Patents Assigned to Lucent Technologies
  • Patent number: 5966042
    Abstract: A current output circuit comprises a current driver that is switchably connected across two output nodes by a switching assembly and having a switchable shunt resistor connected across the current driver. The switchable shunt resistor may be switched between a non-conducting state and a resistive conducting state. In a first data state, the current driver is connected to the output nodes by the switching assembly and the switchable shunt resistor is non-conducting so that the supplied current will flow through a load attached to the output nodes. In a second data state, the current driver is disconnected from the output nodes and the switchable shunt resistor is in a resistive conducting state. In this state the current bypasses the load and is diverted through the switchable shunt resistor. Several current drivers with appropriate switching arrangements and one or more switchable shunt resistors may be provided to allow for asymmetric current outputs in various data states.
    Type: Grant
    Filed: September 29, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Wayne E. Werner, Thaddeus John Gabara, Bijit Thakorbhai Patel
  • Patent number: 5966627
    Abstract: A method and apparatus for the manufacture of integrated circuits including the placement of a single tube for introduction of dopant gases into a process chamber is disclosed.
    Type: Grant
    Filed: August 30, 1996
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: David C. Brady, Yaw Samuel Obeng
  • Patent number: 5966524
    Abstract: An ellipsoidal infinite element is used for the modeling of electromagnetic fields in exterior domains surrounding a structure. This infinite element is based on a multipole expansion that describes scattered and/or radiated fields exterior to the structure. The electromagnetic field is represented in the exterior domain by a pair of scalar potentials, referred to as the Debye potentials.
    Type: Grant
    Filed: September 29, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: David Storer Burnett, Frank Michael Labianca
  • Patent number: 5966450
    Abstract: Frames of data are encrypted by combining each of the frames with a mask that varies from frame to frame. The mask is obtained by using a frame counter as the seed for a pseudo random number generator, generating n pseudo random numbers, where n is the number of bytes to be encrypted in each frame, and concatenating the most significant bytes of each of the n pseudo random numbers to form the mask. The encrypted frames are transmitted, received and decrypted by combining them with the mask, which is independently generated at the receiver. The frame counter is aperiodically reset to a new initial value that is a substantially random number with respect to a previous initial value.
    Type: Grant
    Filed: August 13, 1996
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies
    Inventors: Mark J. Hosford, James A. Reeds, III
  • Patent number: 5965202
    Abstract: Three-phase composite materials system having a low dielectric constant and physico-chemical properties suitable for IC fabrication conditions, and a method for making such materials, are disclosed. The three-phase composite material includes an organic phase, an inorganic phase and a void phase. The organic phase is in the form of an organic polymer matrix, the void phase is represented by microporosity present in the matrix, and the inorganic phase is implemented as inorganic particles that are coupled, via a coupling agent, to the organic matrix. The low dielectric constant of the composite is attributable to the microporous organic polymer matrix. The inorganic particles are responsible, at least in part, for providing thermal stability and other required physico-chemical properties to the composite.
    Type: Grant
    Filed: August 14, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies, Inc.
    Inventors: Ralph E. Taylor-Smith, Jorge Luis Valdes
  • Patent number: 5964614
    Abstract: A customer bridge configuration (110) allows connection or disconnection of customer-side lead wires when the customer wiring is disconnected from the external telephone network, but prevents connection or disconnection of customer-side lead wires when the customer wiring is connected to the external telephone network. A connector (120) is mounted to a housing (112). The connector (120) includes two terminals (123) and at least one movable portion (122) mounted over the terminals. A wire (132) is engaged by the housing (112). The wire (132) extends from a position in a top surface of the housing (112), and may be wrapped within cladding as part of a cable (130) The wire (132) has an end terminating in a plug(152). An RJ11 jack receives the plug (152). The jack (153) provides an electrical connection to an outside circuit (164).
    Type: Grant
    Filed: June 30, 1998
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies, Inc.
    Inventor: Bassel H. Daoud
  • Patent number: 5965903
    Abstract: The present invention provides, in one embodiment, an integrated circuit having a substrate and active devices formed on the surface of the substrate. Other embodiments of the integrated circuit provide for having at least either three or four metal layers. In a particular embodiment of the present invention, the integrated circuit comprises a bond pad formed over a portion of the active devices. The bond pad has a footprint. As used therein the word footprint means the area covered by the device to which the word refers. The integrated circuit further incudes a patterned metal layer having a metal layer footprint that is located between the bond pad and the substrate and a built-in self-test (BIST) circuit that has a BIST footprint, which is located between the substrate and the bond pad. In this particular embodiment, the bond pad footprint overlays at least a portion of the metal layer footprint and the BIST footprint.
