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    • 1. 发明授权
    • Solid-state color-image sensor and process for fabricating the same
    • 固态彩色图像传感器及其制造方法
    • US4388128A
    • 1983-06-14
    • US242578
    • 1981-03-11
    • Kazufumi OgawaShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • Kazufumi OgawaShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • G03F7/00H01L31/0216B29C27/10B32B31/20H01L31/18
    • G03F7/0007H01L31/02162Y10T156/1074
    • In a step for bonding a color filter to a solid-state color-image sensor chip with an adhesive which is curable not only by light or more particularly ultraviolet-ray irradiation but also by heating, pre-curing or partial curing is effected by irradiating light rays after the color filter and the chip has been pressed against each other and correctly aligned with each other in a bonding device and then the chip with the partially-bonded color filter is removed from the bonding device and complete curing of the adhesive is accomplished by heating. According to one embodiment of the present invention the bonding step is carried out in an atmosphere containing the oxygen so that the adhesive which has been squeezed out from the space between the color filter and the clip may be prevented from being cured and subsequently removed in a simple manner. According to a further embodiment of the present invention, prior to the bonding step, the color filter and chip are covered with protective layers or films so that surface flaws may be avoided. Thus, the color filters can be bonded to the chips with a higher degree of accuracy and a higher degree of adhesive strength and the mass production of solid-state color-image sensors can be much facilitated.
    • 在将滤色器与固态彩色图像传感器芯片接合的步骤中,不仅可以通过光线或更具体的紫外线照射而固化,而且通过加热固化,固化或部分固化可以通过照射 在滤色器之后的光线和芯片已经在接合装置中彼此压靠并且彼此正确地对准,然后将具有部分粘合的滤色器的芯片从接合装置移除并完成粘合剂的完全固化 通过加热。 根据本发明的一个实施方案,粘合步骤在含有氧的气氛中进行,从而可以防止从滤色器和夹子之间的空间挤出的粘合剂被固化并随后在 简单的方式。 根据本发明的另一实施例,在接合步骤之前,滤色器和芯片被保护层或膜覆盖,从而可以避免表面缺陷。 因此,可以以更高的准确度和更高的粘合强度将滤色器结合到芯片,并且可以大大方便固态彩色图像传感器的批量生产。
    • 2. 发明授权
    • Solid-state color-image sensor and process for fabricating the same
    • 固态彩色图像传感器及其制造方法
    • US4418284A
    • 1983-11-29
    • US242577
    • 1981-03-11
    • Kazufumi OgawaShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • Kazufumi OgawaShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • G03F7/00H01L31/0216B29C27/10B32B31/20H01L31/18
    • G03F7/0007H01L31/02162Y10T156/1074
    • In a step for bonding a color filter to a solid-state image sensor so as to provide a color-sensitive image sensor (to be referred to as "a color-image sensor" in this specification), a method for bonding the color filter to the image sensor with an adhesive which is curable by ultraviolet radiation and also the constructions of color filters and image sensors which can facilitate the bonding step. Further techniques for mass producing high-precision and high-quality solid-state color-image sensors, each of which is bonded with a color filter with a higher degree of accuracy in alignment and by a higher degree of adhesive strength, by carrying out the bonding step in an atmosphere containing oxygen so as to inhibit an adhesive squeezed out of the space between the image sensor and the color filter from being cured and subsequently facilitate the removal of uncured adhesive and by forming protective layers or films over the surfaces to be bonded of the image sensor and color filter prior to the bonding step so as to prevent these surfaces from being damaged during the bonding step.
