Wireless SATA/SAS data transfer system
    1.
    发明授权
    Wireless SATA/SAS data transfer system 有权
    无线SATA / SAS数据传输系统

    公开(公告)号:US07840186B2

    公开(公告)日:2010-11-23

    申请号:US11860942

    申请日:2007-09-25

    申请人: Steven J. Franson

    发明人: Steven J. Franson

    IPC分类号: H04B7/00 H04B1/38 G06F3/06

    CPC分类号: H04L27/02

    摘要: A wireless data transfer system. The system includes a first hard disk, a first hard disk interface, and a first transmitter. The first hard disk interface is configured to retrieve first read data from the first hard disk and to create a first bit serial signal from the retrieved first read data. The first bit serial signal conforms to a protocol selected from the group consisting of serial advanced technology attachment (SATA) protocol and serial attached small computer system interface (SAS) protocol. The first transmitter is configured to operate at selected carrier frequency greater than 50 GHz, comprising, to operate at effective isotropic radiated power level less than or equal to 40 dBm, to receive the first bit serial signal from the first hard disk interface, to modulate the first bit serial signal using amplitude shift keying modulation to substantially create directly a first signal, and to transmit the first signal.

    摘要翻译: 无线数据传输系统。 该系统包括第一硬盘,第一硬盘接口和第一发射机。 第一个硬盘接口被配置为从第一个硬盘检索第一个读取数据,并从检索到的第一个读取数据创建一个第一个位串行信号。 第一位串行信号符合从由串行高级技术附件(SATA)协议和串行附加的小型计算机系统接口(SAS)协议组成的组中选择的协议。 第一发射器被配置为在大于50GHz的选定载波频率下操作,包括以有效各向同性辐射功率电平小于或等于40dBm的方式操作,以从第一硬盘接口接收第一位串行信号,以调制 使用幅移键控调制的第一比特串行信号基本上直接产生第一信号,并发送第一信号。

    Integrated bidirectional junction engineered dual insulator transceiver
    2.
    发明授权
    Integrated bidirectional junction engineered dual insulator transceiver 失效
    集成双向连接工程双绝缘子收发器

    公开(公告)号:US07835705B2

    公开(公告)日:2010-11-16

    申请号:US11951494

    申请日:2007-12-06

    IPC分类号: H04B1/38

    CPC分类号: H04B1/56

    摘要: A bi-directional transceiver (100) having reduced circuitry and that may be formed on a non-semiconductor substrate includes impedance matching and filtering circuitry (114, 116, 122, 124, 128, 132) coupled to a non-linear diode (118) for converting a lower frequency modulated signal to a higher frequency RF transmit signal and to function as a square-law detector to envelope detect RF signals. The non-linear diode (118) includes, in one exemplary embodiment, at least two insulative layers disposed between two conductive layers, wherein a quantum well is formed between the insulators that allows only high-energy tunneling.

    摘要翻译: 具有减小的电路并且可以形成在非半导体衬底上的双向收发器(100)包括耦合到非线性二极管(118)的阻抗匹配和滤波电路(114,116,122,124,128,132) ),用于将较低频率调制信号转换为较高频率的RF发射信号,并用作包络检测RF信号的平方律检测器。 在一个示例性实施例中,非线性二极管(118)包括设置在两个导电层之间的至少两个绝缘层,其中在仅允许高能量隧穿的绝缘体之间形成量子阱。

    INTEGRATED BIDIRECTIONAL JUNCTION ENGINEERED DUAL INSULATOR TRANSCEIVER
    3.
    发明申请
    INTEGRATED BIDIRECTIONAL JUNCTION ENGINEERED DUAL INSULATOR TRANSCEIVER 失效
    集成双向连接工程双绝缘子收发器

    公开(公告)号:US20090149137A1

    公开(公告)日:2009-06-11

    申请号:US11951494

    申请日:2007-12-06

    IPC分类号: H04B1/44

    CPC分类号: H04B1/56

    摘要: A bi-directional transceiver (100) having reduced circuitry and that may be formed on a non-semiconductor substrate includes impedance matching and filtering circuitry (114, 116, 122, 124, 128, 132) coupled to a non-linear diode (118) for converting a lower frequency modulated signal to a higher frequency RF transmit signal and to function as a square-law detector to envelope detect RF signals. The non-linear diode (118) includes, in one exemplary embodiment, at least two insulative layers disposed between two conductive layers, wherein a quantum well is formed between the insulators that allows only high-energy tunneling.

