WO2014044060A1 - 一种基于分置式电路设计方法 - Google Patents

一种基于分置式电路设计方法 Download PDF

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WO2014044060A1
WO2014044060A1 PCT/CN2013/076830 CN2013076830W WO2014044060A1 WO 2014044060 A1 WO2014044060 A1 WO 2014044060A1 CN 2013076830 W CN2013076830 W CN 2013076830W WO 2014044060 A1 WO2014044060 A1 WO 2014044060A1
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Prior art keywords
smart card
chip
sim
sim smart
integrated design
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PCT/CN2013/076830
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English (en)
French (fr)
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方科峰
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Fang Kefeng
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Publication of WO2014044060A1 publication Critical patent/WO2014044060A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3816Mechanical arrangements for accommodating identification devices, e.g. cards or chips; with connectors for programming identification devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0264Details of the structure or mounting of specific components for a camera module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • H04M1/0268Details of the structure or mounting of specific components for a display module assembly including a flexible display panel

Definitions

  • the present invention relates to a method based on a split circuit design.
  • the applicant's "network-enabled seat” (Chinese Patent No. ZL200520098476.X), "Digital Traffic System” ( China Patent No. ZL200710051230.0), Mobile Digital IP Information Platform (Chinese Patent No. ZL200810046637.9)
  • the SIM smart card related circuit design with user identity information involved in the patent is limited to the authority authentication and network use conditions of the seat used for the network function, and does not have the function of universal hardware replacement.
  • the present invention is directed to the above state of the art and aims to provide a It can be applied to the use of various personal electronic products under existing hardware conditions, so that circuits that are incompatible with each other are replaced by circuit-based replacement.
  • the implementation of the object of the present invention is: a split-type circuit design method, the integrated design of the bottom surface of the input and output display end of the guide groove and the integrated design of the upper surface of the power supply layer guide groove constitute the SIM smart card propulsion cavity;
  • the input and output display surface of the integrated design is a physical keyboard, a virtual keyboard, or a camera camera;
  • the SIM smart card has a guide groove corresponding to the guide groove of the propulsion chamber on the bottom, SIM smart card
  • the antenna is placed in the upper guiding slot; the corresponding circuit board substrate of the SIM smart card is connected with the relevant chip through the bus; the SIM smart card push end has a thrust;
  • the integrated design power layer has thin film solar cells and/or lithium battery boards, and the lower part of the lithium battery board has a voltage regulator. External power supply interface; the lower part of the thin film solar cell has a voltage regulator and an external power supply interface.
  • the integrated design power layer has a thin film solar cell and an external power interface.
  • the SIM smart card of the invention has upper and lower The bottom surface guide groove of the input and output display end of the integrated design, the corresponding guide groove of the upper surface guide groove of the integrated power supply layer, the upper guide groove is placed with the antenna, and the lower guide groove functions as a power switch, and supplies power to the connected components through the bus.
  • the push chamber of the SIM smart card designed by the invention The guide slot can be used in circuit design of various electronic products, such as computers, notebook computers, tablet computers, PDAs, mobile phones, handheld game devices, cameras, cameras, etc. under existing hardware conditions, to improve mutual incompatibility, Achieve universal replacement of circuits.
  • Figure 1 is a schematic view of the structure of the present invention
  • FIG. 2 is a schematic structural view of the top surface of the input and output display end of the integrated design
  • Figure 4 is a state diagram of the AMOLED flexible display package
  • Figure 5 is a schematic diagram of the structure of the output display end
  • FIG. 6 is a schematic structural view of an AMOLED flexible display screen
  • FIG. 7 is a schematic structural diagram of a SIM smart card
  • FIG. 8 is a schematic structural view of a power supply layer of an integrated design
  • Figure 9 is a schematic view showing the structure of a solar thin film battery.
  • the present invention The guide groove 32 on the bottom surface of the input and output display end 3 of the integrated design and the guide groove 32 on the upper surface of the power supply layer 4 of the integrated design form the propulsion chamber 1 of the SIM smart card 2,
  • the SIM smart card 2 is pushed in from the propulsion chamber, and its thrust end 33 is pushed to limit its advancement position.
  • the input and output display surface of the integrated design is the physical keyboard shown in Figure 2.
