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    • 2. 发明申请
    • SYSTEM AND METHOD FOR IMPROVING DATA INTEGRITY AND MEMORY PERFORMANCE USING NON-VOLATILE MEDIA
    • 使用非易失性媒体改进数据完整性和记忆性能的系统和方法
    • US20100115193A1
    • 2010-05-06
    • US12606487
    • 2009-10-27
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • G06F12/00G06F12/02
    • G06F12/0804G06F12/0866
    • A system and computer system for improving data integrity and memory performance using non-volatile media. A system includes a non-volatile mass storage unit, e.g., a flash memory device and/or a hard drive unit for instance. A memory device is used as a high speed data buffer and/or cache for the non-volatile storage unit. The memory device may be non-volatile, e.g., magnetic random access memory (MRAM) or volatile memory, e.g., static dynamic random access memory (SDRAM). By buffering and/or caching the write data, fewer accesses are required to the mass storage device thereby increasing system performance. Additionally, mechanical and electrical degradation of the mass storage device is reduced. Certain trigger events can be programmed to cause data from the memory device to be written to the mass storage device. In one embodiment, the write buffer contents are preserved across reset or power loss events. In one embodiment, the mass storage unit may be a data transport layer, e.g., Ethernet, USB, Bluetooth, etc.
    • 一种用于使用非易失性介质提高数据完整性和内存性能的系统和计算机系统。 系统包括例如闪存设备和/或硬盘驱动器单元的非易失性大容量存储单元。 存储器件用作非易失性存储单元的高速数据缓冲器和/或高速缓存。 存储器件可以是非易失性的,例如磁性随机存取存储器(MRAM)或易失性存储器,例如静态动态随机存取存储器(SDRAM)。 通过缓冲和/或缓存写入数据,大量存储设备需要更少的访问,从而提高系统性能。 此外,大容量存储装置的机械和电气劣化降低。 可以对某些触发事件进行编程,以使来自存储设备的数据被写入大容量存储设备。 在一个实施例中,写入缓冲器内容被保留在复位或功率损失事件之间。 在一个实施例中,大容量存储单元可以是数据传输层,例如以太网,USB,蓝牙等。
    • 3. 发明授权
    • System and method for improving data integrity and memory performance using non-volatile media
    • 使用非易失性介质提高数据完整性和内存性能的系统和方法
    • US08065472B2
    • 2011-11-22
    • US12606487
    • 2009-10-27
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • G06F12/00
    • G06F12/0804G06F12/0866
    • A system includes a non-volatile mass storage unit, e.g., a flash memory device and/or a hard drive unit for instance. A memory device is used as a high speed data buffer and/or cache for the non-volatile storage unit. The memory device may be non-volatile, e.g., magnetic random access memory (MRAM) or volatile memory, e.g., synchronous dynamic random access memory (SDRAM). By buffering and/or caching the write data, fewer accesses are required to the mass storage device thereby increasing system performance. Additionally, mechanical and electrical degradation of the mass storage device is reduced. Certain trigger events can be programmed to cause data from the memory device to be written to the mass storage device. The write buffer contents may be preserved across reset or power loss events. The mass storage unit may be a data transport layer, e.g., Ethernet, USB, Bluetooth, etc.
    • 系统包括例如闪存设备和/或硬盘驱动器单元的非易失性大容量存储单元。 存储器件用作非易失性存储单元的高速数据缓冲器和/或高速缓存。 存储器件可以是非易失性的,例如磁性随机存取存储器(MRAM)或易失性存储器,例如同步动态随机存取存储器(SDRAM)。 通过缓冲和/或缓存写入数据,大量存储设备需要更少的访问,从而提高系统性能。 此外,大容量存储装置的机械和电气劣化降低。 可以对某些触发事件进行编程,以使来自存储设备的数据被写入大容量存储设备。 复位或掉电事件可能会保留写缓冲区内容。 大容量存储单元可以是数据传输层,例如以太网,USB,蓝牙等。
    • 4. 发明授权
    • System and method for improving data integrity and memory performance using non-volatile media
    • 使用非易失性介质提高数据完整性和内存性能的系统和方法
    • US07610445B1
    • 2009-10-27
    • US11184131
    • 2005-07-18
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • Justin Evan ManusDouglas AndersonYoon Kean WongRajan Ranga
    • G06F12/00
    • G06F12/0804G06F12/0866
    • A system and computer system for improving data integrity and memory performance using non-volatile media. A system includes a non-volatile mass storage unit, e.g., a flash memory device and/or a hard drive unit for instance. A memory device is used as a high speed data buffer and/or cache for the non-volatile storage unit. The memory device may be non-volatile, e.g., magnetic random access memory (MRAM) or volatile memory, e.g., synchronous dynamic random access memory (SDRAM). By buffering and/or caching the write data, fewer accesses are required to the mass storage device thereby increasing system performance. Additionally, mechanical and electrical degradation of the mass storage device is reduced. Certain trigger events can be programmed to cause data from the memory device to be written to the mass storage device. In one embodiment, the write buffer contents are preserved across reset or power loss events. In one embodiment, the mass storage unit may be a data transport layer, e.g., Ethernet, USB, Bluetooth, etc.
