IP Library Granted Patent US 9,287,146
Granted Patent B2
US 9,287,146 · App. 13/994,547 · Granted Mar 15, 2016

Induction heating apparatus and induction heating method

Inventor: Naoki Uchida (Tamano, JP)
Assignee: Mitsui Engineering & Shipbuilding Co., Ltd.
H01L21/67103H05B6/105H05B6/36H05B6/42H05B6/44
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Quick Facts
Patent No.
US 9,287,146
App. No.
13/994,547
Granted
Mar 15, 2016
Kind
B2
Abstract

To provide an induction heating apparatus that employs a batch-type heating system for heating a large-diameter wafer and can perform uniform heating with a high precision, an induction heating apparatus ( 10 ) that heats an inductive-heating target member using a magnetic flux generated from a solenoid-type induction heating coil ( 18 ) and heats a wafer ( 40 ) using the heat generated from the inductive-heating target member, wherein a plurality of inductive-heating target members 14 ( 14 a, 14 b , and 14 c ) of which principal surface is arranged perpendicularly to a core axis direction of the induction heating coil ( 18 ) are interspersed. In the induction heating apparatus ( 10 ) described above, a susceptor ( 12 ) may be configured by housing the inductive-heating target member ( 14 ) in a single holder ( 16 ) made of a member having magnetic permeability and heat conductivity.

Claims (31)

1. An induction heating apparatus, comprising:

a plurality of inductive-heating target members;

a single holder housing the plurality of inductive-heating members interspersed therein;

a solenoid coil operatively positioned to generate magnetic flux to heat the plurality of inductive-heating members;

a single heating target operatively positioned on an upper surface of the holder to be heated by the plurality of inductive-heating members; and

a power supply unit configured to adjust an electric current frequency to the solenoid coil,

wherein each of the plurality of inductive-heating target members has a principal surface arranged perpendicularly to a core axis direction of the solenoid coil,

the single holder having magnetic permeability and heat conductivity,

each of the plurality of inductive-heating target members has a circular shape and are interspersed radially by using a center of the holder as an origin,

at least one of the plurality of inductive-heating target members arranged in the center of the holder has a diameter larger than that of an inductive-heating target member arranged in the vicinity of an outer periphery side of the holder, and

a portion of an inductive-heating target member is selectively heated depending on a diameter of the inductive-heating target member in response to adjusting the electric current frequency of the power supply unit.

2. The induction heating apparatus according to claim 1 , wherein the inductive-heating target member arranged in the center of the holder has a thickness larger than that of the inductive-heating target member arranged in an outer circumference side of the holder.

3. An induction heating apparatus, comprising:

a plurality of inductive-heating target members;

a single holder housing the plurality of inductive-heating members interspersed therein;

a solenoid coil operatively positioned to generate magnetic flux to heat the plurality of inductive-heating members;

a single heating target operatively positioned on an upper surface of the holder to be heated by the plurality of inductive-heating members; and

a power supply unit configured to adjust an electric current frequency to the solenoid coil,

wherein each of the plurality of inductive-heating target members has a principal surface arranged perpendicularly to a core axis direction of the solenoid coil,

the single holder made of a member having magnetic permeability and heat conductivity,

each of the plurality of inductive-heating target members are interspersed radially by using a center of the holder as an origin,

at least one of the plurality of inductive-heating target member members arranged in the center of the holder has a thickness larger than that of an inductive-heating target member arranged in an outer circumference side of the holder, and

a portion of an inductive-heating target member is selectively heated depending on a diameter of the inductive-heating target member in response to adjusting the electric current frequency of the power supply unit.

4. The induction heating apparatus according to claim 1 , wherein a through-hole is formed in each center of the circular inductive-heating target members so that each inductive-heating target member has a ring shape.

5. The induction heating apparatus according to claim 1 , wherein the inductive-heating target member arranged in a center side of the heat generator is a first inductive-heating target member, and the inductive-heating target member arranged in an outer circumference side of the heat generator is a second inductive-heating target member,

the first inductive-heating target member can obtain a heat density higher than that of the second inductive-heating target member when a frequency of an electric current supplied to the solenoid coil of the first inductive-heating target member is lower than that of the second inductive-heating target member.

6. The induction heating apparatus according to claim 3 , wherein the inductive-heating target member arranged in a center side of the heat generator is a first inductive-heating target member, and the inductive-heating target member arranged in an outer circumference side of the heat generator is a second inductive-heating target member,

the first inductive-heating target member can obtain a heat density higher than that of the second inductive-heating target member when a frequency of an electric current supplied to the solenoid coil of the first inductive-heating target member is lower than that of the second inductive-heating target member.

7. The induction heating apparatus according to claim 1 , wherein a thin portion and a thick portion are formed in the inductive-heating target member.

8. The induction heating apparatus according to claim 1 , wherein a plurality of the heat generators are arranged in an enclosed space of the solenoid coil in parallel with each other.

9. The induction heating apparatus according claim 3 , wherein a plurality of the heat generators are arranged in an enclosed space of the solenoid coil in parallel with each other.

Assignments (4)
CHANGE OF NAME Recorded Feb 16, 2024
From: MITSUI E&S HOLDINGS CO., LTD.
To: MITSUI E&S CO., LTD.
Reel/Frame 066482/0792 →
MERGER Recorded Feb 16, 2024
From: MITSUI E&S MACHINERY CO., LTD.
To: MITSUI E&S HOLDINGS CO., LTD.
Reel/Frame 066619/0958 →
CHANGE OF NAME AND COMPANY SPLIT Recorded Jul 23, 2018
From: MITSUI ENGINEERING & SHIPBUILDING CO., LTD.
To: MITSUI E&S MACHINERY CO., LTD.
Reel/Frame 046609/0255 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2013
From: UCHIDA, NAOKI
To: MITSUI ENGINEERING & SHIPBUILDING CO., LTD.
Reel/Frame 030618/0093 →
Priority Claims (1)
JP 2010-288396 · Dec 24, 2010 · national
Continuity (1)
Related Publication 20130264335A1 · Oct 10, 2013