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    • 1. 发明授权
    • Portable memory device with multiple I/O interfaces wherein each I/O interface has respective protocol and device parameters are requested from one I/O interface using only respective protocol
    • 具有多个I / O接口的便携式存储器件,其中每个I / O接口具有相应的协议和设备参数,仅使用相应协议从一个I / O接口请求
    • US08001304B2
    • 2011-08-16
    • US12032501
    • 2008-02-15
    • Ka Ian YungSteven SprouseDhaval ParikhNathan Rapaport
    • Ka Ian YungSteven SprouseDhaval ParikhNathan Rapaport
    • G06F13/12G06F3/00G06F12/00H01R25/00G06F1/16
    • G06F13/385
    • A non-volatile storage device has first and second controllers that provide external access to non-volatile memory using different protocols. In response to a request from the first controller, the second controller retrieves parameters from the non-volatile memory and provides the retrieved parameters to the first controller. In one embodiment, the device parameters are USB descriptors, which may include a vendor ID, a product ID, a product string, and/or a serial number. The first controller may be a Universal Serial Bus (USB) card reader controller. Examples of the second controller include a Secure Digital (SD) controller, a CompactFlash (CF) controller, a MemoryStick controller, or a different type of controller that is able to provide external access to the non-volatile memory. The first controller provides the device parameters to a host during enumeration of the non-volatile storage device. The device parameters may be used to establish settings for the first controller.
    • 非易失性存储设备具有使用不同协议提供对非易失性存储器的外部访问的第一和第二控制器。 响应于来自第一控制器的请求,第二控制器从非易失性存储器检索参数,并将所检索的参数提供给第一控制器。 在一个实施例中,设备参数是USB描述符,其可以包括供应商ID,产品ID,产品串和/或序列号。 第一控制器可以是通用串行总线(USB)读卡器控制器。 第二控制器的示例包括安全数字(SD)控制器,CompactFlash(CF)控制器,MemoryStick控制器或能够提供对非易失性存储器的外部访问的不同类型的控制器。 第一控制器在枚举非易失性存储设备期间向主机提供设备参数。 设备参数可用于建立第一控制器的设置。
    • 2. 发明申请
    • PROVIDING DEVICE PARAMETERS
    • 提供设备参数
    • US20090210637A1
    • 2009-08-20
    • US12032501
    • 2008-02-15
    • Ka Ian YungSteven SprouseDhaval ParikhNathan Rapaport
    • Ka Ian YungSteven SprouseDhaval ParikhNathan Rapaport
    • G06F12/00
    • G06F13/385
    • A non-volatile storage device has first and second controllers that provide external access to non-volatile memory using different protocols. In response to a request from the first controller, the second controller retrieves parameters from the non-volatile memory and provides the retrieved parameters to the first controller. In one embodiment, the device parameters are USB descriptors, which may include a vendor ID, a product ID, a product string, and/or a serial number. The first controller may be a Universal Serial Bus (USB) card reader controller. Examples of the second controller include a Secure Digital (SD) controller, a CompactFlash (CF) controller, a MemoryStick controller, or a different type of controller that is able to provide external access to the non-volatile memory. The first controller provides the device parameters to a host during enumeration of the non-volatile storage device. The device parameters may be used to establish settings for the first controller.