  • the output display end is made up of prefabricated components.
  • the keyboard 21 and related circuits, the projector and the circuit assembly 9 are configured to realize an integrated design of the input and output display end and the display output of the projection imaging 10.
  • the integrated design of the input and output display surface is virtual
  • the keyboard see Figure 2
  • the output display end of the integrated design is composed of a prefabricated member guard plate 25 and an AMOLED flexible display screen 22 (see Figure 5).
  • the real-time scene selection of the camera camera 8 is displayed on the bottom surface of the AMOLED flexible display screen 22.
  • the integrated design of the input and output display surface has a camera camera to display the real-time self-timer selection of the camera camera 8.
  • the input and output display surface of the integrated design is the physical keyboard 21 and/or has the display camera camera 8 .
  • the integrated design of the input and output display surface is a virtual keyboard and / or has a display camera camera 8 ,
  • the input and output display end of the integrated design consists of a prefabricated member guard plate 25, an AMOLED flexible display 22 and/or a display camera camera 8
  • the keyboard images the display of the AMOLED flexible display 22.
  • Projection parameters of the projector and circuit assembly 9 are as follows: the projection distance is not less than 50 ⁇ 60 cm, not more than 80 ⁇ 120 cm; the resolution of the development effect is 1366*768; the lumen is 600 ⁇ 1800.
  • the SIM smart card 2 has two corresponding grooves or convex grooves 32 thereon, and the antenna 6 is placed in the two grooves or the convex grooves 32 of the SIM smart card 2.
  • Guide groove 32 on the upper surface of the power layer 4 of the integrated design A convex groove, a groove, a corresponding groove and a convex groove on the SIM smart card 2, by the SIM smart card 2
  • the insertion enables the conduction of the power supply and acts as a power switch. And the above components are powered by the bus 5, and the data exchange of the above components is realized.
  • SIM The corresponding circuit board substrate I of the smart card is connected to the SIM smart card of the user identity information via the bus 5, the communication radio frequency chip D, the baseband chip specification module E, the IC sensor chip F, the micro processor G, the antenna 6, the standard interface H, the multi-directional Gyro J, light sensor K, GPS or Beidou chip L, radio circuit M, power switch V, backup power W, charging chip X, power amplifier N, image chip O, electromagnetic shielding layer P, speaker Q, SIM card slot or integrated SIM card R, vibration motor S, button and interface T, sound tube U.
  • the SIM card of the SIM smart card Or the SIM card of the SIM smart card, the communication radio chip D of the SIM smart card with the user identity information, the baseband chip specification module E, the antenna 6, the SIM card slot or the integrated SIM card R.
  • the corresponding circuit board substrate I of the SIM smart card is connected with a microprocessor G, a standard interface H, a power switch V, a backup power source W, and a charging chip X through a bus.
  • the corresponding circuit board substrate I of the SIM smart card is connected to the IC sensor chip F, the power amplifier N, and the image chip through the bus. O, button and interface T, sound tube U.
  • the technical integration of the above-mentioned communication RF chip D and the baseband chip specification module E, the single chip design has the technical application possibility.
  • the integrated design of the IC sensor chip F and the microprocessor G, and even the integration of the IC sensor chip F, the microprocessor G, the communication RF chip D, and the baseband chip specification module E into a single chip are possible. Improvements in technology, the integration of component chip functions leads to the omission of non-innovative elements, and should not be considered as the The conflict of complete and comprehensive coverage principles.
  • Multi-directional gyroscope J light sensor K, GPS or Beidou chip L, radio circuit M, amplifier N, image chip O, speaker Q, vibration motor S, button and interface T, the sound tube U is only an option for technical choice, not an essential element of practical application.
  • SIM smart card 2 Guide working wireless band A, 1.25mhz, 5 via antenna 6 Mhz standard separate carrier B to communication base station network C.
  • AMOLED One end of the flexible display 22 is fixed on the top surface of the input and output display end of the integrated design, the other end has a buckle 7 , and the projector and the circuit assembly 9 are covered with a buttonhole 31 .
  • the buckle 7 is fastened to the grommets 31, and the form shown in FIG.
  • the virtual keyboard is the display image of the AMOLED flexible display 22 , or a partial physical keyboard 21 design.
