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    • 2. 发明授权
    • Data storage devices and power management methods thereof
    • 数据存储装置及其电源管理方法
    • US08325555B2
    • 2012-12-04
    • US12654702
    • 2009-12-29
    • Tae-Min JeongSang-Kyoo Jeong
    • Tae-Min JeongSang-Kyoo Jeong
    • G11C8/00
    • G06F1/3203G06F1/3268Y02D10/154Y02D50/20
    • A data storage device includes a data storage medium and a controller. The controller is configured to control at least one of a reading, erasing, and writing operation on the data storage medium. The controller includes an interface and a power management unit. The interface is configured to exchange at least one of a command, an address, and data with a host. The power management unit is configured to change the power mode of the interface into a power saving mode if: a command input from the host is not executed, data transfer is not actually executed in executing the command, or status information is not reported after the command is executed.
    • 数据存储装置包括数据存储介质和控制器。 控制器被配置为控制数据存储介质上的读取,擦除和写入操作中的至少一个。 控制器包括接口和电源管理单元。 该接口被配置为与主机交换命令,地址和数据中的至少一个。 电源管理单元被配置为:如果从主机输入的命令不被执行,则在执行命令时实际上不执行数据传送,或者在不执行命令之后不报告状态信息,则将接口的电源模式改变为省电模式 命令被执行。
    • 4. 发明申请
    • CRC MANAGEMENT METHOD PERFORMED IN SATA INTERFACE AND DATA STORAGE DEVICE USING CRC MANAGEMENT METHOD
    • 使用CRC管理方法在SATA接口和数据存储设备中执行的CRC管理方法
    • US20110004817A1
    • 2011-01-06
    • US12780984
    • 2010-05-17
    • Woo-seong CHEONGTae-min JEONGSang-kyoo JEONG
    • Woo-seong CHEONGTae-min JEONGSang-kyoo JEONG
    • H03M13/09G06F11/10
    • H03M13/09G06F11/1004
    • A cyclic redundancy check (CRC) management method performed in a serial advanced technology attachment (SATA) interface and a data storage device using the CRC management method. A host interface connected to the SATA interface performs CRC computation on transmitted data to generate a first CRC code, determines whether a host interface block error or a data integrity error occurs, or the status of a data storage device needs to be reported to the host interface, generates a second CRC code, which is different from the first CRC code, according to the determination result. If a frame including the transmitted data and the second CRC code is transmitted to a host, the host performs CRC computation on a data FIS in the transmitted data to expect the first CRC code. Since the CRC code in the transmitted data is the second CRC code, the host recognizes that the transmitted data is wrong and provides an error notification to the data storage device. Accordingly, the host can be informed of the host interface block error, the data integrity error, or the status error of the data storage device, not a protocol error in the SATA interface.
    • 在串行高级技术附件(SATA)接口中执行的循环冗余校验(CRC)管理方法和使用CRC管理方法的数据存储设备。 连接到SATA接口的主机接口对发送的数据执行CRC计算以生成第一CRC码,确定是否发生主机接口块错误或数据完整性错误,或者数据存储设备的状态需要向主机报告 接口,根据确定结果产生与第一CRC码不同的第二CRC码。 如果将包括发送数据和第二CRC码的帧发送到主机,则主机对所发送的数据中的数据FIS执行CRC计算,以期望第一CRC码。 由于发送数据中的CRC码是第二个CRC码,所以主机识别出发送的数据是错误的,并向数据存储装置提供错误通知。 因此,可以向主机通知主机接口块错误,数据完整性错误或数据存储设备的状态错误,而不是SATA接口中的协议错误。
    • 8. 发明授权
    • Method of controlling power saving mode used in SATA interface
    • 控制SATA接口使用的省电模式的方法
    • US08200998B2
    • 2012-06-12
    • US12021680
    • 2008-01-29
    • Woo-seong CheongSang-kyoo JeongTae-min Jeong
    • Woo-seong CheongSang-kyoo JeongTae-min Jeong
    • G06F1/26G06F1/32
    • G06F13/4291Y02D10/14Y02D10/151
    • A method of controlling a power saving mode used in a serial advanced technology attachment (SATA) interface. The method of controlling a power saving mode used in a SATA interface for data transmission between a transmitter and a receiver includes: requesting the receiver to enter one of a plurality of power saving modes in a SATA protocol using the transmitter; and selecting one of the power saving modes using the receiver. In the method of controlling a power saving mode in a SATA interface, since a power saving mode can be selected independently of a power saving mode requested by a transmitter, a system can operate in a power saving mode that is suitable for the required properties of the system in accordance with a SATA protocol. Furthermore, the properties of the system required by a user can be realized by selecting a user-defined power saving mode.
    • 控制在串行高级技术附件(SATA)接口中使用的省电模式的方法。 控制在SATA接口中用于发射机和接收机之间的数据传输的省电模式的方法包括:使用发射机请求接收机进入SATA协议中的多个省电模式之一; 并使用接收器选择一种省电模式。 在SATA接口中控制省电模式的方法中,由于可以独立于发射机所要求的功率节省模式来选择功率节省模式,所以系统可以以适于所需性能的功率节省模式进行操作 该系统符合SATA协议。 此外,可以通过选择用户定义的省电模式来实现用户所需的系统的属性。