    • 非易失性存储设备具有使用不同协议提供对非易失性存储器的外部访问的第一和第二控制器。 响应于来自第一控制器的请求,第二控制器从非易失性存储器检索参数,并将所检索的参数提供给第一控制器。 在一个实施例中,设备参数是USB描述符,其可以包括供应商ID,产品ID,产品串和/或序列号。 第一控制器可以是通用串行总线(USB)读卡器控制器。 第二控制器的示例包括安全数字(SD)控制器,CompactFlash(CF)控制器,MemoryStick控制器或能够提供对非易失性存储器的外部访问的不同类型的控制器。 第一控制器在枚举非易失性存储设备期间向主机提供设备参数。 设备参数可用于建立第一控制器的设置。
    • 3. 发明授权
    • Electrical connector with ESD grounding clip
    • 带ESD接地夹的电气连接器
    • US07410370B2
    • 2008-08-12
    • US11618280
    • 2006-12-29
    • Steven SprousePatricio CollantesDhaval Parikh
    • Steven SprousePatricio CollantesDhaval Parikh
    • H01R4/66
    • H01R13/6485H01R13/2442
    • A connector is disclosed for preventing electrostatic discharge during connection of a USB-type connector. The connector includes a grounding clip provided within a recess formed at least partially down into the surface of the second level of the base block. The grounding clip may have a proximal end affixed to a proximal end of a signal ground pin of the plurality of signal pins, though the grounding clip and signal ground pin may be coupled at other locations along their lengths. The connector including the grounding clip may be affixed to a semiconductor device. A portion of the grounding clip is provided at a height above the surface of the base block such that, when a shroud is slid around the connector, the shroud engages and remains in contact with the grounding clip. Accordingly, any electrostatic discharge built up in the shroud travels from the shroud, through the ESD grounding clip, to the signal ground pin where it is harmlessly dissipated.
    • 公开了一种用于在连接USB型连接器期间防止静电放电的连接器。 连接器包括设置在至少部分地下降到基座的第二级的表面内的凹部内的接地夹。 接地夹可以具有固定到多个信号引脚的信号接地引脚的近端的近端,尽管接地夹和信号接地引脚可以沿其长度在其它位置耦合。 包括接地夹的连接器可以固定到半导体器件。 接地夹的一部分设置在基座表面上方的高度处,使得当护罩围绕连接器滑动时,护罩接合并保持与接地夹接触。 因此,在护罩中建立的任何静电放电从护罩通过ESD接地夹移动到信号接地引脚,在那里它被无害地消散。
    • 4. 发明申请
    • ELECTRICAL CONNECTOR WITH ESD GROUNDING CLIP
    • 带ESD接地夹的电气连接器
    • US20080160831A1
    • 2008-07-03
    • US11618280
    • 2006-12-29
    • Steven SprousePatricio CollantesDhaval Parikh
    • Steven SprousePatricio CollantesDhaval Parikh
    • H01R13/648
    • H01R13/6485H01R13/2442
    • A connector is disclosed for preventing electrostatic discharge during connection of a USB-type connector. The connector includes a grounding clip provided within a recess formed at least partially down into the surface of the second level of the base block. The grounding clip may have a proximal end affixed to a proximal end of a signal ground pin of the plurality of signal pins, though the grounding clip and signal ground pin may be coupled at other locations along their lengths. The connector including the grounding clip may be affixed to a semiconductor device. A portion of the grounding clip is provided at a height above the surface of the base block such that, when a shroud is slid around the connector, the shroud engages and remains in contact with the grounding clip. Accordingly, any electrostatic discharge built up in the shroud travels from the shroud, through the ESD grounding clip, to the signal ground pin where it is harmlessly dissipated.