  • the real-time scene selection of the camera camera 8 is displayed on the bottom surface of the AMOLED flexible display 22 to the integrated design power layer structure; real-time call imaging is displayed on the upper surface of the integrated design of the input and output display end 3 of the integrated design of the AMOLED flexible display 22 effect.
  • the input/output display terminal 3 of the integrated design is composed of a physical keyboard 21 or a virtual keyboard.
  • the AMOLED flexible display 22 and the prefabricated member guard plate 25 are formed.
  • the printed circuit board local bus 24 of the camera camera 8 is mounted on the top surface of the prefabricated member guard plate 25, and the printed circuit board local bus 24 and the cable 23 of the camera camera 8 are provided.
  • the projector and circuit assembly 9 are disposed on the front side of the prefabricated member guard panel 25.
  • Projection imaging 10 is produced by a physical keyboard or virtual keyboard, projector, and circuit components.
  • the guide groove on the bottom surface of the output display end 3 is at the bottom of the prefabricated member guard plate 25.
  • the upper and lower layers of the AMOLED flexible display are respectively an upper substrate display 18, a substrate and a driving circuit unit 20, and an OLE coating 19 is disposed between the two layers.
  • the flexible display screen 22 is connected to the cable 23 by the base and the driving circuit unit 20.
  • the cable 23 is provided to the keyboard or virtual keyboard of the input/output display terminal 3 of the integrated design, the projector and the circuit assembly 9, and the AMOLED flexible display 22
  • the base and drive circuit unit 20, the printed circuit board local bus 24 of the camera camera 8 are powered, and connected to the SIM smart card 2, respectively implementing camera and camera functions to enable exchange of data control commands.
  • the OLE coating 19 (see FIG. 6) is correspondingly adjusted to resemble a liquid crystal body having an anode cathode charge sensing, and a corresponding emissive layer, a conductive layer structure substrate, and a driving circuit unit 20 to increase the backlight layer display.
  • the circuit board communication RF chip D and the baseband chip specification module E select a chip suitable for the following communication standards: the communication standard is TD-SCDMA, TD-SCDMA to HSPA, TD MBMS to TDD LTE, WCDMA, HSDPA, CDMA2000 1 ⁇ EV-DO, UMB, UWB, Wimax 802.16 d ⁇ e ⁇ m, LTE ⁇ SAE, Wapi, compatible with Wlan Wifi 802.11b ⁇ g ⁇ n ⁇ aq, Mimo Ofdm, IGRS technology, Bluetooth support Bluetooth 4.0+EDR+A2DP or McWiLL.
  • the communication standard is not limited to the above existing communication standards, and continues the adaptability selection of the corresponding subsequent standards.
  • Microprocessor G is suitable for the following DSP, CPU or GPU, APU RISC architecture, ARM or x86 architecture, quantum or photonic CPU technology options. Throughout the technological development of microprocessors, there has been a convergence of technologies:
  • the South Bridge chip intends to build the WiFi function into the semiconductor chip.
  • the development direction of the South Bridge chip is mainly to integrate more functions, such as network card, RAID, IEEE1394, and even WI-FI wireless network. IT and communication chip fusion design.
  • optical communication chip the invention of graphene chip makes the network development hardware have an unknown change, the technical progress is only the standard reference.
  • a large-capacity ROM 26 is packaged in the IC sensing chip F.
  • Large capacity ROM 26 is composed of a built-in browser 27, a SIM smart card production serial number 28, a personal information password setting 29, and a self-encrypting program 30.
  • SIM smart card leads the working radio band A, 1.25mhz, 5 mhz standard individual carrier B via antenna 6 To the communication base station network C.
  • the working frequency band A is 400mhz, 450 ⁇ 470mhz, 698mhz ⁇ 806mhz, 900 mhz, 1110mhz, 1800 mhz, 1900mhz, 2100mhz, 2300 ⁇ 2400mhz, 2500 ⁇ 2690mHz, 3300mhz 3400 ⁇ 3600mhz, 3650-3700MHz.
  • the integrated design power layer has thin film solar cells and/or Lithium battery board, the lower part of the lithium battery board has a voltage regulator and an external power supply interface; the lower part of the thin film solar battery has a voltage regulator and an external power supply interface;
  • the integrated design power layer has a thin film solar cell and an external power interface.
