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    • 2. 发明授权
    • AC surface discharge type plasma display panel
    • 交流表面放电型等离子体显示面板
    • US07112922B2
    • 2006-09-26
    • US10505077
    • 2004-03-25
    • Hiroyuki TachibanaTomohiro MurakosoYasuyuki NoguchiTetsuya Shirai
    • Hiroyuki TachibanaTomohiro MurakosoYasuyuki NoguchiTetsuya Shirai
    • H01J17/49
    • H01J11/12H01J11/28H01J11/40
    • A plasma display panel has address properties stabilized. A priming discharge is performed between auxiliary electrodes (17), which are formed on a front substrate (1) and coupled with scan electrodes (6) and priming electrodes (14) formed on a back substrate (2). Furthermore, a material layer (5) containing at least one of alkali metal oxide, alkaline earth metal oxide and fluoride is provided on regions corresponding to priming discharge spaces (30) (gap parts 13) on the back substrate (2). As a result, the priming discharge has a wider margin, and a supply of priming particles to the discharge cells is stabilized, whereby a discharge delay during the addressing is reduced, and the address properties are stabilized.
    • 等离子体显示面板具有稳定的地址特性。 在形成在前基板(1)上并与形成在背面基板(2)上的扫描电极(6)和起动电极(14)耦合的辅助电极(17)之间进行起动放电。 此外,在与背面基板(2)上的引燃放电空间(30)(间隙部13)对应的区域上设置含有碱金属氧化物,碱土金属氧化物和氟化物中的至少一种的材料层(5)。 结果,引发放电具有更宽的余量,并且向放电单元提供引发粒子的稳定化,从而降低寻址期间的放电延迟,并且寻址性能稳定。
    • 6. 发明申请
    • Plasma display panel drive method
    • 等离子显示屏驱动方式
    • US20060145997A1
    • 2006-07-06
    • US10546913
    • 2005-01-13
    • Hiroyuki TachibanaJumpei HashiguchiKenji OgawaToshikazu WakabayashiTomohiro Murakoso
    • Hiroyuki TachibanaJumpei HashiguchiKenji OgawaToshikazu WakabayashiTomohiro Murakoso
    • G09G3/36
    • G09G3/2927G09G3/2932G09G3/2986G09G2310/0216G09G2310/0218G09G2310/066
    • Barrier ribs are disposed on a back substrate so as to separate main discharge cells formed of a display electrode pair and a data electrode which face each other and priming discharge cells formed of a clearance between two adjacent scan electrodes. The top parts of the barrier ribs are formed so as to abut on a front substrate. In a driving method, in an odd-numbered line writing time period, scan pulse Va is sequentially applied to odd-numbered scan electrode SCp and voltage Vq is applied to even-numbered scan electrode SCp+1 to cause priming discharge between scan electrode SCp+1 and odd-numbered scan electrode SCp. In an even-numbered line writing time period, scan pulse Va is sequentially applied to even-numbered scan electrode SCp+1 and voltage Vq is applied to odd-numbered scan electrode SCp to cause priming discharge between scan electrode SCp and even-numbered scan electrode SCp+1.
