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    • 51. 发明授权
    • Method to allow hardware configurable data structures
    • 允许硬件可配置数据结构的方法
    • US06292855B1
    • 2001-09-18
    • US09217974
    • 1998-12-18
    • Russell A. JohnsonAndrew C. BrownStephen B. Johnson
    • Russell A. JohnsonAndrew C. BrownStephen B. Johnson
    • G06F1210
    • G06F13/10
    • A set of registers are provided for a protocol engine driving I/O transactions requested by a host. A fixed set of defined data elements are determined for the protocol under which the I/O transaction is to be performed. Each register maps to a data structure base address or to a different data element offset or byte count. During initialization, the registers are programmed by an operating system device driver with offsets from a base address and byte counts for each data element within the defined set as those data elements are found within an operating system specific data structure for the I/O transaction, although data elements having a fixed size for each operating system may not require the byte count to be specified. For each I/O transaction requested, the base address in the host memory of the operating system specific data structure is programmed by the device driver into a register. The I/O protocol engine utilizes the base address together with the offset and byte count information to commence the requested I/O transaction. The base address is programmed by the device driver into the appropriate register on an each I/O basis, without requiring translation of the entire data structure. By permitting the hardware to be configured to effectively utilize the operating system data structure, the need for data structure translation is eliminated, CPU utilization is reduced, and increased I/O throughput is achieved.
    • 提供了一组用于驱动主机请求的I / O事务的协议引擎的寄存器。 为要执行I / O事务的协议确定一组固定的数据元素。 每个寄存器映射到数据结构基址或不同的数据元素偏移量或字节数。 在初始化期间,寄存器由操作系统设备驱动程序编程,对于定义的集合中的每个数据元素的基址和字节计数,这些数据元素在I / O事务的操作系统特定数据结构内被找到, 尽管对于每个操作系统具有固定大小的数据元素可能不需要指定字节计数。 对于请求的每个I / O事务,操作系统特定数据结构的主机存储器中的基地址由设备驱动程序编程到寄存器中。 I / O协议引擎利用基地址和偏移量和字节计数信息来开始所请求的I / O事务。 基地址由设备驱动程序在每个I / O基础上编入适当的寄存器,而不需要翻译整个数据结构。 通过允许硬件配置有效地利用操作系统数据结构,消除了对数据结构转换的需要,减少了CPU利用率,并实现了增加的I / O吞吐量。
    • 52. 发明授权
    • Rechargeable battery maintenance and testing system
    • 充电电池维护和测试系统
    • US6137261A
    • 2000-10-24
    • US13409
    • 1998-01-26
    • Wayne D. KurleStephen B. JohnsonRockland W. NordnessStephen L. FirmanDouglas M. Gustavson
    • Wayne D. KurleStephen B. JohnsonRockland W. NordnessStephen L. FirmanDouglas M. Gustavson
    • G01R31/36H02J7/00
    • G01R31/3648G01R31/36G01R31/3627H02J7/0004H02J7/0045H02J7/0075
    • A battery maintenance and testing system (22) that includes a battery support system (2) that tests, conditions, and charges rechargeable battery packs. The battery support system (22) accommodates a dumb battery (32) that do not have any internal logic by running a default maintenance routine, as well as a smart battery (24, 24') that has internal logic that monitors its condition, keeps track of the time and number of charge discharge cycles the battery has experienced since it was last conditioned, logs any errors that would necessitate the battery being discarded, and stores information relevant to its maintenance and testing. The battery maintenance and testing system (22) is able to communicate with a smart battery (24, 24') to automatically to retrieve this information and use it to condition, test, and charge the battery to optimal condition or to indicate to the user that the battery is defective and needs to be discarded. A user display and interface (43) is also provided on the battery support system that allows the user to manually charge, condition, or test a rechargeable battery pack.
    • 一种电池维护和测试系统(22),包括对可再充电电池组进行测试,条件和充电的电池支撑系统(2)。 电池支撑系统(22)容纳通过运行默认维护程序而不具有任何内部逻辑的哑电池(32),以及具有监视其状态的内部逻辑的智能电池(24,24'),保持 跟踪电池自上次调节以来经历的充电放电循环的时间和数量,记录任何需要丢弃电池的错误,并存储与其维护和测试相关的信息。 电池维护和测试系统(22)能够与智能电池(24,24')通信以自动检索该信息并将其用于对电池进行条件,测试和充电以获得最佳状态或向用户指示 电池有故障,需要丢弃。 用户显示器和接口(43)也设置在电池支撑系统上,其允许用户手动充电,调节或测试可充电电池组。