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US Patent 9660613 Impedance-matching network using BJT switches in variable-reactance circuits

Patent 9660613 was granted and assigned to ADVANCED ENERGY INDUSTRIES, INC. on May, 2017 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Patent Applicant
ADVANCED ENERGY INDUSTRIES, INC.
ADVANCED ENERGY INDUSTRIES, INC.
Current Assignee
ADVANCED ENERGY INDUSTRIES, INC.
ADVANCED ENERGY INDUSTRIES, INC.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9660613
Date of Patent
May 23, 2017
Patent Application Number
14820400
Date Filed
August 6, 2015
Patent Citations Received
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US Patent 12132435 Method for repeatable stepper motor homing
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US Patent 12027351 Plasma non-uniformity detection
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US Patent 11657980 Dielectric fluid variable capacitor
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US Patent 11670488 Fast arc detecting match network
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US Patent 11887820 Sector shunts for plasma-based wafer processing systems
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US Patent 11923175 Systems and methods for variable gain tuning of matching networks
0
...
Patent Primary Examiner
Douglas W Owens
Douglas W Owens
Patent abstract

This disclosure describes systems, methods, and apparatuses for impedance-matching radio frequency power transmitted from a radio frequency generator to a plasma load in a semiconductor processing chamber. Impedance-matching can be performed via a match network having a variable-reactance circuit. The variable-reactance circuit can comprise one or more reactive elements all connected to a first terminal and selectively shorted to a second terminal via a switch. The switch can comprise a bipolar junction transistor (BJT) or insulated gate bipolar transistor (IGBT) controlled via bias circuitry. In an on-state, the BJT base-emitter junction is forward biased, and AC is conducted between a collector terminal and a base terminal. Thus, AC passes through the BJT primarily from collector to base rather than from collector to emitter. Furthermore, the classic match network topology used with vacuum variable capacitors can be modified such that voltages do not overload the BJT's in the modified topology.

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