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. 发明公开
    • Thermally-driven ink-jet printhead without cavitation damage of heater
    • 热喷墨打印头通过加热元件以减少气穴
    • EP1491341A2
    • 2004-12-29
    • EP04253726.6
    • 2004-06-22
    • Samsung Electronics Co., Ltd.
    • Kuk, KeonSohn, Dong-keeShin, Seung-jooLee, Yong-sooOh, Yong-sooLim, Ji-hyukBaek, Seog-soonChoi, Mun-cheol
    • B41J2/14
    • B41J2/14129B41J2/1404B41J2/14056B41J2/1412B41J2/14137B41J2002/14177B41J2002/1437B41J2202/11
    • A thermally-driven ink-jet printhead is provided. The thermally-driven ink-jet printhead comprises a substrate (110) on which an ink chamber (106) to be filled with ink to be ejected, a manifold (102) for supplying ink to the ink chamber (106), and an ink channel (104) for connecting the ink chamber (106) and the manifold (102) are formed; first sidewalls (111) and second sidewalls (112), which are formed to a predetermined depth from the surface of the substrate (110) and surround the ink chamber (106) to have a rectangular shape, the first sidewalls (111) being disposed in a widthwise direction of the ink chamber and the second sidewalls (112) being disposed in a lengthwise direction of the ink chamber (106); a nozzle plate (120), which is formed of a plurality of material layers stacked on the substrate and through which a nozzle (108) connected to the ink chamber (106) is formed; a heater (122), which is disposed between the nozzle (108) and each of the first sidewalls (111) inside the nozzle plate (120) to be positioned above the ink chamber; and a conductor (124), which is disposed inside the nozzle plate and electrically connected to the heater (122). Inner surfaces of each of the first sidewalls are uneven, or a pocket is formed in each of the first sidewalls.
    • 热驱动型喷墨打印头包括:基板,包括在墨水通道(104)连接到油墨室(106)和歧管(102); 第一和第二侧壁(111,112); 的喷嘴板; 喷嘴(108)和喷嘴板内的导体并电连接到所述加热器的加热器。 每个第一侧壁的内表面是不平坦的,由于若干凸部和凹槽的存在。 侧壁在从基板的表面形成至预定深度并包围墨水腔室为具有矩形形状。 第一侧壁在所述墨室的宽度方向设置,并且所述第二侧壁在所述墨室的长度方向布置。
    • 6. 发明公开
    • Ink-jet printhead and ink expelling method
    • Tintenstrahldruckkopf和Tintenausstossverfahren
    • EP1439063A1
    • 2004-07-21
    • EP04250171.8
    • 2004-01-15
    • Samsung Electronics Co., Ltd.
    • Sohn, Dong-keeKuk, KeonShin, Seung-jooOh, Yong-soo
    • B41J2/05B41J2/04B41J2/45B41J2/455
    • B41J2/14008
    • An ink-jet printhead and an ink expelling method are provided. The ink-jet printhead includes an ink chamber and an ink channel formed in a passageway plate, an ink ejection hole formed in a cover plate (120) provided on the passageway plate (210), a condenser lens (232) provided at a position corresponding to the ink chamber in the bottom surface of the passageway plate, and laser beam irradiating means for irradiating a laser beam onto ink contained in the ink chamber through the condenser lens; wherein a surface of the ink is vibrated by a pressurized wave generated by the laser beam, and the vibration causes an ink droplet to be expelled from the surface of the ink through the ink ejection hole. The ink expelling method includes filling an ink chamber with ink, irradiating a laser beam onto the ink contained in the ink chamber to generate a pressurized wave in the ink and vibrating a surface of the ink using the pressurized wave, and expelling an ink droplet from the surface of the ink by the vibration.
    • 提供喷墨打印头和墨水排出方法。 喷墨打印头包括形成在通道板中的油墨室和油墨通道,形成在设置在通道板(210)上的盖板(120)中的喷墨孔,设置在通道板(210)上的聚光透镜 对应于通道板底面中的墨室,以及激光束照射装置,用于通过聚光透镜将激光束照射到容纳在墨室中的墨水上; 其中,所述墨水的表面由所述激光束产生的加压波振动,并且所述振动使得墨滴通过所述墨水喷射孔从所述墨水的表面排出。 墨水排出方法包括用墨水填充墨水室,将激光束照射到墨水容纳的墨水中,以在墨水中产生加压波,并使用加压波振动墨水的表面,并从墨水中排出墨滴 油墨的表面被振动。
    • 9. 发明公开
    • Inkjet spotting apparatus and method for manufacturing microarrays
    • 喷墨点样装置和用于制造微阵列的方法
    • EP1627680A3
    • 2006-10-11
    • EP05017784.9
    • 2005-08-16
    • SAMSUNG ELECTRONICS CO., LTD.
    • Lim, Ji-hyukSohn, Dong-keeKim, Min-sooKuk, Keon
    • B01J19/00
    • B01L3/0268B01J19/0046B01J2219/0036B01J2219/00378B01J2219/00527B01J2219/00722B01J2219/00725B01L2200/021B01L2300/0819B01L2400/027B01L2400/0439B01L2400/0442Y10T436/2575
    • Provided are an inkjet-type spotting apparatus for manufacturing microarrays and a method of spotting using the same. The spotting apparatus includes a plurality of reservoirs (110) which are arranged in rows (161-164) and filled with a predetermined biomolecule solution; and a plurality of nozzles (112), each corresponding to one of the reservoirs (110) and through which the biomolecule solution is ejected, wherein a distance d 2 between the nozzles (112) in a first direction (x-direction) may be larger than a distance between spots in a spot array, and the biomolecule solution is ejected sequentially from the nozzles (112) in each of the rows (161-164) onto a solid support while the apparatus moves in the first direction to form the spot array. The distance d 2 between the nozzles (112) may be the same as the distance d 1 between the reservoirs (110). The distance h between the nozzles (112) in a second direction (y-direction) may be the same as the distance between the spots.
    • 本发明提供一种用于制造微阵列的喷墨式点样装置及使用该装置的点样方法。 该点样装置包括多个排列成行(161-164)并充满预定生物分子溶液的储存器(110) 和多个喷嘴(112),每个喷嘴与所述储存器(110)中的一个相对应,并且生物分子溶液通过所述喷嘴被喷射,其中喷嘴(112)之间在第一方向(x方向)上的距离d2可以更大 与点阵列中的点之间的距离相比,当装置在第一方向上移动以形成点阵列时,生物分子溶液从每行(161-164)中的喷嘴(112)顺序地喷射到固体支撑物上 。 喷嘴(112)之间的距离d2可以与储存器(110)之间的距离d1相同。 喷嘴(112)之间在第二方向(y方向)上的距离h可以与点之间的距离相同。