    摘要翻译: 具有减小的电路并且可以形成在非半导体衬底上的双向收发器(100)包括耦合到非线性二极管(118)的阻抗匹配和滤波电路(114,116,122,124,128,132) ),用于将较低频率调制信号转换为较高频率的RF发射信号,并用作包络检测RF信号的平方律检测器。 在一个示例性实施例中,非线性二极管(118)包括设置在两个导电层之间的至少两个绝缘层,其中在仅允许高能量隧穿的绝缘体之间形成量子阱。

    HIGH FREQUENCY COPLANAR STRIP TRANSMISSION LINE ON A LOSSY SUBSTRATE
    4.
    发明申请
    HIGH FREQUENCY COPLANAR STRIP TRANSMISSION LINE ON A LOSSY SUBSTRATE 失效
    高频基带上的高频共线条传输线

    公开(公告)号:US20080197945A1

    公开(公告)日:2008-08-21

    申请号:US11675152

    申请日:2007-02-15

    申请人: Steven J. Franson

    发明人: Steven J. Franson

    IPC分类号: H01P3/08

    摘要: A substrate (12) having two high frequency components (28, 30, 34, 36, 48) positioned on substrates (12) typically used for lower frequency devices. A coplanar strip transmission line (38, 40, 46, 52, 58), providing for transmission of high frequency signals, comprises first, second and third parallel, spaced conductive traces (62, 64, 66) positioned on a surface (11) of the substrate (12), wherein the substrate (12) defines a first slot (68, 72, 76) extending from the first surface (11) into the substrate (12) and between the first and second parallel, spaced conductive traces (64, 62), and a second slot (70, 74, 78) extending from the first surface (11) into the substrate (12) and between the first and third parallel, spaced conductive traces (64, 66). Optionally, an antenna (42, 44, 54, 56) is coupled to the coplanar strip transmission line (46, 58) and comprises first and second antenna traces (41, 43), the substrate (12) defining a third slot (45) therebetween.

    摘要翻译: 具有通常用于较低频率装置的位于基板(12)上的两个高频分量(28,30,34,36,48)的基板(12)。 提供高频信号传输的共面条传输线(38,40,46,52,58)包括位于表面(11)上的第一,第二和第三平行隔开的导电迹线(62,64,66) ,其中所述衬底(12)限定从所述第一表面(11)延伸到所述衬底(12)中以及在所述第一和第二平行间隔开的​​导电迹线(...)之间的第一槽(68,72,76) 以及从所述第一表面(11)延伸到所述基底(12)中以及在所述第一和第三平行间隔开的​​导电迹线(64,66)之间延伸的第二狭槽(70,74,78)。 可选地,天线(42,44,54,56)耦合到共面条传输线(46,58),并且包括第一和第二天线迹线(41,43),衬底(12)限定第三槽(45 )。

    Tapered slot feed for an automotive radar antenna

    公开(公告)号:US07109938B2

    公开(公告)日:2006-09-19

    申请号:US10978779

    申请日:2004-10-29

    IPC分类号: H01Q13/10

    CPC分类号: H01Q13/085 G01S7/032

    摘要: In one embodiment, an improved transceiver assembly for a vehicle capable of detecting potentially hazardous objects is disclosed. The transceiver assembly comprises a tapered slot feed antenna for generating a beam and for detecting the beam as reflected from the potential hazards. The antenna is formed in or on a housing which also contains a parabolic dish that oscillates to sweep the beam of radiation towards the potential hazards outside of the vehicle. In a preferred embodiment, approximately 77 GHz radiation is generated from and detected by the antenna. The antenna is preferably formed on a printed circuit board (PCB) (substrate), which can include additional circuitry necessary to operate the antenna, and which is preferably mounted at an acute angle with respect to the housing to direct the beam at the parabolic dish.

    High frequency communication device on multilayered substrate
    6.
    发明授权
    High frequency communication device on multilayered substrate 有权
    多层基板上的高频通信装置

    公开(公告)号:US07786944B2

    公开(公告)日:2010-08-31

    申请号:US11923873

    申请日:2007-10-25

    IPC分类号: H01Q13/10

    CPC分类号: H01Q13/085 H01Q1/38 H01Q1/525

    摘要: A communication device (110, 210) has an antenna (150, 152, 250, 252) positioned on a multilayer substrate/printed circuit board (154, 254, 254′). A first high frequency material (116, 216) is disposed over a first side of the substrate (154, 254) characterized for low frequency devices. A conductive layer (118, 218) is patterned over the first high frequency material (116, 216), defining first and second circuit traces (122, 124, 222, 224) and first and second antenna traces (132, 134, 232, 234). The first and second antenna traces (132, 134, 232, 234) define a first slot (116, 216) in the first conductive layer (122, 222), which is aligned with a cutout (162, 262) defined by the substrate (154, 254). One of a transmitter (112, 212) and a receiver (114, 214) are disposed over the high frequency material (116, 216) and coupled to the edge emitting antenna (150, 250) by the first and second circuit traces (122, 124, 222, 224). The other of the transmitter (112) and receiver (114) may be positioned on the same or opposed side (aligned or staggered) of the substrate (254) in a similar manner. One or more layers (262), which may be patterned to provide resonant features, are formed between the substrate (254, 254′) for isolation.

