MY142284A

Fluid storage and dispensing systems and processes

Abstract

FLUID STORAGE AND DISPENSING SYSTEMS AND PROCESSES INVOLVING VARIOUS DEVICES, STRUCTURES AND ARRANGEMENTS, AS WELL AS TECHNIQUES AND METHODS, FOR FLUID STORAGE AND DISPENSING, INCLUDING, WITHOUT LIMITATION, PRE-CONNECT VERIFICATION COUPLINGS (38) THAT ARE USEFULLY EMPLOYED IN APPLICATION TO FLUID STORAGE AND DISPENSING PACKAGES, TO ENSURE PROPER COUPLING AND AVOID FLUID I CONTAMINATION ISSUES, EMPTY DETECT SYSTEMS (216, 218, 240) THAT ARE USEFULLY EMPLOYED FOR FLUID STORAGE AND DISPENSING PACKAGES (10, 100, 200) INCORPORATING LINERS (12, 112, 206) THAT ARE PRESSURE-COMPRESSED IN THE FLUID DISPENSING OPERATION, ERGONOMICALLY ENHANCED STRUCTURES (318, 556, 569) FOR FACILITATING REMOVAL OF A DISPENSE CONNECTOR (134, 300, 396, 454, 504, 550, 568, 570, 600, 700, 800, 850) FROM A CAPPED VESSEL, CAP INTEGRITY ASSURANCE SYSTEMS (382, 394, 404, 407,418,424,434,442) FOR PREVENTING MISUSE OF VESSEL CAPS (28,128), AND KEYCODING SYSTEMS (168, 176, 170, 172, 180, 182,515) FOR ENSURING COUPLING OF PROPER DISPENSE ASSEMBLIES AND VESSELS. FLUID STORAGE AND DISPENSING SYSTEMS ARE DESCRIBED, WHICH ACHIEVE ZERO OR NEAR-ZERO HEADSPACE CHARACTER, AND PREVENT OR AMELIORATE SOLUBILIZATION EFFECTS IN LIQUID DISPENSING FROM LINERS (12,112,206) IN OVERPACK VESSELS (14, 202, 390, 430,510).

