Liquid supply assembly

Information

  • Patent Grant
  • 12064783
  • Patent Number
    12,064,783
  • Date Filed
    Monday, May 8, 2023
    a year ago
  • Date Issued
    Tuesday, August 20, 2024
    3 months ago
Abstract
A connector system for a liquid container system for a spray gun includes a lid that includes a liquid outlet and an adapter. The adapter includes a spray gun end and a lid end. The ends are connected with a liquid-tight passageway. Further, the spray gun end is adapted for releasable engagement with a liquid inlet port of the spray gun and the lid end is adapted for releasable engagement with the liquid outlet. The connector system also includes a plurality of interlocking tab assemblies for releasably attaching the adapter to the lid. Each assembly includes a first tab and a second tab, wherein an end of the first tab is adapted to secure the adapter to the lid when the first tab and the second tab are interlocked.
Description
BACKGROUND
Field of the Disclosure

The present disclosure is directed to paint spray gun systems, particularly to liquid supply assemblies for paint spray gun systems.


Description of the Related Art

Spray guns are widely used for rapidly coating surfaces with liquids, such as paint. Liquid is contained in a container that attaches to the gun. The outlet of the container is typically a releasably connectable coupling that connects to the spray gun. Liquid flows from the container into the spray gun and is fed to a spray nozzle. The spray nozzle combines the liquid with air, atomizing the liquid, forming a spray. At the end of the spraying operation, the container and the mating connection to the spray gun must be thoroughly cleaned so that liquid from one operation does not contaminate the liquid to be sprayed in the next spraying operation. Additionally, the coupling between container and spray gun must not retain any dried liquid that might interfere with the connection between container and spray gun. A container with a disposable liner and lid may be used advantageously to eliminate or reduce the labor required to clean the container and the coupling to the spray gun. A spray gun system with a disposable liner is described in U.S. Pat. No. 6,820,824 to Joseph et al. Other spray gun systems with liners are described in U.S. Pat. No. 3,432,104 to Kaltenbach; U.S. Pat. No. 4,151,929 to Sapien; and U.S. Pat. No. 5,816,501 to Lopresti. Systems utilizing disposable liners can include removable filters as well. However, user error can cause erroneous assembly which can lead to particle contamination from unfiltered paint. Additionally, removable filters can lead to paint contamination as the filter is transferred out of the spray gun system for disposal. Moreover, removable filters disposed between a liner and lid can interfere with the fluid dynamics and suction of the liquid if the removable filter is misaligned. Other systems utilize a filter integral with the lid. However, integral filters in such spray gun systems are limited to hard cup designs that do not incorporate a disposable liner. As such, a need exists for a spray gun system that safeguards against erroneous assembly and paint contamination.


Accordingly, the industry continues to need improvements in paint spray gun systems and liquid supply assemblies for paint spray gun systems.





BRIEF DESCRIPTION OF THE DRAWINGS

The present disclosure can be better understood, and its numerous features and advantages made apparent to those skilled in the art by referencing the accompanying drawings.



FIG. 1 includes an exploded perspective view of a liquid container system that includes the connector system in accordance with an embodiment;



FIG. 2 includes an exploded perspective view of the connector system in accordance with an embodiment;



FIG. 3 includes a perspective view of the connector system of FIG. 2 with the adapter installed on the lid outlet and the interlocking tabs in an engaged position;



FIG. 4 includes a cross sectional view of the connector system of FIG. 2 with the adapter installed on the lid outlet and the interlocking tabs disengaged;



FIG. 5 includes the cross sectional view of FIG. 4 with the interlocking tabs engaged;



FIG. 6A includes a perspective view of the top and side of a container liner in accordance with an embodiment;



FIG. 6B includes a side plan view of the container liner of FIG. 6A; the other side view is similar;



FIG. 6C includes detail of a portion of the liner in FIG. 6B as identified by letter E;



FIG. 7 includes a cross-sectional view of the liner of FIGS. 6A-6C installed in an outer cup;



FIGS. 8A-C includes an outer cup for a four piece liquid container system, for the embodiment of FIG. 1;



FIGS. 9A-C includes a unitizing ring for supporting a liner within the outer cup of the embodiment of FIG. 1;



FIGS. 10A-B includes a lid with a flexible sealing gasket in accordance with an embodiment;



FIGS. 11A-B illustrate a unitized lid-ring-liner combination for storing liquid in accordance with an embodiment; and



FIG. 12 illustrates a lid with an integral filter in accordance with an embodiment.





