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
    • 42. 发明申请
    • PLIERS FOR DISTORTION PREVENTION TOOL
    • 防患于未然的工具
    • US20160368125A1
    • 2016-12-22
    • US14989334
    • 2016-01-06
    • Il Han Kim
    • Il Han Kim
    • B25B27/14B25B7/02
    • B25B27/14A01K97/00B25B7/02B25B7/08B25B7/22B25B27/205
    • The present disclosure relates to distortion-tolerant split ring pliers (100) for a wide range of applications, the multipurpose pliers including a pivot section (20), a pair of handle sections (30A, 30B) connected to the pivot section (20) on one direction, and a pair of lever sections (10A, 10B) connected to the pivot section (20) on an opposite direction to the one direction, wherein at least one of the pair of handle sections (30A, 30B) and the pair of lever sections (10A, 10B) includes distortion prevention parts (16, 31) adjacent to the pivot section (20), and the distortion prevention parts (16, 31) are formed such that a pair of partial circular plates (16A, 16B; 31A, 31B) face each other.
    • 本公开涉及用于广泛应用的变形容忍式分割环钳(100),多用途钳包括枢转部分(20),连接到枢转部分(20)的一对把手部分(30A,30B) 以及一对在与所述一个方向相反的方向上连接到所述枢转部分(20)的杠杆部分(10A,10B),其中所述一对手柄部分(30A,30B)和所述对中的至少一个 杠杆部分(10A,10B)包括与枢转部分(20)相邻的防变形部分(16,31),并且防变形部分(16,31)形成为使得一对部分圆形板(16A,16B) ; 31A,31B)彼此面对。
    • 44. 发明授权
    • Distortion-tolerant split ring pliers for a wide range of applications
    • 用于各种应用的变形耐磨分割环钳
    • US09475181B2
    • 2016-10-25
    • US14989267
    • 2016-01-06
    • Il Han Kim
    • Il Han Kim
    • B25B11/00B25B27/14B25B7/02B25B27/00B25B7/00
    • B25B27/14B25B7/00B25B7/02B25B7/04B25B7/08B25B27/00B25B27/143
    • The present disclosure relates to multipurpose pliers including a pivot section (20), a handle section (30) connected to the pivot section (20) on one direction, and a pair of lever sections (10A, 10B) connected to the pivot section (20) on an opposite direction to the one direction, wherein the lever sections (10A, 10B) include a split ring insertion part (11), the split ring insertion part (11) includes a bottom support portion (11B) protruding in a direction perpendicular to a longitudinal axis (L-axis) of the multipurpose pliers at an end of a direction facing away from the pivot section on one (10A) of the pair of lever sections, a tapered portion (11A) extending in the perpendicular direction from top of the bottom support portion (11B) and gradually narrowing to a tip, a convex forming portion (11C) formed on a side surface toward the pivot section of the tapered portion (11A) and the bottom support portion (11B), a concave forming portion (11 D) formed at an end of the other (10B) of the pair of lever sections to guide the convex forming portion (11C) on the side surface of the bottom support portion (11B) and the tapered portion (11A), and a split ring retaining portion (11E) formed in a concave shape on both side directions from the concave forming portion (11D), a size of an upper surface of the bottom support portion (11B) is larger than or equal to a size of a bottom surface of the tapered portion (11A), and a gap (210) between rings of a split ring (200) are opened using the tapered portion (11A).
