Patents Assigned to Pulse
  • Patent number: 8390522
    Abstract: An antenna component (and antenna) with a dielectric substrate and a plurality of radiating antenna elements on the surface of the substrate. In one embodiment, the plurality comprises two (2) elements, each of them covering one of the opposite heads and part of the upper surface of the device. The upper surface between the elements comprises a slot. The lower edge of one of the antenna elements is galvanically coupled to the antenna feed conductor on a circuit board, and at another point to the ground plane, while the lower edge of the opposite antenna element, or the parasitic element, is galvanically coupled only to the ground plane. The parasitic element obtains its feed through the electromagnetic coupling over the slot, and both elements resonate at the operating frequency. Omni-directionality is also achieved. Losses associated with the substrate are low due to the simple field image in the substrate.
    Type: Grant
    Filed: August 22, 2011
    Date of Patent: March 5, 2013
    Assignee: Pulse Finland Oy
    Inventors: Juha Sorvala, Petteri Annamaa, Kimmo Koskiniemi
  • Patent number: 8378892
    Abstract: An antenna component (200) with a dielectric substrate and two radiating antenna elements. The elements are located on the upper surface of the substrate and there is a narrow slot (260) between them. The antenna feed conductor (241) is connected to the first antenna element (220), which is connected also to the ground by a short-circuit conductor (261). The second antenna element (230) is parasitic; it is galvanically connected only to the ground. The component is preferably manufactured by a semiconductor technique by growing a metal layer e.g. on a quartz substrate and removing a part of it so that the antenna elements remain. In this case the component further comprises supporting material (212) of the substrate chip. The antenna component is very small-sized because of the high dielectricity of the substrate to be used and mostly because the slot between the antenna elements is narrow. The efficiency of an antenna made by the component is high.
    Type: Grant
    Filed: September 17, 2007
    Date of Patent: February 19, 2013
    Assignee: Pulse Finland Oy
    Inventors: Juha Sorvala, Petteri Annamaa, Kimmo Koskiniemi
  • Patent number: 8368500
    Abstract: Improved form-less electronic apparatus and methods for manufacturing the same. In one exemplary embodiment, the apparatus comprises a shape-core inductive device having a bonded-wire coil which is formed and maintained within the device without resort to a bobbin or other form(er). The absence of the bobbin simplifies the manufacture of the device, reduces its cost, and allows it to be made more compact (or alternatively additional functionality to be disposed therein). One variant utilizes a termination header for mating to a PCB or other assembly, while another totally avoids the use of the header by directly mating to the PCB. Multi-core variants and methods of manufacturing are also disclosed.
    Type: Grant
    Filed: January 16, 2012
    Date of Patent: February 5, 2013
    Assignee: Pulse Electronics, Inc.
    Inventors: Michael T. Gilmartin, Frederick J. Kiko, Alan H. Benjamin
  • Publication number: 20120310034
    Abstract: The present invention relates to a system for the physical manipulation of free magnetic rotors in a circulatory system using a remotely placed magnetic field-generating stator. In one aspect, the invention relates to the control of magnetic particles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow. Examples of vascular occlusions targeted by the system include, but are not limited to, atherosclerotic plaques, including fibrous caps, fatty buildup, coronary occlusions, arterial stenosis, restenosis, vein thrombi, arterial thrombi, cerebral thrombi, embolisms, hemorrhages, other blood clots, and very small vessels.
    Type: Application
    Filed: November 2, 2010
    Publication date: December 6, 2012
    Applicant: Pulse Therapeutics, Inc.
    Inventors: Francis M. Creighton, Rogers C. Ritter
  • Patent number: 8323571
    Abstract: Method and system embodiments of the present invention control the ascorbate concentration in produce treatments and particularly are exemplified in fresh cut fruit and vegetable treatments via measured refractivity and/or electrical conductivity of, and/or calcium ions present in, the treatment solution.