    摘要翻译: 通信设备(110,210)具有位于多层基板/印刷电路板(154,254,254')上的天线(150,152,250,252)。 第一高频材料(116,216)设置在衬底(154,254)的第一侧上,其特征在于用于低频器件。 导电层(118,218)在第一高频材料(116,216)上图案化,限定第一和第二电路迹线(122,124,222,224)以及第一和第二天线迹线(132,134,232, 234)。 第一和第二天线迹线(132,134,232,234)在第一导电层(122,222)中限定第一槽(116,216),其与由衬底限定的切口(162,262)对准 (154,254)。 发射器(112,212)和接收器(114,214)中的一个设置在高频材料(116,216)之上,并通过第一和第二电路迹线(122)耦合到边缘发射天线(150,250) ,124,222,224)。 发射器(112)和接收器(114)中的另一个可以以类似的方式定位在衬底(254)的相同或相对侧(对齐或交错)上。 可以在衬底(254,254')之间形成可以被图案化以提供谐振特征的一个或多个层(262),用于隔离。

    Hermetic cavity package
    8.
    发明授权
    Hermetic cavity package 失效
    气密包装

    公开(公告)号:US07245009B2

    公开(公告)日:2007-07-17

    申请号:US11174268

    申请日:2005-06-29

    IPC分类号: H01L23/10

    摘要: A packaging structure (10) is provided having a hermetic sealed cavity for microelectronic applications. The packaging structure (10) comprises first and second packaging layers (12, 28) forming a cavity. Two liquid crystal polymer (LCP) layers (16, 22) are formed between and hermetically seal the first and second packaging layers (12, 28). First and second conductive strips (18, 20) are formed between the LCP layers (16, 22) and extend into the cavity. An electronic device (24) is positioned within the cavity and is coupled to the first and second conductive strips (18, 20).

    摘要翻译: 提供具有用于微电子应用的气密密封腔的封装结构(10)。 包装结构(10)包括形成空腔的第一和第二包装层(12,28)。 在第一和第二包装层(12,28)之间形成两个液晶聚合物层(16,22),并密封第一和第二包装层(12,28)。 第一和第二导电条(18,20)形成在LCP层(16,22)之间并延伸到空腔中。 电子设备(24)定位在空腔内并且耦合到第一和第二导电条(18,20)。

    Nanostructured, magnetic tunable antennas for communication devices

    公开(公告)号:US07453412B2

    公开(公告)日:2008-11-18

    申请号:US11690965

    申请日:2007-03-26

    IPC分类号: H01Q1/00

    CPC分类号: H01Q1/38 H01Q1/36

    摘要: A communication device (310) is provided that includes a nano-sized RF antenna (100) having low power consumption and wide-range frequency spectrum based on bottom-up nanotechnology. The antenna (100) includes an insulator layer (110) positioned between a free magnetic layer (112) and a fixed magnetic layer (108). A DC voltage source (124) is coupled to the free magnetic layer (112) and the fixed magnetic layer (108) for providing a current (118) therethrough. A detector (126) is coupled between the antenna (100) and the DC voltage source (124) for detecting a change in the current (118) in response to a radiated signal being received by the antenna (100) which causes a change in the spin on electrons in the free magnetic layer (112).

    Nanostructured, magnetic tunable antennas for communication devices
    10.
    发明申请
    Nanostructured, magnetic tunable antennas for communication devices 失效
    用于通信设备的纳米结构的磁性可调谐天线

    公开(公告)号:US20080238779A1

    公开(公告)日:2008-10-02

    申请号:US11690965

    申请日:2007-03-26

    IPC分类号: H01Q1/36

    CPC分类号: H01Q1/38 H01Q1/36

    摘要: A communication device (310) is provided that includes a nano-sized RF antenna (100) having low power consumption and wide-range frequency spectrum based on bottom-up nanotechnology. The antenna (100) includes an insulator layer (110) positioned between a free magnetic layer (112) and a fixed magnetic layer (108). A DC voltage source (124) is coupled to the free magnetic layer (112) and the fixed magnetic layer (108) for providing a current (118) therethrough. A detector (126) is coupled between the antenna (100) and the DC voltage source (124) for detecting a change in the current (118) in response to a radiated signal being received by the antenna (100) which causes a change in the spin on electrons in the free magnetic layer (112).

    摘要翻译: 提供了一种通信设备(310),其包括基于自下而上的纳米技术的具有低功耗和宽范围频谱的纳米级RF天线(100)。 天线(100)包括位于自由磁性层(112)和固定磁性层(108)之间的绝缘体层(110)。 直流电压源(124)耦合到自由磁性层(112)和固定磁性层(108),用于提供穿过其中的电流(118)。 检测器(126)耦合在天线(100)和直流电压源(124)之间,用于响应于由天线(100)接收的辐射信号来检测电流(118)的变化,这导致变化 在自由磁性层(112)中的电子的旋转。