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    • 1. 发明授权
    • System and method for monitoring server host operation
    • 监控服务器主机操作的系统和方法
    • US06782352B2
    • 2004-08-24
    • US10330173
    • 2002-12-27
    • Sayling WenKuang-Shin Lin
    • Sayling WenKuang-Shin Lin
    • G06F1500
    • H04L67/1008H04L67/1002H04L67/1021H04L67/18
    • A system and a method for monitoring server host operation are proposed. The monitoring system is connected to a plurality of server hosts in a server, and provided with a database containing data of host names and correspondent geographic locations for the server hosts. When an overloaded server host in the server receives a linkage request from a computer device of a client, the monitoring system can search in the database for a properly-loaded server host that is geographically close to the overloaded server host, and allow the computer device of the client to be linked to the properly-loaded server host, thereby achieving immediate interaction between the client and the server.
    • 提出了一种用于监控服务器主机操作的系统和方法。 监视系统连接到服务器中的多个服务器主机,并且提供有包含服务器主机的主机名和对应地理位置的数据的数据库。 当服务器中的重载服务器主机从客户机的计算机设备接收到连接请求时,监控系统可以在数据库中搜索地理位置靠近重载的服务器主机的正确加载的服务器主机,并允许计算机设备 的客户端链接到正确加载的服务器主机,从而实现客户端和服务器之间的即时交互。
    • 2. 发明授权
    • Method and system for ensuring life-time of recharged battery inside portable electronic device
    • 确保便携式电子设备内充电电池的使用寿命的方法和系统
    • US06323622B1
    • 2001-11-27
    • US09699561
    • 2000-10-31
    • Kuang-Shin LinTong S ChenYuan Bin
    • Kuang-Shin LinTong S ChenYuan Bin
    • H02J700
    • H02J7/0057
    • The invention is related to method(s) and system for ensuring lifetime of recharged battery built-in portable electronic device. The method comprises: receive a predetermined range of electricity power; perform an electricity power testing process to measure an actual account of electricity power of a recharged battery that built-in a portable electronic device; and perform an electricity power adjusting process to let the actual account is modified into the predetermined range whenever the actual account is out the predetermined range. The system comprises receiving means for receiving a predetermined range and a predetermined period; measuring means for measuring an actual account of electricity power of the recharged battery set; determining means for comparing the actual account with the predetermined range and determining whether adjusting the actual account or not; charging means for charging the recharged battery set and to let the actual account is modified into the predetermined range whenever the actual account is lower than the predetermined range; and discharging means for discharging the recharged battery set and to let the actual account is modified into the predetermined range whenever the actual account is higher than the predetermined range.
    • 本发明涉及确保充电电池内置便携式电子设备的使用寿命的方法和系统。 该方法包括:接收预定范围的电力; 执行电力测试过程以测量内置便携式电子设备的充电电池的电力的实际账户; 并且执行电力调整处理,以便每当实际账户超出预定范围时,将实际账户修改为预定范围。 该系统包括用于接收预定范围和预定周期的接收装置; 用于测量充电电池组的电力的实际计量的测量装置; 确定装置,用于将实际帐户与预定范围进行比较,并确定是否调整实际帐户; 充电装置,用于对所述充电电池组进行充电,并且每当所述实际帐户低于所述预定范围时将所述实际帐户修改为预定范围; 以及放电装置,用于对再充电的电池组进行放电,并且每当实际帐户高于预定范围时,使实际帐户被修改为预定范围。
    • 3. 发明授权
    • Communication process by connecting server end in series with system under verification in a network
    • 通过连接服务器端与系统在网络中进行验证的通信过程
    • US06813642B2
    • 2004-11-02
    • US09726319
    • 2000-12-01
    • Kuang-Shin LinTong-S ChenZhen-Yu Hou
    • Kuang-Shin LinTong-S ChenZhen-Yu Hou
    • G06F1516
    • H04L29/06H04L67/14H04L67/34H04L69/329
    • A communication process by connecting a server end in series with a system under verification (SUV) in a network. The process initializes a communication port connected to server end and SUV and associated parameters through a computer in server end and SUV. Then creates a required thread and an associated interrupt program in server end and SUV respectively. When data has been received, the received data package is stored in an embedded buffer in server end or SUV until a complete data package is stored in the buffer. Next, data is transmitted through a predetermined data transmission module. By continuing this process, it is possible to transmit data by connecting server end in series with SUV through the connected communication port rather than network adapter. It is simple in operation and cost effective.
