IP Library Granted Patent US 9,112,451
Granted Patent B2
US 9,112,451 · App. 14/127,352 · Granted Aug 18, 2015

Electronic radio system for power amplification with protection in terms of standing wave rate and associated method of protection

Inventors: Pierre Bertram (Cholet, FR); Yannick Menard (Cholet, FR); Christophe Desevedavy (Cholet, FR); Eric Souchard (Cholet, FR)
Assignee: THALES
H03F1/00H03F1/52H03G3/3042H03F2200/393H03F2200/451H03F2200/462
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Quick Facts
Patent No.
US 9,112,451
App. No.
14/127,352
Granted
Aug 18, 2015
Kind
B2
Abstract

An electronic radio system for power amplification of a radiofrequency signal having an electronic circuit having at least one in-service amplifier component, a detector measuring at least one electrical parameter of the in-service amplifier component, having at least the intensity of the electric current supplying the in-service amplifier component, a power attenuator adjusting the output power of the electronic circuit, and a programmable circuit receiving and transmitting commands to control the modules of the radio electronic system. The programmable circuit furthermore includes means for obtaining at least one measurement value relating to the intensity of the electric current supplying said in-service amplifier component of said detector and means for controlling said power attenuator in the case where at least one measurement value obtained exceeds a predetermined threshold value corresponding thereto. The invention also relates to an associated electronic circuit protection method.

Claims (19)

1. An electronic radio system for power amplification of a radiofrequency signal, comprising the following modules:

an electronic circuit comprising at least one in-service amplifier component,

a detector able to measure at least one electrical parameter of said in-service amplifier component, comprising at least the intensity of the electrical current supplying said in-service amplifier component,

a power attenuator able to adjust the output power of said electronic circuit, and

a programmable circuit able to receive and transmit commands to control the modules of said radio electronic system,

wherein the programmable circuit further includes a unit obtaining, from said detector, at least one measurement value relating to the intensity of the electric current supplying said in-service amplifier component of said detector, and

a unit controlling said power attenuator in the case where at least one obtained measurement value exceeds a predetermined threshold value corresponding thereto, said control unit being able to control said power attenuator iteratively to attenuate the power by a predetermined value by repeatedly attenuating the power by the predetermined value, until at least one measurement value obtained from said detector is below said corresponding predetermined threshold value, so as to gradually decrease the power.

2. The system according to claim 1 , wherein the programmable circuit is capable of periodically processing, at a given period, at least one measurement value of said detector.

3. The system according to claim 1 , wherein at least one predetermined threshold value depends on a power mode connected to the power of the radiofrequency signal emitted by said electronic radio system.

4. The system according to claim 1 , wherein the programmable circuit further includes a unit sending a digital alarm signal to a digital control card capable of exchanging control data with the programmable circuit, in the case where at least one obtained measurement value exceeds said predetermined corresponding threshold value.

5. The system according to claim 1 , wherein the electronic circuit is a power amplifier comprising at least one in-service transistor.

6. A method for protecting an electronic circuit comprising at least one in-service amplifier component, implemented in an electronic radio system for power amplification comprising said electronic circuit comprising at least one in-service amplifier component, a detection module capable of measuring at least one electric parameter of said in-service amplifier component, comprising at least the intensity of the electrical supply current of said in-service amplifier component, a power attenuation module capable of regulating the output power from said electronic circuit, and a programmable circuit capable of receiving and transmitting commands to control the modules of said electronic radio system,

wherein the method is implemented by said programmable circuit and includes the following steps:

obtaining at least one measurement value from said detector relative to the intensity of the electric supply current of said in-service amplifier component, and

implementing said power attenuator in the case where at least one obtained measurement value exceeds a corresponding predetermined threshold value comprising sending an attenuation command with a predetermined value, and in that said attenuation command is iterated, by repeatedly attenuating the power by the predetermined value, until at least one measurement value obtained from said detector is below said corresponding predetermined threshold value, so as to gradually decrease the power.

7. The method for protecting an electronic circuit according to claim 6 , wherein, for a given electric parameter, said predetermined threshold value is a first predetermined threshold value, the method comprising, when said measurement value obtained from said detector is below said first predetermined threshold value, the following steps:

obtaining a measurement value from said detector and verifying that said obtained measurement value is below a second predetermined threshold value lower than said first predetermined threshold value,

and, in case of positive verification,

sending a nominal programming command to said power attenuator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2013
From: BERTRAM, PIERRE; MENARD, YANNICK; DESEVEDAVY, CHRISTOPHE; SOUCHARD, ERIC
To: THALES
Reel/Frame 031810/0717 →
Priority Claims (1)
FR 11 01911 · Jun 21, 2011 · national
Continuity (1)
Related Publication 20140118064A1 · May 1, 2014