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    • 1. 发明申请
    • ERROR CORRECTION CIRCUIT AND METHOD, AND SEMICONDUCTOR MEMORY DEVICE INCLUDING THE CIRCUIT
    • 错误校正电路和方法以及包括电路的半导体存储器件
    • US20120072810A1
    • 2012-03-22
    • US13239534
    • 2011-09-22
    • Yong-Tae YIMYun-Ho CHOI
    • Yong-Tae YIMYun-Ho CHOI
    • H03M13/07G06F11/10
    • G11C7/1006G06F11/1008G11C2029/0411G11C2207/104
    • An error correction circuit, an error correction method, and a semiconductor memory device including the error correction circuit are provided. The error correction circuit includes a partial syndrome generator, first and second error position detectors, a coefficient calculator, and a determiner. The partial syndrome generator calculates at least two partial syndromes using coded data. The first error position detector calculates a first error position using a part of the partial syndromes. The coefficient calculator calculates coefficients of an error position equation using the at least two partial syndromes. The determiner determines an error type based on the coefficients. The second error position detector optionally calculates a second error position based on the error type.
    • 提供了纠错电路,误差校正方法以及包括误差校正电路的半导体存储器件。 误差校正电路包括部分校正子发生器,第一和第二误差位置检测器,系数计算器和确定器。 部分综合征发生器使用编码数据计算至少两个部分综合征。 第一误差位置检测器使用部分综合征的一部分来计算第一误差位置。 系数计算器使用至少两个部分综合征计算误差位置方程的系数。 确定器基于系数确定错误类型。 第二错误位置检测器可选地基于错误类型计算第二错误位置。
    • 5. 发明申请
    • METHOD OF BOOTING ELECTRONIC DEVICE AND METHOD OF AUTHENTICATING BOOT OF ELECTRONIC DEVICE
    • 电子设备的制作方法及电子设备引导方法
    • US20080215872A1
    • 2008-09-04
    • US11964270
    • 2007-12-26
    • Yun-ho CHOIChoon-sik JUNG
    • Yun-ho CHOIChoon-sik JUNG
    • G06F9/00
    • G06F21/575
    • Provided is a method of booting an electronic device including a host central processing unit (CPU) and a security module. The method includes: the host CPU starting to boot a system by using boot information in response to a reset or power on event of the electronic device; and when an authentication start instruction is not received by the security module from the host CPU until a first predetermined period elapses after an occurrence of the reset or power on event of the electronic device, controlling an operation of the host CPU by the security module. According to the method, when the authentication start instruction is received before the first predetermined period elapses, the security module authenticates the boot information and controls the operation of the host CPU based on an authentication result. A method of authenticating a boot of the electronic device in the security module is also provided.
    • 提供一种引导包括主机中央处理单元(CPU)和安全模块的电子设备的方法。 该方法包括:主机CPU通过使用引导信息来启动系统,以响应电子设备的复位或开机事件; 并且当在电子设备的复位或开机事件发生之后经过第一预定时间段之前,当安全模块从主机CPU接收到认证开始指令时,由安全模块控制主机CPU的操作。 根据该方法,当在第一预定时间段之前接收到认证开始指令时,安全模块基于认证结果认证引导信息并控制主机CPU的操作。 还提供了一种在安全模块中验证电子设备的引导的方法。
    • 9. 发明授权
    • Method for updating a ROM BIOS
    • 更新ROM BIOS的方法
    • US5964873A
    • 1999-10-12
    • US12487
    • 1998-01-23
    • Yun-Ho Choi
    • Yun-Ho Choi
    • G06F9/06G06F9/24G06F9/445
    • G06F8/65
    • A method for updating a ROM BIOS includes the following steps: a step for reading an image data of a ROM BIOS which is to be updated; a step for reading a ROM BIOS image data from a ROM BIOS; a step for reading a new ROM BIOS image data from an auxiliary memory; a step for reading a new user information; a step for converting the new user information into an image data; a step for updating the new ROM BIOS image data and user information in the ROM BIOS. Since the user updates a ROM BIOS image data for oneself, the user information displayed during a POST operation can be displayed in the user's characteristic message. Therefore, the user can recognize one's computer through unique characteristics that are displayed on a monitor and easily identify one's computer among many different computers.
    • 一种用于更新ROM BIOS的方法包括以下步骤:读取要更新的ROM BIOS的图像数据的步骤; 从ROM BIOS读取R​​OM BIOS图像数据的步骤; 从辅助存储器读取新的ROM BIOS图像数据的步骤; 阅读新用户信息的步骤; 将新用户信息转换为图像数据的步骤; 在ROM BIOS中更新新的ROM BIOS图像数据和用户信息的步骤。 由于用户更新自己的ROM BIOS图像数据,所以在POST操作期间显示的用户信息可以显示在用户的特征消息中。 因此,用户可以通过显示在显示器上的独特特征来识别自己的计算机,并且可以在许多不同的计算机之间轻松识别自己的计算机。