    • 一种用于使用非易失性介质提高数据完整性和内存性能的系统和计算机系统。 系统包括例如闪存设备和/或硬盘驱动器单元的非易失性大容量存储单元。 存储器件用作非易失性存储单元的高速数据缓冲器和/或高速缓存。 存储器件可以是非易失性的,例如磁性随机存取存储器(MRAM)或易失性存储器,例如同步动态随机存取存储器(SDRAM)。 通过缓冲和/或缓存写入数据,大量存储设备需要更少的访问,从而提高系统性能。 此外,大容量存储装置的机械和电气劣化降低。 可以对某些触发事件进行编程,以使来自存储设备的数据被写入大容量存储设备。 在一个实施例中,写入缓冲器内容被保留在复位或功率损失事件之间。 在一个实施例中,大容量存储单元可以是数据传输层,例如以太网,USB,蓝牙等。
    • 6. 发明授权
    • Input detection system for a portable electronic device
    • 便携式电子设备的输入检测系统
    • US09489018B2
    • 2016-11-08
    • US12612115
    • 2009-11-04
    • Shawn R. GettemyYoon Kean Wong
    • Shawn R. GettemyYoon Kean Wong
    • G06F3/045G06F1/16G06F3/041
    • G06F1/1698G06F1/1622G06F1/1626G06F1/1641G06F1/1647G06F1/1656G06F1/1677G06F3/0412G06F3/045G06F2200/1632
    • A proximity input detection system for an electronic device. In one embodiment, the present invention utilizes an inductive field sensor to detect a change in a magnetic field when an input device with a coil is within a threshold distance. In another embodiment, the present invention utilizes a capacitive sensor which can locate the position of an electrically conductive object which is within a threshold distance. The capacitive sensor can also be used, for example, as a switch to activate the device if a user picks it up. The present invention allows user inputs to be detected without actually touching the electronic device. The present invention can also be used to detect inputs through intervening non-metallic layers such as a protective cover or another display of the device without using additional input sensors.
    • 一种用于电子设备的接近输入检测系统。 在一个实施例中,当具有线圈的输入装置在阈值距离内时,本发明利用感应场传感器来检测磁场的变化。 在另一个实施例中,本发明利用一种电容传感器,其可以定位在阈值距离内的导电物体的位置。 例如,电容式传感器也可以用作开关以在用户拾取时激活设备。 本发明允许在不实际触摸电子设备的情况下检测用户输入。 本发明还可用于通过介入的非金属层(例如保护盖或设备的另一显示器)来检测输入,而不使用附加的输入传感器。
    • 9. 发明授权
    • System and method for sharing resources and interfaces amongst connected computing devices
    • 在连接的计算设备之间共享资源和接口的系统和方法
    • US09106553B2
    • 2015-08-11
    • US11691484
    • 2007-03-26
    • Yoon Kean WongKarl TownsendPaul ChambersRamachandran Venkataraman
    • Yoon Kean WongKarl TownsendPaul ChambersRamachandran Venkataraman
    • G06F3/00G06F13/00H04L12/24
    • H04L41/12H04L41/0809
    • A computing device is provided that includes a plurality of user-interactive mechanisms. The computing device may also include a universal communication port that is capable of receiving a connection from a device that belongs to any one of a plurality of device classes or types. The device may be equipped or configured with logic. The logic may configure or otherwise enable an operative state of user-interface mechanisms on the device. Additionally, the logic may (i) detect a connected device that connects to the universal communication port, and (ii) determine a set of functionality that the connected device is capable of performing when connected to the universal communication port. The logic may perform, or cause performance, of operations that are for use with or by the connected device. The logic may also perform at least one of (i) selectively route data to the connected device over the universal communication port, or (ii) selectively disable one or more of the plurality of user-interactive mechanisms while performing the operations.
    • 提供了一种包括多个用户交互机制的计算设备。 计算设备还可以包括能够从属于多个设备类别或类型中的任何一个的设备接收连接的通用通信端口。 该设备可以配备或配置逻辑。 逻辑可以配置或以其他方式启用设备上的用户界面机制的操作状态。 另外,逻辑可以(i)检测连接到通用通信端口的连接设备,以及(ii)确定所连接设备在连接到通用通信端口时能够执行的一组功能。 该逻辑可以执行或导致与所连接的设备一起使用的操作的性能。 逻辑还可以执行以下中的至少一个:(i)通过通用通信端口选择性地将数据路由到连接的设备,或者(ii)在执行操作时选择性地禁用多个用户交互机制中的一个或多个。