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    • 1. 发明申请
    • METHODS AND SYSTEMS FOR MEASURING DISPLAY ATTRIBUTES OF A FED
    • 用于测量FED的显示属性的方法和系统
    • WO03002957A3
    • 2003-05-01
    • PCT/US0220243
    • 2002-06-24
    • CANDESCENT TECH CORP
    • CUMMINGS WILLIAMDUNPHY JAMES CHANSEN RONALD LLIU JUNCRESSI LEESTANNERS COLINSPINDT CHRISTOPHER J
    • G01R31/24G09G3/20G09G3/22G09G3/10
    • G09G3/22G09G2320/0233G09G2320/0285
    • Method for compensating for brightness variations in a field emission device (100a). In one embodiment, a method and system are described for measuring the relative brightness of rows of a field emission display (FED) device (100a), storing information representing the measured brightness into a correction table and using the correction table to provide uniform row brightness in the display by adjusting row voltages and/or row on-time periods. A special measurement process is described for providing accurate current measurements on the rows. This embodiment compensates for brightness variations of the rows, e.g., for rows near the spacer walls (30). In another embodiment, a periodic signal, e.g., a high frequency noise signal (340), is added to the row on-time pulse in order to camouflage brightness variations in the rows near the spacer walls (30). In another embodiment, the area under the row on-time pulse is adjusted to provide row-by-row brightness compensation based on correction values stored in a memory resident correction table (60). In another embodiment, the brightness of each row is measured and compiled into a data profile for the FED. The data profile is used to control cathode burn-in processes so that brightness variations are corrected by physically altering the characteristics of the emitters of the rows.
    • 用于补偿场发射器件(100a)中的亮度变化的方法。 在一个实施例中,描述了用于测量场致发射显示器(FED)设备(100a)的行的相对亮度的方法和系统,将表示测量的亮度的信息存储到校正表中并且使用校正表来提供均匀的行亮度 在显示器中通过调节行电压和/或行导通时间周期。 描述了一种特殊的测量过程,用于在行上提供精确的电流测量。 该实施例补偿了行的亮度变化,例如对于间隔壁(30)附近的行。 在另一个实施例中,将周期性信号(例如高频噪声信号(340))加到行导通时间脉冲上以便伪装间隔壁(30)附近的行中的亮度变化。 在另一个实施例中,基于存储在存储器驻留校正表(60)中的校正值来调整行导通时间脉冲下的面积以提供逐行亮度补偿。 在另一个实施例中,每行的亮度被测量并被编译成用于FED的数据简档。 数据配置文件用于控制阴极老化过程,以便通过物理改变行发射器的特性来校正亮度变化。
    • 2. 发明申请
    • GRIPPING MULTI-LEVEL MATRIX METHOD AND APPARATUS
    • 提取多级矩阵法和装置
    • WO0193298A2
    • 2001-12-06
    • PCT/US0114897
    • 2001-05-09
    • CANDESCENT TECH CORP
    • PORTER JOHN DMACKEY BOB LNEIMEYER ROBERT GSPINDT CHRISTOPHER JCHANG DAVID CSAHLSTROM KRIS E
    • H01J9/227H01J29/02H01J29/32H01J29/86H01J29/87H01J31/12H01J29/00
    • H01J29/028H01J29/864H01J2329/00H01J2329/863
    • A multi-level matrix structure (100) for retaining a support structure within a flat panel display device. In one embodiment, the multi-level matrix structure (100) is comprised of first parallel ridges (102). The multi-level matrix structure (100) further includes second parallel ridges (104). The second parallel ridges (104) are oriented substantially orthogonally with respect to the first parallel ridges (102). In this embodiment, the second parallel ridges (104) have a height which is greater than the height of the first parallel ridges (102). Furthermore, in this embodiment, the second plurality of parallel spaced apart ridges (104) include contact portions (106) for retaining a support structure at a desired location within a flat panel display device. Hence, when a support structure is inserted between at least two of the contact portions (106) of the multi-level support structure (100), the support structure is retained in place, at a desired location within the flat panel display device, by the contact portions (106).
