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
    • 5. 发明申请
    • BACTERIOPHAGE KILLING PSEUDOMONAS AERUGINOSA AND STAPHYLOCOCCUS AUREUS
    • 杀菌剂杀虫剂AERUGINOSA和STAPHYLOCOCCUS AUREUS
    • US20130273635A1
    • 2013-10-17
    • US13445564
    • 2012-04-12
    • Jung Min KimShuk Ho KimSeongjun YoonSooyoun JunSanghyeon Kang
    • Jung Min KimShuk Ho KimSeongjun YoonSooyoun JunSanghyeon Kang
    • C12N7/00
    • A61K35/76C12N7/00C12N2795/10321C12N2795/10331C12N2795/10332Y02A50/475
    • The present invention relates to a bacteriophage PA1Φ belonging to family Siphoviridae, characterized that it is capable of killing one or more bacteria strains selected from a group comprising Pseudomonas aeruginosa, Staphylococcus aureus, Staphylococcus epidermidis, Staphylococcus homonis, Shigella sonnei, Listeria monocytogenes and Streptococcus pneumonia, and contains a full-length genome of SEQ ID NO: 1.According to the present invention, the bacteriophage PA1Φ can be used to kill said bacteria and reduce the same effectively. Also, it can be used to remove biofilms generated by said bacteria. Especially, this bacteriophage is applicable for medical industry, food industry, biotechnology and the like, because it is a sort of virus that kills host bacteria without any adverse effect on human, animals and so on. In addition, this bacteriophage can kill noxious bacteria on target sites or target supports without any problem related with resistance development of bacteria.
    • 本发明涉及属于家蚕科的噬菌体PA1Phi,其特征在于能够杀死一种或多种选自包括绿脓假单胞菌,金黄色葡萄球菌,表皮葡萄球菌,金黄色葡萄球菌,志贺氏菌,单核细胞增生利斯特氏菌和肺炎链球菌的细菌菌株 ,并含有SEQ ID NO:1的全长基因组。根据本发明,噬菌体PA1Phi可用于杀死所述细菌并有效地减少。 此外,它可以用于去除由所述细菌产生的生物膜。 特别是,这种噬菌体适用于医疗工业,食品工业,生物技术等,因为它是一种杀死宿主细菌而不对人类,动物等产生不利影响的病毒。 此外,这种噬菌体可以在目标部位或靶支架上杀死有害细菌,而不会与细菌的抗性发展相关。
    • 8. 发明申请
    • ROBOT CALIBRATION APPARATUS AND METHOD FOR SAME
    • 机器人校准装置及其方法
    • US20120078418A1
    • 2012-03-29
    • US13376878
    • 2010-06-03
    • Jin Hwan BormJung Min KimSang Wook Park
    • Jin Hwan BormJung Min KimSang Wook Park
    • B25J13/08
    • B25J9/1692G05B2219/39045Y02P80/40
    • A robot calibration apparatus and a robot calibration method. The robot calibration apparatus includes:a measurement jig including a plurality of reference points of which positions are pre-known, one or more reference lines of which linear equations are pre-known, and one or more reference planes of which plane equations are pre-known relative to a reference coordinate system of the measurement jig, wherein arbitrary points from among the plurality of reference points, the plurality of arbitrary points on the one or more reference line, and the plurality of arbitrary points on the one or more reference plane are set as measurement points;a sensor coupled to a robot and measuring positions of a plurality of measurement points selected from among the measurement points on the measurement jig;and a control unit controlling the calibrated robot after calibrating the robot based on a plurality of pieces of calibration data including position information of the plurality of measurement points measured by the sensor, wherein at least one measurement point from among the plurality of measurement points is arranged on the reference line or the reference plane. Accordingly, the robot can be calibrated by using information of measuring an arbitrary position on the reference line or reference plane on the measurement jig, and thus limitation to the measurement posture of the robot can be remarkably reduced while measuring the positions of the measurement points, the position information of the measurement point can be easily obtained, and the robot calibration apparatus can be easily applied to a production line.
