Through Free Space Patents (Class 398/96)
  • Patent number: 7386238
    Abstract: A method and system for conveying contextually relevant information to a wireless client are disclosed. More particularly, a transmitter transmits a diffuse infrared signal to a client having an IrDA compliant communication interface. The transmitter communicates with the client by making a link layer in the transmitter compliant with an IrDA link layer running on the client. To perform communication, data is received at the transmitter from a service provider. The data is formatted into an IrDA compliant diffuse infrared signal and transmitted to the client. The client receives the data and parses it to extract contextually relevant information contained therein. The client may reply to the transmitter if a user of the client is interested in a service offered by the service provider. If the service provider receives a reply from the client, the service is made available to client.
    Type: Grant
    Filed: August 29, 2002
    Date of Patent: June 10, 2008
    Assignee: Lockheed Martin Corporation
    Inventors: Noah J. Ternullo, Nader Mehravari, Patrick H. Madden
  • Patent number: 7369774
    Abstract: Disclosed is an optical frequency controlling device for ultra-dense wavelength-division-multiplexed optical channels in which center frequencies of optical channels are aligned.
    Type: Grant
    Filed: October 3, 2003
    Date of Patent: May 6, 2008
    Assignee: Kwangwoon Foundation
    Inventors: Jae-Seung Lee, Kyung-Hee Seo
  • Patent number: 7277641
    Abstract: The present invention relates to a multiple access space laser communications optical system. According to the present invention, multiple optical signals containing a number of channels are simultaneously received and demultiplexed at a multiple access communication device. Separate communication signals may be multiplexed by the multiple access communication device, and transmitted through the same or a different telescope optical assembly used to receive communication signals. Double-pass reflection is used to selectively polarize signals and to ensure that signals are substantial normal to optical bandpass filters, to avoid large shifts in the wavelengths transmitted by the optical bandpass filters. The system is capable of providing discrete communications with a number of communication endpoints, regardless of where the communication endpoints are located within the field of view of the telescope optical assembly.
    Type: Grant
    Filed: May 6, 2003
    Date of Patent: October 2, 2007
    Assignee: Ball Aerospace & Technologies Corp.
    Inventor: Philip Gleckman
  • Patent number: 7209663
    Abstract: A repeating apparatus and method using wireless optical transmission is disclosed. The repeating apparatus includes a donor device for transmitting two identical copies of an optical signal by receiving a RF signal from a base station and electro-optic converting the RF signal to an optical signal, and for transmitting a RF signal by receiving two identical copies of the optical signal and optic-electro converting the optical signal to a RF signal; and a coverage device for transmitting a RF signal to a mobile communication terminal by receiving two identical copies of the optical signal from the donor device and optic-electro converting the two identical copies of the optical signal to the RF signal, and transmitting two optical signals to the donor device by receiving the RF signal from the mobile communication terminal and elector-optic converting the RF signal to the optical signal.
    Type: Grant
    Filed: December 22, 2003
    Date of Patent: April 24, 2007
    Assignee: Curitel Communications, Inc.
    Inventor: Jong-Seob Lee
  • Patent number: 7116906
    Abstract: A method for communicating information includes modulating a communications signal by orthogonal frequency domain modulation and transmitting the communication signal by a laser and/or light emitting diode carrier signal.
    Type: Grant
    Filed: March 4, 2002
    Date of Patent: October 3, 2006
    Assignee: Incucomm, Inc.
    Inventors: John P. Volpi, Steven D. Roemerman, Matthew N. Bowers
  • Patent number: 7085497
    Abstract: A communication system includes an optical “LAN” (50) interconnecting a plurality of information sources (16a) and sinks (22a) with a light-to-electrical converter (36a) associated with an electrical RF transmitters (32a) and an RF-to-light converter (38a) to a receiver (34a). The transmitter is coupled by way of electrical-to-light converter (46a), and the receiver is coupled by way of light-to-electrical converter (44a), and by way of a directional coupler (76a), to an end of an optical bus (74a), so that light signals representing signals to be transmitted flow in one direction, and light signals representing received signals flow in the other direction through the bus. A directional coupler (72a) at the other end of the optical bus routes the transmit light signals to a light-to-RF converter (47a) which feeds a sink or antenna (12a), and received signals from a source or antenna are routed by way of an RF-to-light converter (40a) and the directional coupler (72a) onto the optical bus (74a).
