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    • 12. 发明申请
    • Foundation Theory And Method of Internet Map/Platform Iconology/Markerology
    • US20190034468A1
    • 2019-01-31
    • US16040917
    • 2018-07-20
    • Qiang WangXinwei WangYong WangJin WangZhaoyang Wang
    • Qiang WangXinwei WangYong WangJin WangZhaoyang Wang
    • G06F17/30G06F17/24G06Q10/10
    • The present invention discloses the foundation theory and method of the internet map/platform Iconology/Markerology which is characterized in followings: the invention firstly establishes the foundation theory of internet map/platform iconology, its specification, standards and methods including a complete theoretical dynamic icon/marker management system, basic concepts, categories, judgments and inferences, definitions, rules and methods, According to the foundation theory and method of Internet Map/Platform Iconology/Markerology, the user can use the iconology theory and methods specified in the present invention to identify almost everything on the internet maps or platforms and to perform various operations and to control all of the icons/markers on the internet maps/platforms and also to connect to variety of external network resource and network platforms to get in touch with various network businesses through these internet map icons/markers enriched with infinite network resource spaces. Actually, Icon/marker economic activity that is currently limited with traditional Internet map technology so far will become main tendency in future with the present invention. In particular, the present invention assigns a unique icon/marker Identification (IID) number to each valid icon/marker on the internet map and in future we can use this IID to identify almost everything on any kinds of network platforms and can control all the targets/objects of both the Internet of Things (IoT) and the Internet just by controlling all the icons/markers on the internet map/platform through unique icon/marker Identification number (IID). The Cardinality of icon/marker Identification (IID) is Second Level Infinity.
    • 13. 发明申请
    • ASEPTIC MEDICAL INSTRUMENT PACKAGING WITH SUPPORTING PEELABLE FLAPS
    • ASEPTIC医用仪器包装与支持的可剥离的FLAPS
    • US20170065359A1
    • 2017-03-09
    • US15255947
    • 2016-09-02
    • Qiang Wang
    • Qiang WangGuohua Zhang
    • A61B50/30B65D33/00B65D75/58
    • A61B50/30A61B2050/0065B65D75/5855
    • The present invention discloses an aseptic medical instrument packaging with supporting peelable flaps; the present invention gets the supporting peelable flaps by adding a material playing a supporting role and harder than the rest parts to the extending part outside a sealing edge of the peeling side of the packaging or adopting a material harder than the rest parts on the extending part outside a sealing edge of the peeling side of the packaging; a groove is carved in the junction between the outer edge of the sealing edge of the peeling side of the packaging; the material playing the supporting role comprises hard plastic, metal and paper. According to the present invention, a soft cover of the packaging is prevented from being inwards curled in the peeling process of the packaging; and when one or two peeling sides exist, the differentiation degree of the peeling side will be increased, such that medical staff can conveniently find the peeling side.
    • 本发明公开了一种带有可剥离皮瓣的无菌医疗器械包装; 本发明通过向包装的剥离侧的密封边缘的外侧的延伸部分添加具有支撑作用并且比其余部分更硬的材料,或者采用比在延伸部分上的其余部分更硬的材料来获得支撑的可剥离襟翼 在包装的剥离侧的密封边缘外面; 在包装的剥离侧的密封边缘的外缘之间的接合处刻有凹槽; 发挥配套作用的材料包括硬​​塑料,金属和纸张。 根据本发明,在包装的剥离过程中防止了包装的软质盖卷向内卷曲; 并且当存在一个或两个剥离面时,剥离侧的分化程度将增加,使得医务人员可以方便地找到剥离面。
    • 15. 发明授权
    • Ethernet-based data transmission method, ethernet nodes and control system
    • 基于以太网的数据传输方式,以太网节点和控制系统
    • US08850058B2
    • 2014-09-30
    • US13139807
    • 2010-04-09
    • Dongqin FengQiang WangJian ChuJianxiang Jin
    • Dongqin FengQiang WangJian ChuJianxiang Jin
    • G06F15/16H04L12/931H04L12/54H04J3/06
    • H04L12/56H04J3/0667H04L12/417H04L49/351
    • The invention provides an Ethernet-based data transmission method, which is applied to a control system with a plurality of nodes. The method comprises: a first node caches the data needed to be sent (S101); if the current communication macro-cycle comprises the time segment for the first node to send data, the first node sends the cached data in the time segment for the first node to send data within the current communication macro-cycle; if the current communication macro-cycle does not comprise the time segment for the first node to send data, the first node does not send the cached data in the current communication macro-cycle; wherein other nodes do not send data in the time segment for the first node to send data within the current communication macro-cycle, and the communication macro-cycles have same durations and each communication macro-cycle consists of a plurality of time segments with a fixed length (S102). The invention further provides Ethernet nodes and a control system.