    • 通过将服务器端与网络中的被验证系统(SUV)串联连接的通信过程。 该过程通过服务器端和SUV中的计算机初始化连接到服务器端和SUV的通信端口以及相关参数。 然后分别在服务器端和SUV中创建一个所需的线程和相关的中断程序。 当接收到数据时,接收的数据包被存储在服务器端或SUV中的嵌入式缓冲器中,直到完整的数据包存储在缓冲器中。 接下来,通过预定数据传输模块传输数据。 通过继续此过程,可以通过连接的通信端口而不是网络适配器将服务器端与SUV串联连接来传输数据。 操作简单,性价比高。
    • 4. 发明授权
    • Method for testing keyboard complied with language code
    • 键盘测试方法符合语言代码
    • US06681347B1
    • 2004-01-20
    • US09708101
    • 2000-11-06
    • S-Tong ChenKuang-Shin Lin
    • S-Tong ChenKuang-Shin Lin
    • G09G500
    • G06F11/2221
    • A method for testing a keyboard complied with a language code table comprises the steps of reading an embedded language code of the keyboard to be tested through a central processing unit (CPU), comparing the read language code with the language code table stored in memory in order to determine whether there is a matched one, reading an application program interface (API) function from the keyboard to be tested by the CPU, identifying a type of the keyboard to be tested by a “Get Keyboard Type” of the API function, reading exchange codes of special keys from the keyboard to be tested by the CPU, identifying a model of the keyboard to be tested, selecting a keyboard test software corresponding to the language code, the type, and the model of the keyboard to be tested from a test software database stored in memory, and performing a test on each key on the keyboard by the selected keyboard test software. This may avoid an error determination of keyboard to be tested due to the inappropriate use of test software.
    • 用于测试符合语言代码表的键盘的方法包括以下步骤:通过中央处理单元(CPU)读取要测试的键盘的嵌入式语言代码,将读取的语言代码与存储在存储器中的语言代码表进行比较 为了确定是否有匹配的,从键盘读取应用程序接口(API)功能以供CPU测试,通过API函数的“获取键盘类型”来识别要测试的键盘类型, 从键盘读取要由CPU进行测试的特殊键的交换代码,识别要测试的键盘的型号,选择与要测试的键盘的语言代码,类型和型号相对应的键盘测试软件 存储在存储器中的测试软件数据库,并通过所选择的键盘测试软件对键盘上的每个键执行测试。 这可以避免由于不适当使用测试软件而要测试的键盘的错误确定。
    • 8. 发明授权
    • PC interval timer test method
    • PC间隔定时器测试方法
    • US06442710B1
    • 2002-08-27
    • US09371000
    • 1999-08-10
    • Vam ChangKuang-Shin LinKingboard MaXian-Hong Shen
    • Vam ChangKuang-Shin LinKingboard MaXian-Hong Shen
    • G08C2500
    • G06F1/14G06F11/24
    • A PC interval timer test method used in a personal computer to test the abnormality of the interval timer of a PC (personal computer) by: calculating the difference between the periodic interrupt frequency of the PC's CMOS Real Time Clock (R.T.C.) and the interval timer interrupt frequency within the same time period, and then judging the result by comparing the value of the difference thus obtained with the set maximum allowable value of error of the CMOS R.T.C.'s periodic interrupt frequency. The maximum frequency of the CMOS R.T.C. can be as high as 8192 Hz, so that the test error can be as minor as below 1/8192.
    • 个人计算机中使用的PC间隔定时器测试方法,用于通过以下方式测试PC(个人计算机)的间隔定时器的异常:计算PC的CMOS实时时钟(RTC)的周期性中断频率与间隔定时器 在相同时间段内的中断频率,然后通过将所获得的差值与CMOS RTC的周期性中断频率的设定的最大允许误差值进行比较来判断结果。 CMOS R.T.C.的最大频率 可以高达8192 Hz,使测试误差可以低到1/8192以下。
    • 9. 发明授权
    • Method of obtaining the BIOS version date in the windows operating system
    • 在Windows操作系统中获取BIOS版本日期的方法
    • US06711736B1
    • 2004-03-23
    • US09706799
    • 2000-11-07
    • Chiang LoTong S ChenKuang-Shin Lin
    • Chiang LoTong S ChenKuang-Shin Lin
    • G06F944
    • G06F9/4401
    • A method of obtaining the BIOS version date in the windows operating system using dynamic virtual device drivers (VxDs). First, input and output parameter buffers are defined and the initial address and area size of search memory are obtained. The physical address is mapped to a linear address. After initializing the address shift, the system makes sure the shift is smaller than the memory size minus 8. The system then checks that the address pointed by the initial address plus the shift contains a number. The address of the number is taken as the base address. The values in the zeroth through the ninth bytes of the base address are preserved and returned to the application routine, giving the BIOS version date.
    • 使用动态虚拟设备驱动程序(VxD)在Windows操作系统中获取BIOS版本日期的方法。 首先,定义输入和输出参数缓冲区,并获得搜索存储器的初始地址和区域大小。 物理地址映射到线性地址。 初始化地址移位后,系统确保移位小于内存大小减去8.然后,系统检查由初始地址指向的地址加上移位的地址是否包含一个数字。 数字的地址作为基地址。 基本地址的第九个字节中的零值被保留并返回给应用程序例程,给出BIOS版本日期。