    Type: Grant
    Filed: April 3, 2002
    Date of Patent: August 1, 2006
    Assignee: Lockheed Martin Corporation
    Inventors: Jerome Johnson Tiemann, Richard Louis Frey, William Sven Barquist, Jr., William Taylor Lotshaw, Sandra Freedman Feldman, John Jesse Soderberg, George Allan Whittaker
  • Patent number: 7068934
    Abstract: An optical interconnect comprises an input configured to receive light of a plurality of light wavelengths and a plurality of holographic optical elements. Each element configured to reflect one out of the plurality of light wavelengths and allowing others of the plurality of wavelengths to not be reflected. Each of a plurality of prisms is configured to rotate received light at a different angle than any of the other prisms. For each holographic optical element, one of the plurality of prisms is positioned to receive and rotate light reflected by that holographic element. Each of a plurality of beam splitters is positioned to receive light rotated by a respective one of the plurality of prisms and all the plurality of beam splitters direct light to an output of the optical interconnect.
    Type: Grant
    Filed: March 17, 2004
    Date of Patent: June 27, 2006
    Assignee: InterDigital-Technology Corporation
    Inventors: Emmanuel Kanterakis, Jian-Ming Wang
  • Patent number: 7031611
    Abstract: An optical routing device for coupling each of a plurality NE of optical incoming channels (1) to one of a plurality NS of optical output channels (5) and for orienting each of the optical beams coming through the incoming channels to any one of the NS optical output channels, includes: an input module including NE optical inputs, for shaping each beam, so as to obtain a plurality of shaped optical beams; an input deflection module for generating for each input a number PTN of different positions of angular deflection at least equal to the number NS of optical output channels; a linking module for assembling in bi-unique manner on PTN spatial focusing points, respectively the PTN angular deflection positions of each; an output deflection module having PTN inputs for intercepting PTN intermediate optical beams; and an optical output module for shaping each NS output beam.
    Type: Grant
    Filed: March 1, 2002
    Date of Patent: April 18, 2006
    Assignee: Teem Photonics
    Inventor: Serge Valette
  • Patent number: 7010228
    Abstract: An optical add-drop multiplexer comprises an optical switch (10) for selection of a desired wavelength channel to be extracted, a pre-processing channel assembly (20), an optical reflector (50), an optical extractor (60), a post-processing channel assembly (30), and an optical coupler (40) aligned with the post-processing channel assembly. The pre-processing channel assembly transmits a multiplexed signal stream containing a plurality of channels. The optical reflector directs light rays emitted from the pre-processing channel assembly into the optical extractor. The optical extractor comprises a narrow bandpass filter (62) that allows a desired channel to pass therethrough and reflects other unextracted channels. The desired channel can be dropped by switching to a corresponding output port of the optical switch. The optical reflector directs light rays reflected from the optical extractor to the post-processing channel assembly. The optical coupler combines the unextracted channels and an insertion channel.
    Type: Grant
    Filed: November 2, 2001
    Date of Patent: March 7, 2006
    Assignee: Hon Hai Precision Ind. Co., Ltd.
    Inventors: David Li, Hong Liang Cui
  • Patent number: 6993260
    Abstract: Internal communication signals in a stored program controlled system comprising a plurality of units configured to process signals are provided by a free space optical beam line which is proximal to all of the plurality of units. The free space beam line is configured to contain optically encoded signals which comprises signals transmitted between and/or among the plurality of units. Each unit includes a probe for injecting optically encoded signals in the free space beam line and/or and for receiving optically encoded signals from the free space beam line. Advantageously, there may be a first terminal at a first end of the beam line to configure to transmit and terminate the optically encoded signals and a second terminal unit at the second end of the free space beam line configured to transmit and terminate the optically encoded signals.
    Type: Grant
    Filed: August 17, 2001
    Date of Patent: January 31, 2006
    Assignee: Lucent Technologies Inc.
    Inventors: Charles Calvin Byers, Daniel Raymond Hatcher
  • Patent number: 6941073
    Abstract: An East-West separable ROADM particularly usable as a programmable N×M optical add/drop multiplexer with an efficient pass through of optical channels in a multi-wavelength communication system. The East-West separable ROADM uses a grating that separates multi-channel optical signals into a plurality of optical channels, and combines a plurality of optical channels into multi-channel optical signals. Programmable mirrors and beam steerers can direct each optical channel to any of a plurality of fibers coupled to the device.