    • 在将滤色器粘合到固态图像传感器以便提供感光图像传感器(在本说明书中称为“彩色图像传感器”)的步骤中,将滤色器 通过可通过紫外线辐射固化的粘合剂以及彩色滤光片和图像传感器的结构,使图像传感器能够促进粘合步骤。 用于批量生产高精度和高质量固态彩色图像传感器的进一步技术,其中每个通过执行更高精度的校准和更高程度的粘合强度的滤色器粘合 包含氧的气​​氛中的粘合步骤,以便抑制从图像传感器和滤色器之间的空间挤出的粘合剂被固化,并且随后便于去除未固化的粘合剂,并且在待粘合的表面上形成保护层或膜 的粘合步骤之前的图像传感器和滤色器,以防止在接合步骤期间这些表面被损坏。
    • 3. 发明授权
    • Solid-state color-image sensor and process for fabricating the same
    • 固态彩色图像传感器及其制造方法
    • US4523102A
    • 1985-06-11
    • US462396
    • 1983-01-31
    • Ogawa KazufumiShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • Ogawa KazufumiShigeru KondoYoshiko YasudaTaketoshi YonezawaIsamu Kitahiro
    • G03F7/00H01L31/0216H01L31/18H01J40/14
    • G03F7/0007H01L31/02162H01L31/18Y10S522/91Y10T428/31533
    • In a step for bonding a color filter to a solid-state color-image sensor chip with an adhesive which is curable not only by light or more particularly ultraviolet-ray irradiation but also by heating, pre-curing or partial curing is effected by irradiating light rays after the color filter and the chip has been pressed against each other and correctly aligned with each other in a bonding device and then the chip with the partially-bonded color filter is removed from the bonding device and complete curing of the adhesive is accomplished by heating. According to one embodiment of the present invention the bonding step is carried out in an atmosphere containing the oxygen so that the adhesive which has been squeezed out from the space between the color filter and the chip may be prevented from being cured and subsequently removed in a simple manner. According to a further embodiment of the present invention, prior to the bonding step, the color filter and chip are covered with protective layers or films so that surface flaws may be avoided. Thus, the color filters can be bonded to the chips with a higher degree of accuracy and a higher degree of adhesive strength and the mass production of solid-state color-image sensors can be much facilitated.
    • 在将滤色器与固态彩色图像传感器芯片接合的步骤中,不仅可以通过光线或更具体的紫外线照射而固化,而且通过加热固化,固化或部分固化可以通过照射 在滤色器之后的光线和芯片已经在接合装置中彼此压靠并且彼此正确地对准,然后将具有部分粘合的滤色器的芯片从接合装置移除并完成粘合剂的完全固化 通过加热。 根据本发明的一个实施方案,粘结步骤在含有氧的气氛中进行,从而可以防止从滤色器和芯片之间的空间挤出的粘合剂被固化并随后在 简单的方式。 根据本发明的另一实施例,在接合步骤之前,滤色器和芯片被保护层或膜覆盖,从而可以避免表面缺陷。 因此,可以以更高的准确度和更高的粘合强度将滤色器结合到芯片,并且可以大大方便固态彩色图像传感器的批量生产。
    • 5. 发明授权
    • Information platform and configuration method of multiple information processing systems thereof
    • 信息平台及其多种信息处理系统的配置方法
    • US07903677B2
    • 2011-03-08
    • US11649761
    • 2007-01-05
    • Yoshiko YasudaTakashige BabaJun OkitsuToshiaki Tarui
    • Yoshiko YasudaTakashige BabaJun OkitsuToshiaki Tarui
    • H04L12/28
    • H04L49/35H04L49/356H04L49/65H04L69/22
    • An information platform system, the configuration thereof is able to change flexibly to meet the needs of the customers, and able to use a single adapter for multiple uses, wherein multiple general-purpose processing modules and dedicated processing modules for processing disks and external networks are connected to one another with switching hubs via respective adapters, and the platform system includes a management module having a system identifier management table specifying system type of the general-purpose processing modules, a functional set management table managing a functional set to be included by the general-purpose processing module of each system identifier, and the configuration management table managing the combination of the general-purpose processing modules and dedicated processing modules, and the management module selects a functional set from multiple functional sets, installs the selected functional set into a general-purpose processing module and an adapter, and manages the system configuration comprising of a general-purpose processing module and a dedicated processing module.
