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    • 1. 发明申请
    • Programmable magnetic memory device
    • 可编程磁存储器件
    • US20070058422A1
    • 2007-03-15
    • US10529685
    • 2003-09-30
    • Gavin PhillipsKars-Michiel Lenssen
    • Gavin PhillipsKars-Michiel Lenssen
    • G11C11/00
    • G11C11/16G11B5/00G11B5/488G11B5/4907G11B2005/0002G11B2005/0021
    • A memory device has an information plane (32) for storing data bits in a magnetic state of an electro-magnetic material at an array of bit locations (31). The device further has an array of electro-magnetic sensor elements (51) that are aligned with the bit locations. The information plane (32) is programmable or programmed via a separate writing device (21). The writing device provides at least one beam of radiation (26) for heating the electro-magnetic material at the bit locations to a programming temperature. The magnetic state of the bit locations is programmed by applying a magnetic field during said heating of selected bit locations via the beams of radiation. Hence the memory device provides a magnetic read-only memory (MROM) that cannot be (re-)programmed without the proper writing device.
    • 存储器件具有信息平面(32),用于存储在位阵列(31)处的电磁材料的磁状态下的数据位。 该装置还具有与位位置对准的电磁传感器元件阵列(51)。 信息平面(32)可通过单独的写入装置(21)进行编程或编程。 写入装置提供至少一个辐射束(26),用于将位置处的电磁材料加热到编程温度。 位位置的磁状态通过在通过辐射束的所选位位置的加热期间施加磁场来编程。 因此,存储器件提供磁性只读存储器(MROM),其不能在没有适当的写入设备的情况下被编程(重新编程)。
    • 4. 发明申请
    • Optical recording and reading system, optical data storage medium and use of such medium
    • 光学记录和读取系统,光学数据存储介质和这种介质的使用
    • US20050243707A1
    • 2005-11-03
    • US10520310
    • 2003-06-25
    • Martinus Van Der MarkGavin Phillips
    • Martinus Van Der MarkGavin Phillips
    • G11B7/12G11B7/135G11B7/24G11B7/245G11B7/253G11B7/254G11B7/2542G11B7/257G11B11/105G11B7/00G11B15/64G11B17/32
    • G11B7/1387G11B7/121G11B7/122G11B7/1374G11B7/252G11B7/2542G11B11/10532G11B11/10554G11B11/1058G11B11/10584G11B11/10586G11B2007/13727
    • An optical recording and reading system for use with an optical data storage medium (5) is described. The system comprises the medium (5) having a recording stack (9), formed on a substrate (8). The recording stack (9) is suitable for recording by means of a focused radiation beam (1) with a wavelength λ in air. The recording stack (9) has a first optical surface (6) most remote from the substrate (8). An optical head (3), with an objective (2) having a numerical aperture NA>0.8 and from which objective (2) the focused radiation beam emanates (1) during recording, is (2) arranged on the recording stack (9) side of said optical data storage medium (5). The objective has a second optical surface (7) closest to the recording stack (9), and is adapted for recording/reading at a free working distance dF of smaller than 50 μm from the first optical surface (6). At least one of the first optical surface (6) and the second optical surface (7) is provided with a transparent hydrophobic layer (10) that has a refractive index n and has a thickness smaller than 0.5 vn. In this way reliable recording and reading is achieved, specifically contamination build-up on the second optical surface (7) is prevented or counteracted.