The use of the same reference symbols in different drawings indicates similar or identical items.


DETAILED DESCRIPTION

In various embodiments disclosed herein, a connector system is provided for releasably attaching a spray gun to a liquid container. The connector system includes a liquid container lid with a liquid outlet, an adapter with two ends and interlocking tab assemblies flexibly attached to the lid. One end of the adapter connects to the spray gun liquid inlet port and the other end of the adapter connects to the liquid outlet in the container lid. The adapter ends are joined by a liquid-tight passageway. Interlocking tab assemblies on the top of the lid releasably clamp the adapter to the top of the container lid.


Each tab assembly includes a pair of tabs. Each tab is flexibly attached at one end of the tab to the lid top. One tab of each assembly includes an end shaped to securely clamp the adapter to the lid without the need to rotate the adaptor. This clamping tab is free to flex about its attachment point to the lid and includes a hole near the middle of the tab. The end of the second tab of the interlocking tab assembly is formed to fit through the hole in the clamping tab, releasably engaging the tabs. The second tab of the interlocking tab assembly includes a structure adapted to lock the clamping tab in position with respect to the adapter. This locking tab is formed to flex only slightly about its attachment to the lid, thus maintaining the clamping tab in engagement with the adapter, when the tabs are interlocked. Other means for engaging the tabs in each tab assembly may be used such as a snap closure, a hook and eye, etc. as are known to those skilled in the art.


By way of example and not by way of limitation, the connector system may be used with any of the liquid containers described in co-pending U.S. patent application Ser. No. 11/302,970, entitled “Liquid Container System for a Spray Gun,” which is incorporated herein by reference, by appropriate adaptation of the shape of the lid and the locking hinges that attach the lid to the container.



FIG. 1 includes an exploded view of a four piece container system in which the connector system disclosed herein can be advantageously applied in accordance with an embodiment. The connector system attaches the container system to a spray gun for spraying a liquid. The container system includes an outer support cup 110, a unitizing ring 120, a liner 130 and a lid 200. The unitizing ring is inserted into a recess in a flange at the top of the outer cup.


A disposable, collapsible liner is inserted through the ring into the outer cup and a lip at the top of the liner is supported on the unitizing ring. The lid includes a projection that slides into the opening at the liner top. The lid screws into the unitizing ring and a flange or a flexible sealing gasket on the periphery of the lid presses the liner lip against the unitizing ring, forming a liquid tight seal. A “unitizing” ring means a ring that in combination with other components (here a liner and lid) allows the combination to be manipulated as a unit. Thus, the lid-ring-liner assembly may be removed from the outer cup as a liquid-tight unit, without the danger of the liquid-filled liner separating from the lid. When the lid is installed on the unitizing ring, the lid-ring-liner assembly may be secured to the outer cup with a locking mechanism.


In particular embodiment, as depicted in FIG. 2, a connector system is provided that includes a lid 200 and an adapter 240. The lid 200 covers the top of a liquid container that includes an outer cup 110. The lid 200 is inserted into the outer cup 110 and attached to the outer cup by, for example, locking clips or hinges 210 on the periphery of the lid. The lid includes a generally cylindrical liquid outlet 230 in the top of the lid. One end of the adapter 240 connects to the spray gun liquid inlet port (not shown) and the other end of the adapter connects to the liquid outlet 230 in the lid 200. The adapter ends are joined by a liquid-tight passageway. Interlocking tab assemblies (250-252) are attached to the lid 200. When these tab assemblies (250-252) are in an interlocked configuration, the end 256 of tab 252 presses on adapter ledge 243 and clamps the adapter to the liquid outlet 230 of the lid 240, as can be seen in FIGS. 3 and 5. Thus, the adapter is securely fastened to the lid, facilitating use of the spray gun and liquid container in various orientations.


The interlocking tabs assembly (250-252) is illustrated in FIG. 2 in a non-interlocked configuration. The tab 252 will be called the “clamping” tab because this tab engages the adapter. The clamping tab 252 is biased open (away from the adapter). The tab 250 will be called the “locking” tab because this tab locks the clamping tab into position. The clamping tab 252 includes a hole for receiving an end of the locking tab 250. The hole in the clamping tab 252 and the corresponding end of the locking tab 250 must be shaped in a complementary fashion so that the tab 250 end slides into and through the hole in the clamping tab 252. In a particular aspect, the hole in the locking tab is generally rectangular in shape.