  • the power layer 4 of the integrated design has a thin film solar cell 14 and a lithium battery panel 11, and a lithium battery panel 11 has a voltage regulator 12 at the lower portion thereof. , external power supply interface 13.
  • the external power supply interface 13 is externally connected to the mains, and the lithium battery panel 11 is connected in series through the voltage regulator 12 as a working power source or as a long-term application power source.
  • the lithium battery panel 11 is used as a main power source, and the power switch constructed by the bottom surface of the SIM smart card circuit board and the integrated power supply layer upper surface guide groove is connected with the charging chip and the backup power source on the SIM smart card.
  • the power switch V is activated, and the SIM smart card associated component is used to ensure power supply through the bus, and the keyboard or virtual keyboard, the projector and the circuit component of the input and output display end, the base of the AMOLED flexible display, and the integrated design are input and output through the cable.
  • the upper and lower layers of the thin film solar cell 14 are respectively an upper layer material 17
  • the solar substrate plate 15 has an EVA intermediate coating 16 between the two layers by P/N positive and negative electron capture technology.
  • the thin film solar cell 14 is connected to the voltage regulator 12 and the lithium battery panel 11, and the thin film solar cell can be used as a backup power source.
  • the upper layer material 17 is a white glass or a transparent film.
  • the solar substrate plate 15 is a glass plate, an opaque film or a metal plate.

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Abstract

