IP Library Granted Patent US 10,777,445
Granted Patent B2
US 10,777,445 · App. 16/212,555 · Granted Sep 15, 2020

Substrate processing apparatus and substrate transfer method

Inventor: Kazuhiro Nishiwaki (Tama, JP)
Assignee: ASM IP Holding B.V.
H01L21/68742H01L21/67259H01L21/67742H01L21/68H01L21/68764H01L21/68792
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Quick Facts
Patent No.
US 10,777,445
App. No.
16/212,555
Granted
Sep 15, 2020
Kind
B2
Abstract

Examples of a substrate processing apparatus includes a susceptor, a plurality of three or more susceptor pins configured to protrude from an upper surface of the susceptor or be positioned below the upper surface of the susceptor, a transfer arm configured to provide a substrate onto the susceptor or take out a substrate on the susceptor, a plurality of sensors configured to individually detect contact or non-contact of a substrate with the plurality of susceptor pins individually, and a control device configured to monitor a detection result of the plurality of sensors and determine abnormality when an order of variations in a contact state of the substrate with the plurality of susceptor pins is not a predetermined order or when a time difference between the variations in the contact state of the substrate with the plurality of susceptor pins is not within a predetermined time difference range.

Claims (40)

1. A substrate processing apparatus comprising:

a susceptor;

a plurality of three or more susceptor pins configured to protrude from an upper surface of the susceptor or be positioned below the upper surface of the susceptor according to a height of the susceptor;

a transfer arm configured to provide a substrate onto the susceptor or take out a substrate on the susceptor;

a plurality of sensors configured to individually detect contact or non-contact of a substrate with the plurality of susceptor pins individually; and

a control device configured to

define a model pattern for a normal state of contact between the substrate and the plurality of susceptor pins, the model pattern including information about an order of variations in a contact state of the substrate with the plurality of susceptor pins and a time difference between the variations in the contact state of the substrate with the plurality of the susceptor pins,

monitor a detection result of the plurality of sensors, and

determine abnormality when the detected order of variations or the detected time difference is not coincident with the model pattern.

2. The substrate processing apparatus according to claim 1 , wherein

when detecting the abnormality, the control device is configured to perform at least one of stopping the transfer arm, reporting to the user, and changing a transfer method using the transfer arm.

3. The substrate processing apparatus according to claim 1 , wherein

the plurality of sensors are pressure-sensitive sensors.

4. The substrate processing apparatus according to claim 1 , comprising

a shower head that is provided above the susceptor and has an opening therein and to which high frequency power is applied.

5. A substrate processing apparatus comprising:

a susceptor;

a plurality of three or more susceptor pins configured to protrude from an upper surface of the susceptor or be positioned below the upper surface of the susceptor according to a height of the susceptor;

a transfer arm configured to provide a substrate onto the susceptor or take out a substrate on the susceptor;

a plurality of sensors configured to individually detect contact or non-contact of a substrate with the plurality of susceptor pins individually;

a control device configured to monitor a detection result of the plurality of sensors and determine abnormality when an order of variations in a contact state of the substrate with the plurality of susceptor pins is not a predetermined order or when a time difference between the variations in the contact state of the substrate with the plurality of susceptor pins is not within a predetermined time difference range;

a QCM having a first reactor chamber, a second reactor chamber, a third reactor chamber, and a fourth reactor chamber;

a wafer handling chamber that is provided so as to be closer to the first reactor chamber and the second reactor chamber than the third reactor chamber and the fourth reactor chamber, and that intercommunicates with the first reactor chamber and the second reactor chamber; and

a back-end robot that is provided in the wafer handling chamber and is configured to transfer a substrate, wherein

the susceptor and the plurality of susceptor pins are provided in the first reactor chamber, the second reactor chamber, the third reactor chamber, and the fourth reactor chamber, and

the plurality of sensors and the control device are provided in the third reactor chamber and the fourth reactor chamber.

6. The substrate processing apparatus according to claim 5 , wherein

the transfer arm is a rotation arm configured to move a substrate placed in one of the first reactor chamber, the second reactor chamber, the third reactor chamber, and the fourth reactor chamber to another chamber.

7. The substrate processing apparatus according to claim 5 , comprising

an automatic wafer sensing unit configured to determine whether a substrate has passed a predetermined position when the substrate is transferred from the wafer handling chamber to the first reactor chamber or the second reactor chamber by the back-end robot.

8. A substrate transfer method comprising:

positioning a substrate supported by a transfer arm above a susceptor;

when the substrate is brought into contact or separated from a plurality of three or more susceptor pins, checking that an order of variations in a contact state of the substrate with the plurality of susceptor pins is a predetermined order, and that a time difference between the variations in the contact state of the substrate with the plurality of susceptor pins is within a predetermined time difference range; and

performing at least one of stopping the transfer arm, reporting to a user, and changing a transfer method using the transfer arm when the order of the variations in the contact state is not the predetermined order or the time difference between the variations in the contact state is not within the predetermined time difference range.

9. The substrate transfer method according to claim 8 , wherein

the checking is performed when the transfer arm supporting the substrate is brought close to the susceptor to bring the substrate into contact with the plurality of susceptor pins.

10. The substrate transfer method according to claim 8 , wherein

the checking is performed when the susceptor is moved upward with respect to the plurality of susceptor pins to bring the susceptor into contact with the substrate while the substrate is supported by the plurality of susceptor pins, thereby separating the substrate from the plurality of susceptor pins.

11. The substrate transfer method according to claim 8 , wherein

the checking is performed when the susceptor is moved downward with respect to the plurality of susceptor pins to bring the substrate into contact with the plurality of susceptor pins while the substrate is supported by the susceptor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2018
From: NISHIWAKI, KAZUHIRO
To: ASM IP HOLDING B.V.
Reel/Frame 047699/0244 →
Continuity (1)
Related Publication 20200185257A1 · Jun 11, 2020