Contactless Power Supply for Layer Layer-Selection Selection-Type Recordable Multi Multi-Layer Optical Disk

Y. Fujita, A. Hirotsune, E. Amano
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We showed that a pe tsansmitted electsical power to a mtabng disk and changed the optical reflectivity of an LS-R Multi-Layer Optical Disk without wy contmthg mechamm 2. ~ O f ~ ~ P o w e r s u p p ~ m l s h ows our design of a power supply system for an IS-R Multihyer O p t i d D~sk. This system has two special features. One is a contachs power supply mthat transmits power h m an irrotational to a rotational body The purpose is to supply stable elechic power with sdkient ~liability. Another feature is a muhchannel voltage generator, whlch supplies voltage to each layer of a disk through a multi-pin comxtor. The purpose is to minimize the number of power channels between a drive base and a hub. In thls study we investigated the hst featw, a new Power supply mechanism. Table 1 shows target spdcations of the power supply mechamm. These electrical spe&mtiom WPSC! m m l d hy a previous =port, of an LC-R Multi-hyer @tical Disk [S]. The mechanical speulication should mahtmn mechanical compatbility between a new drive and former dnves so as to use the same form hetor of an o p t d h k . We investgated the mechanical structure of mnventional DVD dnves ancl mncluded that the diameter of a hub d10ulcl be within 30 mm to keep the same smke of an optical pickup. Table 2 shows a amparison of power supply designs from an imtational to a rotational body Rotary transformer^ are widely used to transmit power and slgnaLs to the rotary head of a 0-7803-9494-1/06/$20.00©2006 IEEE MP31 16:00 – 18:30 video tape reoorder, so such products have already proven the ~ h b i l i t y of mtary transformers. The power of an electric generator is pmportional to the mtation speed of the hub, so the generating power is unstable when the rotation speed is varied. The contacting mechanism uses a conductive bearing or a conductive shaff edge. However, these produce unstable contachng ~sistance bmuse the contacting area is gradually d m & during disk rotation due to the surface oxidation The~fore, a contactless mechanism with rotary transformers is the best solution Figure 2 shows the equivalent circuit of a contactless power supply mechanism. A 100 KHz AC power source V, is added to the rotary transformer of the stator side and a voltage Vnd is i n d u d in the rotary tramformer of the rotor side. The bridge diode generates a rectified voltage V&&, which is added to the load of each layer of the dkk. 3. Retfillts of Prototype Figure 3 shows a cornparkan between a previous prototype 111 and our prototype. The previous prototype consisb of 6 array conductive ball bearings. Each bearing forms a conductive path to each layer The pmblems with this mechanism a R that it has an unstable contacting resistance and q u i m increased space for the multiple ball bearings. Our prototype can solve these problems. The voltage a t each layer is stable because the resistance of the transformers is stable during disk rotation The size of the transformers can be the same even if the number of layers is increased because they use a multichannel voltage generator We obtained the following mults and satisfied the target specifications described in Table 1. (1) Voltage of the rotatingdisk: max 5 [V] O Current of the rotating disk: max 5 [d (3) Rotating sped of the disk: 0 6000 [rpml (4) Diameter of t,he hub: 30 [mml The thickness of this mechanism is within 41.2 mm, which meets the mechanical standard of a desktop personal computer. 