明提供一种植入橡胶轮胎内部的射频识别装置以及射频识别装置的处理方法,射频识别装置包括射频芯片1,射频芯片1上的天线引脚2和天线3, (2)连接,其特征在于,所述天线引脚(2)通过螺栓状结构(4)与所述天线(3)连接,所述射频芯片(1),所述天线引脚(2) 螺栓状结构4和天线3的一端封装在表面光滑的套管5中,天线3的另一端从套管5伸出。 因此,现有技术的RFID标签中使用的基板被去除,并且因此避免了由芯片或基板的焊料引起的处理和质量问题以及由锐利边缘切割引起的橡胶损坏,并且因此 提高了生产效率和产品质量,天线引脚(2)与天线(3)之间的连接牢固。
    • 7. 发明公开
    • METHOD FOR CHECK WEIGHING OF MATERIAL AND DEVICE THEREOF
    • 控制程序称重材料及其设备
    • EP2843380A4
    • 2016-02-24
    • EP13780694
    • 2013-03-12
    • MESNAC CO LTD
    • YU XIAOGUANGZHAI WEIMINWANG DUOHU
    • G01G23/01G01G3/12G01G11/00G01G11/12
    • G01G23/01G01G11/003
    • The invention provides a method for check weighing of materials and a check weighing device thereof. Accurate weighing of materials is achieved through the physical deformation of the sensing device caused by a vertical downward force. The method for check weighing of materials and the check weighing device are mainly applied in check weighing of materials on a large scale with high accuracy. The vertical downward force exerted by the materials is transferred to ball-shaped components which are arranged at ends of a suspension mechanism and connected with concave brackets through rigid parts of the sensing device. The sensing device deforms under the action of vertical downward force exerted by the suspension to determine the weight of materials. Comparing prior weighing readings of materials after being proportioned with weighing readings of check weighing, the process of check weighing of materials is accomplished. Accordingly, the accuracy of check weighing of materials, in particular that of materials of a small proportion in formulas can be guaranteed, impact of external environment on the check weighing device can be lowered and quick and accurate check weighing of materials can be realized.