EP1750366A2

High reliability RF generator architecture

Abstract

A scalable radio frequency (RF) generator system including at least one power supply, at least one power amplifier receiving input from the power supply, and a power supply control module, and a system controller. Output from the at least one power supply can be combined and applied to each of the power amplifiers. Output form each of the at least one power amplifiers can be combined to generate a single RF signal. A compensator module controls operation of the at least one power supply. The compensator module, system control module, and power supply controller communicate in a daisy chain configuration.

EP1750366A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 28 July 2026, 0.2 years ago.

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  2. Filed
  3. Published
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  5. Today

27 claims: 3 independent, 24 dependent

  1. 1
    A radio frequency (RF) power generator comprising:a driver means for generating RF power;a power amplifier means for amplifying the RF power;and a date acquisition means which includes a first communication port and which is configured to receive diagnostic data associated with the power amplifier means, wherein the data acquisition means is configured to save the data that was received for a predetermined time prior to receiving a fault indication via the first communication port.
  2. 2
    The RF power generator of Claim 1, wherein the diagnostic data includes at least one of a voltage, a current, a phase angle, a temperature and a process variable.
  3. 3
    The RF power generator of Claim 1 further comprising an inductive clamping circuit in communication with an output of the power amplifier means.
  4. 4
    The RF power generator of Claim 3 comprising a power supply for providing power to the power amplifier means and a power supply control means for communicating with the data acquisition means for controlling the power supply.
  5. 5
    The RF power generator of Claim 4, wherein the power supply control means is configured to limit a power delivered by the power supply based on the fault indication.
  6. 6
    The RF power generator of Claim 5, wherein the inductive clamping circuit is configured to limit a load applied to the power amplifier means prior to the power supply control limiting the power delivered by the power supply.
  7. 7
    The RF power generator of Claim 1, wherein the power amplifier means includes an air-cavity transistor package.
  8. 8
    The RF power generator of Claim 1, comprising a plurality of said power supply means and a summing means for generating a first current based on currents from the power supply means wherein the first current is communicated to the power amplifier.
  9. 9
    The RF power generator of Claim 1 comprising:a control means that includes a second communication port and is configured to determine an operating parameter of the power amplifier;a power supply control means that includes a third communication port and is configured to determine an operating parameter of a power supply that provides power to the power amplifier;and a daisy-chain communication link that connects the first, second, and third communication ports.
  10. 10
    The RF power generator of Claim 1 comprising a voltage and current (V/I) probe that generates a signal based on the voltage and current of amplified RF power at an output of the power amplifier.
  11. 11
    A radio frequency (RF) power generator comprising:a RF power amplifier means for generating an RF signal;a power supply for providing power to the power amplifier;a control means that includes a first communication port and is configured to determine an operating parameter of the power amplifier means;a power supply control means that includes a second communication port and is configured to determine an operating parameter of the power supply;and a daisy-chain communication link that connects the first and the second communication ports.
  12. 12
    The RF power generator of Claim 11 comprising an inductive clamping circuit in communication with an output of the power amplifier.
  13. 13
    The RF power generator of Claim 12, wherein the inductive clamping circuit is configured to limit a load applied to the power amplifier means prior to the power supply control limiting the power delivered by the power supply.
  14. 14
    The RF power generator of Claim 11, wherein the power supply control means is configured to limit a power delivered by the power supply based on receiving a fault indication via the communication link.
  15. 15
    The RF power generator of Claim 11, wherein the power amplifier means includes an air-cavity transistor package.
  16. 16
    The RF power generator of Claim 11, wherein the power supply comprises a plurality of power supply means a summing means for generating a first current based on currents from the power supply means wherein the first current is communicated to the power amplifier.
  17. 17
    The RF power generator of Claim 11 comprising:a data acquisition means that includes a third communication port that is connected to the communication link and is configured to receive diagnostic data associated with the power amplifier means and wherein the data acquisition means is configured to save the data that was received for a predetermined time prior to receiving a fault indication via the first communication port.
  18. 18
    The RF power generator of Claim 17, wherein the diagnostic data includes at least one of a voltage, a current, a phase angle, a temperature and a process variable.
  19. 19
    The RF power generator of Claim 11 comprising a voltage and current (V/I) probe for generating a signal based on the voltage and current of the RF signal.
  20. 20
    A radio frequency (RF) power generator comprising:a driver means for generating RF power;a power amplifier means for amplifying the RF power;a power supply means for providing power to the power amplifier means;and a power supply control means that includes a first communication port and is configured to limit an output parameter of the power supply means based on receiving a fault indication via the first communication port.
  21. 21
    The RF power generator of Claim 20 comprising an inductive clamping circuit that communicates with an output of the power amplifier means and that is configured to limit a load applied to the power amplifier means before the power supply control means limits the power that the power supply delivers.
  22. 22
    The RF power generator of Claim 20, wherein the power amplifier means includes an air-cavity transistor package.
  23. 23
    The RF power generator of Claim 20, wherein the power supply means comprises a plurality of power supply means and a summing means for generating a first current based on currents from the power supply means, and wherein the first current is communicated to the power amplifier means.
  24. 24
    The RF power generator of Claim 20, wherein the diagnostic data includes at least one of a voltage, a current, a phase angle, a temperature and a process variable that is associated with the power amplifier module.
  25. 25
    The RF power generator of Claim 24 comprising a data acquisition means that includes a second communication port and that is configured to receive and save the diagnostic data for a predetermined time prior to receiving the fault indication via the second communication port.
  26. 26
    The RF power generator of Claim 20 comprising:a control means that includes a third communication port and is configured to determine an operating parameter of the power amplifier;and a daisy-chain communication link that connects the first, second, and third communication ports.
  27. 27
    The RF power generator of Claim 20 comprising a voltage and current (V/I) probe in communication with an output of the power amplifier module.
Independent claims27