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    • 1. 发明申请
    • PREVENTION OF DATA LOSS DUE TO POWER FAILURE
    • 防止由于电力故障导致的数据丢失
    • WO2006060237A2
    • 2006-06-08
    • PCT/US2005/042314
    • 2005-11-17
    • INTEL CORPORATIONPOISNER, DavidSTEVENS, William
    • POISNER, DavidSTEVENS, William
    • G06F11/1441G06F12/0804
    • In some embodiment, an arrangement is provided to prevent a loss of data in a memory due to a power failure for a computing system. When the power failure occurs, any pending memory write operations may be completed and dirty cache lines may be flushed back to the memory. Subsequently, the computing system may be put into a loss-prevention state, under which power may be turned off for all components in the computing system except the memory. The memory is powered by a battery pack which includes batteries and is in a self refresh state. When the power returns, applications and operating systems running in the computing system may resume what is left out when the power supply failure occurs, based at least in part on data retained in the memory. Other embodiments are described and claimed.
    • 在一些实施例中,提供一种布置以防止由于计算系统的电力故障而导致存储器中的数据丢失。 发生电源故障时,可能会完成任何挂起的内存写入操作,并且脏高速缓存行可能会被刷新回内存。 随后,计算系统可以进入防止丢失状态,在该状态下,除了存储器之外,可以关闭计算系统中的所有组件的电力。 内存由包含电池的电池组供电,并处于自刷新状态。 当电源恢复时,在计算系统中运行的应用程序和操作系统可以恢复当电源发生故障时遗漏的内容,至少部分基于保存在存储器中的数据。 描述并要求保护其他实施例。
    • 2. 发明申请
    • BATTERY CHARGER CHUTE
    • 电池充电器
    • WO2008005813A2
    • 2008-01-10
    • PCT/US2007072425
    • 2007-06-28
    • INTEL CORPPOISNER DAVID
    • POISNER DAVID
    • H02J7/0045
    • The embodiments of the invention relate to a novel apparatus and method for a battery charging system in a shared environment, as well as for monitoring battery usage and tracking battery location. In one embodiment, the battery charging chute comprises a housing configured to receive a battery via an insertion slot and configured to dispense a battery through a dispensing slot. Within the housing, charging terminals are disposed is a spaced or continuous manner, to come in contact with the charging terminals on batteries inserted into the housing. Optionally, solenoid-controlled gates may be employed at the insertion slot and dispensing slot, to inhibit the removal or insertion of batteries from the incorrect location, to ensure that the battery with the longest residence time in the chute is dispensed to a user. The housing may also include a radio-frequency identification tag reader to permit inventorying and tracking of batteries inserted into the housing.
    • 本发明的实施例涉及一种用于共享环境中的电池充电系统的新型装置和方法,以及用于监视电池使用和跟踪电池位置。 在一个实施例中,电池充电斜槽包括被配置为经由插槽接收电池并被配置为通过分配槽分配电池的壳体。 在壳体内,充电端子被设置为间隔的或连续的方式,以便与插入壳体的电池上的充电端子接触。 可选地,可以在插入槽和分配槽处采用螺线管控制的门,以阻止电池从不正确的位置移除或插入,以确保在滑道中具有最长停留时间的电池被分配给使用者。 壳体还可以包括射频识别标签读取器,以允许对插入到壳体中的电池进行库存和跟踪。
    • 4. 发明申请
    • SYSTEM FOR FACILITATING DATA I/O BETWEEN USB INPUT DEVICE AND NON-USB COGNITION APPLICATION
    • 用于促进USB输入设备和非USB认证应用程序之间的数据I / O的系统
    • WO1997036230A1
    • 1997-10-02
    • PCT/US1997004032
    • 1997-03-14
    • INTEL CORPORATIONPOISNER, David
    • INTEL CORPORATION
    • G06F09/46
    • G06F13/105G06F13/24
    • A system management interrupt (SMI) generation circuitry (25) is provided to a universal serial bus (USB) (22) compliant personal computer (PC) for generating an SMI whenever the USB controller (32) attempts to generate a data in interrupt in response to data in from a USB compatible keyboard/pointing device (34,36), and whenever an application attempts to perform a direct data out to the AT keyboard controller (30). An SMI handler (21) is provided to service the SMIs, rerouting the data in to the appropriate input port of the AT keyboard controller, simulating receipt of the data from an attached keyboard, thereby providing the data in to the non-USB cognition application, and rerouting the data out to the USB controller, thereby providing the data to the targeted USB keyboard/pointing device. Therefore, compatibility is maintained between a USB compatible keyboard/pointing device and non-USB cognition applications which perform direct data in and data out against the keyboard controllers.
    • 一个系统管理中断(SMI)产生电路(25)被提供给通用串行总线(USB)(22)兼容个人计算机(PC),用于在USB控制器(32)试图产生一个中断数据时产生一个SMI 响应来自USB兼容键盘/指点设备(34,36)的数据,以及每当应用程序尝试向AT键盘控制器(30)执行直接数据输出时。 提供SMI处理器(21)来服务SMI,将数据重新路由到AT键盘控制器的适当输入端口,模拟从附接的键盘接收数据,从而将数据提供给非USB认证应用程序 并将数据重新路由到USB控制器,从而将数据提供给目标USB键盘/指点设备。 因此,在USB兼容键盘/指点设备和执行与键盘控制器之间的直接数据和数据输出的非USB认证应用程序之间保持兼容性。
    • 7. 发明申请
    • PREVENTION OF DATA LOSS DUE TO POWER FAILURE
    • 防止数据丢失由于电源故障
    • WO2006060237A3
    • 2006-09-14
    • PCT/US2005042314
    • 2005-11-17
    • INTEL CORPPOISNER DAVIDSTEVENS WILLIAM
    • POISNER DAVIDSTEVENS WILLIAM
    • G06F11/14
    • G06F11/1441G06F12/0804
    • In some embodiment, an arrangement is provided to prevent a loss of data in a memory due to a power failure for a computing system. When the power failure occurs, any pending memory write operations may be completed and dirty cache lines may be flushed back to the memory. Subsequently, the computing system may be put into a loss-prevention state, under which power may be turned off for all components in the computing system except the memory. The memory is powered by a battery pack which includes batteries and is in a self refresh state. When the power returns, applications and operating systems running in the computing system may resume what is left out when the power supply failure occurs, based at least in part on data retained in the memory. Other embodiments are described and claimed.
    • 在一些实施例中,提供了一种布置,以防止由于计算系统的电源故障导致的存储器中的数据丢失。 当发生电源故障时,可能会完成任何未完成的存储器写操作,并将脏高速缓存行刷新回存储器。 随后,计算系统可以被置于防止丢失状态,在该状态下,计算系统中除了存储器之外的所有组件都可以关闭电源。 存储器由包括电池并且处于自刷新状态的电池组供电。 当电力返回时,运行在计算系统中的应用程序和操作系统可以至少部分地基于保存在存储器中的数据来恢复发生电源故障时所剩下的内容。 描述和要求保护其他实施例。