4. Conclusion Using rotary transformers, we developed a contactless power supply mechanism for a Layerselection-Qpe Recordable Multi-Layer Optical Disk. This method provides stable resistance during disk rotation and requires minimum space for the power supply mechani-m Our prototype transmitted sficient electrical power to the rotating disk and confmned the feasibility of a contactless power supply 5. Referem 111 K Kojima and M. Rrao, \"Investigation into Reconling on Electmhromic Information Layers of MultiInformation-Layer Optical DL-k Using Electrical Layer Selection\" Jpn J. Appl. Phys. Vol. 43, No. 10 (20041, pp. 7058. 121 A. Himtsune, M. Mukoh, and M. Terao, \"LayerSelection-me Recordable Optical Disk with Inorganic ElechochromicFilm, \" Jpn J. Appl. Phys. Vol. 45 No. 2 B (2006), pp. 1235. 131 M. Mukoh A Hirotme, T. Maetla, and M. Terao, \"LayerSe1ectiodl)pe Recolrlable Optical Dkk with Inorganic Electsochromic DoubleDecker S t r u c t w \" F'mmlhgof PCOS 2005, pp. 70. Irrotational Body Rotational M y I I . . I Multi-Channel Multi-Pin supply Voltage Connector Generator I I Mechanism I \\ ~ r i h e Base ~ \\ u b LS-R* Multi-Layer Optical Disk * LS-R: Layer-Seledion-Type Recordable Fig. 1 Power Supply System for LS-R* Multi-Layer Optical Disk Table 1 Target Specifications of Power Supply Mechanism Table 2 Comparison of Power Supply Designs Item SpecIfkathn Voltage [V] 2 5 Electrical Load Resistance ! Layer @cL4] 1 C m t / Layer [m A] 2 5 P o w / Layer [m W] 4-25 Mechanical Diamctw of Hub [mm] --30 Concept Candidate Main Problem Rnnklng contaotlcas Rotary T r a n s f o ~ ~ Hish Mechanism Electric Generator Unstable Generating Power LOW cm~tin8 Conductive Bearing Low Unstable Contacting Resistance Low Rotary Transformer Rotary Transformer I Fig. 2 Equivalent Circuit of Contactless Power Supply Mechanism / I Controlling Contaoting Power Swply ! Circuit Using 6 Array Ball b r i n g I ' :,,,,,,,,,,,,,,,,,,------------------I : (a) Previous Prototype I I Multi-Channel Voltage Generator ! I / I","PeriodicalId":332569,"journal":{"name":"2006 Optical Data Storage Topical Meeting","volume":"24 3","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2006-06-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2006 Optical Data Storage Topical Meeting","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ODS.2006.1632782","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2

Abstract

Using mtary transformers, oontactless power is supplied to the drive mechanism of a LayerSelwhn-Qpe Recordable Multi-Layer Optical Disk. The prntntypc! tmmmits ~uE6cic!nt, P~&C pmer tn a mt~tjng disk. 1. M e n The LayerSelectio~rType Recordable U-Rl Multi-Layer Optical Dlsk is one of the best post-Blu-ray Disc tehmlog~es that wdl have a capacity of up to a terabyte per disk [I, 21. Ths optical dLsk needs electrical power to change the optid reflectivity of an electm chromic layer for layer selection We developed a contactless mechanism that can supply electrical power h m the dnve base to the rotational body and the M. We showed that a pe tsansmitted electsical power to a mtabng disk and changed the optical reflectivity of an LS-R Multi-Layer Optical Disk without wy contmthg mechamm 2. ~ O f ~ ~ P o w e r s u p p ~ m l s h ows our design of a power supply system for an IS-R Multihyer O p t i d D~sk. This system has two special features. One is a contachs power supply mthat transmits power h m an irrotational to a rotational body The purpose is to supply stable elechic power with sdkient ~liability. Another feature is a muhchannel voltage generator, whlch supplies voltage to each layer of a disk through a multi-pin comxtor. The purpose is to minimize the number of power channels between a drive base and a hub. In thls study we investigated the hst featw, a new Power supply mechanism. Table 1 shows target spdcations of the power supply mechamm. These electrical spe&mtiom WPSC! m m l d hy a previous =port, of an LC-R Multi-hyer @tical Disk [S]. The mechanical speulication should mahtmn mechanical compatbility between a new drive and former dnves so as to use the same form hetor of an o p t d h k . We investgated the mechanical structure of mnventional DVD dnves ancl mncluded that the diameter of a hub d10ulcl be within 30 mm to keep the same smke of an optical pickup. Table 2 shows a amparison of power supply designs from an imtational to a rotational body Rotary transformer^ are widely used to transmit power and slgnaLs to the rotary head of a 0-7803-9494-1/06/$20.00©2006 IEEE MP31 16:00 – 18:30 video tape reoorder, so such products have already proven the ~ h b i l i t y of mtary transformers. The power of an electric generator is pmportional to the mtation speed of the hub, so the generating power is unstable when the rotation speed is varied. The contacting mechanism uses a conductive bearing or a conductive shaff edge. However, these produce unstable contachng ~sistance bmuse the contacting area is gradually d m & during disk rotation due to the surface oxidation The~fore, a contactless mechanism with rotary transformers is the best solution Figure 2 shows the equivalent circuit of a contactless power supply mechanism. A 100 KHz AC power source V, is added to the rotary transformer of the stator side and a voltage Vnd is i n d u d in the rotary tramformer of the rotor side. The bridge diode generates a rectified voltage V&&, which is added to the load of each layer of the dkk. 3. Retfillts of Prototype Figure 3 shows a cornparkan between a previous prototype 111 and our prototype. The previous prototype consisb of 6 array conductive ball bearings. Each bearing forms a conductive path to each layer The pmblems with this mechanism a R that it has an unstable contacting resistance and q u i m increased space for the multiple ball bearings. Our prototype can solve these problems. The voltage a t each layer is stable because the resistance of the transformers is stable during disk rotation The size of the transformers can be the same even if the number of layers is increased because they use a multichannel voltage generator We obtained the following mults and satisfied the target specifications described in Table 1. (1) Voltage of the rotatingdisk: max 5 [V] O Current of the rotating disk: max 5 [d (3) Rotating sped of the disk: 0 6000 [rpml (4) Diameter of t,he hub: 30 [mml The thickness of this mechanism is within 41.2 mm, which meets the mechanical standard of a desktop personal computer. 