    Type: Grant
    Filed: February 12, 1998
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Sailesh Chittipeddi, William T. Cochran, Yehuda Smooha
  • Patent number: 5965197
    Abstract: New solder compositions having enhanced mechanical properties are disclosed. Relatively inert particles having a diameter of 2000 nm or less are dispersed in a solder material having an average grain size of 500 nm or less to produce such solder compositions. The dispersed particles act as physical barriers substantially impeding the motion of grain boundaries and inhibiting grain growth during thermal and stress cycling which substantially inhibits coarsening. As a consequence, the solder composition exhibits an advantageous level of superplasticity that is substantially resistant to joint failure. Methods for forming articles using such solder compositions is also disclosed.
    Type: Grant
    Filed: November 6, 1998
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Sungho Jin, Thomas Henry Tiefel
  • Patent number: 5965271
    Abstract: Dehydroxylated, silica-containing, glass surfaces are known to be at least partially terminated by strained siloxane rings. According to the invention, a surface of this kind is exposed to a selected silane compound or mixture of silane compounds under reaction-promoting conditions. The ensuing reaction results in opening of the strained siloxane rings, and termination of surface atoms by chemical species, such as organic or organosilicon species, having desirable properties. These species can be chosen to provide qualities such as hydrophobicity, or improved coupling to a polymeric coating.
    Type: Grant
    Filed: October 28, 1996
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Alexis Grabbe, Terry Arthur Michalske, William Larry Smith
  • Patent number: 5966478
    Abstract: An integrated optical circuit having a turning mirror formed by an end surface of a planar waveguide forms a turning mirror deflector surface. More specifically, the integrated optical circuit includes a planar optical waveguide formed within a cladding layer wherein the planar waveguide has a deflector end surface positioned adjacent to a region, such as a gap. The refractive indices of the planar waveguide and region are in a ratio of no less than approximately 1.3 to provide a desired refractive index discontinuity. This refractive index discontinuity in combination with the positioning of the deflector end surface at an angle relative to an axis extending perpendicular to the direction of the waveguide in the range of 24.degree. and 67.degree. enables an advantageous deflection of an optical signal.
    Type: Grant
    Filed: September 17, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Dietrich Marcuse, Herman Melvin Presby
  • Patent number: 5966706
    Abstract: A distributed database management computer system includes a plurality of nodes and a plurality of database pages. When a first node in the computer system updates a first database page, the first node generates a log record. The first node determines whether it manages the first database page. If the first node determines that it manages the first database page, the first node writes the log record to a log storage local to the first node. However, if the first node determines that it does not manage the first database page, the first node then determines whether it includes a local log storage. If the first node includes a local log storage, the first node writes the log record to the local log storage, even if the first node does not manage the first database page. If the first node does not include a local log storage, the first node sends the log record to a second node managing the first database page.
    Type: Grant
    Filed: February 19, 1997
    Date of Patent: October 12, 1999
    Assignees: AT&T Corp, Lucent Technologies Inc.
    Inventors: Alexandros Biliris, Hosagrahar Visvesvaraya Jagadish, Euthimios Panagos, Rajeev R. Rastogi
  • Patent number: 5966622
    Abstract: A process for device fabrication is disclosed in which two substrates having different crystal lattices are bound together. In the process a layer of material that has a crystal lattice similar to the crystal lattices of the first substrate is formed on the surface of the second substrate. The thickness of the layer is about 1 nm to about 2 nm. The layer of material is then bound to the surface of the first substrate.
    Type: Grant
    Filed: October 8, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Barry Franklin Levine, Christopher James Pinzone
  • Patent number: 5966317
    Abstract: With shrinking dimensions, and closely spaced runners, capacitive coupling between bitlines in dual port SRAMS becomes an important design issue. Techniques for reducing that coupling are described. A shielding runner placed between the read and write bitlines and tied to V.sub.DD or V.sub.SS substantially reduces unwanted crosstalk. Word lines can be similarly isolated.
    Type: Grant
    Filed: February 10, 1999
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventor: Kevin John O'Connor
  • Patent number: 5966480
    Abstract: The performance of optical fiber Raman devices can be increased by substitution of a broadband reflector (typically a multilayer dielectric mirror) for some of the narrowband reflectors (typically fiber Bragg gratings) that are conventionally used to define the optical cavities of the device. The device exemplarily is a Raman laser or amplifier, and in preferred embodiments a broadband reflector reflects all the Stokes-shifted wavelengths, such that the cavities are defined by the single broadband reflector and by a multiplicity of appropriately selected narrowband reflectors. Optionally the broadband reflector also serves to reflect the pump radiation.
