IP Library › Granted Patent US 11,794,314
Granted Patent B2
US 11,794,314 · App. 17/562,544 · Granted Oct 24, 2023

Quick swap chuck with vacuum holding interchangeable top plate

Inventors: Lim Chow Tian (Singapore, SG); Rajeev Patil (Fremont, CA); Harit Maganlal Gadhia (Singapore, SG)
Assignee: KLA Corporation
B25B11/005G01N21/9501H01L21/6838
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Quick Facts
Patent No.
US 11,794,314
App. No.
17/562,544
Granted
Oct 24, 2023
Kind
B2
Abstract

An apparatus for securing a substrate includes a detachable plate configured to reversibly attach to a base of a chuck. The base of the chuck includes one or more base-substrate vacuum inlet channels and one or more base-plate inlet channels. The detachable plate includes one or more first vacuum reservoirs and second vacuum reservoirs. The detachable plate is further configured to establish a fluidic connection between the one or more first vacuum reservoirs and the base-plate inlet channels for forming a first vacuum seal between the detachable plate and the base. The detachable plate further includes one or more pass-through channels for fluidic connection with the one or more second vacuum reservoirs for forming a second vacuum seal between the detachable plate and the substrate.

Claims (49)

1. An apparatus for securing a substrate comprising:

a detachable plate, wherein the detachable plate is configured for reversible attachment to a base of a chuck, wherein the detachable plate includes one or more first vacuum reservoirs on a backside portion of the detachable plate and one or more second vacuum reservoirs on a frontside portion of the detachable plate,

wherein the base includes one or more base-substrate vacuum inlet channels and one or more base-plate inlet channels,

wherein the detachable plate is configured to establish fluidic connection between the one or more first vacuum reservoirs on the backside portion of the detachable plate and the one or more base-plate inlet channels for forming a first vacuum seal between the detachable plate and the base; and

wherein the detachable plate includes one or more pass-through channels for fluidic connection with the one or more base-substrate vacuum inlet channels to establish fluidic connection between the one or more second vacuum reservoirs on the frontside portion of the detachable plate for forming a second vacuum seal between the detachable plate and the substrate.

2. The apparatus of claim 1 , wherein the detachable plate is secured to the base via one or more fasteners.

3. The apparatus of claim 2 , wherein the one or more fasteners comprise at least one of one or more screws, one or more bolts, or one or more pins.

4. The apparatus of claim 1 , wherein the detachable plate is secured to the base via the first vacuum seal between the detachable plate and the base.

5. The apparatus of claim 1 , wherein the detachable plate is coated with one or more coatings.

6. The apparatus of claim 5 , wherein the one or more coatings comprise one or more anti-reflective coatings.

7. The apparatus of claim 1 , wherein at least a portion of the detachable plate is formed from at least one of polyetheretherketone polymer, carbon fiber, or silicon carbide.

8. The apparatus of claim 1 , wherein the base of the chuck is mechanically coupled to a rotational drive unit, wherein the rotational drive unit comprises:

a spindle; and

a motor.

9. The apparatus of claim 1 , wherein the comprises:

a semiconductor wafer.

10. An apparatus for securing a substrate comprising:

a base of a chuck;

a detachable plate, wherein the detachable plate is configured for reversible attachment to the base of the chuck, wherein the detachable plate includes one or more first vacuum reservoirs on a backside portion of the detachable plate and one or more second vacuum reservoirs on a frontside portion of the detachable plate,

wherein the base includes one or more base-substrate vacuum inlet channels and one or more base-plate inlet channels,

wherein the detachable plate is configured to establish fluidic connection between the one or more first vacuum reservoirs on the backside portion of the detachable plate and the one or more base-plate inlet channels for forming a first vacuum seal between the detachable plate and the base; and

wherein the detachable plate includes one or more pass-through channels for fluidic connection with the one or more base-substrate vacuum inlet channels to establish fluidic connection between the one or more second vacuum reservoirs on the frontside portion of the detachable plate for forming a second vacuum seal between the detachable plate and the substrate.

11. An optical system comprising:

a substrate chucking sub-system including:

a base;

a detachable plate, wherein the detachable plate is configured for reversible attachment to the base, wherein the detachable plate includes one or more first vacuum reservoirs on a backside portion of the detachable plate and one or more second vacuum reservoirs on a frontside portion of the detachable plate;

wherein the base includes one or more base-substrate vacuum inlet channels and one or more base-plate inlet channels;

wherein the detachable plate is configured to establish fluidic connection between the one or more first vacuum reservoirs on the backside portion of the detachable plate and the one or more base-plate inlet channels for forming a first vacuum seal between the detachable plate and the base; and

wherein the detachable plate includes one or more pass-through channels for fluidic connection with the one or more base-substrate vacuum inlet channels to establish fluidic connection between the one or more second vacuum reservoirs on the frontside portion of the detachable plate for forming a second vacuum seal between the detachable plate and the substrate; and

an illumination source configured to illuminate one or more portions of the substrate secured by the substrate chucking sub-system; and

a detector configured to collect illumination from the illuminated one or more portions of the substrate.

12. The optical system of claim 11 , wherein the optical system is configured as an inspection tool.

13. The optical system of claim 11 , wherein the optical system is configured as a metrology tool.

14. The optical system of claim 11 , herein the detachable plate is secured to the base via one or more fasteners.

15. The optical system of claim 14 , herein the one or more fasteners comprise at least one of one or more screws, one or more bolts, or one or more pins.

16. The optical system of claim 11 , wherein the detachable plate is secured to the base via the first vacuum seal between the detachable plate and the base.

17. The optical system of claim 11 , wherein the detachable plate is coated with one or more coatings.

18. The optical system of claim 17 , wherein the one or more coatings comprise one or more anti-reflective coatings.

19. The optical system of claim 11 , wherein at least a portion of the detachable plate is formed from at least one of polyetheretherketone polymer, carbon fiber, or silicon carbide.

20. The optical system of claim 11 , wherein the base is mechanically coupled to a rotational drive unit, wherein the rotational drive unit comprises:

a spindle; and

a motor.

21. The optical system of claim 11 , wherein the substrate comprises:

a semiconductor wafer.

22. A method comprising:

receiving a detachable plate including one or more first vacuum reservoirs on a backside portion of the detachable plate and one or more second vacuum reservoirs on a frontside portion of the detachable plate;

securing the detachable plate to a base of a chuck by establishing fluidic connection between the one or more first vacuum reservoirs on the backside portion of the detachable plate and one or more base-plate inlet channels to form a first vacuum seal between the detachable plate and the base;

receiving a substrate; and

securing the substrate to the detachable plate by establishing fluidic connection, via one or more pass-through channels, between the one or more base-substrate vacuum inlet channels and the one or more second vacuum reservoirs on the frontside portion of the detachable plate to form a second vacuum seal between the detachable plate and the substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2022
From: TIAN, LIM CHOW; PATIL, RAJEEV; GADHIA, HARIT MAGANLAL
To: KLA CORPORATION
Reel/Frame 058727/0287 →
Continuity (2)
Provisional Application 63238222 · Aug 30, 2021
Related Publication 20230069384A1 · Mar 2, 2023