MY142284A, drawing sheet 1
Sheet 1 of 53

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

148 claims: 20 independent, 128 dependent

  1. 1
    CLAIMS What is claimed is:1. A fluid supply system (250) comprising: a liner-based fluid storage and dispensing package (200) including a liner (206) adapted to contain a liquid medium;a pressurized gas source (212) adapted to exteriorly exert on the liner (206) a gas pressure for pressure-mediated dispensing of said liquid medium from the liner (206);and a monitor adapted to monitor pressure of liquid medium dispensed from the liner and adapted to generate a monitor output signal indicative of a pressure droop condition indicating onset of exhaustion of liquid medium from the liner.
  2. 10
    A semiconductor manufacturing tool (238) comprising the fluid supply system (250) of any one of claims 1 to 9.
  3. 11
    A method of supplying fluid to a location of use from a liner-based fluid storage and dispensing package (200) including a liner (206) holding said fluid, the method comprising applying exterior pressure to the liner (206) to progressively collapse the liner (206) and dispense fluid therefrom, and monitoring pressure of the dispensed fluid during dispensing operation to generate an output signal indicative of a pressure droop condition indicating onset of exhaustion of fluid from the liner (206).
  4. 19
    A method of operating a semiconductor manufacturing tool (238), comprising:the steps of the fluid supplying methods of any one of claims 11 to 18, wherein the fluid comprises a semiconductor manufacturing fluid;and utilizing the dispensed fluid in a downstream fluid-utilizing semiconductor manufacturing tool (238).
  5. 21
    A pre-connect verification coupling, comprising a first coupling body (138), a ring (140) including a first keycode structure and interlock (176), and a second coupling body including a second keycode structure, the ring (140) being cooperative with the first coupling body (138) to allow movement of the body (138) against the ring (140) in a post-verification coupling with the second coupling body, with the interlock (176) preventing such movement prior to verification coupling of the first keycode structure with the second keycode structure.
  6. 61
    A pre-connect verification coupling including a first coupling body (138) and a ring (140) cooperative therewith to allow movement of the body (138) against the ring (140) in a postverification coupling with a second coupling body including second keycode structure, wherein the ring (140) includes a first keycode structure and an interlock (176) preventing such movement prior to verification coupling of the first keycode structure with the second keycode structure.
  7. 64
    A fluid storage and dispensing system, including a fluid storage and dispensing vessel (302) adapted for holding fluid in an interior volume thereof, said vessel (302) having a port opening, a cap (304) engaged with said port opening for sealing thereof, and a dispense assembly including a connector (300) engageable with the cap (304), to access fluid in the vessel (302) for dispensing thereof through the dispense assembly, said connector (300) including at least one engagement member engageable with the cap (304) to lockingly retain the connector (300) in position for dispensing, and a manually graspable member coupled with the at least one engagement member and manually translatable between a first biased position at which the at least one engagement member lockingly retains the connector (300) in position for dispensing, and a second release position at which the at least one engagement member is disengaged from the cap (304) to enable removal of the connector (300) from the cap (304).
  8. 93
    A method of storing and dispensing fluid, comprising use of a fluid storage and dispensing system according to any one of claims 64-92.
  9. 96
    A dispensing assembly for coupling with a cap (554) of a fluid storage and dispensing vessel, comprising a connector body (552), a lever mounted on the connector body (550) for pivotable movement thereon from a first position at which the connector body (552) is in a locked position on said cap (554), to a second position at which disengagement of the connector body (552) is begun by upward pull of the lever, clamps (562, 564) mounted on the connector body (552) and adapted for movement between a first position at which the clamps (562, 564) lockingly engage the cap (554), and a second position at which the clamps (562, 564) begin to disengage the cap (554), said lever at ends thereof being coupled with cams (558, 560) engageable with the clamps (562, 564) in the first position of the lever and the first position of the clamps (562, 564), and disengaged from the clamps (562, 564) in the second position of the lever and the second position of the clamps (562, 564).
  10. 100
    A method of facilitating removal of a probe connector (300, 408, 444, 454, 474, 504) from a cap (304, 406, 420, 440) coupled with a fluid storage and dispensing container, wherein the probe connector (300, 408, 444, 454, 474, 504) has clamps (306, 308, 458, 483, 491, 493, 508) lockingly securing the probe connector (300, 408, 444, 454, 474, 504) to the cap (304, 406, 420, 440), said method comprising fabricating the probe connector (300, 408, 444, 454, 474, 504) with a handle (318, 455, 476, 496) translatable from a down position at which the clamps (306, 308, 458, 483, 491, 493, 508) are lockingly engaged with the cap (304, 406, 420, 440) to an up position at which the handle (318, 455, 476, 496) permits release of the clamps (306, 308, 458, 483, 491, 493, 508) and removal of the probe connector (300, 408, 444, 454, 474, 504) by upward pull of the handle (318, 455,476, 496).
  11. 102