    Type: Grant
    Filed: February 23, 1998
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Jane Deborah LeGrange, William Alfred Reed, Kenneth Lee Walker
  • Patent number: 5964957
    Abstract: The present invention discloses a method for stripping an optical fiber cable having a polymer coating and an optical fiber using hydration and dehydration techniques. A section of optical fiber cable is first immersed in a hydrating agent, thereby hydrating the corresponding section of polymer coating and causing it to swell. The hydrated polymer coating is then rapidly heated to a fragmentation temperature causing the polymer coating to dehydrate and fragment. Subsequently, the dehydrated polymer coating is re-hydrated using the hydrating agent to separate the polymer coating from the optical fiber.
    Type: Grant
    Filed: October 25, 1996
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Claude Eugene Walraven, Robert Gordon Wiley
  • Patent number: 5966055
    Abstract: Apparatus for generating the family of PSK (phase shift keyed) modulations, which include BPSK (binary PSK), QPSK (quaternary PSK), MSK (minimum shift keying) and the like. The carrier is generated with the desired digital information already phase-modulated onto it by directly introducing a phase shift or delay onto the error path of a phase-locked loop. causing the phase-locked loop to create the phase modulation. The [proposed scheme differs from common practice approaches, which are usually implemented by linear synthesis (an AM technique); rather, it] invention employs direct nonlinear synthesis (an FM technique). The invention [yields good phase precision with arbitrary spectral shaping under the constraint of constant envelope signaling. It] permits the connection of the output of a simple, inexpensive VCO (voltage controlled oscillator) directly to a system's antenna without the need for intervening circuit elements such as phase splitters, mixers, and the like which is applicable to [.
    Type: Grant
    Filed: February 14, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies, Inc.
    Inventors: George Knoedl, Jr., David J. Thomson
  • Patent number: 5966234
    Abstract: An optical fiber compatible modulator device provides high-contrast levels switchable using modest applied voltages. As a two-port optical modulator, a normal light signal incident at a first port is deflected to a non-normal direction for passage through an absorption layer (e.g., a multiple-quantum well (MQW) layer), the absorption layer having an adsorption characteristic which changes as a function of a voltage applied across it. The non-normal direction light signal exiting the absorption layer is deflected to a normal light signal for output from a second port of the optical modulator. As a one-port optical modulator, a normal light signal received at a first port is deflected to a non-normal direction for passage through an absorption layer. A reflector reflects a non-normal direction light signal exiting the layer back through the layer to the deflector means and is output at the port of the optical modulator.
    Type: Grant
    Filed: June 24, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc
    Inventors: Joseph Earl Ford, Anthony Lodovico Lentine, Ted Kirk Woodward
  • Patent number: 5966139
    Abstract: A method and system for visualizing relatively large amounts of data in a limited display space includes segmenting the data, mapping each segment to a node within the display space based on a specified nodal layout, texture mapping each graphical display of each segment of data to its node, and displaying the data in each node of the display space as mapped. This visualization scheme enables a user to map a relation to a specification of an N-dimensional display, by designating how attributes are to be used to get a desired segmentation, layout and presentation and enables a user to explore the data with various exploring features including real time continuous scaling.
    Type: Grant
    Filed: October 30, 1996
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Vinod Anupam, Charles Douglas Blewett, Theodore F. Leibfried, Shaul Dar, Eric David Petajan
  • Patent number: 5966516
    Abstract: A method and apparatus for defining a system design specification by using a finite set of templates that have a format for accepting a set of system expression such that a selected template, when filled with the system expressions, defines an intended behavioral attribute of the system. In one illustrative embodiment, each template has a set of qualifiers and a set of entry blanks, wherein each qualifier is associated with an entry blank. In such an embodiment, the set of entry spaces may comprise a fulfilling condition entry space for accepting a system expression that defines a required or assumed event of the system model, an enabling condition entry space for accepting a system expression that defines a precondition for starting a check of the required or assumed event, and a discharging condition entry space for accepting a system expression that defines a condition after which said fulfilling condition is no longer required or assumed by the system model.
    Type: Grant
    Filed: May 9, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies Inc.
    Inventors: Gary F. De Palma, Arthur Barry Glaser, Robert Paul Kurshan, Glenn R. Wesley
  • Patent number: 5966235
    Abstract: An optical modulator that contains a flexible dielectric membrane suspended over a substrate. The flexible membrane is made of a dielectric material such as silicon nitride. In one embodiment of the invention, the flexible membrane has an optically active region. A contact region is maintained in the vicinity of the optically active region which is electrically isolated therefrom. The contact region which includes a conductive material draws accumulated charge build-up from the optically active region. In another embodiment a first area of conductive material is formed on at least one surface of the flexible membrane proximate its center. At least one second area of conductive material is formed on at least one surface of the flexible membrane surrounding the first area. The first area of conductive material is kept electrically isolated from the surrounding second area. The first area of conductive material is coupled to an electrical ground.
    Type: Grant
    Filed: September 30, 1997
    Date of Patent: October 12, 1999
    Assignee: Lucent Technologies, Inc.
    Inventor: James Albert Walker