Patents Represented by Attorney Ronald G. Wesoloski
  • Patent number: 4885799
    Abstract: A load pull isolation switch for a signal source is discolsed which substantially eliminates the effects of load pull caused by a variable impedance load when selectively coupled and decoupled to a signal source. By judiciously choosing the timing criteria for activating the isolation switch, convention load pull isolation stages are eliminated.In another embodiment, the load pull isolation switch is disclosed as incorporated in a mobile radio having a fast locking synthesizer. The timing of the operation of the isolation switch is controlled by a microprocessor-controller which not only handles data and control functions for the mobile radio, but also has the necessary method steps incorporated as software within the microprocessor-controller. Such an arrangement is useful for sending voice or data as in a time division multiplex system.
    Type: Grant
    Filed: July 1, 1987
    Date of Patent: December 5, 1989
    Assignee: Motorola, Inc.
    Inventor: Mark I. Van Horn
  • Patent number: 4857928
    Abstract: An improved apparatus and method for a sigma delta converter for bandpass signals is disclosed, suitable for use in mobile radio applications, between the front end and digital signal processing stages, that includes at least one bandpass filter, an n-level quantizer, an n-level digital-to-analog (D/A) converter, and a direct current (DC) feedback network. The sigma delta converter for bandpass signals may be configured in a second order or a fourth order embodiment and achieves analog-to-digital conversion of a signal having a non-zero frequency carrier or suppressed carrier with improved signal-to-noise ratio performance and with minimal quantization error. As a result, the sigma delta conversion occures earlier in a receiver chain and a dynamic range of about 95-98 dB is achieved.
    Type: Grant
    Filed: January 28, 1988
    Date of Patent: August 15, 1989
    Assignee: Motorola, Inc.
    Inventors: Paul H. Gailus, William J. Turney, Francis R. Yester, Jr.
  • Patent number: 4827226
    Abstract: A fully integrated, adjustable oscillator circuit for use with a crystal is disclosed in which a crystal oscillator, such as a Pierce oscillator, is arranged to utilize a tuning network that includes at least one integrated varactor (voltage-variable-capacitor) as a shunt element for providing at least one type of adjustment of the oscillating signal. More than one type of adjustment can be provided by including a bank of varactors for each of the shunt elements of the tuning network, in which various individual varactors are selected in binary (on-off) fashion to effect digital as well as analog adjustment of the crystal oscillator.
    Type: Grant
    Filed: May 31, 1988
    Date of Patent: May 2, 1989
    Assignee: Motorola, Inc.
    Inventor: Lawrence E. Connell
  • Patent number: 4775995
    Abstract: An improved arrangement and method for use in a radio communication system is disclosed which makes possible mobile radio channel assignments on narrower channel spacings with a minimum amount of adjacent channel interference or splatter occurring at an included base station receiver. In a first embodiment, the mobile radios modify at least one transmission parameter, such as maximum allowable deviation, a given amount of transmitter output power, and a modulation limiting bandwidth, if a processed value of receive signal strength exceeds at least one predetermined threshold value. The processed value of receive signal strength is taken from a plurality of sampled and stored receive signal strength values in the mobile radio. By determining that the processed value of receive signal strength exceeds a predetermined threshold value, the mobile radio is able to adaptively control the amount of splatter caused at the base station, thus keeping the amount of splatter within acceptable levels.
    Type: Grant
    Filed: December 22, 1986
    Date of Patent: October 4, 1988
    Assignee: Motorola, Inc.
    Inventors: Ronald H. Chapman, John S. Ruppel, Anthony P. van den Heuvel, Jona Cohn