    • 描述了一种用于光学数据存储介质(5)的光学记录和读取系统。 该系统包括形成在基板(8)上的具有记录堆叠(9)的介质(5)。 记录堆叠(9)适合于通过在空气中具有波长λ的聚焦辐射束(1)进行记录。 记录堆叠(9)具有最远离基板(8)的第一光学表面(6)。 一种光学头(3),其具有数值孔径NA> 0.8的物镜(2),并且在记录期间由聚焦辐射光束发射(1)的物镜(2)被布置在记录叠层(9)上, 所述光学数据存储介质(5)的一侧。 该目的具有最靠近记录叠层(9)的第二光学表面(7),并且适于在距离第一光学表面的小于50μm的自由工作距离d (6)。 第一光学表面(6)和第二光学表面(7)中的至少一个设置有具有折射率n且厚度小于0.5vn的透明疏水层(10)。 以这种方式实现可靠的记录和读取,特别是防止或抵消第二光学表面(7)上的污染物积聚。
    • 8. 发明申请
    • Magneto-optical storage medium
    • 磁光存储介质
    • US20050266272A1
    • 2005-12-01
    • US10527893
    • 2003-08-08
    • Gavin Phillips
    • Gavin Phillips
    • G11B3/00G11B11/105G11B5/66
    • G11B11/10584G11B11/10586G11B11/10593
    • The invention relates to a magneto-optical storage medium (200) and specifically a domain expansion storage medium. The medium (200) comprises a magnetic storage layer (107) for long term information storage and a thereto magnetically coupled magnetic reproduction or read-out layer (111), wherein an enhanced magnetic domain may be generated during read out. The magnetic layers (107, 111) are separated by a non-metallic or metallic, non-magnetic or magnetic layer (109) and at least one metal layer (201, 203), such as Palladium or Platinum, is located adjacent to the magnetic reproduction layer (111). Preferably this metal layer (201, 203) is located on each side of the magnetic reproduction layer (111). The metal layer(s) (201, 203) provides increased heat dissipation and Kerr effect thereby permitting increased data density of the magneto-optical storage medium (200).
    • 本发明涉及磁光存储介质(200),具体地涉及域扩展存储介质。 介质(200)包括用于长期信息存储的磁存储层(107)和磁耦合磁性再现或读出层(111),其中在读出期间可能产生增强的磁畴。 磁性层(107,111)由非金属或金属,非磁性或磁性层(109)分开,并且至少一个金属层(例如钯或铂)等位于邻近 磁性再现层(111)。 优选地,该金属层(201,203)位于磁性再生层(111)的每一侧。 金属层(201,203)提供增加的散热和克尔效应,从而允许增加磁光存储介质(200)的数据密度。
    • 9. 发明申请
    • Printed magnetic rom-mprom
    • 印刷磁性卷
    • US20070205476A1
    • 2007-09-06
    • US10598640
    • 2005-03-03
    • Gavin Phillips
    • Gavin Phillips
    • H01L43/00B05D5/12B05D5/00
    • H01L27/112B82Y10/00G01R33/093G01R33/098G06K9/0002G11C11/16G11C17/02H01L27/11206H01L27/22H01L27/228
    • The invention relates to a method for storing information on a storage device (100) by depositing electromagnetic material (104) in a pattern on a sensor surface (106) of the storage device, the pattern representing the information to be stored. The storage device (100) comprises an array of sensor elements (101) that are sensitive to electromagnetic material (104) within a near field working distance (105). The read-out is done by a resistance measurement which relies on a magneto resistance phenomenon detected in a multilayer stack of the sensor elements (101). The storage device (100), comprising the deposited pattern of electromagnetic material (104), is a Read Only Memory device. The deposition of the pattern is, for example, possible by scanning a depositing unit (403), e.g. a printer head, in a line-by-line motion across the sensor surface (106), resulting in a Printed Magnetic ROM.
    • 本发明涉及一种通过以存储装置的传感器表面(106)上的图案沉积电磁材料(104)来将信息存储在存储装置(100)上的方法,该图案表示要存储的信息。 存储装置(100)包括在近场工作距离(105)内对电磁材料(104)敏感的传感器元件阵列(101)。 通过电阻测量完成读出,该电阻测量依赖于在传感器元件(101)的多层堆叠中检测到的磁阻现象。 包括电磁材料(104)的沉积图案的存储装置(100)是只读存储器装置。 图案的沉积例如可以通过扫描沉积单元(403),例如, 打印机头,跨越传感器表面(106)并行运动,产生印刷磁性ROM。