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    • 2. 发明申请
    • System and method for metering the performance of a data processing system
    • 用于计量数据处理系统性能的系统和方法
    • US20050138422A1
    • 2005-06-23
    • US10744685
    • 2003-12-23
    • Peter HancockLee HansenDaniel LenzHans MikkelsenRonald TanningPhilip Hoffman
    • Peter HancockLee HansenDaniel LenzHans MikkelsenRonald TanningPhilip Hoffman
    • H04L9/00
    • H04L9/00
    • A system and method for metering usage of a data processing system and scaling system performance is disclosed. In one embodiment, an authorization key is purchased that specifies both a baseline performance level and a ceiling performance level. The cost of the baseline and ceiling performance levels is included in the price of the key. After the key is installed on the data processing system, the system performance level is monitored and averaged over predetermined time periods. The customer is charged on a “pay-as-you-go” basis for any time periods during which the average performance level exceeds the baseline performance level. Performance of the data processing system is not allowed to exceed the ceiling level obtained with the authorization key. In one embodiment, the baseline level may be set to zero so that all performance consumption is purchased by the customer as it is utilized.
    • 公开了一种用于计量数据处理系统的使用和缩放系统性能的系统和方法。 在一个实施例中,购买了指定基准性能水平和最高性能水平的授权密钥。 基准和最高限额性能水平的成本包括在关键的价格中。 在密钥安装在数据处理系统上之后,系统性能级别将在预定时间段内进行监控和平均。 在平均绩效水平超过基准绩效水平的任何时间段内,客户都将按照“即付即用”计费。 数据处理系统的性能不允许超过授权密钥获得的最高级别。 在一个实施例中,可以将基线水平设置为零,使得在所使用的情况下,客户购买所有的性能消耗。
    • 8. 发明申请
    • Rechargeable battery with charge control
    • 带充电控制的充电电池
    • US20060186857A1
    • 2006-08-24
    • US11062846
    • 2005-02-23
    • Thomas MattyPhilip Hoffman
    • Thomas MattyPhilip Hoffman
    • H02J7/00
    • H01M10/44H01M10/443H01M10/46H02J7/0052
    • The battery comprises rechargeable battery cell(s), a current regulator varying a charge current provided to the battery cell(s) and a bypass circuit allowing a discharge current provided by the battery cell(s) to bypass the current regulator. The current regulator can limit the charge current depending on the amperage of the charge current and of the temperature of the current regulator. Two connecting terminals provide the charge current to the battery cell(s) and output the discharge current provided by battery cell(s). This battery can be used in existing applications to replace other type of batteries for which the current-generating equipment of the application for charging the battery was originally designed without requiring modification thereof.
    • 电池包括可再充电电池单元,电流调节器改变提供给电池单元的充电电流和允许由电池单元提供的放电电流绕过电流调节器的旁路电路。 电流调节器可以根据充电电流的电流强度和电流调节器的温度来限制充电电流。 两个连接端子向电池单元提供充电电流并输出由电池单元提供的放电电流。 该电池可以用于现有的应用中,以替代最初设计用于对电池充电的应用的电流产生设备的其它类型的电池,而不需要修改它们。
    • 10. 发明授权
    • Dynamic distribution of I/O resources in a partitioned computer system
    • 分区计算机系统中I / O资源的动态分配
    • US07657675B1
    • 2010-02-02
    • US11252266
    • 2005-10-17
    • Philip HoffmanTodd LittleMichael J. SaundersJames ThompsonSteven Clarke
    • Philip HoffmanTodd LittleMichael J. SaundersJames ThompsonSteven Clarke
    • G06F3/00G06F17/00G06F9/46
    • G06F9/5077G06Q30/0283G06Q99/00
    • A method of dynamically allocating the amount of input/output (I/O) rate capacity to partitions in a computer system includes determining a total amount of I/O rate capacity and an economic value of each partition within the partitioned computer system. The economic value is defined as a performance-valued product established for each partition wherein the sum of all performance-value products for each partition defines a total economic value for the computer. The I/O rate to be allocated to each partition is calculated to be a portion of the total amount of I/O rate capacity where the portion allocated to each partition is proportional to the economic value of that respective partition. The calculated rate allocations are recorded in memory which is accessible to each partition. After recording, each partition regulates its I/O usage according to the recorded allocation.
    • 将计算机系统中的分区的输入/输出(I / O)速率容量的动态分配的方法包括确定分区计算机系统内的每个分区的I / O速率容量的总量和经济值。 经济价值被定义为为每个分区建立的绩效价值产品,其中每个分区的所有绩效价值产品的总和定义了计算机的总经济价值。 要分配给每个分区的I / O速率被计算为I / O速率容量的总量的一部分,其中分配给每个分区的部分与该分区的经济值成正比。 计算的速率分配记录在每个分区可访问的存储器中。 记录后,每个分区根据记录的分配来调整其I / O使用情况。