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    • 1. 发明授权
    • Method of modulating series of data words into constrained sequence
    • 将系列数据字调制为约束序列的方法
    • US06778105B2
    • 2004-08-17
    • US10363537
    • 2003-04-02
    • Sang Woon SuhJin Yong KimJae Jin LeeJoo Hyun Lee
    • Sang Woon SuhJin Yong KimJae Jin LeeJoo Hyun Lee
    • H03M700
    • H03M7/46G11B20/1426G11B2020/1457H03M5/145
    • A method and apparatus of converting a series of data words into modulated signals generates for each data word, a number of intermediate sequences by combining mutually different digital words with that data word, scrambles the intermediate sequences to form alternative sequences, translates each alternative sequence into a (d,k) constrained sequence, measures for each (d,k) constrained sequence, not only an inclusion rate of undesired sub-sequence but also a running DSV (Digital Sum Value), and selects one (d,k) constrained sequence having small inclusion rate for recording on an optical or magneto-optical recording medium among the (d,k) constrained sequences having maximum value of running DSV. smaller than a preset limit. Accordingly, efficient DSV control can be achieved for even relatively-long sequences.
    • 将一系列数据字转换为调制信号的方法和装置通过将相互不同的数字字与该数据字相结合,为每个数据字产生多个中间序列,对中间序列进行加扰以形成替代序列,将每个替代序列转换成 (d,k)约束序列,每个(d,k)约束序列的测量,不仅是不期望的子序列的包含率,而且是运行的DSV(数字和值),并且选择一个(d,k)约束 在具有最大运行DSV值的(d,k)约束序列中,在光学或磁光记录介质上记录的包含率小的序列。 小于预设限制。 因此,对于甚至相对较长的序列,可以实现有效的DSV控制。
    • 2. 发明授权
    • Method of converting a series of data words into a modulated signal
    • 将一系列数据字转换为调制信号的方法
    • US06943708B2
    • 2005-09-13
    • US10893336
    • 2004-07-19
    • Sang Woon SuhJin Yong KimJae Jin LeeJoo Hyun Lee
    • Sang Woon SuhJin Yong KimJae Jin LeeJoo Hyun Lee
    • H03M7/14G11B20/14H03M5/14H03M7/00H03M7/46
    • H03M7/46G11B20/1426G11B2020/1457H03M5/145
    • A method and apparatus of converting a series of data words into modulated signals generates for each data words, a number of intermediate sequences by combining mutually different digital words with a data word, scrambles the intermediate sequences to form alternative sequences, translates each alternataive sequence into a (d,k) constrained sequences, measures for each (d,k) constrained sequences, not only an inclusion rate of an undesired sub-sequence but also a running DSV (Digital Sum Value), and selects one (d,k) constrained sequence having a small inclusion rate for recording on an optical or magneto-optical recording medium among the (d,k) constrained sequences having maximum value of running DSV, smaller than a preset limit. Accordingly, efficient DSV control can be achieved for even relatively-long sequences.
    • 将一系列数据字转换成调制信号的方法和装置通过将相互不同的数字字与数据字相结合,为每个数据字生成多个中间序列,对中间序列进行加扰以形成替代序列,将每个交替序列转换成 (d,k)约束序列,每个(d,k)约束序列的测量,不仅是不期望的子序列的包含率,而且是运行的DSV(数字和值),并且选择一个(d,k) 约束序列具有小的包含率用于在具有最大值的运行DSV的(d,k)约束序列中的光学或磁光记录介质上记录,小于预设极限。 因此,对于甚至相对较长的序列,可以实现有效的DSV控制。
    • 7. 发明授权
    • LLR combining method and apparatus for HARQ in wireless communication system
    • 用于无线通信系统中的HARQ的LLR组合方法和装置
    • US08731114B2
    • 2014-05-20
    • US12700589
    • 2010-02-04
    • Seul Ki BaeJoo Hyun LeeSung Hwan Kim
    • Seul Ki BaeJoo Hyun LeeSung Hwan Kim
    • H04L27/06
    • H04L1/1845
    • A Log-Likelihood Ratio (LLR) combining method and apparatus for Hybrid Automatic Repeat Request (HARQ) in a wireless communication system for reducing a number of the LLR bits of previous packet stored for LLR combining are provided. The LLR combining apparatus includes an LLR combiner for combining a first LLR of a currently received packet and a second LLR of a previously received packet, an LLR buffer for storing the second LLR and a first packet exponent for recovering the second LLR in the same size as the first LLR, and an HARQ controller for determining whether the currently received packet is a retransmission packet or an initial transmission packet, and for controlling the LLR combiner to generate a third LLR by combining the first and second LLRs for the retransmission packet and to bypass the initial transmission packet.
