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Martin T Gottschalk DeceasedOrlando, FL

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Orlando, FL   

Hamilton, NJ   

Carlisle, PA   

607 Howard Creek Ln, Stuart, FL 34994    772-3352857   

1924 22Nd St, Stuart, FL 34994    772-6925230   

1924 NW 22Nd St, Stuart, FL 34994    772-3352857   

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Us Patents

Attenuator Having A Coupling Section And A Plurality Of Resistors

US Patent:
2003013, Jul 17, 2003
Filed:
Jan 11, 2002
Appl. No.:
10/043807
Inventors:
Martin Gottschalk - Stuart FL, US
Michael Kettner - Stuart FL, US
International Classification:
H01P001/22
US Classification:
333/08100A, 333/08100R
Abstract:
An attenuator is provided which includes a first conductive path having a coupling section and configured to receive a signal. The attenuator further provides a coupling section configured to attenuate the signal to produce an attenuated signal and positioned adjacent to the coupled line section of the first conductive path. A second conductive path is also provided having a coupled line section positioned adjacent to the coupling section and configured to transmit the attenuated signal. A first resistor is connected to the first conductive path and configured to dissipate power from the signal and to provide termination at the system's characteristic impedance. A second resistor is connected to the second conductive path and configured to dissipate power from the attenuated signal and to provide termination at the system's characteristic impedance.

Tuned Reactance Cavity Electrical Termination

US Patent:
6326862, Dec 4, 2001
Filed:
Sep 13, 1999
Appl. No.:
9/394721
Inventors:
Donald A. Ferguson - Stuart FL
Martin Gottschalk - Stuart FL
Assignee:
Florida RF Labs, Inc. - Stuart FL
International Classification:
H01P 126
US Classification:
333 22R
Abstract:
An electrical termination system includes an electrical contact electrically connected to an RF resistor (224). A housing (102) at least partially encloses the RF resistor (224). In one alternative, the housing (102) includes an electrically conductive surface located at a first distance relative to the RF resistor (224) to provide a reactance at the RF resistor (224) to reduce reflected energy at the electrical contact for a wide band RF signal present at the electrical contact. In a second alternative, a surface of a dielectric substrate (602) is located substantially adjacent to the RF resistor (224) to provide a reactance at the RF resistor (224) to reduce reflected energy at the electrical contact.

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