一种基于分置式电路设计方法。一体化设计的输入输出显示端的底面导槽与一体化设计的电源层上表面导槽构成SIM智能卡的推进腔,一体化设计的输入输出显示端顶面或有展示相机摄像头,正面有投射仪及电路组件;投射仪及电路组件与一体化设计的输入输出显示端表面的实体键盘或由AMOLED柔性显示屏的虚拟键盘显示成像,实现投射成像的显示输出。SIM智能卡上、下面有与推进腔导槽对应的导槽,上面导槽放置天线,下面导槽起电源开关作用,并通过总线给所连部件供电,实现部件的数据交换。该SIM智能卡的推进腔及导槽,可在现有硬件条件下,应用于电脑、笔记本电脑、平板电脑、手机等的电路设计中,改进彼此的不兼容,实现电路通用化替换。

Description

一种基于分置式电路设计方法
技 术 领 域 : 本发明涉及一种基于分置式电路设计方法。
背 景 技 术
通常硬件的发展,超出使用的需求,一方面需要对现有软件、硬件革新,一方面需要有新的软硬件替代产品。工艺制程、总线标准、材料的改进促进了硬件的发展,却导致现有应用硬件不兼容,因现有的硬件只能局限于单一产品使用,使硬件载体不能共用。针对这一现状,实现电路部件通用化,满足使用功能的要求成为必要。
现有的个人电子用品有:电脑、笔记本电脑、平板电脑、PDA、手机、手持游戏设备、摄影机、照相机等等。
本申请人的《有网络功能的座椅》(中国专利号 ZL200520098476.X)、《数字交通系统》 ( 中国专利号 ZL200710051230.0) 、《移动交通数字 IP 信息平台》(中国专利号 ZL200810046637.9) 专利中所涉及的有使用者身份信息的 SIM 智能卡相关电路设计,仅局限于使用于有网络功能的座椅的权限认证和网络使用条件,不具有通用硬件替换的功能。
发明内容
本发明 的目的是针对上述现状,旨在提供一种 可在现有硬件条件下,应用于各种个人电子用品的使用中,使彼此不兼容替换的电路通过基于分置式电路设计实现电路兼容替换。
本发明目的的实现方式为,一种基于分置式电路设计方法,一体化设计的输入输出显示端的底面的导槽与一体化设计的电源层上表面的导槽构成SIM智能卡的推进腔;
一体化设计的输入输出显示端表面 为实体 键盘、 虚拟 键盘,或有 展示相机摄像头 ;
SIM 智能卡上、下面有与推进腔导槽对应的导槽, SIM智能 卡 上面的导槽内放置天线;SIM智能卡相应电路板基板通过总线分接有相关芯片;SIM智能卡推进末端有止推;
一体化设计电源层有薄膜太阳能电池 和/或 锂电池板,锂电池板下部有稳压器 、 外置电源接口;薄膜太阳能电池下部有稳压器和外置电源接口,
或一体化设计电源层有薄膜太阳能电池和外置电源接口。
本发明的 SIM 智能卡上、下有与 一体化设计的输入输出显示端的底面导槽、一体化设计的电源层上表面导槽相应的导槽,上面导槽放置天线,下面导槽起电源开关作用,并通过总线给所连部件供电,实现部件的数据交换。 本发明所设计的 SIM 智能卡的推进腔及 导槽,可在现有硬件条件下,应用于各种电子产品,如电脑、笔记本电脑、平板电脑、PDA、手机、手持游戏设备、摄影机、照相机等的电路设计中,改进彼此的不兼容,实现电路通用化替换。
附 图 说 明
图1是本发明的结构示意图,
图2是一体化设计的输入输出显示端顶面结构示意图,
图3是AMOLED柔性显示屏展开状态图,
图4是AMOLED柔性显示屏包覆状态图
图5是输出显示端结构示意图,
图6是AMOLED柔性显示屏结构示意图,
图7是SIM智能卡结构示意图,
图8是一体化设计的电源层结构示意图,
图9是太阳能薄膜电池结构示意图。
具体实施方式
参照图1,本发明的 一体化设计的输入输出显示端3的底面的导槽32与一体化设计的电源层4上表面的导槽32构成SIM智能卡2的推进腔1, SIM智能卡2自推进腔推入,其推进末端的止推33,限制了其推进位置。
一体化设计的输入输出显示端表面有五种情况:
1 、一体化设计的输入输出显示端表面 为图2所示的实体 键盘,输出显示端由预制构件护座板25、 实体 键盘21及相关电路,投射仪及电路组件9构成,实现一体化设计的输入输出显示端与投射成像10的显示输出。
2 、一体化设计的输入输出显示端表面 为虚拟 键盘(见图2),一体化设计的输出显示端由预制构件护座板25、AMOLED柔性显示屏22构成(见图5) ,在AMOLED柔性显示屏22的底面展示相机摄像头8的实时选景。
3 、一体化设计的输入输出显示端表面有 展示相机摄像头, 展示相机摄像头8的实时 自拍 选景。
4 、 一体化设计的输入输出显示端表面 为实体 键盘21和/或有 展示相机摄像头 8 。