    • 公开了一种用于在连接USB型连接器期间防止静电放电的连接器。 连接器包括设置在至少部分地下降到基座的第二级的表面内的凹部内的接地夹。 接地夹可以具有固定到多个信号引脚的信号接地引脚的近端的近端,尽管接地夹和信号接地引脚可以沿其长度在其它位置耦合。 包括接地夹的连接器可以固定到半导体器件。 接地夹的一部分设置在基座表面上方的高度处,使得当护罩围绕连接器滑动时,护罩接合并保持与接地夹接触。 因此,在护罩中建立的任何静电放电从护罩通过ESD接地夹移动到信号接地引脚,在那里它被无害地消散。
    • 5. 发明授权
    • Method of making an electrical connector with ESD grounding clip
    • 制造具有ESD接地夹的电连接器的方法
    • US07810235B2
    • 2010-10-12
    • US11618292
    • 2006-12-29
    • Steven SprousePatricio CollantesDhaval Parikh
    • Steven SprousePatricio CollantesDhaval Parikh
    • H01R43/20
    • H01R13/6485Y10T29/49204Y10T29/49208Y10T29/49222
    • A method is disclosed for making a connector for preventing electrostatic discharge during connection of a USB-type connector. The connector includes a grounding clip provided within a recess formed at least partially down into the surface of the second level of the base block. The grounding clip may have a proximal end affixed to a proximal end of a signal ground pin of the plurality of signal pins, though the grounding clip and signal ground pin may be coupled at other locations along their lengths. The connector including the grounding clip may be affixed to a semiconductor device. A portion of the grounding clip is provided at a height above the surface of the base block such that, when a shroud is slid around the connector, the shroud engages and remains in contact with the grounding clip. Accordingly, any electrostatic discharge built up in the shroud travels from the shroud, through the ESD grounding clip, to the signal ground pin where it is harmlessly dissipated.
    • 公开了一种制造用于在连接USB型连接器期间防止静电放电的连接器的方法。 连接器包括设置在至少部分地下降到基座的第二级的表面内的凹部内的接地夹。 接地夹可以具有固定到多个信号引脚的信号接地引脚的近端的近端,尽管接地夹和信号接地引脚可以沿其长度在其它位置耦合。 包括接地夹的连接器可以固定到半导体器件。 接地夹的一部分设置在基座表面上方的高度处,使得当护罩围绕连接器滑动时,护罩接合并保持与接地夹接触。 因此,在护罩中建立的任何静电放电从护罩通过ESD接地夹移动到信号接地引脚,在那里它被无害地消散。
    • 6. 发明申请
    • SWITCHABLE ACCESS STATES FOR NON-VOLATILE STORAGE DEVICES
    • 非易失存储设备的可切换访问状态
    • US20090307389A1
    • 2009-12-10
    • US12136672
    • 2008-06-10
    • Steven SprouseHenry HuttonDhaval Parikh
    • Steven SprouseHenry HuttonDhaval Parikh
    • G06F3/00
    • G06F13/385Y02D10/14Y02D10/151
    • Techniques for switching access states for accessing non-volatile are disclosed. A plurality of non-volatile memory portions can be effectively presented as: (a) a single logical unit in a first access state (“single unit access state”) and (b) as multiple logical units in a second access state (“multi-unit access state”). An access switching system can be provided for a device that includes a plurality of non-volatile storage portions. As a result, the device can be operable to effectively switch between the first and second access states. In the first access state, the plurality of non-volatile storage portions can be effectively presented as a single logical unit for access by another device, thereby allowing the other device to effectively access the plurality of non-volatile storage portions from a single access point. However, the device can also be operable to switch to a second access state in which the plurality of the non-volatile storage portions can be effectively presented to the other device as multiple logical units, thereby allowing the other device to access the plurality of non-volatile storage portions individually by using multiple access points respectively associated with the multiple logical units presented to the other device.