    • 机器人校准装置和机器人校准方法。 机器人校准装置包括:测量夹具,其包括多个参考点,其中位置是预先知道的,一个或多个参考线,其线性方程式是预先知道的,以及一个或多个参考平面, 相对于测量夹具的参考坐标系而言,其中多个参考点中的任意点,一个或多个参考线上的多个任意点以及一个或多个参考平面上的多个任意点是 设置为测量点; 耦合到机器人的传感器,并且测量从测量夹具上的测量点中选出的多个测量点的位置; 以及控制单元,其基于包括由所述传感器测量的所述多个测量点的位置信息的多个校准数据来校准所述机器人后控制所述校准的机器人,其中,从所述多个测量点中的至少一个测量点被布置 在参考线或参考平面上。 因此,可以通过使用测量夹具上的参考线或参考平面上的任意位置的信息来校准机器人,从而可以在测量点的位置的同时显着地减小对机器人的测量姿势的限制, 可以容易地获得测量点的位置信息,并且机器人校准装置可以容易地应用于生产线。
    • 9. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20110068677A1
    • 2011-03-24
    • US12820989
    • 2010-06-22
    • Sung-Hee ChoJung Min Kim
    • Sung-Hee ChoJung Min Kim
    • H01J63/04H01J17/49
    • H01J11/12H01J11/36H01J11/44H01J2211/363H01J2211/442
    • A plasma display panel (PDP) is disclosed. In one embodiment, the PDP includes i) a front substrate and a rear substrate spaced apart from and facing each other and ii) a barrier rib portion dividing a space between the front substrate and the rear substrate into a plurality of discharge cells, wherein the barrier rib portion comprises first barrier ribs and second barrier ribs formed on the first barrier ribs, wherein the second barrier ribs are less in width than the first barrier ribs, wherein the widths of the first and second barrier ribs are defined along a first direction substantially parallel with one of the front and rear substrates, and wherein the second barrier ribs are closer to the first substrate than the first barrier ribs. The PDP may further include i) an anti-reflection layer formed on the second barrier ribs, ii) a plurality of discharge electrodes separately disposed on the front substrate substantially in parallel with each other across the front substrate, iii) a plurality of address electrodes formed on the rear substrate to cross the discharge electrodes, iv) phosphors formed in the discharge cells and v) a discharge gas filled in the discharge cells.
    • 公开了一种等离子体显示面板(PDP)。 在一个实施例中,PDP包括i)前隔板和与之相对的前基板和后基板,以及ii)将前基板与后基板之间的间隔分成多个放电单元的隔壁部分,其中, 阻挡肋部分包括形成在第一阻挡肋上的第一阻挡肋和第二阻挡肋,其中第二阻挡肋的宽度小于第一阻挡肋,其中第一和第二阻挡肋的宽度基本上沿第一方向限定 平行于前基板和后基板之一,并且其中第二阻挡肋比第一阻挡肋更靠近第一基板。 PDP可以进一步包括i)形成在第二阻挡肋上的防反射层,ii)分别布置在前基板上的多个放电电极,其基本上彼此平行地穿过前基板,iii)多个寻址电极 形成在后基板上以与放电电极交叉,iv)在放电单元中形成的荧光体,和v)填充在放电单元中的放电气体。
    • 10. 发明申请
    • Method for the mass expression of an antimicrobial peptide by using a translational coupling system
    • 通过使用平移耦合系统大量表达抗微生物肽的方法
    • US20100184949A1
    • 2010-07-22
    • US12313513
    • 2008-11-19
    • Sun Chang KimSu A. JangBong Hyun SungJung Min KimKi Jung LimJu Ri ShinJu Young Lee
    • Sun Chang KimSu A. JangBong Hyun SungJung Min KimKi Jung LimJu Ri ShinJu Young Lee
    • C07K14/00C12P21/00C07H21/04
    • C12N15/67C07K14/4702
    • The present invention relates to a gene construct which is capable of achieving efficient production of an antimicrobial peptide in a microorganism, and a method for efficient mass production and separation of an antimicrobial peptide using the same. The gene construct of the present invention has a translationally coupled configuration of two independent and separate cistrons which encode an acidic peptide and a basic antimicrobial peptide, each having an opposite charge, under the control of a single promoter. The translationally coupled acidic peptide and basic antimicrobial peptide undergo charge-charge interaction simultaneously with expression thereof to neutralize the potential cytotoxicity of the antimicrobial peptide, resulting in prevention of antimicrobial peptide-mediated killing of host microorganisms. In addition, a conjugate of the acidic peptide and the antimicrobial peptide can be separated without chemical or enzymatic treatment. Therefore, it is possible to achieve easy mass production of antimicrobial peptides from recombinant microorganisms.
    • 本发明涉及能够实现微生物中抗微生物肽的高效生产的基因构建体,以及使用该抗体肽高效批量生产和分离的方法。 本发明的基因构建体具有两个独立和分离的顺反子的翻译偶联构型,其在单个启动子的控制下编码各自具有相反电荷的酸性肽和碱性抗微生物肽。 翻译偶联的酸性肽和碱性抗微生物肽与其表达同时进行电荷 - 电荷相互作用以中和抗微生物肽的潜在细胞毒性,从而防止抗微生物肽介导的宿主微生物的杀伤。 此外,酸性肽和抗微生物肽的缀合物可以在没有化学或酶处理的情况下分离。 因此,可以从重组微生物容易地大量生产抗微生物肽。