    • 本发明涉及多用途钳子,其包括枢转部分(20),在一个方向上连接到枢转部分(20)的手柄部分(30)和连接到枢转部分的一对杠杆部分(10A,10B) 20)在所述一个方向相反的方向上,其中所述杆部(10A,10B)包括开口环插入部(11),所述开口环插入部(11)包括底部支撑部(11B) 在所述一对杠杆部分的一个(10A)上在远离所述枢转部分的方向的端部处垂直于所述多用钳的纵向轴线(L轴);锥形部分(11A),所述锥形部分沿垂直方向从 底部支撑部分(11B)的顶部并且逐渐变窄到尖端,形成在朝向锥形部分(11A)和底部支撑部分(11B)的枢转部分的侧表面上的凸形成部分(11C) 形成在另一个端部的形成部分(11D) 所述一对杠杆部分引导所述底部支撑部分(11B)和所述锥形部分(11A)的侧表面上的所述凸形成部分(11C)的所述一对杆部分(0B)以及形成为凹形 形状在从凹形状部分(11D)的两个侧面方向上,底部支撑部分(11B)的上表面的尺寸大于或等于锥形部分(11A)的底面的尺寸,并且 使用锥形部分(11A)打开开口环(200)的环之间的间隙(210)。
    • 46. 发明授权
    • Phase detection in power line communication systems
    • 电力线通信系统中的相位检测
    • US09379773B2
    • 2016-06-28
    • US13593159
    • 2012-08-23
    • Kumaran VijayasankarRamanuja VedanthamTarkesh PandeIl Han Kim
    • Kumaran VijayasankarRamanuja VedanthamTarkesh PandeIl Han Kim
    • H04B3/54H04L12/26
    • H04B3/54H04B2203/5408H04B2203/5416H04B2203/542H04B2203/5466
    • Phase detection between service nodes in a as “PRIME” (“PoweRline Intelligent Metering Evolution”) communications network, in which the service nodes are connected to one phase of a three-phase power distribution network. A service node joining a sub-network receives packet data units from other service nodes in the sub-network, including those that can potentially serve as a switch node to which the joining service node can register. The joining service node measures an elapsed time between a zero crossing of the AC power waveform at its phase and the start of a frame in the received packet data units. This elapsed time is compared with a similar zero crossing gap communicated by other service nodes in the packet data units, to identify the relative phases to which the two service nodes are connected.
    • 在“PRIME”(“PoweRline Intelligent Metering Evolution”)通信网络中的服务节点之间的相位检测,其中服务节点连接到三相配电网络的一相。 加入子网络的服务节点从子网络中的其他服务节点接收分组数据单元,包括可能充当加入服务节点可以注册的交换节点的那些节点。 加入服务节点测量在其相位处的AC功率波形的过零点与接收的分组数据单元中的帧的开始之间的经过时间。 将经过的时间与由分组数据单元中的其他服务节点通信的类似的零交叉间隔进行比较,以识别两个服务节点所连接的相对阶段。
    • 48. 发明授权
    • High-sensitivity magnetic resonance imaging nano-contrast agent based on an anionic polymer and cationic polymer ion complex, and a production method therefor
    • 基于阴离子聚合物和阳离子聚合物离子络合物的高灵敏度磁共振成像纳米造影剂及其制备方法
    • US09138491B2
    • 2015-09-22
    • US14110138
    • 2011-04-07
    • Moon-Hee SungYong Taik LimYoung-Woock NohIl Han LeeHyun Min Kim
    • Moon-Hee SungYong Taik LimYoung-Woock NohIl Han LeeHyun Min Kim
    • A61K49/12A61B5/055A61K49/18
    • A61K49/126A61K49/1863A61K49/1872
    • The present invention relates to a nano-composite containing anionic and cationic polymers and a method for preparing thereof, and more particularly to a poly-gamma-glutamic acid (γ-PGA)/chitosan/manganese iron oxide nanoparticle composite prepared by encapsulating iron oxide-based nanoparticles in a γ-PGA/chitosan polymer composite using the ionic self-assembly properties of poly-gamma-glutamic acid (γ-PGA) and chitosan, which are biocompatible polymer materials, and to a method for preparing thereof.The present invention provides a magnetic resonance imaging nano-contrast agent based on a nanoparticle composite including iron oxide-based nanoparticles encapsulated in a self-assembled composite of anionic poly-gamma-glutamic acid (γPGA) and cationic chitosan. The iron oxide-based nanoparticles encapsulated in the composite interact with each other to produce a synergistic effect on the amplification of magnetic resonance signals, and thus have an relatively excellent contrast effect compared to when they exist as single particles.
    • 本发明涉及含有阴离子和阳离子聚合物的纳米复合物及其制备方法,更具体地涉及通过包封氧化铁制备的聚-γ-谷氨酸(γ-PGA)/壳聚糖/锰铁氧体纳米颗粒复合材料 基于聚-γ-谷氨酸(γ-PGA)和壳聚糖的离子自组装性质的γ-PGA /壳聚糖复合材料的生物相容性聚合物材料的制备方法。 本发明提供一种基于纳米颗粒复合材料的磁共振成像纳米造影剂,其包括封装在阴离子聚-γ-谷氨酸(γPGA)和阳离子壳聚糖的自组装复合物中的基于氧化铁的纳米颗粒。 封装在复合材料中的基于氧化铁的纳米颗粒彼此相互作用以对磁共振信号的扩增产生协同效应,因此与作为单个颗粒存在时相比具有相对优异的对比效果。