Multiple zone heater
A multi-zone heater with a plurality of thermocouples such that different heater zones can be monitored for temperature independently. The independent thermocouples may have their leads routed out from the shaft of the heater in a channel that is closed with a joining process that results in hermetic seal adapted to withstand both the interior atmosphere of the shaft and the process chemicals in the process chamber. The thermocouple and its leads may be enclosed with a joining process in which a channel cover is brazed to the heater plate with aluminum.
1. A multi-zone heater, said multi-zone heater comprising:
a multi-layer heater plate, said multi-layer heater plate comprising:
a heater plate radial center;
a top plate layer, said top plate layer comprising ceramic;
one or more intermediate plate layers, said one or more intermediate plate layers comprising ceramic;
a bottom plate layer, said bottom plate layer comprising ceramic;
a plurality of plate joining layers disposed between said plate layers, wherein said joining layers join said plate layers with hermetic joints;
a plurality of heater element zones between two of the plate layers, said heater element zones adapted to be individually controlled;
a plurality of thermocouples, said thermocouples mounted between two of said plate layers and located at a plurality of distances from said heater plate radial center, said thermocouples comprising thermocouple leads; and
a ceramic hollow heater shaft, said ceramic hollow heater shaft comprising:
an interior surface, said interior surface of said hollow heater shaft defining an interior of said hollow heater shaft; and
an exterior surface, wherein said ceramic hollow heater shaft is attached to a bottom surface of said multi-layer heater plate;
wherein each of the hermetic joints have a vacuum leak rate of <1×10 −9 sccm He/sec and wherein said thermocouple leads are routed through the interior of said ceramic hollow heater shaft.
2. The multi-zone heater according to claim 1 , wherein one or more of said thermocouples are located outside of the area circumscribed by the exterior surface of said hollow heater shaft.
3. The multi-zone heater according to claim 2 further comprising a joining layer between said hollow heater shaft and said multi-layer plate.
4. The multi-zone heater according to claim 3 , wherein said plurality of plate joining layers comprise metallic aluminum.
5. The multi-zone heater according to claim 4 , wherein said joining layer between said hollow heater shaft and said multi-layer plate comprises metallic aluminum.
6. The multi-zone heater according to claim 5 , wherein said hollow heater shaft comprises aluminum nitride.
7. The multi-zone heater according to claim 6 , wherein said plurality of plate joining layers comprise metallic aluminum.
8. The multi-zone heater according to claim 7 , wherein said joining layer between said hollow heater shaft and said multi-layer plate comprises metallic aluminum.
9. The multi-zone heater according to claim 8 further comprising a central hub disposed between said hollow heater shaft and said multi-layer plate.
10. The multi-zone heater according to claim 4 , wherein said plurality of plate joining layers comprise metallic aluminum of greater than 99% by weight.
11. The multi-zone heater according to claim 5 , wherein said plurality of plate joining layers comprise metallic aluminum of greater than 99% by weight and wherein said joining layer between said hollow heater shaft and said multi-layer plate comprises metallic aluminum of greater than 99% by weight.
12. A multi-zone heater, said multi-zone heater comprising:
a multi-layer heater plate, said multi-layer heater plate comprising:
a heater plate radial center;
a top plate layer, said top plate layer comprising ceramic;
a bottom plate layer, said bottom plate layer comprising ceramic;
a joining layer disposed between said top plate layer and said bottom plate layer, wherein said joining layer joins said plate layers with a hermetic joint;
a plurality of heater element zones between two of the plate layers, said heater element zones adapted to be individually controlled; and
a plurality of thermocouples, said thermocouples mounted between said plate layers and located at a plurality of distances from said heater plate radial center, said thermocouples comprising thermocouple leads,
wherein the hermetic joint has a vacuum leak rate of <1×10 −9 sccm He/sec and; and
a ceramic hollow heater shaft, said ceramic hollow heater shaft comprising:
an interior surface, said interior surface of said hollow heater shaft defining an interior of said hollow heater shaft; and
an exterior surface, wherein said ceramic hollow heater shaft is attached to a bottom surface of said multi-layer heater plate;
wherein each of the hermetic joints have a vacuum leak rate of <1×10 −9 sccm He/sec and wherein said thermocouple leads are routed through the interior of said ceramic hollow heater shaft.
13. The multi-zone heater according to claim 12 , wherein said joining layer comprises metallic aluminum.
14. The multi-zone heater according to claim 13 , wherein said joining layer comprises metallic aluminum of greater than 99% by weight.
15. The multi-zone heater according to claim 13 , wherein said top plater layer comprises aluminum nitride.
16. The multi-zone heater according to claim 15 , wherein said bottom layer comprises aluminum nitride.