    • 公开了用于切换访问非易失性的访问状态的技术。 可以有效地呈现多个非易失性存储器部分:(a)处于第一访问状态(“单个单元访问状态”)中的单个逻辑单元和(b)作为第二访问状态中的多个逻辑单元(“多个” -unit访问状态“)。 可以为包括多个非易失性存储部分的装置提供接入交换系统。 结果,该设备可操作以有效地在第一和第二访问状态之间切换。 在第一访问状态下,可以将多个非易失性存储部分有效地呈现为单个逻辑单元以供另一设备访问,从而允许其他设备从单个访问点有效地访问多个非易失性存储部分 。 然而,该设备还可以用于切换到第二访问状态,其中多个非易失性存储部分可以被有效地呈现给另一设备作为多个逻辑单元,从而允许其他设备访问多个非易失性存储部分 通过使用分别与呈现给另一个设备的多个逻辑单元相关联的多个接入点来单独地分配非易失性存储部分。
    • 7. 发明申请
    • METHOD OF MAKING AN ELECTRICAL CONNECTOR WITH ESD GROUNDING CLIP
    • 制造具有ESD接地片的电连接器的方法
    • US20080155824A1
    • 2008-07-03
    • US11618292
    • 2006-12-29
    • Steven SprousePatricio CollantesDhaval Parikh
    • Steven SprousePatricio CollantesDhaval Parikh
    • H01R43/00
    • H01R13/6485Y10T29/49204Y10T29/49208Y10T29/49222
    • A method is disclosed for making a connector for preventing electrostatic discharge during connection of a USB-type connector. The connector includes a grounding clip provided within a recess formed at least partially down into the surface of the second level of the base block. The grounding clip may have a proximal end affixed to a proximal end of a signal ground pin of the plurality of signal pins, though the grounding clip and signal ground pin may be coupled at other locations along their lengths. The connector including the grounding clip may be affixed to a semiconductor device. A portion of the grounding clip is provided at a height above the surface of the base block such that, when a shroud is slid around the connector, the shroud engages and remains in contact with the grounding clip. Accordingly, any electrostatic discharge built up in the shroud travels from the shroud, through the ESD grounding clip, to the signal ground pin where it is harmlessly dissipated.
    • 公开了一种制造用于在连接USB型连接器期间防止静电放电的连接器的方法。 连接器包括设置在至少部分地下降到基座的第二级的表面内的凹部内的接地夹。 接地夹可以具有固定到多个信号引脚的信号接地引脚的近端的近端,尽管接地夹和信号接地引脚可以沿其长度在其它位置耦合。 包括接地夹的连接器可以固定到半导体器件。 接地夹的一部分设置在基座表面上方的高度处,使得当护罩围绕连接器滑动时,护罩接合并保持与接地夹接触。 因此,在护罩中建立的任何静电放电从护罩通过ESD接地夹移动到信号接地引脚,在那里它被无害地消散。
    • 9. 发明申请
    • Auxiliary Interface for Non-Volatile Memory System
    • 非易失性存储器系统的辅助接口
    • US20120159040A1
    • 2012-06-21
    • US12969167
    • 2010-12-15
    • Dhaval ParikhTalal Ahwal
    • Dhaval ParikhTalal Ahwal
    • G06F12/00
    • G06F13/28G06F3/0611G06F3/0626G06F3/064G06F3/0659G06F3/0679G06F3/068G06F3/0688G06F13/1694
    • A non-volatile memory system is formed a plurality of memory banks and a controller, where the controller has an auxiliary memory interface for use with an additionally non-volatile memory bank, where the additional memory bank and interface are used for metadata, such as logical to physical translation data. The other banks are used for user data. In an exemplary embodiment, a non-volatile memory could include a controller and (N+1) NAND flash memories, where N of these memories would store user data, but the remaining memory with its own controller interface would be dedicated to the storage of metadata. This allows for the metadata to be kept in non-volatile memory, but still quite readily accessible relative to the typical paging/overlay arrangement for metadata that is typically used in many non-volatile memory system.
    • 非易失性存储器系统形成有多个存储器组和控制器,其中控制器具有用于另外非易失性存储器组的辅助存储器接口,其中额外的存储体和接口用于元数据,例如 逻辑到物理翻译数据。 其他银行用于用户数据。 在示例性实施例中,非易失性存储器可以包括控制器和(N + 1)NAND闪存,其中这些存储器中的N将存储用户数据,但是具有其自己的控制器接口的剩余存储器将专用于存储 元数据。 这允许将元数据保存在非易失性存储器中,但是相对于通常在许多非易失性存储器系统中使用的元数据的典型寻呼/覆盖布局,仍然非常容易地访问元数据。