5 、 一体化设计的输入输出显示端表面 为虚拟 键盘和/或有 展示相机摄像头 8 , 一体化设计的输入输出显示端由预制构件护座板25、AMOLED柔性显示屏22 和/或有展示相机摄像头8 构成, 虚拟 键盘为AMOLED柔性显示屏22的显示成像。
投射仪及电路组件9投射技术参数如下:投射距离不小于50~60公分,不大于80~120公分;显像效果分辨率1366*768;流明600~1800。
参照图1、7,一体化设计的输入输出显示端3的底面的导槽 32 为两凸槽或凹槽,SIM智能卡2上面有与之对应的两凹槽或凸槽 32 ,SIM智能卡2的两凹槽或凸槽 32 内放置天线6。一体化设计的电源层4上表面的导槽 32 为一凸槽,一凹槽,SIM智能卡2下面有与之对应的一凹槽、一凸槽,由SIM智能卡 2 的插进实现电源的导通,起电源开关作用。并通过总线5给上述部件供电,并实现上述部件的数据交换。
SIM 智能卡相应电路板基板I通过总线5分接有使用者身份信息的SIM智能卡的通讯射频芯片D、基带芯片规范模块E、IC感应芯片F、微型处理器G、天线6、标准接口H、多向陀螺仪J、光感识别仪K、GPS或北斗芯片L、收音机电路M,电源开关V、后备电源W、充电芯片X、功放N、图像芯片 O、电磁屏蔽层P、喇叭Q、SIM卡槽或集成SIM卡R、震动马达S、按键及接口T、音筒U。
或SIM智能卡相应电路板基板I通过总线分接有使用者身份信息的SIM智能卡的通讯射频芯片D、基带芯片规范模块E、天线6、SIM卡槽或集成SIM卡R。
或SIM智能卡相应电路板基板I通过总线分接有微型处理器G、标准接口H、电源开关V、后备电源W、充电芯片X。
SIM 智能卡相应电路板基板I通过总线分接有IC感应芯片F、功放N、图像芯片 O、按键及接口T、音筒U。
上述通讯射频芯片D、基带芯片规范模块E的技术整合,单芯片设计已有技术应用可能。IC感应芯片F、微型处理器G的一体化设计,甚至IC感应芯片F、微型处理器G、通讯射频芯片D、基带芯片规范模块E整合为单芯片,皆有可能。技术的改进,出现部件芯片功能整合导致非创新的要素省略,不应视为对本发明的 完整 全面 覆盖原则的冲突。多向陀螺仪J,光感识别仪K,GPS或北斗芯片L,收音机电路M, 功放N,图像芯片 O,喇叭Q,震动马达S,按键及接口T,音筒U只是作为技术选择的一种选项,而非实际应用必需要素。
SIM 智能卡 2 通过天线6引导工作无线频段A、1.25mhz、5 mhz标准单独载波B到通讯基站网络C。
参照图 3 , AMOLED 柔性显示屏22一端固定在一体化设计的输入输出显示端顶面,另一端有扣柱7,投射仪及电路组件9上面罩扣眼31。AMOLED柔性显示屏22一体化设计的输入输出显示端顶面绕到一体设计的电源层4底部后,扣柱7扣到扣眼31上,呈图4所示的形态。虚拟键盘为AMOLED柔性显示屏22的显示成像 , 或局部实体键盘21设计。 在AMOLED柔性显示屏22至一体化设计电源层结构的底面展示相机摄像头8的实时选景;在AMOLED柔性显示屏22自一体化设计的一体化设计的输入输出显示端3上表面显示实时通话成像效果。
参照图5,一体化设计的输入输出显示端3由实体键盘21或虚拟键盘, AMOLED柔性显示屏22和预制构件护座板25组成,相机摄像头8的印刷电路板局部总线24装在预制构件护座板25的顶面,相机摄像头8的印刷电路板局部总线24与排线23相连。 投射仪及电路组件9设在 预制构件护座板25的正面。通过实体键盘或虚拟键盘、 投射仪及电路组件产生投影成像10。 输出显示端3底面的导槽在预制构件护座板25的底部。
参照图6,AMOLED柔性显示屏上、下层分别为上基板显示18、底基和驱动电路单元20,两层之间有OLE涂层19。
AMOLED 柔性显示屏22由底基和驱动电路单元20连接排线23,排线23给一体化设计的输入输出显示端3的键盘或虚拟键盘、投射仪及电路组件9、AMOLED柔性显示屏22 的底基和驱动电路单元20 、相机摄像头8的印刷电路板局部总线24供电, 连接到SIM智能卡2,分别实现相机和摄像头功能,实现数据控制指令的交换。
不采用AMOLED柔性显示屏22,采用OLED或LCD时, OLE涂层19(见图6)相应调整为类似有阳极阴极电荷感应的液晶体、以及相应发射层、导电层结构底基和驱动电路单元20要增加背光层显示.
