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    • 1. 发明申请
    • APPARATUS AND METHOD FOR SCANNING AN INFORMATION TRACK AND RECORD CARRIER
    • 扫描信息跟踪和记录载体的装置和方法
    • WO2004025627A2
    • 2004-03-25
    • PCT/IB2003/003761
    • 2003-08-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Hubert, C., F.TIEKE, BennoSPRUIT, Johannes, H., M.
    • MARTENS, Hubert, C., F.TIEKE, BennoSPRUIT, Johannes, H., M.
    • G11B
    • G11B7/1263G11B7/00456G11B7/00736G11B7/24038G11B19/02G11B19/12G11B19/127
    • In order to follow an information track (1) on an information carrier (2), a push-pull signal (PP) is generated. The polarity of the push-pull signal (PP) is different for different types of information carriers (2). Tracking means (8) should react differently to a push-pull signal (PP) with a positive polarity than to a push-pull signal (PP) with a negative polarity. The invention described is a method for scanning an information track (1) by determining the polarity of the push-pull signal (PP) first and putting the tracking means (8) in a first or second mode dependent on the polarity of the push-pull signal (PP). In the first mode the tracking means (8) react differently to the push-pull signal than in the second mode. The determination of the polarity of the push-pull signal (PP) can be done in several ways. The polarity can be stored on the information carrier (2), and the polarity determining means (9) read the polarity from the information carrier (2). Alternatively, the polarity determining means (9) can determine the polarity by directing the tracking means (8) to operate in the first and second mode subsequently, and check in which mode the scanning-location (6) was on-track.
    • 为了跟踪信息载体(2)上的信息轨道(1),产生推挽信号(PP)。 对于不同类型的信息载体(2),推挽信号(PP)的极性是不同的。 对于具有负极性的推挽信号(PP),跟踪装置(8)的反应与具有正极性的推挽信号(PP)的反应不同。 所描述的本发明是一种通过首先确定推挽信号(PP)的极性并且将跟踪装置(8)置于第一或第二模式中来依赖于推挽信号的极性来扫描信息轨迹(1) 拉信号(PP)。 在第一模式中,追踪装置(8)对于推挽信号的反应与第二模式不同。 推挽信号(PP)的极性的确定可以以几种方式完成。 极性可以存储在信息载体(2)上,极性确定装置(9)从信息载体(2)读取极性。 或者,极性确定装置(9)可以通过指示跟踪装置(8)随后以第一和第二模式操作来确定极性,并且检查扫描位置(6)在哪个模式中是轨道上的。
    • 2. 发明申请
    • OPTICAL DATA STORAGE MEDIUM FOR WRITE ONCE RECORDING
    • 用于写入记录的光学数据存储介质
    • WO2003060895A1
    • 2003-07-24
    • PCT/IB2003/000090
    • 2003-01-16
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.TIEKE, BennoMARTENS, Hubert, C., F.
    • TIEKE, BennoMARTENS, Hubert, C., F.
    • G11B7/24
    • G11B7/007G11B7/0938G11B7/24
    • A dual-stack optical data storage medium (10) for write-once recording using a focused radiation beam (9) entering through an entrance face (8) of the medium is described. The medium comprises at least one substrate (1, 7) with present on a side thereof a first recording stack (2) named L 0 , comprising a write-once type L 0 recording layer (3) with an absorption k L0 and a second recording stack (5) named L 1 comprising a write-once type L 1 recording layer (6) with an absorption k L1 . The first recording stack L 0 has an optical reflection value R L0 and an optical transmission value T L0 and the second recording stack has an optical reflection value RL1. The first recording stack is present at a position closer to the entrance face (8) than the second recording stack. When the following conditions are fulfilled: 0.45 = T L0 = 0.75 and 0.40 = R L1 = 0.80 and k L0 L1