    • 阻挡肋设置在背面基板上,以分离由彼此面对的显示电极对和数据电极形成的主放电单元,并且由两个相邻的扫描电极之间的间隙形成的起动放电单元。 隔壁的顶部形成为与前基板抵接。 在驱动方法中,在奇数行写入时间段中,将扫描脉冲Va顺序地施加到奇数扫描电极SC< P>,将电压Vq施加到偶数扫描电极SC p + 1 以引起扫描电极SC< p + 1>和奇数扫描电极SC< P>之间的引发放电。 在偶数行写入时间段中,将扫描脉冲Va顺序地施加到偶数扫描电极SC< p + 1>,并且将电压Vq施加到奇数扫描电极SC< / SUB>,以使扫描电极SC和P2与偶数扫描电极SC< p + 1>之间引起放电。
    • 7. 发明授权
    • Plasma display panel drive method
    • 等离子显示屏驱动方式
    • US07345655B2
    • 2008-03-18
    • US10546913
    • 2005-01-13
    • Hiroyuki TachibanaJumpei HashiguchiKenji OgawaToshikazu WakabayashiTomohiro Murakoso
    • Hiroyuki TachibanaJumpei HashiguchiKenji OgawaToshikazu WakabayashiTomohiro Murakoso
    • G09G3/28
    • G09G3/2927G09G3/2932G09G3/2986G09G2310/0216G09G2310/0218G09G2310/066
    • Barrier ribs are disposed on a back substrate so as to separate main discharge cells formed of a display electrode pair and a data electrode which face each other and priming discharge cells formed of a clearance between two adjacent scan electrodes. The top parts of the barrier ribs are formed so as to abut on a front substrate. In a driving method, in an odd-numbered line writing time period, scan pulse Va is sequentially applied to odd-numbered scan electrode SCp and voltage Vq is applied to even-numbered scan electrode SCp+1 to cause priming discharge between scan electrode SCp+1 and odd-numbered scan electrode SCp. In an even-numbered line writing time period, scan pulse Va is sequentially applied to even-numbered scan electrode SCp+1 and voltage Vq is applied to odd-numbered scan electrode SCp to cause priming discharge between scan electrode SCp and even-numbered scan electrode SCp+1.
    • 阻挡肋设置在背面基板上,以分离由彼此面对的显示电极对和数据电极形成的主放电单元,并且由两个相邻的扫描电极之间的间隙形成的起动放电单元。 隔壁的顶部形成为与前基板抵接。 在驱动方法中,在奇数行写入时间段中,将扫描脉冲Va顺序地施加到奇数扫描电极SC< P>,将电压Vq施加到偶数扫描电极SC p + 1 以引起扫描电极SC< p + 1>和奇数扫描电极SC< P>之间的引发放电。 在偶数行写入时间段中,将扫描脉冲Va顺序地施加到偶数扫描电极SC< p + 1>,并且将电压Vq施加到奇数扫描电极SC< / SUB>,以使扫描电极SC和P2与偶数扫描电极SC< p + 1>之间引起放电。
    • 10. 发明授权
    • Atomic layer deposition apparatus and atomic layer deposition method
    • 原子层沉积装置和原子层沉积法
    • US08607733B2
    • 2013-12-17
    • US12865763
    • 2009-02-17
    • Hiroyuki Tachibana
    • Hiroyuki Tachibana
    • C23C16/505C23C16/50C23C16/44C23C16/00
    • H05H1/46C23C16/452C23C16/45536C23C16/45544H01J37/32009H01L21/3141
    • An atomic layer deposition apparatus includes: a first chamber which is surrounded by walls including a supply hole for the reactive gas formed thereon; a second chamber which is surrounded by walls including a supply hole for a source gas formed thereon; an antenna array which is provided in the first chamber, the antenna array having a plurality of rod-shaped antenna elements provided in parallel respectively to produce the plasma using the reactive gas; a substrate stage which is provided in the second chamber, the substrate being placed on the substrate stage; and a connecting member which connects the first chamber and the second chamber to supply gas containing reactive gas radical from the first chamber to the second chamber, the reactive gas radical being produced using the antenna array.
    • 原子层沉积设备包括:由壁围绕的第一室,包括在其上形成的反应气体的供应孔; 由壁围绕的第二室,包括形成在其上的源气体的供给孔; 设置在第一室中的天线阵列,天线阵列具有分别平行设置的多个棒状天线元件,以使用反应气体产生等离子体; 设置在所述第二室中的衬底台,所述衬底被放置在所述衬底台上; 以及连接构件,其连接所述第一室和所述第二室以将包含反应性气体自由基的气体从所述第一室供应到所述第二室,所述反应性气体自由基使用所述天线阵列产生。