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    • 51. 发明授权
    • Rotary film clamp assembly for film wrapping or packaging machines, and method of operating the same
    • 用于薄膜包装或包装机的旋转薄膜夹具组件及其操作方法
    • US06625954B2
    • 2003-09-30
    • US10055909
    • 2002-01-28
    • Stephen Forrest
    • Stephen Forrest
    • B65B1104
    • B65B11/045
    • A film clamping mechanism for use in connection with film wrapping apparatus comprises a pair of film clamping fingers or members which are movable between first and second CLOSED and OPENED states for respectively clamping and releasing a leading end portion of a wrapping film, and between first and second RAISED and LOWERED states for respectively clamping the leading end portion of the wrapping film at the commencement of the film wrapping operation and for maintaining the leading end portion of the wrapping film during the film wrapping operation. In this manner, since the clamping fingers are disposed at their LOWERED state during the film wrapping operation, such clamping fingers or members do not pose any interference with the carriage assembly upon which the supply of wrapping film is disposed whereby the carriage assembly can be disposed at its lower-most position in order to securely wrap loads having relatively small height dimensions as well as to shorten the film wrapping operation as well as to reduce the amount of wrapping film required for a particular film wrapping operation.
    • 用于与薄膜包装设备相结合的胶片夹紧机构包括一对胶片夹持指状物或构件,它们可在第一和第二闭合状态和打开状态之间移动,以分别夹紧和释放包装膜的前端部分,以及在第一和第 第二提升和下降状态,用于在膜包装操作开始时分别夹紧包装膜的前端部分并且在胶卷包装操作期间保持包装膜的前端部分。 以这种方式,由于夹膜指在薄膜包装操作期间处于其降低状态,所以夹持指状物或构件不会与设置有包装薄膜供应的滑架组件构成任何干扰,由此滑架组件可被布置 在其最低位置,以便可靠地包裹具有相对较小的高度尺寸的载荷以及缩短薄膜包装操作以及减少特定薄膜包装操作所需的包装薄膜的量。
    • 53. 发明申请
    • OVJP PATTERNING OF ELECTRONIC DEVICES
    • 电子设备的OVJP图案
    • US20130071959A1
    • 2013-03-21
    • US13235943
    • 2011-09-19
    • Stephen ForrestGregory McGraw
    • Stephen ForrestGregory McGraw
    • H01L51/52
    • H01L51/56H01L27/3283H01L51/0004
    • A method for forming an electronic device such as a passive color OLED display. Bottom electrodes are patterned onto a substrate in rows. Raised posts formed by photoresist are patterned into columns oriented orthogonally to the bottom row electrodes. One or more organic layers, such as R, G, B organic emissive layers are patterned over the raised posts and bottom electrodes using organic vapor jet printing (OVJP). An upper electrode layer is applied over the entire device and forms electrically isolated columnar electrodes due to discontinuities in the upper electrode layer created by the raised columnar posts. This permits patterning of the upper electrodes over the organic layers without using photolithography. A device formed by this method is also described.
    • 一种用于形成诸如无源彩色OLED显示器的电子设备的方法。 底部电极按行排列在基板上。 由光致抗蚀剂形成的凸起柱被图案化成与底部行电极正交定向的列。 使用有机蒸气喷射印刷(OVJP)将一个或多个有机层,例如R,G,B有机发光层图案化在凸起的柱和底部电极上。 在整个器件上施加上电极层,由于由凸起的柱状柱形成的上电极层中的不连续性,形成电隔离的柱状电极。 这允许在不使用光刻的情况下在有机层上图案化上电极。 还描述了通过该方法形成的装置。
    • 58. 发明申请
    • Low resistance thin film organic solar cell electrodes
    • 低电阻薄膜有机太阳能电池电极
    • US20080131993A1
    • 2008-06-05
    • US12005773
    • 2007-12-27
    • Stephen ForrestJiangeng Xue
    • Stephen ForrestJiangeng Xue
    • H01L51/44
    • H01L51/441H01L27/301H01L51/424Y02E10/549Y02P70/521
    • A method which lower the series resistance of photosensitive devices includes providing a transparent film of a first electrically conductive material arranged on a transparent substrate; depositing and patterning a mask over the first electrically conductive material, such that openings in the mask have sloping sides which narrow approaching the substrate; depositing a second electrically conductive material directly onto the first electrically conductive material exposed in the openings of the mask, at least partially filling the openings; stripping the mask, leaving behind reentrant structures of the second electrically conductive material which were formed by the deposits in the openings of the mask; after stripping the mask, depositing a first organic material onto the first electrically conductive material in between the reentrant structures; and directionally depositing a third electrically conductive material over the first organic material deposited in between the reentrant structures, edges of the reentrant structures aligning deposition so that the third electrically conductive material does not directly contact the first electrically conductive material, and does not directly contact the second electrically conductive material.
    • 降低光敏元件的串联电阻的方法包括提供布置在透明基板上的第一导电材料的透明膜; 在所述第一导电材料上沉积和图案化掩模,使得所述掩模中的开口具有接近所述基底的窄边; 将第二导电材料直接沉积在暴露于掩模的开口中的至少部分填充开口的第一导电材料上; 剥离掩模,留下由掩模的开口中的沉积物形成的第二导电材料的可重入结构; 在剥离掩模之后,将第一有机材料沉积在第一导电材料之间的可重入结构之间; 并且在第一有机材料上定向沉积第三导电材料,所述第一有机材料沉积在所述凹坑结构之间,所述凹槽结构的边缘对准沉积物,使得所述第三导电材料不直接接触所述第一导电材料,并且不直接接触所述第一导电材料 第二导电材料。
    • 60. 发明授权
    • Stacked organic photosensitive devices
    • 堆叠有机光敏元件
    • US07326955B2
    • 2008-02-05
    • US10911560
    • 2004-08-05
    • Stephen ForrestJiangeng XueSoichi UchidaBarry P. Rand
    • Stephen ForrestJiangeng XueSoichi UchidaBarry P. Rand
    • H01L27/142
    • B82Y10/00H01L27/302H01L51/0046H01L51/0051H01L51/0053H01L51/0059H01L51/0078H01L51/4246H01L51/4253Y02E10/549
    • A device is provided having a first electrode, a second electrode, a first photoactive region having a characteristic absorption wavelength λ1 and a second photoactive region having a characteristic absorption wavelength λ2. The photoactive regions are disposed between the first and second electrodes, and further positioned on the same side of a reflective layer, such that the first photoactive region is closer to the reflective layer than the second photoactive region. The materials comprising the photoactive regions may be selected such that λ1 is at least about 10% different from λ2. The device may further comprise an exciton blocking layer disposed adjacent to and in direct contact with the organic acceptor material of each photoactive region, wherein the LUMO of each exciton blocking layer other than that closest to the cathode is not more than about 0.3 eV greater than the LUMO of the acceptor material.
    • 提供一种器件,其具有第一电极,第二电极,具有特征吸收波长λ1的第一光活性区域和具有特征吸收波长λ2的第二光活性区域, 。 光活性区域设置在第一和第二电极之间,并且进一步定位在反射层的相同侧上,使得第一光活性区域比第二光活性区域更靠近反射层。 可以选择包含光活性区的材料,使得λ1至少与λ2不同10%。 该装置还可以包括邻近并与每个光活性区域的有机受体材料直接接触的激子阻挡层,其中除最接近阴极之外的每个激子阻挡层的LUMO不大于约0.3eV,大于约0.3eV 受体材料的LUMO。