To engage the tabs, a user pushes the clamping tab 252 towards the attached adapter, which threads the locking tab 250 into and though the hole in the clamping tab 252. The locking tab 250 is formed to flex only slightly about its attachment to the lid, thus facilitating engagement of the locking and clamping tabs. This user action engages the tabs of the interlocking tab assembly. The end of each clamping tab 256 presses on the adapter ledge 243 and, thus, clamps the adapter 240 to the lid 200, as illustrated in FIG. 3. Further, the minimal flex of the locking tab 250 maintains the clamping tab end 256 in secure engagement with the adapter, when the tabs are interlocked. The locking tab includes a locking structure, such as the ridge 254 depicted in FIG. 2, to prevent the engaged tabs from separating, by catching the locking structure 254 on the edge of the locking tab hole. The clamping tab 252 may be unlocked from the locking tab by applying downward pressure to the locking tab 250, releasing the locking structure 254 from the hole. The clamping tab 252 will tend to spring away from the adapter to its original position. The adapter may then be removed from the liquid outlet.



FIG. 3 depicts the interlocking tab assemblies (250-252) in an interlocked configuration. The end 256 of the clamping tab 252 presses on the adapter ledge 243 to clamp the adapter 240 to the lid outlet 230. Note the shape of the end 256 of the clamping tab 252. The end 256 of the locking tab 252 is curved to provide a snug fit to the curved portion 242 of the adapter 240 that it contacts, regardless of the position of the adaptor. Thus, in this embodiment, the adapter will remain securely engaged with the liquid outlet for any orientation of the adapter with respect to the liquid outlet, when the adapter is rotated. FIGS. 4 and 5 illustrate a cross-sectional view of the connector assembly system with the interlocking tab assemblies open and closed, respectively. Note in FIG. 4 the bend in the clamping tab 257 between the point where the clamping tab attaches to the lid and the end of the tab 256 that contacts the adapter 240. In certain embodiments, the bend 257 in the tab is sufficiently acute that the locking tab flexes at the bend 257 as the tab end 256 contacts the adapter ledge 243. This flex aids in clamping the adapter to the lid.


Two interlocking tab assemblies are shown on the container lid in FIGS. 2-5, but other embodiments of the connector system may have more than two interlocking tab assemblies. Further, other means for engaging the tabs in each tab assembly may be used such as a snap closure, a hook and eye, etc., as are known to those skilled in the art.


In particular embodiments, the lid 200 and interlocking tab assemblies (250-252) are injection molded as a single piece, according to techniques known in the art. In a preferred embodiment, the lid and tab assemblies are made of polypropylene. In other embodiments, other materials that are suitable for injection molding may be used. The lid and interlocking tab assemblies are shaped to facilitate release of the molded part from the mold.


In another embodiment, as depicted in FIGS. 6A-6C, a disposable liner 600 is provided for use in a liquid container system, such as, for example the container system 100 described in conjunction with FIG. 1. The liner has a non-flat closed end 610, an open end 630 for introducing liquid into the liner and one or more horizontal pleats 620 at the closed end. The liner can be made from any nonporous material, including, but not limited to, polyethylene, polypropylene, or a flexible film. The liner may be rigid or collapsible. In certain embodiments, the liner sidewalls may be thicker than the liner bottom, facilitating storage of liquid in the liner. FIG. 7 depicts a cross-sectional view of the liner 600 installed in an exemplary liquid container system. The disposable liner facilitates cleaning of the container system after use.


As described above, FIG. 1 illustrates an exploded view of a four piece container system in which the connector system disclosed herein can be advantageously applied. FIG. 8A includes a perspective view of the outer cup 110. The cup is generally cylindrically shaped. The outer cup is made of a relatively stiff material, such as a polymeric material, which provides structural stability. In the embodiment illustrated in FIG. 8A, the outer wall 1520 of the cup includes facets to facilitate a secure grip of the outer container by the user. In general, however, the outer wall of the outer cup may be implemented with any generally cylindrical shape. The outside and inside bottom of the cup may be flat or may be other than flat. The top of the outer cup includes a generally cylindrical lip 1530 that is concentric with the longitudinal axis of the outer cup. FIG. 8B includes a plan view of the cup lip 1530 as viewed from above. The lip 1530 includes an indentation or recess 1540. This recess 1540 receives and supports the unitizing ring-liner assembly, as will be described below. The cup lip included slots 1550 in the lip's face which is interior to the cup. As will be described below, tabs in the ring may engage the slots 1550 in the lip's face to prevent mutual rotation of the ring with respect to the cup. FIG. 8C depicts the outer cup in cross section. In particular embodiments, the outer cup includes one or more openings in the cups closed end or sidewall to prevent vacuum formation and to allow paint to be expelled from the container system.