    • 本发明提供一种应用于具有多个节点的控制系统的基于以太网的数据传输方法。 该方法包括:第一节点缓存需要发送的数据(S101); 如果当前通信宏周期包括第一节点发送数据的时间段,则第一节点在第一节点的时间段内发送缓存数据,以在当前通信宏周期内发送数据; 如果当前通信宏周期不包括第一节点发送数据的时间段,则第一节点不在当前通信宏周期中发送缓存的数据; 其中其他节点不在第一节点的时间段内发送数据以在当前通信宏周期内发送数据,并且通信宏周期具有相同的持续时间,并且每个通信宏周期包括多个具有 固定长度(S102)。 本发明还提供了以太网节点和控制系统。
    • 16. 发明授权
    • Tribocharge test fixture
    • 摩擦电试验夹具
    • US08829912B2
    • 2014-09-09
    • US13059869
    • 2009-08-26
    • Xin HuangJun HuQiang Wang
    • Xin HuangJun HuQiang Wang
    • G01R29/12G01N33/44G01N27/60
    • G01N27/60G01N33/442
    • A fixture can include a test fixture that holds an object whose electrostatic charge characteristics are to be measured, means for moving a piece of rubbing material into contact with the object, and means for rubbing a surface of the object. A method for measuring the electrostatic charge characteristics of an object using a test fixture can include: placing the object in the test fixture, moving a piece of rubbing material into contact with the object and rubbing a surface of the object with the piece of rubbing material for a period of time. The rubbing causes an electrostatic charge to be built up on the surface of the object. The electrostatic charge characteristics of the object can be measured and the measured electrostatic charge characteristics of the object can be displayed.
    • 固定装置可以包括固定要测量其静电荷特性的物体的测试夹具,用于将一块摩擦材料移动到与物体接触的装置,以及用于摩擦物体表面的装置。 使用测试夹具测量物体的静电电荷特性的方法可以包括:将物体放置在测试夹具中,使一块摩擦材料与物体接触并用该摩擦材料摩擦物体的表面 一段时间。 摩擦会导致在物体表面上形成静电电荷。 可以测量物体的静电电荷特性,并且可以显示物体的测量的静电电荷特性。
    • 19. 发明授权
    • Ratcheting socket wrench and sockets
    • 棘轮套筒扳手和插座
    • US08459151B2
    • 2013-06-11
    • US12962020
    • 2010-12-07
    • Qiang WangHua An Xu
    • Qiang WangHua An Xu
    • B25B13/46B25B13/06
    • B25B13/107B25B13/463B25B23/0007B25B23/0035B25G1/063
    • A wrench for action on a work piece is provided. The wrench is a box end socket wrench. The socket wrench has an elongated handle with a box head. The box head has a top and a bottom surface and an inner wall defining an inner aperture. The inner wall is shaped to receive the work piece and has a receiving groove spaced apart from the top surface of the box head to receive a biased member. The biased member extends into the inner aperture of the box head to releasably secure the work piece. When the work piece is inserted in the inner aperture of the box head, the work piece sits flush with the corresponding top and bottom surface of the box head of the wrench.
    • 提供了用于在工件上动作的扳手。 扳手是一个盒式端套筒扳手。 套筒扳手有一个带盒头的细长手柄。 盒头部具有顶部和底部表面以及限定内部孔的内壁。 内壁的形状是接收工件,并且具有与箱体头部顶表面间隔开的容纳凹槽,以容纳偏置构件。 偏置构件延伸到盒头部的内孔中以可释放地固定工件。 当工件插入盒头的内孔中时,工件与扳手的箱体头部的相应顶部和底部表面齐平。