    • 描述了使用通过介质的入射面(8)进入的聚焦辐射束(9)进行一次写入记录的双层光学数据存储介质(10)。 介质包括至少一个衬底(1,7),其一侧上具有名为L0的第一记录堆叠(2),包括具有吸收kL0和第二记录堆叠的一次写入型L0记录层(3) 5)命名为L1,其包含具有吸收kL1的一次写入型L1记录层(6)。 第一记录堆L0具有光反射值RL0和光传输值TL0,第二记录堆具有光反射值RL1。 第一记录堆叠存在于比第二记录堆叠更靠近入口面(8)的位置。 当满足以下条件时:0.45 = TL0 = 0.75和0.40 = RL1 = 0.80,并且kL0 <0.3和kL1 <0.3,实现可以在标准DVD-ROM播放器中播放的双堆叠一次性介质。 描述满足上述条件的几种堆叠设计。
    • 4. 发明申请
    • OPTICAL DATA STORAGE MEDIUM AND USE OF SUCH MEDIUM
    • 光学数据存储介质和这种介质的使用
    • WO2003060894A1
    • 2003-07-24
    • PCT/EP2002/050001
    • 2002-11-11
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Hubert, C., F.TIEKE, Benno
    • MARTENS, Hubert, C., F.TIEKE, Benno
    • G11B7/24
    • G11B7/007G11B7/0938G11B7/24
    • An optical data storage medium (20) for recording by means of a focused radiation beam (29) is described. The radiation beam having a wavelength λ enters through an entrance face (28) of the medium during recording. The medium has a substrate (21) with a surface (24) including a guide groove with a depth g. An inverted stack of layers is present on the substrate (21) including a reflective layer (24a) with a complex refractive index ñ Mλ = n Mλ - i*k Mλ , in substantial conformity with the surface (24) of the substrate, a transparent layer (22) through which the radiation beam (29) is incident with a complex refractive index ñ Tλ = n Tλ - i*k Tλ and a recording layer (25) of a material having a complex refractive index ñ Rλ = n Rλ - i*k Rλ and having a thickness d RG in the groove portion and a thickness d RL in the portion between grooves. The recording layer is interposed between the reflective layer (24a) and the transparent layer (22). When 0.25/(3.0+ k Mλ 2 ) + 0.17 T /λ Mλ 2 ) + 0.45 and 0.2 RG - d RL )/g RG Rλ and k Rλ Rλ
    • 描述了用于通过聚焦辐射束29进行记录的光学数据存储介质20。 具有波长长度的辐射束在记录期间通过介质的入射面28进入。 介质具有基板21,基板21具有包括深度为g的导向槽的表面24。 反射层叠层存在于衬底21上,包括具有复合折射率的反射层24a,其基本上与衬底的表面24一致;辐射束29通过该透明层22入射的透明层22 具有复折射率ñTlambd= nTlambd-iastkTlambd和具有复折射率的材料的记录层25,其具有凹槽部分中的厚度dRG和凹槽之间的厚度dRL。 记录层介于反射层24a和透明层22之间。当0.25 / 3.0 + kMlambd2 + 0.17
    • 5. 发明申请
    • DUAL-STACK OPTICAL DATA STORAGE MEDIUM FOR WRITE ONCE RECORDING
    • 用于写一次记录的双层光数据存储介质
    • WO2005036536A2
    • 2005-04-21
    • PCT/IB2004/051994
    • 2004-10-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Hubert, C., F.TIEKE, BennoWOERLEE, Pierre, H.VAN DEN OETELAAR, Ronald, J., A.KOPPERS, Wilhelmus, R.
    • MARTENS, Hubert, C., F.TIEKE, BennoWOERLEE, Pierre, H.VAN DEN OETELAAR, Ronald, J., A.KOPPERS, Wilhelmus, R.
    • G11B7/00
    • G11B7/24038
    • A dual-stack optical data storage medium (10) for write-once recording using a focused radiation beam (9) having a wavelength λ of approximately 655 nm is described. The radiation beam enters through an entrance face (8) of the medium (10) during recording. The medium comprises at least one substrate (1, 7) with present on a side thereof:­ a first recording stack (6), named L0, comprising a write-once type L0 recording layer, said first recording stack L0 having an optical reflection value R L0 and an optical transmission value T L0 , a second recording stack (3), named L1, comprising a write-once type L1 recording layer, said second recording stack L1 having an effective optical reflection value R Lleff . The first recording stack (6) is present at a position closer to the entrance face (8) than the second recording stack. (3). A transparent spacer layer (4) is sandwiched between the recording stacks (3, 6). The reflection values R L0 and R L1 eff are within the following ranges: 0.12 ≤ R L0 ≤ 0.18 and 0.12≤ R L1eff ≤ 0.18 by which an improved sensitivity of the dual stack medium is achieved.