    • 提供了一种用于减少用于LLR组合存储的先前分组的LLR比特数的无线通信系统中用于混合自动重传请求(HARQ)的对数似然比(LLR)组合方法和装置。 LLR组合装置包括用于组合当前接收分组的第一LLR和先前接收分组的第二LLR的LLR组合器,用于存储第二LLR的LLR缓冲器和用于恢复相同大小的第二LLR的第一分组指数 作为第一LLR,以及HARQ控制器,用于确定当前接收到的分组是重发分组还是初始传输分组,并且用于通过组合用于重传分组的第一和第二LLR来控制LLR组合器来生成第三LLR,并且 绕过初始传输包。
    • 8. 发明授权
    • Method for manufacturing image sensor
    • 图像传感器制造方法
    • US07635625B2
    • 2009-12-22
    • US11831690
    • 2007-07-31
    • Joo Hyun Lee
    • Joo Hyun Lee
    • H01L21/8242
    • H01L27/14689
    • Disclosed is a method for manufacturing an image sensor. The method includes forming a polysilicon layer on a semiconductor substrate having an active region, forming a sacrificial layer on the polysilicon layer, forming a photoresist pattern on the sacrificial layer, implanting conductive impurities onto the polysilicon layer using the photoresist pattern as an ion implantation mask, removing the photoresist pattern, and removing the sacrificial layer from the polysilicon layer, thereby removing photoresist residues remaining on the sacrificial layer.
    • 公开了一种用于制造图像传感器的方法。 该方法包括在具有有源区的半导体衬底上形成多晶硅层,在多晶硅层上形成牺牲层,在牺牲层上形成光致抗蚀剂图案,使用光致抗蚀剂图案作为离子注入掩模将导电杂质注入到多晶硅层上 去除光致抗蚀剂图案,并从多晶硅层去除牺牲层,从而去除残留在牺牲层上的光致抗蚀剂残留物。
    • 9. 发明申请
    • METHOD FOR MANUFACTURING IMAGE SENSOR
    • 制造图像传感器的方法
    • US20080119006A1
    • 2008-05-22
    • US11831690
    • 2007-07-31
    • Joo Hyun Lee
    • Joo Hyun Lee
    • H01L21/00
    • H01L27/14689
    • Disclosed is a method for manufacturing an image sensor. The method includes forming a polysilicon layer on a semiconductor substrate having an active region, forming a sacrificial layer on the polysilicon layer, forming a photoresist pattern on the sacrificial layer, implanting conductive impurities onto the polysilicon layer using the photoresist pattern as an ion implantation mask, removing the photoresist pattern, and removing the sacrificial layer from the polysilicon layer, thereby removing photoresist residues remaining on the sacrificial layer.
    • 公开了一种用于制造图像传感器的方法。 该方法包括在具有有源区的半导体衬底上形成多晶硅层,在多晶硅层上形成牺牲层,在牺牲层上形成光致抗蚀剂图案,使用光致抗蚀剂图案作为离子注入掩模将导电杂质注入到多晶硅层上 去除光致抗蚀剂图案,并从多晶硅层去除牺牲层,从而去除残留在牺牲层上的光致抗蚀剂残留物。