4. Conclusion Using rotary transformers, we developed a contactless power supply mechanism for a Layerselection-Qpe Recordable Multi-Layer Optical Disk. This method provides stable resistance during disk rotation and requires minimum space for the power supply mechani-m Our prototype transmitted sficient electrical power to the rotating disk and confmned the feasibility of a contactless power supply 5. Referem 111 K Kojima and M. Rrao, "Investigation into Reconling on Electmhromic Information Layers of MultiInformation-Layer Optical DL-k Using Electrical Layer Selection" Jpn J. Appl. Phys. Vol. 43, No. 10 (20041, pp. 7058. 121 A. Himtsune, M. Mukoh, and M. Terao, "LayerSelection-me Recordable Optical Disk with Inorganic ElechochromicFilm, " Jpn J. Appl. Phys. Vol. 45 No. 2 B (2006), pp. 1235. 131 M. Mukoh A Hirotme, T. Maetla, and M. Terao, "LayerSe1ectiodl)pe Recolrlable Optical Dkk with Inorganic Electsochromic DoubleDecker S t r u c t w " F'mmlhgof PCOS 2005, pp. 70. Irrotational Body Rotational M y I I . . I Multi-Channel Multi-Pin supply Voltage Connector Generator I I Mechanism I \ ~ r i h e Base ~ \ u b LS-R* Multi-Layer Optical Disk * LS-R: Layer-Seledion-Type Recordable Fig. 1 Power Supply System for LS-R* Multi-Layer Optical Disk Table 1 Target Specifications of Power Supply Mechanism Table 2 Comparison of Power Supply Designs Item SpecIfkathn Voltage [V] 2 5 Electrical Load Resistance ! Layer @cL4] 1 C m t / Layer [m A] 2 5 P o w / Layer [m W] 4-25 Mechanical Diamctw of Hub [mm] --30 Concept Candidate Main Problem Rnnklng contaotlcas Rotary T r a n s f o ~ ~ Hish Mechanism Electric Generator Unstable Generating Power LOW cm~tin8 Conductive Bearing Low Unstable Contacting Resistance Low Rotary Transformer Rotary Transformer I Fig. 2 Equivalent Circuit of Contactless Power Supply Mechanism / I Controlling Contaoting Power Swply ! Circuit Using 6 Array Ball b r i n g I ' :,,,,,,,,,,,,,,,,,,------------------I : (a) Previous Prototype I I Multi-Channel Voltage Generator ! I / I
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层选择式可记录多层光盘的非接触式电源
采用军用变压器为LayerSelwhn-Qpe可记录多层光盘的驱动机构提供非接触式电源。prntntypc !tmmmits ~ uE6cic !nt, P ~明目点tn太~ tjng磁盘。1. 分层选择型可记录U-Rl多层光学Dlsk是最好的后蓝光光盘技术之一,每个磁盘的容量可达1tb[1,21]。该光学光盘需要电力来改变电致变色层的光反射率,以进行层的选择。我们开发了一种非接触式机构,可以向旋转体和m提供电源。我们展示了一种将电力传输到光盘,改变LS-R多层光盘的光反射率,而无需任何连接机制2。本文介绍了一种IS-R型多层O - P电源系统的设计。该系统有两个特点。一种是接触式电源,它以旋转的方式向旋转体传输电力,其目的是提供稳定的电力,并具有一定的负载。另一个特点是多通道电压发生器,它通过一个多引脚的互感器向磁盘的每一层提供电压。目的是尽量减少动力通道的数量之间的驱动基地和枢纽。在这项研究中,我们研究了一种新的电源供电机制。供电机构的目标分布如表1所示。这些电气规格和WPSC!llc - r多层磁盘的前一个端口[S]。机械推测应计算新驱动器与旧驱动器之间的机械兼容性,以便使用相同形式的驱动器或驱动器。我们研究了传统DVD拾音器的机械结构,并确定轮毂直径应在30毫米以内,以保持与光学拾音器相同的烟雾。旋转变压器^广泛用于向0-7803-9494-1/06/$20.00©2006 IEEE MP31 16:00 - 18:30视频磁带重录的旋转头传输功率和信号,因此此类产品已经证明了军用变压器的优点。发电机的功率与轮毂的转动速度成正比,当转速变化时,发电机的发电功率不稳定。接触机构采用导电轴承或导电轴边。然而,这些产生不稳定的接触电阻,因为在磁盘旋转过程中,由于表面氧化,接触面积逐渐减小,因此,带旋转变压器的非接触机构是最佳解决方案。图2显示了非接触电源机构的等效电路。在定子侧旋转变压器上加100khz交流电源V,在转子侧旋转变压器上加电压Vnd。桥式二极管产生整流电压V&&,该电压加到dkk每层的负载上。3.图3显示了之前的原型111和我们的原型之间的对比。之前的原型由6个阵列导电球轴承组成。每个轴承形成一个导电路径到每一层,这种机制的问题是,它有一个不稳定的接触电阻,并为多个球轴承增加了空间。我们的原型可以解决这些问题。由于变压器使用多通道电压发生器,即使增加层数,变压器的尺寸也可以保持不变,因此每层的电压都是稳定的,因为变压器在磁盘旋转过程中电阻是稳定的。我们得到了以下多路变压器,并满足表1所述的目标规格。(1)转盘电压:最大5 [V] O转盘电流:最大5 [d](3)转盘转速:0 6000 [rpm)(4)轮毂直径:30 [mm)本机构厚度在41.2 mm以内,满足台式个人电脑的机械标准。4. 结论利用旋转变压器,我们开发了一种用于层选择型可记录多层光盘的非接触供电机制。这种方法在磁盘旋转时提供稳定的电阻,并且对供电机构的空间要求最小。我们的原型向旋转的磁盘传输了有效的电能,并证实了非接触式电源的可行性。[11] [K . Kojima, M. Rrao],“基于电层选择的多信息层光学DL-k的电信息层测量研究”,中国光学学报。理论物理。第43卷第10期(20041年),第7058页。121 A。Himtsune, M. Mukoh和M. Terao,“用无机电致变色薄膜层选择可记录光盘”,Jpn J. applied。理论物理。第45卷第2期B(2006),第1235页。131 M. Mukoh A hirome, T. Maetla, M.。
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