    • 一种信息平台系统,其配置能够灵活变更,以满足客户的需求,能够使用单个适配器进行多种用途,其中用于处理磁盘和外部网络的多个通用处理模块和专用处理模块 通过相应的适配器彼此连接到交换集线器,并且平台系统包括管理模块,该管理模块具有指定通用处理模块的系统类型的系统标识符管理表,管理要包括的功能集的功能集管理表 每个系统标识符的通用处理模块和管理通用处理模块和专用处理模块的组合的配置管理表,并且管理模块从多个功能集中选择功能集,将所选择的功能集合安装到 通用处理模块和适配器,以及 管理包括通用处理模块和专用处理模块的系统配置。
    • 9. 发明授权
    • Fault handling and recovery for system having plural processors
    • 具有多个处理器的系统的故障处理和恢复
    • US5758053A
    • 1998-05-26
    • US189683
    • 1994-02-01
    • Shigeo TakeuchiYasuhiro InagakiJunji NakagoshiShinichi ShutohTatsuo HiguchiHiroaki FujiiYoshiko YasudaKiyohiro ObaraTaturu TobaMasahiro Yamada
    • Shigeo TakeuchiYasuhiro InagakiJunji NakagoshiShinichi ShutohTatsuo HiguchiHiroaki FujiiYoshiko YasudaKiyohiro ObaraTaturu TobaMasahiro Yamada
    • G06F11/00G06F11/10G06F11/14H04J6/00H04L12/00
    • G06F11/1443G06F11/0724G06F11/0784G06F11/10
    • Parallel processors communicate with each other over a network by transmitting messages that include destination processor information. A message controller for each processor in the network receives the messages and checks for faults in the message, particularly in the destination processor number contained in a first word of the message. If a fault occurs in the destination processor number, then the faulty message is transmitted to an appropriate processor for handling the fault. In this way the network operation is not suspended because of the fault and the message is not left in the network as a result of the error occurring in the destination processor number. The processor to which the faulty message is directed is determined by a substitute destination processor number contained in the message or is predetermined and set in another way, such as by a service processor. To recover from the fault, the processor receiving the faulty message can request that the message be retransmitted or the error can be corrected using an ECC, for example. If the faulty message cannot be retransmitted, then the processor or the host processor can request that the job to which the faulty message pertains be canceled by all of the processors executing that job without affecting the simultaneous execution of other jobs by the same processors.
    • 并行处理器通过发送包含目标处理器信息的消息通过网络彼此进行通信。 用于网络中的每个处理器的消息控制器接收消息并检查消息中的故障,特别是在消息的第一个字中包含的目标处理器号码中。 如果目标处理器号码发生故障,则故障消息被传送到适当的处理器处理故障。 以这种方式,网络操作由于故障而不被暂停,并且由于目标处理器号码中出现错误,网络中没有留下该消息。 错误消息所针对的处理器由包含在消息中的替代目的地处理器号码确定,或者以另一种方式例如由服务处理器预先设定。 为了从故障中恢复,例如,接收到故障消息的处理器可以请求重传该消息或者使用ECC来纠正该错误。 如果故障消息不能重发,则处理器或主机处理器可以请求执行该作业的所有处理器取消与故障消息相关的作业,而不会影响同一处理器同时执行其他作业。
    • 10. 发明申请
    • MANAGEMENT METHOD FOR NETWORK SYSTEM, NETWORK SYSTEM, AND MANAGEMENT SERVER
    • 网络系统,网络系统和管理服务器的管理方法
    • US20130111036A1
    • 2013-05-02
    • US13568659
    • 2012-08-07
    • Yoji OzawaEri KawaiAkihiro KoizumiYoshiko YasudaYosuke Himura
    • Yoji OzawaEri KawaiAkihiro KoizumiYoshiko YasudaYosuke Himura
    • G06F15/173
    • H04L41/0843H04L41/0893
    • A management method for a network system, the method comprising: acquiring, by the management server, a physical composition element and a virtual composition element of the computer resource and generating device information and a physical connection of the computer resource and a virtualized connection and generating connection information; receiving, tenant patterns for holding a template of a configuration item for each logical node, a parameter of the configuration item, a definition for calculating the parameter, and storing the plurality of tenant patterns; storing, mapping information in which a correlation between a node of each of the plurality of tenant patterns and a composition element of the device information; receiving, an input of the plurality of tenant patterns and a type of an operation; selecting, the composition element of the device information for each node; generating, configuration contents of a network.
    • 一种用于网络系统的管理方法,所述方法包括:由所述管理服务器获取所述计算机资源的物理组成元素和虚拟合成元素,并且生成所述计算机资源和虚拟化连接的设备信息和物理连接,并产生 连接信息; 接收用于保存每个逻辑节点的配置项的模板的租户模式,配置项的参数,用于计算参数的定义,以及存储多个租户模式; 存储,映射信息,其中所述多个租户模式中的每一个的节点与所述设备信息的构成要素之间的相关性; 接收多个租户模式的输入和操作的类型; 选择每个节点的设备信息的组成元素; 生成网络的配置内容。