Claims
- 1. An electronic ballast for operating a discharge lamp having electrodes, said electronic ballast comprising:
an inverter which can be supplied with direct voltage and which produces a variable frequency at an output thereof; said inverter being operable at frequencies above 200 KHZ for starting and operating a discharge lamp; a load circuit connected to the output of the inverter, said load circuit including at least one series resonant circuit which is connectable to a discharge lamp for operation by said inverter, and at least one multilayer circuit into which passive components of the ballast are integrated.
- 2. An electronic ballast according to claim 1, wherein said multilayer circuit is an LTTC multilayer circuit having sintered ceramic layers.
- 3. An electronic ballast according to claim 1 or claim 2, wherein said inverter is arranged to be operated at frequencies above 1 MHZ for starting and operating said discharge lamp.
- 4. An electronic ballast according to claim 1, wherein said load circuit includes at least one of a fluorescent lamp and a high-pressure gas-discharge lamp that has a cap and electrodes.
- 5. An electronic ballast according to claim 1, wherein said inverter is operable in a frequency range between 2.2 MHZ and 3.0 MHZ.
- 6. An electronic ballast according to claim 1, wherein chokes in the form of planar inductors are integrated into said multilayer circuit.
- 7. An electronic ballast according to claim 1, wherein said multilayer circuit comprises a plurality of circuit boards arranged one on top of another, said circuit boards having printed conductors on at least one side thereof and holes extending therethrough which are plated through with conductive material to connect different ones of said conductors which are in different planes.
- 8. An electronic ballast according to claim 1, wherein said multilayer circuit is encased by a metal casing.
- 9. An electronic circuit according to claim 1, wherein said multilayer circuit is connectable to at least one semiconductor assembly by means of flip-chip technology.
- 10. An electronic ballast for operating a low-pressure discharge lamp having electrodes, said electronic ballast comprising:
an inverter which can be supplied with direct voltage and which produces a variable frequency at an output thereof; a load circuit connected to the output of the inverter, said load circuit including at least one series resonant circuit which is connectable to a discharge lamp for operation by said inverter, and at least one LTTC multilayer circuit having sintered ceramic layers into which passive components of the ballast are integrated.
- 11. An electronic ballast according to claim 10, wherein said inverter is operable at frequencies above 1 MHZ.
- 12. An electronic ballast according to claim 10, wherein said inverter is operable in a frequency range between 2.2 MHZ and 3.0 MHZ.
- 13. An electronic ballast according to claim 10, wherein chokes in the form of planar inductors are integrated into said multilayer circuit.
- 14. An electronic ballast according to claim 10, wherein said multilayer circuit comprises a plurality of circuit boards arranged one on top of another, said circuit boards having printed conductors on at least one side thereof and holes extending therethrough which are plated through with conductive material to connect different ones of said conductors which are in different planes.
- 15. An electronic ballast according to claim 10, wherein said multilayer circuit is encased by a metal casing.
- 16. An electronic circuit according to claim 10, wherein said multilayer circuit is connectable to at least one semiconductor assembly by means of flip-chip technology.
- 17. An electronic transformer for use in a load circuit for operating a low voltage halogen lamp, said load circuit being connected to an output of an inverter which can be supplied with direct voltage and which produces a variable frequency above 200 MHZ at said output, said electronic transformer comprising:
a primary winding; a secondary winding that is connectable to a low-voltage halogen lamp for operation by said inverter; and an LTTC multilayer circuit with sintered ceramic layers into which passive components of said transformer are integrated.
- 18. Electronic transformer according to claim 17, wherein said transformer is operable at frequencies above 1 MHZ.
- 19. An electronic transformer according to claim 17, wherein said transformer is operable in a frequency range between 2.2 MHZ and 3.0 MHZ.
- 20. An electronic transformer according to claim 17, chokes in the form of planar inductors are integrated into said multilayer circuit.
- 21. An electronic transformer according to claim 17, wherein said multilayer circuit comprises a plurality of circuit boards arranged one on top of another, said circuit boards having printed conductors on at least one side thereof and holes extending therethrough which are plated through with conductive material to connect different ones of said conductors which are in different planes.
- 22. An electronic transformer according to claim 17, wherein said multilayer circuit is encased by a metal casing.
- 23. An electronic circuit according to claim 17, wherein said multilayer circuit is connectable to at least one semiconductor assembly by means of flip-chip technology.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 63 292.8 |
Dec 1999 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation of copending International Application No. PCT/EP00/13170, filed Dec. 22, 2000, which was publishcd as WO 01/49083 on Jul. 5, 2002 in German but not in English, and the priority of which is hereby claimed.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/13170 |
Dec 2000 |
US |
Child |
10179175 |
Jun 2002 |
US |