Jurkov et al., 2020 - Google Patents
Tunable matching networks based on phase-switched impedance modulationJurkov et al., 2020
View PDF- Document ID
- 2853362102164739059
- Author
- Jurkov A
- Radomski A
- Perreault D
- Publication year
- Publication venue
- IEEE Transactions on Power Electronics
External Links
Snippet
The ability to provide accurate, rapid, and dynamically controlled impedance matching offers significant advantages to a wide range of present and emerging radio-frequency (RF) power applications. This article develops a new type of tunable matching network (TMN) that …
- 230000000051 modifying 0 title abstract description 69
Classifications
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03B—GENERATION OF OSCILLATIONS, DIRECTLY OR BY FREQUENCY-CHANGING, BY CIRCUITS EMPLOYING ACTIVE ELEMENTS WHICH OPERATE IN A NON-SWITCHING MANNER; GENERATION OF NOISE BY SUCH CIRCUITS
- H03B5/00—Generation of oscillations using amplifier with regenerative feedback from output to input
- H03B5/08—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance
- H03B5/12—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance active element in amplifier being semiconductor device
- H03B5/1237—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance active element in amplifier being semiconductor device comprising means for varying the frequency of the generator
- H03B5/124—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance active element in amplifier being semiconductor device comprising means for varying the frequency of the generator the means comprising a voltage dependent capacitance
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03L—AUTOMATIC CONTROL, STARTING, SYNCHRONISATION, OR STABILISATION OF GENERATORS OF ELECTRONIC OSCILLATIONS OR PULSES
- H03L7/00—Automatic control of frequency or phase; Synchronisation
- H03L7/06—Automatic control of frequency or phase; Synchronisation using a reference signal applied to a frequency- or phase-locked loop
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03B—GENERATION OF OSCILLATIONS, DIRECTLY OR BY FREQUENCY-CHANGING, BY CIRCUITS EMPLOYING ACTIVE ELEMENTS WHICH OPERATE IN A NON-SWITCHING MANNER; GENERATION OF NOISE BY SUCH CIRCUITS
- H03B5/00—Generation of oscillations using amplifier with regenerative feedback from output to input
- H03B5/08—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance
- H03B5/12—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance active element in amplifier being semiconductor device
- H03B5/1206—Generation of oscillations using amplifier with regenerative feedback from output to input with frequency-determining element comprising lumped inductance and capacitance active element in amplifier being semiconductor device using multiple transistors for amplification
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03F—AMPLIFIERS
- H03F3/00—Amplifiers with only discharge tubes or only semiconductor devices as amplifying elements
- H03F3/20—Power amplifiers, e.g. Class B amplifiers, Class C amplifiers
- H03F3/21—Power amplifiers, e.g. Class B amplifiers, Class C amplifiers with semiconductor devices only
- H03F3/217—Class D power amplifiers; Switching amplifiers
- H03F3/2176—Class E amplifiers
-
- H—ELECTRICITY
- H03—BASIC ELECTRONIC CIRCUITRY
- H03C—MODULATION
- H03C3/00—Angle modulation
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02M—APPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
- H02M3/00—Conversion of dc power input into dc power output
- H02M3/02—Conversion of dc power input into dc power output without intermediate conversion into ac
- H02M3/04—Conversion of dc power input into dc power output without intermediate conversion into ac by static converters
- H02M3/10—Conversion of dc power input into dc power output without intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode
- H02M3/145—Conversion of dc power input into dc power output without intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal
- H02M3/155—Conversion of dc power input into dc power output without intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only
- H02M3/156—Conversion of dc power input into dc power output without intermediate conversion into ac by static converters using discharge tubes with control electrode or semiconductor devices with control electrode using devices of a triode or transistor type requiring continuous application of a control signal using semiconductor devices only with automatic control of output voltage or current, e.g. switching regulators
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Jurkov et al. | Tunable matching networks based on phase-switched impedance modulation | |
US11316477B2 (en) | Generation and synchronization of pulse-width modulated (PWM) waveforms for radio-frequency (RF) applications | |
CN107112972B (en) | Tunable matching network with phase switching elements | |
US10079512B2 (en) | Large signal VCO | |
US6407514B1 (en) | Non-synchronous control of self-oscillating resonant converters | |
Jurkov et al. | Tunable impedance matching networks based on phase-switched impedance modulation | |
WO2012085119A2 (en) | A wireless power receiver for receiving a power signal over an inductive coupling, and an improvement in the method for operating a wireless power receiver | |
Mury et al. | Series-L/parallel-tuned comparison with shunt-C/series-tuned class-E power amplifier | |
Grebennikov et al. | A history of switching-mode Class-E techniques: The development of switching-mode Class-E techniques for high-efficiency power amplification | |
JP2024161451A (en) | Generation and synchronization of pulse width modulation (pwm) wave form for radio frequency (rf) use | |
RU2695541C1 (en) | Device for inputting energy into gas-discharge plasma | |
JP4358160B2 (en) | Phase modulator and radio transmitter | |
Rad et al. | A Wideband Multilevel Reconfigurable Class E/F 23 Power Amplifier With a Band-Selecting Tracking Reactance Compensation Automatic Calibration Algorithm | |
Lee et al. | Design and Control of High-Frequency Resonant Inverter for Wide Load Variation | |
Komiyama et al. | Design of Class-Φ 3 Power Oscillator | |
Komiyama et al. | Design of Load-Independent Class-Φ 3 Resonant Inverter | |
Wang et al. | Derivation of Closed-Form Design Equations for Idealized Operation of Inverse Class-E Power Amplifiers at Any Duty Ratio | |
Grebennikov et al. | Class E with finite dc-feed inductance: theory, design and implementation. | |
Bashirullah et al. | A high-frequency DC-DC converter based power amplifier for direct RF carrier generation | |
WO2005104382A1 (en) | Receiver |