    A fitment seal (350), comprising a main disk-shaped body (351) and a cylindrical sealing wall (355) depending downwardly therefrom at a radius less than radius of the main disk-shaped body (351), whereby the main disk-shaped body (351) forms a peripheral flange, the main diskshaped body (351) having a main top surface (352) and an annular boss (356) extending upwardly from said main top surface (352) and forming a corresponding well (360) in a center portion of said main disk-shaped body (351).
  12. 116
    A fluid storage and dispensing package, comprising a container including a port, a liner in said container adapted for holding fluid, a fitment (24H) including an opening for fluid egress, coupled to said liner and to said port, and a cap (24G) adapted for engagement with said port, wherein said cap (24G) is additionally adapted for engagement with a dispensing assembly including a dispense connector adapted to cooperatively overfit the cap (24G) for withdrawal of fluid from the liner when pressure is exteriorly exerted on said liner, said dispense connector being adapted for connection to pressurizing gas for flow of the pressurizing gas into the AMENDMENT 0 9 FEB 2010 —MylPO ~ PI 20062620 container for exterior exertion of pressure on the liner, a gas seal element (24B) positioned between the cap and the fitment to seal against the pressurizing gas in the container, and a plug seal to prevent fluid escape from the liner at the fitment.
  13. 124
    A fluid storage and dispensing package, comprising a container adapted for holding fluid, said container including a port and locking structure (404) on a surface of the container (400), and a cap (406) adapted for engagement with said port (402), wherein said cap (406) is adapted for engagement with a dispensing assembly including a dispense connector (408) adapted to cooperatively overfit the cap (406), said cap (406) having an outward protrusion element (407) at a lower portion thereof engageable with said locking structure (404) when said dispense connector (408) overfits said cap (406).
  14. 131
    A fluid storage and dispensing package, comprising a container adapted for holding fluid, said container including a port and a first locking structure (418) on a surface of the container, and a cap (420) adapted for engagement with said port, wherein said cap (420) is adapted for engagement with a dispensing assembly including a dispense connector (408) adapted to cooperatively overfit the cap (420), said cap (420) having a second locking structure at a lower portion thereof engageable with said locking structure (418) when said dispense connector (408) overfits said cap (420), and wherein said second locking structure is non-engageable with the first locking structure when said dispense connector (408) does not overfit said cap (420).
  15. 133
    A fluid storage and dispensing package, comprising a container (430) adapted for holding fluid, said container (430) including a port, and a cap (440) adapted for engagement with said AMEMOMENT J- 0 9 rE0 /010 J MvIPO PI 20062620 port, wherein said cap (440) is adapted for engagement with a dispensing assembly including a dispense connector (444) adapted to cooperatively overfit the cap (440), said cap (440) having a locking structure (442) that is operative when said dispense connector overfits said cap (440), and that is de-actuatable when said dispense connector does not overfit said cap (440).
  16. 136
    A method of achieving a zero or near-zero headspace condition in a liner (12) of a fluid storage and dispensing package (10) in which dispensing is carried out with imposition of pressure on the liner (12) for progressive compaction thereof to discharge fluid from an interior volume of the liner (12) through a discharge passage of a probe (136) coupled with the liner (12), in which the probe (136) is a stubby probe having a terminus including an opening to the discharge passage, and the terminus of the stubby probe is disposed in an upper portion of the interior volume of the liner (12) for removal of headspace gas prior to discharge of fluid from the liner.
  17. 137
    A process system including a fluid-utilizing apparatus, a fluid supply including a fluid storage and dispensing package including a liner (206) adapted for imposition of a pressurizing gas thereon to contract the liner (206) and dispense the fluid therefrom, wherein the liner (206) is coupled to a connector for flow of fluid from the liner (206) therethrough during dispensing operation, and a flow circuitry coupled to the connector and to the fluid-utilizing apparatus, the liner (206) including a fluid dispensing port at an upper part thereof, and the connector including a probe (136) for coupling with the fluid dispensing port, wherein the probe (136) comprises a stubby probe, whereby headspace gas may be vented from the liner prior to the dispensing operation, and headspace thereafter minimized throughout the process system during the dispensing operation.
  18. 138
    A connector including a stubby probe and adapted for coupling with a cap (128) of a fluid storage and dispensing package (100) including said cap (128). 0 9 FEB 2010 PI 20062620 MylPO
  19. 140
    A connector (300) adapted for engagement with a cap of a fluid storage and dispensing vessel, wherein the cap has a keycoded structure coupled thereto for prevention of miscoupling and reuse of the cap, and the connector comprises a stubby probe.
  20. 142
    A method of manufacturing a semiconductor product, comprising use of a fluid reagent, wherein the fluid reagent is supplied from a fluid storage and dispensing package (200) including a liner (206) holding the fluid reagent, wherein the liner (206) is subjected to imposition of external pressure thereon for pressure-dispensing of the fluid, wherein the liner (206) is 10 maintained in a zero or near-zero headspace state during pressure-dispensing of the fluid.
Independent claims20