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    • 51. 发明授权
    • Computer system using remote I/O and I/O data transfer method
    • 计算机系统采用远程I / O和I / O数据传输方式
    • US07930445B2
    • 2011-04-19
    • US11896757
    • 2007-09-05
    • Jun OkitsuYoshiko YasudaTakashige Baba
    • Jun OkitsuYoshiko YasudaTakashige Baba
    • G06F13/28G06F15/16G06F15/167
    • G06F13/4022G06F13/102
    • To improve throughput in data transfer in a remote I/O system, this invention provides a computer system including: a host computer; a device which communicates with the host computer; and a network which connects the host computer and the device, in which the device is coupled to the network via a device bridge including a bridge memory, and the host computer includes a host memory and a device driver. The device driver writes, when at least one of data and an address is written in the host memory, in the bridge memory the at least one of the data and address stored through the writing in the host memory; and sends a data transfer request to the device bridge, and the device bridge reads, upon reception of the data transfer request, an address from a predetermined area; and reads data from an area that is indicated by the read address.
    • 为了提高远程I / O系统中数据传输的吞吐量,本发明提供了一种计算机系统,包括:主计算机; 与主机通信的设备; 以及连接主计算机和设备的网络,其中设备经由包括桥接存储器的设备桥耦合到网络,并且主计算机包括主机存储器和设备驱动器。 当在主机存储器中写入至少一个数据和地址时,设备驱动器在主机存储器中写入存储的数据和地址中的至少一个; 并向设备桥发送数据传输请求,并且设备桥接器在接收到数据传输请求时从预定区域读取地址; 并从读取地址指示的区域读取数据。
    • 53. 发明申请
    • Computer system using remote I/O and I/O data transfer method
    • 计算机系统采用远程I / O和I / O数据传输方式
    • US20080256266A1
    • 2008-10-16
    • US11896757
    • 2007-09-05
    • Jun OkitsuYoshiko YasudaTakashige Baba
    • Jun OkitsuYoshiko YasudaTakashige Baba
    • G06F13/28
    • G06F13/4022G06F13/102
    • To improve throughput in data transfer in a remote I/O system, this invention provides a computer system including: a host computer; a device which communicates with the host computer; and a network which connects the host computer and the device, in which the device is coupled to the network via a device bridge including a bridge memory, and the host computer includes a host memory and a device driver. The device driver writes, when at least one of data and an address is written in the host memory, in the bridge memory the at least one of the data and address stored through the writing in the host memory; and sends a data transfer request to the device bridge, and the device bridge reads, upon reception of the data transfer request, an address from a predetermined area; and reads data from an area that is indicated by the read address.
    • 为了提高远程I / O系统中数据传输的吞吐量,本发明提供了一种计算机系统,包括:主计算机; 与主机通信的设备; 以及连接主计算机和设备的网络,其中设备经由包括桥接存储器的设备桥耦合到网络,并且主计算机包括主机存储器和设备驱动器。 当在主机存储器中写入数据和地址中的至少一个时,设备驱动器在主机存储器中写入存储的数据和地址中的至少一个; 并向设备桥发送数据传输请求,并且设备桥接器在接收到数据传输请求时从预定区域读取地址; 并从读取地址指示的区域读取数据。
    • 54. 发明授权
    • Method for heap memory management and computer system using the same method
    • 堆内存管理方法和计算机系统使用相同的方法
    • US07167881B2
    • 2007-01-23
    • US10339338
    • 2003-01-10
    • Yoshiko YasudaShinichi Kawamoto
    • Yoshiko YasudaShinichi Kawamoto
    • G06F17/30
    • G06F12/0276Y10S707/99957
    • There are provided a heap memory management method that not only improves processing performance of an application program but also reduces a program development cost and a computer system using the same method. A live object copy process in minor collection of generational garbage collection is implemented through a calculate process of object live ratio, a compare process of object live ratio, and a live object copy process. The calculate process of object live ratio calculates a ratio of a size of a memory allocated to live objects of new objects to a size of a memory allocated to a new object during minor collection. The compare process of object live ratio compares a calculated object live ratio with a predetermined threshold. The live object copy process copies a live object directly to an old-generation heap instead of a new-generation heap when the object live ratio exceeds the threshold as a result of comparison. Further, an application programmer provides means for setting the threshold that decides a copy destination of the live object as a runtime parameter of a program and means for holding the set threshold in a memory.
    • 提供了堆存储器管理方法,其不仅提高了应用程序的处理性能,而且降低了程序开发成本和使用相同方法的计算机系统。 通过对象生活比例的计算过程,对象生活比例的比较过程和实时对象复制过程来实现次要垃圾回收收集中的活动对象复制过程。 对象生活比率的计算过程计算分配给新对象的活动对象的内存大小与在次要收集期间分配给新对象的内存大小的比率。 物体活动比的比较过程将计算的物体活动比与预定阈值进行比较。 作为比较的结果,当对象活动比例超过阈值时,活动对象复制过程会将活动对象直接复制到旧一代而不是新一代堆。 此外,应用编程器提供用于将确定实时对象的复制目的地的阈值设置为程序的运行时间参数的装置,以及用于将所设置的阈值保持在存储器中的装置。
    • 57. 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。