    • 描述了使用具有大约655nm的波长λ的聚焦辐射束(9)进行一次写入记录的双层光学数据存储介质(10)。 在记录期间,辐射束通过介质(10)的入射面(8)进入。 所述介质包括至少一个其一侧的基板(1,7);一个名为L0的第一记录堆叠(6),包括一次写入式L0记录层,所述第一记录堆叠L0具有光学反射值 RL0和光传输值TL0,称为L1的第二记录堆叠(3),包括一次写入型L1记录层,所述第二记录堆叠L1具有有效光反射值RLleff。 第一记录堆叠(6)存在于比第二记录堆叠更靠近入口面(8)的位置。 (3)。 透明间隔层(4)夹在记录叠层(3,6)之间。 反射值RL0和RL1 eff在以下范围内:0.12 <= RL0 <= 0.18和0.12 <= RL1eff <= 0.18,由此获得双堆叠介质的改进的灵敏度。
    • 8. 发明申请
    • DUAL-STACK OPTICAL DATA STORAGE MEDIUM AND USE OF SUCH MEDIUM
    • 双层光数据存储介质和这种介质的使用
    • WO2004055799A1
    • 2004-07-01
    • PCT/IB2003/005446
    • 2003-11-26
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Hubert, C., F.TIEKE, Benno
    • MARTENS, Hubert, C., F.TIEKE, Benno
    • G11B7/24
    • G11B7/242G11B7/24038G11B7/244G11B7/2467G11B7/2534G11B7/2578G11B7/259
    • A dual-stack optical data storage medium (10) for recording using a focused radiation beam (9) having a wavelength λ is described The beam enters through an entrance face (8) of the medium (10) during recording. The medium comprises at least one substrate (1, 7) with present on a side thereof a first recording stack (2) named L 0 , comprising a recordable type L 0 recording layer (3), said first recording stack L 0 having an optical reflection value R L0 and an optical absorption value A L0 at the wavelength λ, and a second recording stack (5) named L 1 comprising a recordable type L 1 recording layer (6), said second recording stack L 1 having an optical reflection value R L1 and an optical absorption value A L1 at the wavelength λ, and a transparent spacer layer (4) sandwiched between the recording stacks (2, 5). The second recording stack is present closer to the entrance face than the first recording stack. By fulfilling the formula A L1 ≤ 1 - R min - √(R min /R L0 ) in which formula R min is the minimum required effective optical reflection value for each recording stack full compatibility is achieved with a read only (ROM) version of the medium.
    • 描述了使用具有波长λ的聚焦辐射束(9)进行记录的双层光学数据存储介质(10)。光束在记录期间通过介质(10)的入射面(8)进入。 介质包括至少一个衬底(1,7),其一侧上具有名为L0的第一记录堆叠(2),包括可记录型L0记录层(3),所述第一记录堆叠体L0具有光学反射值RL0 和波长λ处的光吸收值AL0,以及包括可记录型L1记录层(6)的名为L1的第二记录堆叠(5),所述第二记录堆叠L1具有光反射值RL1和光吸收值AL1 波长λ和夹在记录叠层(2,5)之间的透明间隔层(4)。 第二记录堆叠比第一记录堆叠更靠近入口面。 通过满足其中公式Rmin是每个记录堆叠的最小所需有效光学反射值的公式AL1 <= 1-Rmin-√(Rmin / RL0),完全兼容性是用介质的只读(ROM)版本实现的。
    • 9. 发明申请
    • CONNECTOR FOR ELECTRONIC DEVICE
    • 电子设备连接器
    • WO2010055452A1
    • 2010-05-20
    • PCT/IB2009/054959
    • 2009-11-09
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Hubert, C., F.
    • MARTENS, Hubert, C., F.
    • H01R24/02
    • A61N1/3752H01R12/75H01R2107/00H01R2201/12
    • A connector (10, 30, 40) is provided for coupling an electronic circuit (11) of an electronic device to sensor and/or actuation elements (12) of the electronic device. The connector (10, 30, 40) comprises at least one connection surface (21) with i connection points (13), the i connection points (13) comprise j primary connection points (13) for coupling the electronic circuit (11) to j corresponding ones of the elements (12), and k redundant connection points (13) for redundantly coupling the electronic circuit (11) to at least one of the elements (12). The primary and the redundant connection points (13) for the at least one of the elements (12) are distributed over the connection surface (21).
    • 提供连接器(10,30,40),用于将电子设备的电子电路(11)耦合到电子设备的传感器和/或致动元件(12)。 连接器(10,30,40)包括具有i个连接点(13)的至少一个连接表面(21),i个连接点(13)包括j个主要连接点(13),用于将电子电路(11)耦合到 j个对应的元件(12)和k个用于将电子电路(11)冗余地耦合到元件(12)中的至少一个的冗余连接点(13)。 元件(12)中的至少一个元件的主要和冗余连接点(13)分布在连接表面(21)上。