IP Library Granted Patent US 9,330,948
Granted Patent B2
US 9,330,948 · App. 13/529,404 · Granted May 3, 2016

Heater unit, fan filter unit, and substrate processing apparatus

Inventors: Masaaki Furuya (Yokohama, JP); Munenori Iwami (Yokohama, JP); Takahiko Wakatsuki (Yokohama, JP); Masanori Kondo (Yokohama, JP); Katsuya Yamada (Tokyo-to, JP)
Assignees: SHIBAURA MECHATRONICS CORPORATION; KABUSHIKI KAISHA TOSHIBA
H01L21/67103B01D46/10B01D46/4263H05B3/283B01D2273/30H05B2203/022
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Quick Facts
Patent No.
US 9,330,948
App. No.
13/529,404
Granted
May 3, 2016
Kind
B2
Abstract

A heater unit according to an embodiment includes: a flat heater including a linear heating element arranged in a planar pattern; a first mesh body formed in a mesh pattern using a material with high heat conductivity and placed at least on one side of the flat heater facing the flat heater; and a second mesh body formed in a mesh pattern using a material with lower heat conductivity than that of the first mesh body and placed to face a surface of the first mesh body opposite to the surface of the first mesh body facing the flat heater.

Claims (58)

1. A heater unit, comprising:

a flat heater including a linear heating element arranged in a planar pattern so that air may pass;

a first mesh body formed in a mesh pattern using a material with high heat conductivity and placed at least on one side of the flat heater to face the flat heater; and

a second mesh body formed in a mesh pattern using a material with lower heat conductivity than that of the first mesh body, and placed on a surface of the first mesh body opposite to the flat heater.

2. The heater unit according to claim 1 , wherein

the first mesh body is aluminum mesh made of aluminum,

the second mesh body includes: stainless mesh made of stainless and placed to face a surface of the aluminum mesh opposite to the surface of the aluminum mesh facing the flat heater; and glass fiber mesh made of glass fiber and placed to face a surface of the stainless mesh opposite to the surface of the stainless mesh facing the aluminum mesh.

3. The heater unit according to claim 1 , further comprising:

a first temperature measurement unit configured to measure temperature of the flat heater; and

a temperature controller configured to control electrical conduction to the flat heater to adjust a measurement value of the first temperature measurement unit to a setting value.

4. The heater unit according to claim 1 , further comprising:

a second temperature measurement unit measuring temperature of the first mesh body; and

at least one of an informing unit configured to inform that a measurement value of the second temperature measurement unit reaches a setting value or above when the measurement value reaches the setting value or above, and an electricity cutoff unit configured to cut off electricity to the flat heater when the measurement value reaches the setting value or above.

5. The heater unit according to claim 1 , further comprising a thermostat configured to measure the temperature of the second mesh body and cut off electricity to the flat heater when the measurement value reaches a setting value or above.

6. A fan filter unit, comprising:

a fan unit including a fan configured to blow air;

a filter unit including a filter configured to collect dust in the blown air;

a heater unit provided between the fan unit and the filter unit, wherein

the heater unit includes:

a flat heater including a linear heating element arranged in a planar pattern so that air may pass;

a first mesh body formed in a mesh pattern using a material with high heat conductivity and placed at least on one side of the flat heater to face the flat heater; and

a second mesh body formed in a mesh pattern using a material with lower heat conductivity than that of the first mesh body and placed on a surface of the first mesh body opposite to the flat heater, and

the heater unit is placed between the fan unit and the filter unit in such a manner that a surface of the heater unit on a side where the first and second mesh bodies are provided faces the filter unit.

7. The fan filter unit according to claim 6 , wherein

the first mesh body is aluminum mesh made of aluminum, and

the second mesh body includes: stainless mesh made of stainless and placed to face the surface of the aluminum mesh opposite to the surface of the aluminum mesh facing the flat heater; and glass fiber mesh made of glass fiber and placed to face a surface of the stainless mesh opposite to the surface of the stainless mesh facing the aluminum mesh.

8. The fan filter unit according to claim 6 , wherein the heater unit includes:

a first temperature measurement unit configured to measure temperature of the flat heater; and

a temperature controller configured to control electrical conduction to the flat heater to adjust a measurement value of the first temperature measurement unit to a setting value.