FIGS. 9A-C illustrate a unitizing ring 120, according to an embodiment of the four piece liquid container system. FIG. 9A depicts the ring 120 in a perspective view. The ring is generally annular in shape with the periphery of the annulus shaped to match the recess 1540 in the lip of the outer cup 110. The ring includes tabs 1610 extending outward from the top of the ring such that the tabs 1610 mate with slots 1550 in the top of the outer cup to prevent rotation of the ring with respect to the cup. The ring 120 includes a recess 1620 for receiving and supporting a lip at the open end of the liner, as will be described below. The ring recess 1620 is annular in shape with a circular periphery, but, in general, may assume any shape that corresponds to the shape of the lip of the liner. The inside of the unitizing ring includes rib segments 1630 that extend inwardly from the inner wall of the ring. These rib segments 1630 are generally parallel to the plane of the ring 120 and may be pitched slightly downwardly toward the cup end of the ring to act as screw threads for securing a lid to the ring.



FIG. 1 illustrates, in perspective, as described above, the components that may be included in a four piece liquid container system in accordance with an embodiment. These components are further described in conjunction with FIGS. 8-10. The unitizing ring 120 is inserted into the recess in the lip at the open end of the outer cup 110. A liner 130 is inserted into the unitizing ring, with a lip at the top of the liner resting on a recess 1620 in the ring (see FIG. 9A). A removable lid 200, as depicted in FIG. 10, includes a bottom projection 280 that is inserted into the open end of the liner, after liquid has been poured into the liner. The lid 200 is adapted to contain paint or other liquid within the liner and to prevent air from entering the closed lid/liner combination. Such closure occurs when the spray gun is attached to the assembly for use, or when the container outlet is sealed with a removable cap or plug. The removable cap or plug is used to seal the filled assembly either in preparation for forthcoming use or to store unused paint for future use. The underside of a flange 285 on the periphery of the lid forces the lip of the liner to the recess in the unitizing ring, enabling a liquid-tight seal. In certain embodiments, the diameter of the lid bottom projection 280 and the inner diameter of the ring recess 1620 are such that the top of the sidewall of the liner is compressed when the lid is attached to the unitizing ring. Compression of the liner sidewall between lid bottom projection 280 and ring recess 1620 in this embodiment aids in forming a liquid tight seal. The lid bottom projection 280 and the inner edge of the ring recess 1620 may both be tapered to aid in assembly of the liner, lid, and ring. Tabs or threads 270 at the edge of the lid allow the lid to be screwed into rib segments or threads 1630 on the unitizing ring, securing the lid to ring. A locking mechanism 210 on the lid can secure the lid to the outer cup 110, allowing the liquid container system to be oriented in any direction without detachment of the outer support cup from the system. The securing hinges 210 clip over a flange on the outer cup 110. The tabs are flexibly hinged and biased to snap onto the flange of the outer cup. The lid has an outlet 230 of generally cylindrical shape so that liquid may be transferred from outer cup to the spray gun. The lid outlet, an adapter for connection to a spray gun that mates thereto and means for securing the adapter to the outlet may be constructed as described above in connection with FIGS. 2-5. The locking mechanism depicted for connecting the lid to the outer cup is by way of example only and a variety of such mechanisms can be used to secure the lid to the cup.


The liner illustrated in FIGS. 6A-6C and described herein may be employed in various embodiments of the four piece liquid container system. A liner for use in the system, in general, will be: liquid tight; open-ended with a lip surrounding the open end, so that the lip may be supported by the recess in the unitizing ring and the lip may be pressed by the compressible flange 285 of the removable lid against the ring recess 1620.


In certain embodiments, the four piece liquid container may be coupled with either a gravity feed or a suction feed spray gun, with the outlet of the lid connected to the inlet port of the gun by an adapter, such as the adapter described above. Liquid is withdrawn from the container and fed to the spray nozzle. The gun may be oriented in a wide range of orientations, including an inverted orientation with respect to gravity.


