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    • 51. 发明授权
    • Door damper
    • 门阻尼器
    • US07861371B2
    • 2011-01-04
    • US12084385
    • 2007-09-07
    • Jaehong Kim
    • Jaehong Kim
    • E05F5/06
    • E05F5/10F16F9/061F16F13/007F16F2230/24Y10S16/10Y10S16/21Y10T16/2766Y10T16/2771Y10T16/2788Y10T16/61Y10T16/625
    • Disclosed is a door damper, in which a safety check valve is installed in consideration of the case in which an impact exceeding a design pressure will be applied, thereby absorbing the impact to enable a door to be closed safely and smoothly. In the door damper, a safety check valve is installed in a piston, and thus is opened in cooperation with another check valve installed between a spring holder and the piston when the pressure exceeding a design pressure is applied. Thereby, when the impact exceeding the design pressure occurs, the safety check valve can absorb the impact to prevent damage. A channel can be adjusted by only ridges formed on an outer circumference of the check valve, so that productivity can be improved thanks to easy tolerance management. Further, an oil seal is not contracted or deformed in spite of long-term use.
    • 公开了一种门阻尼器,其中考虑到将施加超过设计压力的冲击的情况来安装安全止回阀,从而吸收冲击以使门能够安全平稳地关闭。 在门阻尼器中,安全止回阀安装在活塞中,因此当施加超过设计压力的压力时,与安装在弹簧保持器和活塞之间的另一止回阀协同打开。 因此,当超过设计压力的冲击发生时,安全止回阀可以吸收冲击以防止损坏。 可以通过形成在止回阀的外周上的脊部来调节通道,从而通过容易的公差管理可以提高生产率。 此外,油封尽管长期使用也不会收缩或变形。
    • 53. 发明申请
    • NONVOLATILE MEMORY DEVICE AND METHOD SYSTEM INCLUDING THE SAME
    • 非易失性存储器件和包括其的方法系统
    • US20100238705A1
    • 2010-09-23
    • US12698720
    • 2010-02-02
    • Yong June KimJaehong KimJunjin Kong
    • Yong June KimJaehong KimJunjin Kong
    • G11C11/00G11C7/00
    • G11C7/1006G11C7/1042G11C8/10G11C11/5628G11C11/5678G11C13/00G11C13/0004G11C13/0061G11C13/0069G11C2211/5623
    • A nonvolatile memory device performs interleaving of data to be stored in each wordline (memory page), or of data to be stored in multiple wordlines (memory pages). The NVM includes a memory cell array, a storage circuit of a de-interleaving circuit, and a read/write circuit. The storage circuit of the de-interleaving circuit is configured to store program data to be written interleaved into the memory cell array. The read/write circuit is configured to control the interleaved/deinterleaved data input/output between the memory cell array and the storage circuit. The write operation unit size may be the same or different from the read operation unit size. The storage circuit stores the program data of integer k times of a common divisor of a read operation unit size and a write operation unit size of the read/write circuit, wherein k may equal ‘m’ (the number of bits stored in each memory cell of the NVM).
    • 非易失性存储器件执行要存储在每个字线(存储器页)中的数据或要存储在多个字线(存储器页)中的数据的交织。 NVM包括存储单元阵列,解交织电路的存储电路和读/写电路。 解交织电路的存储电路被配置为将要被交织的程序数据存储到存储单元阵列中。 读/写电路被配置为控制存储单元阵列和存储电路之间的交错/去交织的数据输入/输出。 写入操作单元尺寸可以与读取操作单元尺寸相同或不同。 存储电路存储读/写电路的读操作单元大小和写操作单元大小的公约数的整数k倍的程序数据,其中k可以等于“m”(存储在每个存储器中的位数 NVM的单元)。
    • 55. 发明申请
    • Door Damper
    • 门阻尼器
    • US20100170062A1
    • 2010-07-08
    • US12084385
    • 2007-09-07
    • Jaehong Kim
    • Jaehong Kim
    • E05F3/10
    • E05F5/10F16F9/061F16F13/007F16F2230/24Y10S16/10Y10S16/21Y10T16/2766Y10T16/2771Y10T16/2788Y10T16/61Y10T16/625
    • Disclosed is a door damper, in which a safety check valve is installed in consideration of the case in which an impact exceeding a design pressure will be applied, thereby absorbing the impact to enable a door to be closed safely and smoothly. In the door damper, a safety check valve is installed in a piston, and thus is opened in cooperation with another check valve installed between a spring holder and the piston when the pressure exceeding a design pressure is applied. Thereby, when the impact exceeding the design pressure occurs, the safety check valve can absorb the impact to prevent damage. A channel can be adjusted by only ridges formed on an outer circumference of the check valve, so that productivity can be improved thanks to easy tolerance management. Further, an oil seal is not contracted or deformed in spite of long-term use.
    • 公开了一种门阻尼器,其中考虑到将施加超过设计压力的冲击的情况来安装安全止回阀,从而吸收冲击以使门能够安全平稳地关闭。 在门阻尼器中,安全止回阀安装在活塞中,因此当施加超过设计压力的压力时,与安装在弹簧保持器和活塞之间的另一止回阀协同打开。 因此,当超过设计压力的冲击发生时,安全止回阀可以吸收冲击以防止损坏。 可以通过形成在止回阀的外周上的脊部来调节通道,从而通过容易的公差管理可以提高生产率。 此外,油封尽管长期使用也不会收缩或变形。