IP Library Granted Patent US 12678806
Granted Patent B2
US 12678806 · App. 18/484,339 · Granted Jul 14, 2026

Nozzle gasket and nozzle structure for purge load port

Inventors: Cheng-Lung Wu (Hsinchu, TW); Yang-Ann Chu (Hsinchu, TW); Hsu-Shui Liu (Hsinchu, TW); Jiun-Rong Pai (Hsinchu, TW)
Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
B05B1/002B05B13/02
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Quick Facts
Patent No.
US 12678806
App. No.
18/484,339
Granted
Jul 14, 2026
Kind
B2
Abstract

A plurality of purge nozzles of a purge load port include a nozzle gasket and a nozzle structure to inject a purging fluid into and through an internal chamber of a container (e.g., a FOUP) that is configured to, in operation, transport wafers or workpieces between various locations within a FAB. The nozzle gasket includes a deformable structure that abuts against a surface of a nozzle structure and a sealing structure opposite to the deformable structure that forms a seal between the container and the nozzle gasket. A nozzle hole of a nozzle of the nozzle structure includes a threaded region or portion that is configured to receive a threaded stopper structure to seal off the nozzle hole.

Claims (61)

1 . A nozzle gasket, comprising:

a central axis;

a first end and a second end opposite to the first end;

a through hole aligned with the central axis and extending from the first end to the second end;

a seal structure at the first end, the seal structure including:

a first seal portion extends around the central axis;

a second seal portion extends around the central axis and extends around the first seal portion; and

a recess between the first seal portion and the second seal portion, the recess extends around the central axis, and the recess extends around the first seal portion;

a nozzle structure contact structure at least partially delimits the through hole, and the nozzle structure contact structure is configured to, in operation, contact a surface of a nozzle structure;

a deformation structure at the second end, the deformation structure configured to, in operation, deform when a container is placed on the seal structure, wherein:

the seal structure delimits a first portion of the through hole,

the deformation structure delimits a second portion of the through hole, and

the nozzle structure contact structure delimits a third portion of the through hole, wherein the third portion is between the first portion and the second portion, and the third portion extends from the first portion to the second portion.

2 . The nozzle gasket of claim 1 , wherein the nozzle structure contact structure is configured to, in operation, interlock with a lip portion of the nozzle structure.

3 . The nozzle gasket of claim 1 , wherein the recess is at an angle with respect to a surface of the first seal portion.

4 . The nozzle gasket of claim 1 , wherein the deformation structure is at an angle with respect to a first surface of the first seal portion and a second surface of the seal annular portion.

5 . The nozzle gasket of claim 4 , wherein the deformation structure delimits a deformation recess that is configured to, in operation, provide clearance for the deformation structure to deform when positioning the container on the seal structure.

6 . The nozzle gasket of claim 4 , wherein the seal structure and the deformation structure are made of a material with a shore hardness less than or equal to 70.

7 . A purge load port, comprising:

a nozzle structure including:

a base including a base surface;

a nozzle protruding from the base surface of the base, the nozzle including an end spaced apart from the base surface of the base;

a nozzle hole extending into the end of the nozzle; and

a lip structure at the end of the nozzle;

a nozzle gasket mounted to the nozzle structure, the nozzle gasket extends around the nozzle, and the nozzle gasket including:

a first end extends past the end of the nozzle;

a second end opposite to the first end, wherein the second end is at the base surface of the base;

a through hole extending from the first end to the second end;

a seal structure at the first end; and

a deformation structure at the second end.

8 . The purge load port of claim 7 , wherein the nozzle gasket further includes:

a central axis;

a seal structure including:

a first annular portion;

a second annular portion extends around the central axis and extends around the first annular portion; and

an annular recess between the first annular portion and the second annular portion and the annular recess extends around the first annular portion.

9 . The purge load port of claim 8 , wherein the deformation structure of the nozzle gasket is configured to, in operation, deform when a container is positioned on the seal structure of the nozzle gasket.

10 . The purge load port of claim 9 , wherein the deformation structure delimits a deformation recess that is configured to, in operation, provide clearance for the deformation structure to deform when positioning the container on the seal structure.

11 . The purge load port of claim 7 , wherein the nozzle gasket is made of a material with a shore hardness less than or equal to 70.

12 . The purge load port of claim 7 , wherein:

the nozzle includes a sidewall transverse to the base surface of the base; and

the nozzle gasket further includes a protrusion between the seal structure and the deformation structure, wherein the protrusion is adjacent to the sidewall of the nozzle, extends around the nozzle, and is between the lip structure and the base surface of the base.

13 . The purge load port of claim 12 , wherein the protrusion is configured to, in operation, abut the sidewall of the nozzle and interlock with the lip structure to prevent the nozzle gasket from being removed from the nozzle.

14 . The purge load port of claim 7 , wherein the nozzle hole is at least partially threaded.

15 . The purge load port of claim 14 , wherein the nozzle that is at least partially threaded is configured to, in operation, receive a threaded fastener to close off the nozzle hold.

16 . A nozzle gasket, comprising:

a central axis;

a first end and a second end opposite to the first end;

a through hole aligned with the central axis and extending from the first end to the second end;

a seal structure at the first end, the seal structure including:

a first annular surface of a first annular portion concentric with the central axis;

a second annular surface of a second annular portion concentric with the central axis, the second annular surface surrounds the first annular surface; and

an annular recess that extends between the first annular surface and the second annular surface, the annular recess separates the first annular surface from the second annular surface, the annular recess surrounds the first annular surface, and the annular recess is at an angle less than 90-degrees relative to the second annular surface;

a deformation structure at the second end, the deformation structure configured to, in operation, deform when a container is placed on the seal structure.

17 . The nozzle gasket of claim 16 , further comprising a mounting portion that is between the sealing structure and the deformation structure, and the mounting portion is configured to, in operation, mount the nozzle gasket to a nozzle structure.

18 . The nozzle gasket of claim 16 , wherein:

the seal structure delimits a first portion of the through hole,

the deformation structure delimits a second portion of the through hole, and

the nozzle structure contact structure delimits a third portion of the through hole, wherein the third portion is between the first portion and the second portion, and the third portion extends from the first portion to the second portion.

19 . The nozzle gasket of claim 16 , wherein the deformation structure delimits a deformation recess that is configured to, in operation, provide clearance for the deformation structure to deform when positioning the container on the seal structure.

20 . The nozzle gasket of claim 16 , wherein the seal structure and the deformation structure are made of a material with a shore hardness less than or equal to 70.