In a particular embodiment, an integrated, compressible flexible sealing gasket is provided at a peripheral edge of a removable container lid in a four piece liquid container system. This sealing gasket forms a liquid tight seal between the lid, liner, and ring. The liquid container system may be generally similar, for example, to the system described above in connection with FIGS. 1-5 and FIGS. 7-9. FIG. 10A includes a cutaway side view of a four piece container system, employing a flexible sealing gasket on the lid. The sealing gasket 275 is a downward flaring circumferential projection extending from the underside of the flange on the periphery of the lid 285 or from top of the lid bottom projection 280. FIG. 10B illustrates the detail of the lid-liner-unitizing ring attachment, labeled “K” in FIG. 10A. The lid 200 screws into the unitizing ring 120 and the downward flaring flexible sealing gasket 275 presses the liner lip 135 against the unitizing ring 120, forming a liquid tight seal. The lid projection 280 may press the liner sidewall against the reservoir sidewall 115, as indicated, or the dimensions of the lid projection 280 may provide clearance between the lid projection and the liner sidewall ensuring easy insertion of the lid projection into the liner (and reservoir) top. The compressible flexible sealing gasket may be formed by injection molding, for example, as the lid is manufactured, avoiding the cost of a separate extra gasket and the complexity of an additional part. In a particular embodiment, the thickness of the sealing gasket is about 0.020 inches, allowing the lip to flex as the lip presses the liner to the ring. In other preferred embodiments, the angle 287 between the flexible sealing lip and the underside of the lid flange 285 at the periphery of the lid is about 30 degrees.


As illustrated in FIG. 11, the unitized ring-lid-liner combination may be manipulated as a liquid-tight unit, e.g., inserted into and removed from the outer cup. FIG. 11A includes an exploded view of the combination, while FIG. 11B depicts the combination assembled. When the combination of FIG. 11B is removed from the cup, the liquid outlet in the lid may be closed with a removable cap or stopper 1110. Advantageously, used paint can be stored and saved without the need for an outer cup. Since a paint shop may have numerous stored paint containers, eliminating the need for an outer cup can provide considerable cost savings. Similarly, paint can be mixed and store temporarily without an outer cup for later use. Further, in disposing of a container with liquid remaining, the unitized system eliminates the danger of the lid separating from the liner as the unit is lifted from the outer cup or as it is tossed into a disposal can. This system eliminates a fire hazard when the liquid is flammable.


In various embodiments, a filter may be provided for any of the liquid container systems described above. This filter, which may be removable, filters the liquid withdrawn from the container. In a particular embodiment, a filter 350 may be built into the underside of the lid 340 in the container assembly, as illustrated in FIG. 12. Liquid withdrawn from the container through the lid outlet can thereby be filtered. The lid 340 and filter 350 advantageously prevent erroneous assembly of the system and eliminate cross-contamination during paint disposal.


The above-disclosed subject matter is to be considered illustrative, and not restrictive, and the appended claims are intended to cover all such modifications, enhancements, and other embodiments, which fall within the true scope of the present invention. Thus, to the maximum extent allowed by law, the scope of the present invention is to be determined by the broadest permissible interpretation of the following claims and their equivalents, and shall not be restricted or limited by the foregoing detailed description.


In addition, in the foregoing Detailed Description, various features can be grouped together or described in a single embodiment for the purpose of streamlining the disclosure. This disclosure is not to be interpreted as reflecting an intention that the claimed embodiments require more features than are expressly recited in each claim. Rather, as the following claims reflect, inventive subject matter can be directed to less than all features of any of the disclosed embodiments. Thus, the following claims are incorporated into the Detailed Description, with each claim standing on its own as defining separately claimed subject matter.