    • 一种用于将支撑结构保持在平板显示装置内的多级矩阵结构(100)。 在一个实施例中,多级矩阵结构(100)由第一平行脊(102)组成。 多级矩阵结构(100)还包括第二平行脊(104)。 第二平行脊(104)相对于第一平行脊(102)基本正交地定向。 在该实施例中,第二平行脊(104)的高度大于第一平行脊(102)的高度。 此外,在该实施例中,第二多个平行间隔开的​​脊(104)包括用于将支撑结构保持在平板显示装置内的期望位置处的接触部分(106)。 因此,当在多层支撑结构(100)的至少两个接触部分(106)之间插入支撑结构时,支撑结构被保持在平板显示装置内的所需位置的适当位置,由 接触部分(106)。
    • 3. 发明申请
    • FLAT PANEL DISPLAY AND METHOD INVOLVING COLUMN ELECTRODE
    • 平板显示器和涉及柱电极的方法
    • WO0051154A8
    • 2000-11-23
    • PCT/US0001940
    • 2000-01-26
    • CANDESCENT TECH CORP
    • CHAKRAVORTY KISHORE KNADI FARIBORZSPINDT CHRISTOPHER JHANSEN RONALD LSTANNERS COLIN D
    • H01J3/02H01J9/02H01J29/02H01J1/02
    • H01J9/148H01J3/022H01J29/02
    • A structure and method for forming a column electrode for a field emission display device wherein the column electrode (702) is disposed beneath the field emitters and the row electrode. In one embodiment, the present invention comprises depositing a resistor layer (706) over portions of a column electrode (702). Next, an inter-metal dielectric layer (708) is deposited over the column electrode. In the present embodiment, the inter-metal dielectric layer (708) is deposited over portions of the resistor layer (706) and over pad areas (704a, 704b) of the column electrode (702). After the deposition of the inter-metal dielectric layer (708), the column electrode (702) is subjected to an anodization process such that the exposed regions of the column electrode (702) are anodized. In so doing, the present invention provides a column electrode structure (702) which is resistant to column to row electrode shorts and which is protected from subsequent processing steps.
    • 一种用于形成用于场致发射显示装置的列电极的结构和方法,其中列电极(702)设置在场发射极和行电极之下。 在一个实施例中,本发明包括在列电极(702)的部分上沉积电阻层(706)。 接下来,在列电极上沉积金属间介电层(708)。 在本实施例中,金属间介电层(708)沉积在列电极(702)的电阻层(706)和焊盘区域(704a,704b)的部分上。 在沉积金属间介电层(708)之后,对列电极(702)进行阳极氧化处理,使得列电极(702)的暴露区域被阳极氧化。 在这样做时,本发明提供了一种对柱对电极短路有抵抗能力的列电极结构(702),其不受后续处理步骤的保护。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR FIELD EMISSION DISPLAYS
    • 用于场发射显示的系统和方法
    • WO0013168A9
    • 2000-10-05
    • PCT/US9915893
    • 1999-07-14
    • CANDESCENT TECH CORP
    • MASLENNIKOV IGOR LURBON DENNIS MSPINDT CHRISTOPHER JHANSEN RONALD LCURTIN CHRISTOPHER J
    • H01J29/04G09G3/20G09G3/22H01J31/12H04N5/68G09G3/12
    • G09G3/22G09G3/2011G09G2310/0267G09G2310/06G09G2320/029G09G2320/043G09G2330/02G09G2330/028
    • A field emission display (700) having an improved operational life. In one embodiment, the field emission display (700) comprises a plurality of row lines (230), a plurality of column lines (250), and a plurality of electron emissive elements (40) disposed at intersections of the plurality of row lines (230) and column lines (250), a column driver circuit (740) and a row driver circuit (720). The column driver circuit (740) is coupled to drive column voltage signals over the plurality of column lines (250); and the row driver circuit (720) is coupled to activate and deactivate the plurality of row lines (230) with row voltage signals. According to the present invention, operation life of the field emission display is extended when the electron emissive elements are intermittently reverse-biased by the column voltage signals and the row voltage signals. In another embodiment, the row driver circuit is responsive to a SLEEP signal (770). The row driver circuit (720), upon receiving the SLEEP signal (770), drives a sleep-mode voltage over the row lines (230) to reverse-bias the electron emissive elements.
    • 场发射显示器(700)具有改进的操作寿命。 在一个实施例中,场致发射显示器(700)包括多个行线(230),多个列线(250)以及多个电子发射元件(40),所述多个电子发射元件设置在多条行线的交叉点处 230)和列线(250),列驱动器电路(740)和行驱动器电路(720)。 列驱动器电路(740)被耦合以通过多条列线(250)驱动列电压信号; 并且行驱动器电路(720)被耦合以利用行电压信号来激活和去激活多条行线(230)。 根据本发明,当电子发射元件被列电压信号和行电压信号间歇地反向偏置时,场发射显示器的工作寿命延长。 在另一个实施例中,行驱动器电路响应于SLEEP信号(770)。 行驱动器电路(720)在接收到睡眠信号(770)时驱动行线(230)上的睡眠模式电压以反向偏置电子发射元件。