电路板通讯射频芯片D和基带芯片规范模块E选择适用以下通讯标准的芯片:所述的通讯标准为 TD-SCDMA、TD-SCDMA到HSPA、TD MBMS到TDD LTE、WCDMA、HSDPA、CDMA2000 1× EV-DO、 UMB、UWB、Wimax 802.16 d\e\m、LTE\SAE、 Wapi、兼容Wlan下的Wifi 802.11b\g\n\aq、Mimo ofdm、闪联技术、蓝牙支持蓝牙4.0+EDR+A2DP或McWiLL。所述的通讯标准不限于上述现有通讯标准、且延续相对应后续标准的可适应性选择。
微型处理器G适用于以下DSP、CPU或者GPU、APU的RISC架构、ARM或x86架构、量子或光子CPU技术选择。纵观微型处理器的技术发展出现技术融合:
1 、英特尔打算将WiFi功能内建到半导体芯片之中,特别是南桥芯片的发展方向主要是集成更多的功能,例如网卡、RAID、IEEE1394、甚至WI-FI无线网络等,IT与通讯芯片融合设计。
2 、光通讯芯片,石墨烯芯片的发明使网络发展硬件出现未知的异变,技术的进步只是选用标准的参考。
标准接口H HDMI、M芯片ro USB v2.0、3.5mm 耳机插孔。 标准接口 H HDMI Micro USB v2.0 3.5mm 耳机插孔。
IC 感应芯片F内封装有大容量ROM 26。大容量ROM 26由内置浏览器27、SIM智能卡生产系列编号28、个人信息密码设置29及自加密程序30组成。
SIM 智能卡 通过天线 6 引导工作无线频段 A 、 1.25mhz 、 5 mhz 标准单独载波 B 到通讯基站网络 C 。工 作无线频段 A 的频段为 400mhz 、 450~470mhz 、 698mhz~806mhz 、 900 mhz 、 1110mhz 、 1800 mhz 、 1900mhz 、 2100mhz 、 2300~2400mhz 、 2500~2690mHz 、 3300mhz 、 3400~3600mhz 、 3650-3700MHz 。
参照图8, 一体化设计电源层有薄膜太阳能电池 和/或 锂电池板,锂电池板下部有稳压器、外置电源接口;薄膜太阳能电池下部有稳压器和外置电源接口;
或一体化设计电源层有薄膜太阳能电池和外置电源接口。
一体化设计的电源层4有薄膜太阳能电池14 、锂电池板11,锂电池板11下部有稳压器12 、外置电源接口13。外置电源接口13外接市电,通过稳压器12串接锂电池板11,作为工作电源或选择作长时间应用电源。
锂电池板11作为主电源,通过SIM智能卡电路板底面与一体化设计的电源层上表面导槽构建的电源开关与充电芯片、SIM智能卡上的后备电源连接。启动电源开关V,通过总线使SIM智能卡关联部件使用电源保障,并通过排线依需求与一体化设计的输入输出显示端的键盘或虚拟键盘、投射仪及电路组件、AMOLED柔性显示屏的底基和驱动电路单元、相机摄像头的印刷电路板局部总线、使用实体键盘相关电路时供电,并实现数据控制指令的交换.
参照图9,薄膜太阳能电池14上、下层分别为上层材料17, 太阳能基底板15,两层之间有由基于P/N阳、阴电子捕获技术的EVA中间涂层16。
薄膜太阳能电池14与稳压器12、锂电池板11连接,薄膜太阳能电池即可作为备用电源。
上层材料17为白玻璃或透明薄膜。 太阳能基底板15为玻璃板、不透明薄膜或金属板。

Claims (1)

  1. 1 .一种基于分置式电路设计方法,其特征在于一体化设计的输入输出显示端的底面的导槽与一体化设计的电源层上表面的导槽构成SIM智能卡的推进腔;
    一体化设计的输入输出显示端表面 为实体 键盘、 虚拟 键盘,或有 展示相机摄像头 ;
    SIM 智能卡上、下面有与推进腔导槽对应的导槽, SIM智能 卡 上面的导槽内放置天线;SIM智能卡相应电路板基板通过总线分接有相关芯片;SIM智能卡推进末端有止推;
    一体化设计电源层有薄膜太阳能电池 和/或 锂电池板,锂电池板下部有稳压器 、 外置电源接口;薄膜太阳能电池下部有稳压器和外置电源接口;
    或一体化设计电源层有薄膜太阳能电池和外置电源接口。
    2 .根据权利要求1所述的 一种基于分置式电路设计方法,其特征在于一体化设计的输入输出显示端表面 为实体 键盘(21)和/或有 展示相机摄像头 (8),一体化设计的输入输出显示端由预制构件护座板(25)、 实体 键盘(21)及相关电路,投射仪及电路组件(9)构成,实现与投射成像 (10) 的显示输出。