Claims
  • 1. A liquid container system for use with a gravity fed spray gun, comprising: a liner comprising a closed end and an open end, wherein the liner is adapted to hold a liquid, and wherein the liner is adapted to collapse as the liquid is removed from the liquid container system of the gravity fed spray gun;a lid comprising an inlet, an outlet, a sidewall that terminates at the inlet, a filter that is generally planar and positioned in an interior portion of the lid and positioned completely between the inlet and outlet, and wherein the filter has a diameter, wherein the outlet has a diameter, wherein the inlet has a diameter, wherein the diameter of the filter is smaller than the diameter of the inlet, and wherein the diameter of the filter is larger than the diameter of the outlet; anda ring configured to engage at least a portion of the lid in an unassembled state, wherein the lid, ring, and liner are fixedly attached in the unassembled state.
  • 2. The liquid container system of claim 1, wherein the lid and the ring are configured to rotate relative to each other.
  • 3. The liquid container system of claim 1, wherein the lid comprises at least one projection extending axially outward from an outer surface of the lid.
  • 4. The liquid container system of claim 1, wherein the ring is removably attached to the lid.
  • 5. The liquid container system of claim 1, wherein the ring comprises one or more protrusions that project radially outward.
  • 6. The liquid container system of claim 5, wherein the one or more protrusions of the ring that project radially outward are circumferentially spaced along an outside surface of the ring.
  • 7. The liquid container system of claim 5, wherein the one or more protrusions of the ring that project radially outward intersect a terminal edge of the ring.
  • 8. The liquid container system of claim 5, wherein the one or more protrusions that project radially outward are discrete and separated from each other.
  • 9. The liquid container system of claim 5, wherein the one or more protrusions of the ring that project radially outward are discrete and spaced apart from each other around at least a portion of the circumference of the ring.
  • 10. The liquid container system of claim 9, wherein the one or more protrusions of the ring further extend axially for at least a portion of a thickness of the ring.
  • 11. The liquid container system of claim 1, wherein the ring is configured to rotate about an axis of the lid.
  • 12. The liquid container system of claim 1, further comprising a paint cup adapted to engage the ring.
  • 13. The liquid container system of claim 12, wherein an assembly in the assembled state includes the lid, liner, ring, and paint cup.
  • 14. The liquid container system of claim 12, wherein the ring is configured to engage at least a portion of the paint cup in the assembled state.
  • 15. The liquid container system of claim 14, wherein the ring comprises at least one rib segment configured for closing the assembly into the assembled state.
  • 16. The liquid container system of claim 1, wherein the ring further comprises internal protrusions.
  • 17. The liquid container system of claim 16, wherein in an assembled state, a portion of the liner is between the ring and the lid.
  • 18. The liquid container system of claim 1, wherein the filter is bonded to the lid and wherein the lid has no obstruction to the flow of liquid between the inlet and the filter.
  • 19. The liquid container system of claim 1, wherein the filter is bonded to the lid.
  • 20. The liquid container system of claim 19, wherein the filter is bonded to the lid at an internal radial protrusion of the lid.
  • 21. The liquid container system of claim 19, wherein the filter is substantially bonded to the lid only on a single planar side.
  • 22. The liquid container system of claim 21, wherein at least one portion of the interior wall of the lid between the filter and the outlet has a curved contour as viewed in cross-section.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of and claims priority to U.S. patent application Ser. No. 17/324,186, filed May 19, 2021, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., which is a continuation of and claims priority to U.S. patent application Ser. No. 16/049,292, filed Jul. 30, 2018, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., now U.S. Pat. No. 11,040,360, which is a continuation-in-part (CIP) and claims priority to U.S. patent application Ser. No. 14/093,122, filed Nov. 29, 2013, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., now U.S. Pat. No. 10,035,156, which is a continuation of and claims priority to U.S. patent application Ser. No. 13/268,340, filed Oct. 7, 2011, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., which is a divisional of and claims priority to U.S. patent application Ser. No. 11/762,890, filed Jun. 14, 2007, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., now U.S. Pat. No. 8,033,413, which claims priority to U.S. Provisional Application No. 60/828,245, filed Oct. 5, 2006, entitled “LIQUID SUPPLY ASSEMBLY,” by Ronald L. Gerson et al., and also claims priority to U.S. Provisional Application No. 60/815,142, filed Jun. 20, 2006, entitled “CONNECTOR SYSTEM FOR A SPRAY GUN LID,” by Ronald L. Gerson et al., the disclosures of which are incorporated herein by reference in their entireties.