    Type: Grant
    Filed: July 23, 2003
    Date of Patent: September 6, 2005
    Assignee: Optical Research Associates
    Inventor: James P. McGuire
  • Patent number: 6934477
    Abstract: Erbium doped fiber amplifiers (ERDAs) optically couple optical signals between free-space and fiber optic links of a terrestrial optical communication network. The optical gain of transmitting and receiving ERDAs is controlled to achieve good optical signal communication. Control occurs in response to signals received at the transmitting and receiving ends of the links. Control, status and management information may be communicated optically between link head stations. The physical position of transceivers at opposite ends of the link optical signal paths is also controlled.
    Type: Grant
    Filed: July 3, 2002
    Date of Patent: August 23, 2005
    Assignee: LightPointe Communications, Inc.
    Inventor: Heinz Willebrand
  • Patent number: 6868237
    Abstract: Optical signals are received from a free-space link by directing received light onto a plurality of microlenses and then directing light received through each of the microlenses into a respective single mode optical fiber (SMF). Light beams from the SMFs are combined into a single light beam in one SMF. The single light beam is amplified with a multi-wavelength fiber amplifier and attenuated with a variable optical attenuator. The power gain of the multi-wavelength fiber amplifier and the attenuation of the variable optical attenuator are controlled. The single light beam is directed into a fiber optic communication system that is optically coupled to the variable optical attenuator.
    Type: Grant
    Filed: May 4, 2001
    Date of Patent: March 15, 2005
    Assignee: LightPointe Communications, Inc.
    Inventors: Heinz Willebrand, Gerald R. Clark
  • Patent number: 6754410
    Abstract: An integrated 1×K wavelength-selective cross connect (WSC) comprises a demultiplexer arranged to couple each of the N individual wavelength in an input optical WDM signal to a different one of N demultiplexer outputs. Each of N planar beam steerers, arranged along the left edge of a free space region, receives and directs a different one of the N light beams from the demultiplexer to a location on the right edge of the free space region. Each of K gratings arranged along a different location on the right edge of the free space region multiplexes together any light beam received at that location. The 1×K WSC can be implemented with or without the use of crossovers.
    Type: Grant
    Filed: May 29, 2003
    Date of Patent: June 22, 2004
    Assignee: Lucent Technologies Inc.
    Inventors: Christopher Richard Doerr, Corrado P. Dragone
  • Patent number: 6751373
    Abstract: A WDM demultiplexer/multiplexer comprising a plurality of narrow band reflective filters linearly disposed along an optical axis, each narrow band reflective filter reflecting a single channel or group of channels and transmitting the remaining channels, is described. In a demultiplexing mode, an optical signal initially carrying channels at &lgr;1&lgr;2 . . . &lgr;N travels along the optical axis. Each narrow band reflective filter reflects a distinct channel and is tilted with respect to the optical axis such that it directs the reflected beam away from the optical axis to an output. Each narrow band reflective filter is substantially transparent to the remaining channels of the optical signal, such that the remainder of the optical signal proceeds along the optical axis substantially undisturbed.
    Type: Grant
    Filed: April 10, 2002
    Date of Patent: June 15, 2004
    Assignee: Gazillion Bits, Inc.
    Inventor: Hwan J. Jeong
  • Patent number: 6731878
    Abstract: A free space communication system includes first and second terminals, and the first terminal includes a transmitter to transmit an input signal. The transmitter has plural laser sources, at least one optical delay line and a telescope. Each laser source modulates the input signal onto a wavelength that is distinct from a wavelength of each other laser source. The plural laser sources include a first laser source and at least one other laser source, and the at least one optical delay line is coupled to a respective output of the at least one other laser source. The telescope projects an output of the first laser source and an output of each of the at least one optical delay line toward the second terminal. Alternatively, a free space communication system includes first and second terminals, and the first terminal includes a transmitter to transmit an input signal. The transmitter has at least one electrical delay line, plural laser sources and a telescope.
    Type: Grant
    Filed: August 17, 2000
    Date of Patent: May 4, 2004
    Assignee: AT&T Corp
    Inventors: David M. Britz, Jeevan Prakash Dodley, Robert R. Miller
  • Patent number: 6609839
    Abstract: In a device for regenerating a wavelength-division multiplex optical signal, the optical signal to be regenerated comes from an optical fiber and is injected back into the same optical fiber or into another fiber. The device comprises at least one dispersive medium for receiving the wavelength-division multiplex signal and emitting a corresponding dispersed wave into a free space and a saturable absorber which receives the dispersed wave and transmits a corresponding regenerated wave.
    Type: Grant
    Filed: October 4, 1999
    Date of Patent: August 26, 2003
    Assignee: Alcatel
    Inventors: Fabrice Devaux, Alexandre Shen, Philippe Pagnod-Rossiaux, Paul Salet, Christophe Starck