    3 .根据权利要求1所述的 一种基于分置式电路设计方法,其特征在于一体化设计的输入输出显示端表面 为虚拟 键盘和/或有 展示相机摄像头 (8),一体化设计的输入输出显示端由预制构件护座板(25)、AMOLED柔性显示屏(22) 和/或有展示相机摄像头(8) 构成, 虚拟 键盘为AMOLED柔性显示屏(22)的显示成像。
    4 .根据权利要求1所述的 一种基于分置式电路设计方法,其特征在于一体化设计的输入输出显示端表面有 展示相机摄像头 (8) 。
    5.根据权利要求 1 所述的 一种基于分置式电路设计方法,其特征在于SIM智能卡相应电路板基板I通过总线 (5) 分接有使用者身份信息的SIM智能卡的通讯射频芯片D、基带芯片规范模块E、IC感应芯片F、微型处理器G、天线6、标准接口H、多向陀螺仪J、光感识别仪K、GPS或北斗芯片L、收音机电路M,电源开关V、后备电源W、充电芯片X、功放N、图像芯片 O、电磁屏蔽层P、喇叭Q、SIM卡槽或集成SIM卡R、震动马达S、按键及接口T、音筒U。
    6 .根据权利要求 1 和5 所述的 一种基于分置式电路设计方法,其特征在于SIM智能卡相应电路板基板I通过总线分接有使用者身份信息的SIM智能卡的通讯射频芯片D、基带芯片规范模块E、天线6、SIM卡槽或集成SIM卡R。
    7.根据权利要求 1 和5 所述的 一种基于分置式电路设计方法,其特征在于SIM智能卡相应电路板基板I通过总线分接有微型处理器G、标准接口H、电源开关V、后备电源W、充电芯片X。
    8 .根据权利要求 1 和5 所述的 一种基于分置式电路设计方法,其特征在于SIM智能卡相应电路板基板I通过总线分接有IC感应芯片F、功放N、图像芯片 O、按键及接口T、音筒U。
    9 .根据权利要求1所述的 一种基于分置式电路设计方法,其特征在于SIM智能卡 通过天线(6)引导工作无线频段A、1.25mhz、5 mhz标准单独载波B到通讯基站网络C。
    10 .根据权利要求 1 所述的 一种基于分置式电路设计方法, 其特征在于 AMOLED 柔性显示屏上、下层分别为上基板显示(18)、底基和驱动电路单元(20),两层之间有OLE涂层(19)。
    11 .根据权利要求1所述的 一种基于分置式电路设计方法, 其特征在于薄膜太阳能电池 (14) 上、下层分别为上层材料 (17) , 太阳能基底板 (15) ,两层之间有 由基于P/N阳、阴电子捕获技术的EVA中间涂层 (16) 。
    12.根据权利要求1所述的 一种基于分置式电路设计方法, 其特征在于电路板通讯射频芯片D和基带芯片规范模块E选择适用以下通讯标准的芯片:所述的通讯标准为 TD-SCDMA、TD-SCDMA到HSPA、TD MBMS到TDD LTE、WCDMA、HSDPA、CDMA2000 1× EV-DO、 UMB、UWB、Wimax 802.16 d\e\m、LTE\SAE、 Wapi、兼容Wlan下的Wifi 802.11b\g\n\aq、Mimo ofdm、闪联技术、蓝牙或McWiLL。
    13 .根据权利要求1所述的 一种基于分置式电路设计方法, 其特征在于 一体化设计的输入输出显示端 (3) 的底面的导槽 (32) 为两凸槽或凹槽,SIM智能卡 (2) 上面有与之对应的两凹槽或凸槽,SIM智能卡 (2) 的两凹槽或凸槽内放置天线 (6) 。
    14 .根据权利要求1所述的 一种基于分置式电路设计方法, 其特征在于 一体化设计的电源层 (4) 上表面的导槽 (32) 为一凸槽,一凹槽,SIM智能卡 (2) 下面的导槽 (32) 为相对应的一凹槽、一凸槽,由SIM智能卡的插进实现电源的导通,起电源开关作用。
    15.根据权利要求1所述的 一种基于分置式电路设计方法, 其特征在于 SIM 智能卡 通过天线(6)引导工作无线频段A,工作无线频段A 的频段为400mhz、450~470mhz、698mhz~806mhz、900 mhz、1110mhz、1800 mhz、1900mhz、2100mhz、2300~2400mhz、2500~2690mHz、3300mhz、3400~3600mhz、3650-3700MHz。
PCT/CN2013/076830 2012-09-19 2013-06-06 一种基于分置式电路设计方法 WO2014044060A1 (zh)

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