US Referenced Citations (395)
Number Name Date Kind
533489 Ogram Feb 1895 A
758239 Ducart Apr 1904 A
1370687 Ferris Mar 1921 A
1556913 Capra Oct 1924 A
1703384 Birkenmaier Feb 1929 A
1722101 Little Jul 1929 A
1748440 Burdick Feb 1930 A
1843269 Capser Feb 1932 A
1843899 Martinet Feb 1932 A
2004574 Gee, Jr. Jun 1935 A
2005026 Ellsworth Jun 1935 A
2051518 Cunningham Aug 1936 A
D105960 Lieberman Sep 1937 S
2177032 Baumgardner Oct 1939 A
2200675 Northcutt May 1940 A
2228861 Wegener Jan 1941 A
2310633 Heimburger Feb 1943 A
2318717 Rose May 1943 A
2593639 Whitehouse Apr 1952 A
2593839 Buc Apr 1952 A
2595317 White May 1952 A
2606586 Hill Aug 1952 A
2612404 Andersson Sep 1952 A
2641365 Lundeen Jun 1953 A
2656217 Roche Oct 1953 A
2670239 Ditch Feb 1954 A
2670882 Best Mar 1954 A
2720998 Potter Oct 1955 A
2770706 Vogtle et al. Nov 1956 A
2795461 Durkin Jun 1957 A
2851187 Hall Sep 1958 A
2877934 Wallace Mar 1959 A
2901182 Cragg et al. Aug 1959 A
2959358 Vork Nov 1960 A
3000576 Levey et al. Sep 1961 A
3035623 Goetz May 1962 A
3066872 Kobee Dec 1962 A
3134494 Quinn May 1964 A
3136486 Docken Jun 1964 A
3157360 Heard Nov 1964 A
3163544 Valyi Dec 1964 A
3167210 Carney, Jr. Jan 1965 A
3186643 George et al. Jun 1965 A
3195819 Watanabe Jul 1965 A
3198438 Hultgren Aug 1965 A
3211324 Sapien Oct 1965 A
3227305 Enssle Jan 1966 A
3236459 McRitchie Feb 1966 A
3240398 Dalton, Jr. Mar 1966 A
3255972 Hultgren et al. Jun 1966 A
3260464 Harant Jul 1966 A
3335913 Bouet Aug 1967 A
3338406 Anderson Aug 1967 A
3362640 Fainman Jan 1968 A
3381845 MacDonald May 1968 A
3393842 Bruce et al. Jul 1968 A
3401842 Morrison Sep 1968 A
3406853 McLeod Oct 1968 A
3432104 Kaltenbach Mar 1969 A
3487989 Rausing et al. Jan 1970 A
3507309 Johnson Apr 1970 A
3524589 Pelton, Jr. Aug 1970 A
3593921 Boltic Jul 1971 A
3606092 Kollmai Sep 1971 A
3658122 Kalyk Apr 1972 A
3672645 Terrels et al. Jun 1972 A
3674074 Lavis Jul 1972 A
3757718 Johnson Sep 1973 A
3773211 Bridgman Nov 1973 A
3776408 Wald Dec 1973 A
3779419 Heitz Dec 1973 A
3780950 Brennan Dec 1973 A
3784039 Marco Jan 1974 A
3790017 Fitzpatrick et al. Feb 1974 A
3790021 Bailey Feb 1974 A
3815967 Jocelyn Jun 1974 A
3841555 Lilja Oct 1974 A
3853157 Madaio Dec 1974 A
3858810 Seeley et al. Jan 1975 A
3892360 Schlottmann et al. Jul 1975 A
3934746 Lilja Jan 1976 A
3937367 Hood Feb 1976 A
3939842 Harris Feb 1976 A
3940052 McHugh Feb 1976 A
4035004 Hengesbach Jul 1977 A
4043510 Morris Aug 1977 A
4067499 Cohen Jan 1978 A
4069751 Gronwick et al. Jan 1978 A
4088268 Vohringer May 1978 A
4095720 Delbrouck et al. Jun 1978 A
4122973 Ahern Oct 1978 A
4140279 Hawkins Feb 1979 A
4151929 Sapien May 1979 A
4159081 Demler Jun 1979 A
4186783 Brandt Feb 1980 A
4193506 Trindle et al. Mar 1980 A
D257668 Ahern Dec 1980 S
4258862 Thorsheim Mar 1981 A
4307820 Binoche Dec 1981 A
4321922 Deaton Mar 1982 A
4339046 Coen Jul 1982 A
4347948 Hamada et al. Sep 1982 A
4379455 Deaton Apr 1983 A
4383635 Yotoriyama May 1983 A
4388044 Wilkinson Jun 1983 A
4401274 Coffee Aug 1983 A
4403738 Kern Sep 1983 A
4405088 Gray Sep 1983 A
4406406 Knapp Sep 1983 A
4411387 Stern et al. Oct 1983 A
4418843 Jackman Dec 1983 A
4430084 Deaton Feb 1984 A