    Type: Grant
    Filed: January 28, 2011
    Date of Patent: December 4, 2012
    Assignee: Primordial Diagnostics Inc, DEA Pulse Instruments
    Inventor: Karan Khurana
  • Publication number: 20120296149
    Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one aspect, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow.
    Type: Application
    Filed: May 31, 2012
    Publication date: November 22, 2012
    Applicant: Pulse Therapeutics, Inc.
    Inventor: Francis M. Creighton
  • Patent number: 8313422
    Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one aspect, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow.
    Type: Grant
    Filed: May 15, 2012
    Date of Patent: November 20, 2012
    Assignee: Pulse Therapeutics, Inc.
    Inventor: Francis M. Creighton
  • Patent number: 8308628
    Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one aspect, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow.
    Type: Grant
    Filed: May 15, 2012
    Date of Patent: November 13, 2012
    Assignee: Pulse Therapeutics, Inc.
    Inventor: Francis M. Creighton
  • Publication number: 20120232329
    Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one aspect, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow.
    Type: Application
    Filed: May 15, 2012
    Publication date: September 13, 2012
    Applicant: Pulse Therapeutics, Inc.
    Inventor: Francis M. Creighton
  • Publication number: 20120226093
    Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one aspect, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow.
    Type: Application
    Filed: May 15, 2012
    Publication date: September 6, 2012
    Applicant: Pulse Therapeutics, Inc.
    Inventor: Francis M. Creighton
  • Patent number: 8256134
    Abstract: The apparatus and methods disclosed herein relate to the production of dried co-products from stillage produced by an ethanol production facility.
    Type: Grant
    Filed: June 25, 2008
    Date of Patent: September 4, 2012
    Assignee: Pulse Holdings LLC
    Inventors: James A. Rehkopf, Jeffrey L. Tate, David A. Mirko
  • Patent number: 8234778
    Abstract: Methods and Apparatus for providing a low-cost and high-precision inductive device. In one embodiment, the inductive device comprises a plurality of vias having extended ends which replace windings disposed around a magnetically permeable core. In another embodiment, the inductive device comprises a wired center core as well as a plurality of vias having extended ends which act as windings disposed around a magnetically permeable core. In a second aspect of the invention, a method of manufacturing the aforementioned inductive devices as well as the wired core centers is disclosed.
    Type: Grant
    Filed: July 18, 2011
    Date of Patent: August 7, 2012
    Assignee: Pulse Electronics, Inc.
    Inventors: Christopher P. Schaffer, Alan Lindner
  • Patent number: 8206183
    Abstract: An advanced modular plug connector assembly incorporating an insert assembly disposed in the rear portion of the connector housing. In one embodiment, the connector has a plurality of ports in multi-row configuration, and the insert assembly includes a substrate adapted to receive one or more electronic components such as choke coils, transformers, or other signal conditioning elements or magnetics. The substrate also interfaces with the conductors of two modular ports of the connector, and is removable from the housing such that an insert assembly of a different electronics or terminal configuration can be substituted therefor. In this fashion, the connector can be configured to a plurality of different standards (e.g., Gigabit Ethernet and 10/100). In yet another embodiment, the connector assembly comprises a plurality of light sources (e.g., LEDs) received within the housing. Methods for manufacturing the aforementioned embodiments are also disclosed.
    Type: Grant
    Filed: June 13, 2011
    Date of Patent: June 26, 2012
    Assignee: Pulse Electronics, Inc.
    Inventors: Russell Lee Machado, Victor H. Renteria, Thuyen Dinh
  • Patent number: 8188557
    Abstract: The invention relates to an acoustic micro-electrical-mechanical-system (MEMS) transducer formed on a single die based on a semiconductor material and having front and back surface parts opposed to each other. The invention further relates to a method of manufacturing such an acoustic MEMS transducer. The acoustic MEMS transducer comprises a cavity formed in the die to thereby provide a back volume with an upper portion facing an opening of the cavity and a lower portion facing a bottom of the cavity. A back plate and a diaphragm are arranged substantially parallel with an air gap there between and extending at least partly across the opening of the cavity, with the back plate and diaphragm being integrally formed with the front surface part of the die. The bottom of the cavity is bounded by the die. The diaphragm may be arranged above the back plate and at least partly extending across the back plate.
