Claims
- 1. In an apparatus for casting materials such as metals comprising:
- induction means for applying a magnetic field to said material and solid state inverter means for applying an alternating current to said induction means to generate said magnetic field the improvement wherein:
- means are provided for sensing a reactive parameter corresponding about to the reactance or inductance of said induction means, said reactive parameter sensing means comprising:
- means for sensing a voltage signal applied to said induction means;
- means for sensing a current signal applied to said induction means;
- circuit means for filtering said voltage and current signals to extract the fundamental frequency thereof; and
- circuit means receiving said filtered voltage and current signals for generating a signal corresponding about to said reactance or inductance of said induction means.
- 2. In an apparatus as in claim 1, feedback control means receiving said reactance or inductance signal for controlling the output of said means for applying said alternating current.
- 3. In an apparatus as in claim 1 wherein said filtering means comprises a phase-locked loop circuit.
- 4. In an apparatus as in claim 3 wherein said reactive parameter comprises reactance.
- 5. In an apparatus as in claim 3 wherein said reactive parameter comprises inductance.
- 6. In an apparatus for casting materials such as metals comprising:
- induction means for applying a magnetic field to said material and means for applying an alternating current to said induction means to generate said magnetic field; the improvement wherein said apparatus further includes:
- means for sensing the voltage applied to said induction means 90.degree. out of phase to the current applied to said induction means and for generating a phase sensitive voltage signal corresponding thereto;
- means for sensing the current applied to said induction means for generating a voltage signal corresponding thereto; and
- divider circuit means for dividing said phase sensitive voltage signal by said voltage signal corresponding to said current for generating a signal corresponding about to the reactance of said induction means.
- 7. In an apparatus as in claim 6 wherein said means for sensing said voltage 90.degree. out of phase to said current comprises means for generating a phase reference signal with a phase angle of 90.degree. means for sensing the voltage applied to said induction means and means receiving said phase reference signal and said voltage signal for providing said phase sensitive voltage signal.
- 8. In an apparatus as in claim 7 wherein said means for generating said phase reference signal with a phase angle of 90.degree. comprises a phase-locked loop circuit.
- 9. In an apparatus as in claim 6 wherein means are provided for sensing the frequency of said current applied to said induction means for providing a frequency signal corresponding thereto and means are provided for dividing said reactance signal by said frequency signal to generate a signal corresponding about to the inductance of said induction means.
- 10. In an apparatus as in claim 9, feedback control means receiving said inductance signal for controlling the output of said means for applying said alternating current.
- 11. In an apparatus as in claim 9 wherein said means for sensing said voltage 90.degree. out of phase to said current comprises means for generating a phase reference signal with a phase angle of 90.degree., means for sensing the voltage applied to said induction means and means receiving said phase reference signal and said voltage signal for providing said phase sensitive voltage signal.
- 12. In an apparatus as in claim 11 wherein said means for generating said phase reference signal with a phase angle of 90.degree. comprises a phase-locked loop circuit.
- 13. In an apparatus as in claim 6, feedback control means receiving said reactance signal for controlling the output of said means for applying said alternating current.
Parent Case Info
This is a division of application Ser. No. 905,889, filed May 15, 1978 U.S. Pat. No. 4,161,206.
US Referenced Citations (7)
Foreign Referenced Citations (1)
Number |
Date |
Country |
537750 |
Mar 1977 |
SUX |
Divisions (1)
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Number |
Date |
Country |
Parent |
905889 |
May 1978 |
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