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    • 5. 发明申请
    • Error correction code transformation technique
    • 纠错码转换技术
    • US20070050695A1
    • 2007-03-01
    • US11214194
    • 2005-08-29
    • Jurgen Schulz
    • Jurgen Schulz
    • H03M13/00
    • H03M13/03
    • In one embodiment, a system comprises a source configured to provide data and a source error correction code (ECC) generated according to a source ECC scheme; a circuit comprising an ECC transform unit configured to generate a target ECC from the data, detect an error in the data responsive to the source ECC, and correct the error in the data, wherein the target ECC is generated according to a target ECC scheme different from the source ECC scheme, and wherein the ECC transform unit is configured to continuously protect the data with at least one of the source ECC and the target ECC; and a target coupled to receive the data and the target ECC from the circuit.
    • 在一个实施例中,系统包括被配置为提供数据的源和根据源ECC方案生成的源纠错码(ECC); 包括被配置为从数据生成目标ECC的ECC变换单元的电路,响应于源ECC检测数据中的错误,并校正数据中的错误,其中根据目标ECC方案生成不同的目标ECC 来自所述源ECC方案,并且其中所述ECC变换单元被配置为使用所述源ECC和所述目标ECC中的至少一个连续保护所述数据; 以及被耦合以从所述电路接收所述数据和所述目标ECC的目标。
    • 9. 发明授权
    • Electromagnetic hydraulic valve
    • 电磁液压阀
    • US08328157B2
    • 2012-12-11
    • US12763421
    • 2010-04-20
    • Jurgen SchulzMarco Meisborn
    • Jurgen SchulzMarco Meisborn
    • F16K31/02
    • F16K31/0655B60T8/363F16K31/0693
    • An electromagnetic hydraulic valve (1) is provided having a valve housing (2) with a pressurized hydraulic medium inlet channel (24), a pressurized hydraulic medium outlet channel (25), a magnet coil (3), and a valve seat (23), with a magnet armature (9) that can be excited by the magnet coil and a valve tappet (10, 10′) fixed on this armature. A valve-closing element (13) is activated by the valve tappet and that blocks the connection between the pressurized hydraulic medium channels for contact on the valve seat. The magnet armature with the valve tappet and the valve-closing element are guided so that they can move longitudinally in the valve housing and the valve tappet and the valve-closing element contact each other with facing longitudinal end sides (26, 27) in a way that is free from tensile forces. Here, one annular, continuous lobe or several lobes (28, 28′) separated from each other are formed on the longitudinal end side of the valve tappet, which span a contact plane running perpendicular to a longitudinal direction of movement for the longitudinal end side of the valve-closing element.
    • 提供一种电磁液压阀(1),其具有带有加压液压介质入口通道(24)的阀壳体(2),加压液压介质出口通道(25),磁体线圈(3)和阀座(23) ),具有可被磁体线圈激励的磁体电枢(9)和固定在该电枢上的阀挺杆(10,10')。 阀关闭元件(13)由阀挺杆启动,并且阻塞用于接触阀座的加压液压介质通道之间的连接。 具有阀挺杆和闭阀元件的磁体衔铁被引导,使得它们可以在阀壳体中纵向运动,并且阀挺杆和阀关闭元件以相对的纵向端侧(26,27)彼此接触, 没有拉力的方式。 这里,在阀挺杆的纵向端侧上形成有一个环形连续的叶片或多个彼此分离的叶片(28,28'),其横跨垂直于纵向端侧的纵向移动方向的接触平面 的阀关闭元件。