    Type: Grant
    Filed: March 29, 2007
    Date of Patent: May 29, 2012
    Assignee: Pulse MEMS Aps.
    Inventors: Pirmin Rombach, Morten Berg Arnoldus, Morten Ginnerup
  • Patent number: 8182291
    Abstract: An electrical connector assembly having shielded cage assembly with at least one port for receiving modules, and methods of manufacture and use thereof. In one embodiment, the modules comprise SFP-type (small form-factor pluggable) modules, and the shielded cage assembly comprises an EMI shield member that is disposed at a port opening for the electrical connector assembly. In one variant, the EMI shield member can be disposed on the electrical connector cage assembly without the need for secondary processing techniques such as soldering, or resistance welding. This is accomplished via for example the utilization of mechanical snap features.
    Type: Grant
    Filed: December 7, 2009
    Date of Patent: May 22, 2012
    Assignee: Pulse Electronics, Inc.
    Inventor: Cheng Jung Tsou
  • Patent number: 8179322
    Abstract: A dielectric dual antenna apparatus intended for applications such as small-sized radio frequency devices. The dual antenna comprises a first partial antenna which implements the lower operating band of the antenna and another partial antenna implementing the upper operating band. The partial antennas have a shared substrate, which together with the radiators constitutes an integrated antenna component. The matching of the dual antenna can be improved in either operating band without degrading it in the other operating band at the same time. Methods of operating the aforementioned apparatus are also disclosed.
    Type: Grant
    Filed: January 15, 2008
    Date of Patent: May 15, 2012
    Assignee: Pulse Finland Oy
    Inventor: Pertti Nissinen
  • Patent number: 8179655
    Abstract: Improved over-voltage protection apparatus and associated methods useful in e.g., telecommunications applications. In one embodiment, the over voltage protection apparatus comprises a gas discharge tube, common mode inductor, coupled inductor, secondary over-voltage protection device, filter circuitry, coupled inductor and common mode inductor. In one embodiment the over voltage protection apparatus comprises a gas discharge tube, common mode inductor, coupled inductor, secondary over-voltage protection device and filter circuitry. The arrangement of said inductive components being optimally connected in such a manner as to provide a high impedance circuit for all surge events to the gas discharge tube, so as to protect the filtering circuitry. Methods for the manufacture of the filter protection apparatus so as to be maximally independent of component tolerances are also disclosed.
    Type: Grant
    Filed: March 28, 2008
    Date of Patent: May 15, 2012
    Assignee: Pulse Electronics, Inc.
    Inventor: Timothy Craig Wedley
  • Patent number: 8170524
    Abstract: A power line communication system including a plurality of intelligent devices in communication with a power line and operable to monitor energy usage at a site and communicate usage data onto the power line, and a controller also in communication with the power line, wherein each intelligent device maintains a routing table identifying a first set of other intelligent devices downstream of it relative to the controller that it can communicate with directly and identifying a second set of other intelligent devices downstream of it relative to the controller that it can communicate with through one or more of the first set of other intelligent devices.
    Type: Grant
    Filed: April 2, 2009
    Date of Patent: May 1, 2012
    Assignee: Pulse Utilities International Limited
    Inventors: Stephen Allen Abbot, John Richard Futter, James Lee Allworthy Martin, Gerard Brendan Rowe, Rand Cary Huso
  • Patent number: D663422
    Type: Grant
    Filed: March 24, 2011
    Date of Patent: July 10, 2012
    Assignee: First Pulse Medical, Inc.
    Inventor: John S. Missanelli
  • Patent number: D669593
    Type: Grant
    Filed: November 28, 2011
    Date of Patent: October 23, 2012
    Assignee: Pulse Medical Technologies Ltd.
    Inventor: Iain Elder