9. The fan filter unit according to claim 6 , wherein the heater unit includes:

a second temperature measurement unit configured to measure temperature of the first mesh body; and

at least one of an informing unit configured to inform that a measurement value of the second temperature measurement unit reaches the setting value or above when the measurement value reaches the setting value or above, and an electricity cutoff unit configured to cut off electricity to the flat heater when the measurement value reaches the setting value or above.

10. The fan filter unit according to claim 6 , wherein the heater unit includes:

a thermostat configured to measure the temperature of the second mesh body and cut off electricity to the flat heater when the measurement value reaches a setting value or above.

11. The fan filter unit according to claim 6 , further comprising a regulator provided upstream of the heater unit in an air blowing direction of the air blown by the fan and configured to homogenize a flow rate and direction of the air passing through the heater unit.

12. A substrate processing apparatus, comprising:

a casing provided with a mechanism for substrate processing inside, and

a fan filter unit attached to the casing and configured to supply air into the casing, wherein

the fan unit filter includes:

a fan unit including a fan configured to blow air;

a filter unit including a filter configured to collect dust in the blown air;

a heater unit provided between the fan unit and the filter unit, and

the heater unit includes:

a flat heater including a linear heating element arranged in a planar pattern so that air may pass;

a first mesh body formed in a mesh pattern using a material with high heat conductivity and placed at least on one side of the flat heater facing the flat heater; and

a second mesh body formed in a mesh pattern using a material with lower heat conductivity than that of the first mesh body, and placed on a surface of the first mesh body opposite to the flat heater, and

the heater unit is placed between the fan unit and the filter unit in such a manner that a surface of the heater unit on a side where the first and second mesh bodies are provided faces the filter unit.

13. The substrate processing apparatus according to claim 12 , wherein

the first mesh body is aluminum mesh made of aluminum,

the second mesh body includes: stainless mesh made of stainless and placed to face a surface of the aluminum mesh that is opposite to the surface of the aluminum mesh facing the flat heater; and glass fiber mesh made of glass fiber and placed to face a surface of the stainless mesh opposite to the surface of the stainless mesh facing the aluminum mesh.

14. The substrate processing apparatus according to claim 12 , wherein the heater unit includes:

a first temperature measurement unit configured to measure temperature of the flat heater; and

a temperature controller configured to control electrical conduction to the flat heater to adjust a measurement value of the first temperature measurement unit to a setting value.

15. The substrate processing apparatus according to claim 12 , wherein the heater unit includes:

a second temperature measurement unit configured to measure temperature of the first mesh body; and

at least one of an informing unit configured to inform that a measurement value of the second temperature measurement unit reaches a setting value or above when the measurement value reaches the setting value or above, and an electricity cutoff unit configured to cut off electricity to the flat heater when the measurement value reaches the setting value or above.

16. The substrate processing apparatus according to claim 12 , wherein the heater unit includes a thermostat configured to measure the temperature of the second mesh body and cut off electricity to the flat heater when the measurement value reaches a setting value or above.

17. The substrate processing apparatus according to claim 12 , wherein the fan filter unit includes a regulator provided upstream of the heater unit in an air blowing direction of the air blown by the fan, and configured to homogenize a flow rate and direction of the air passing through the heater unit.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2023
From: KABUSHIKI KAISHA TOSHIBA
To: SHIBAURA MECHATRONICS CORPORATION
Reel/Frame 065843/0343 →
CORRECTIVE ASSIGNMENT TO CORRECT THE 4TH ASSIGNOR'S NAME PREVIOUSLY RECORDED ON REEL 028866 FRAME 0604. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 11, 2012
From: FURUYA, MASAAKI; IWAMI, MUNENORI; WAKATSUKI, TAKAHIKO; KONDO, MASANORI; YAMADA, KATSUYA
To: SHIBAURA MECHATRONICS CORPORATION; KABUSHIKI KAISHA TOSHIBA
Reel/Frame 028933/0855 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2012
From: FURUYA, MASAAKI; IWAMI, MUNENORI; WAKATSUKI, TAKAHIKO; KONDA, MASANORI; YAMADA, KATSUYA
To: SHIBAURA MECHATRONICS CORPORATION; KABUSHIKI KAISHA TOSHIBA
Reel/Frame 028866/0604 →
Priority Claims (1)
JP P2011-137060 · Jun 21, 2011 · national
Continuity (1)
Related Publication 20120325797A1 · Dec 27, 2012