4442003 Holt Apr 1984 A
4455140 Joslin Jun 1984 A
4457455 Meshberg Jul 1984 A
4491254 Viets et al. Jan 1985 A
4501500 Terrels Feb 1985 A
4516693 Gaston May 1985 A
4558792 Cabernoch et al. Dec 1985 A
4559140 Croteau Dec 1985 A
4562965 Ihmels et al. Jan 1986 A
D283832 Weinstein et al. May 1986 S
4586628 Nittel May 1986 A
4621770 Sayen Nov 1986 A
4623095 Pronk Nov 1986 A
4625890 Galer Dec 1986 A
4628644 Somers Dec 1986 A
4633052 Beavers et al. Dec 1986 A
4645097 Kaufman Feb 1987 A
4653691 Grime Mar 1987 A
4657151 Cabernoch Apr 1987 A
D290990 Izzi Jul 1987 S
4693423 Roe et al. Sep 1987 A
4712739 Bihn Dec 1987 A
4760962 Wheeler Aug 1988 A
4781311 Dunning et al. Nov 1988 A
4811904 Ihmels et al. Mar 1989 A
4813556 Lawrence Mar 1989 A
4813609 French Mar 1989 A
D300555 Patterson Apr 1989 S
4818589 Johnson et al. Apr 1989 A
4824018 Shreve Apr 1989 A
4836764 Parkinson Jun 1989 A
4909409 Shreve Mar 1990 A
4925055 Robbins, III et al. May 1990 A
4930644 Robbins, III Jun 1990 A
4936511 Johnson et al. Jun 1990 A
D309858 Meyersburg Aug 1990 S
4946558 Salmon Aug 1990 A
4951875 Devey Aug 1990 A
4961537 Stern Oct 1990 A
4962885 Coffee Oct 1990 A
4971251 Dobrick et al. Nov 1990 A
4979628 Robbins, III Dec 1990 A
4982868 Robbins, III Jan 1991 A
4998696 Desjardins Mar 1991 A
4999109 Sabre Mar 1991 A
5005726 Robbins Apr 1991 A
5035339 Meyersburg Jul 1991 A
5052623 Nordeen Oct 1991 A
5054687 Burns et al. Oct 1991 A
5059319 Welsh Oct 1991 A
5060816 Robbins, III Oct 1991 A
5069389 Bitsakos Dec 1991 A
5071070 Hardy Dec 1991 A
5078322 Torntore Jan 1992 A
5078323 Frank Jan 1992 A
5094543 Mursa Mar 1992 A
5102052 Demarest et al. Apr 1992 A
5102384 Ross et al. Apr 1992 A
5118003 Pepper et al. Jun 1992 A
5119992 Grime Jun 1992 A
5123571 Rebeyrolle et al. Jun 1992 A
5143242 Millasich Sep 1992 A
5143294 Lintvedt Sep 1992 A
5186828 Mankin Feb 1993 A
5209365 Wood May 1993 A
5209501 Smith May 1993 A
5236128 Morita et al. Aug 1993 A
5236506 Mazakas Aug 1993 A
5238150 Williams Aug 1993 A
5248089 Bekius Sep 1993 A
5248096 Hoey et al. Sep 1993 A
5253900 Snyder Oct 1993 A
D341189 Legassie et al. Nov 1993 S
5259400 Bruno et al. Nov 1993 A
5261751 Heinz Nov 1993 A
5267693 Dickey Dec 1993 A
5269840 Morris et al. Dec 1993 A
5295606 Karwoski Mar 1994 A
5308647 Lappi May 1994 A
5326001 Holmquist et al. Jul 1994 A
5328095 Wickenhaver Jul 1994 A
5332158 Styne et al. Jul 1994 A
5337921 Wilson et al. Aug 1994 A
5341836 Doherty Aug 1994 A
5358402 Reed et al. Oct 1994 A
5368395 Crimmins Nov 1994 A
5377852 Demorest Jan 1995 A
5381918 Dahl Jan 1995 A
5385251 Dunn Jan 1995 A
5400573 Crystal et al. Mar 1995 A
5405090 Greene et al. Apr 1995 A
5415352 May May 1995 A
5421489 Holzner, Sr. et al. Jun 1995 A
5424086 Walker Jun 1995 A
5454488 Geier Oct 1995 A
5460289 Gemmell Oct 1995 A
5462711 Ricottone Oct 1995 A
5468383 McKenzie Nov 1995 A
5492242 Gall Feb 1996 A
5501397 Holt Mar 1996 A
5555997 Nogles Sep 1996 A
5569377 Hashimoto Oct 1996 A
5582350 Kosmyna et al. Dec 1996 A
5607082 Cracauer Mar 1997 A
5617972 Morano et al. Apr 1997 A
5631055 Vines et al. May 1997 A
5655714 Kieffer et al. Aug 1997 A
5667858 Pokorny Sep 1997 A
D386654 Kosmyna Nov 1997 S
5695837 Everaerts et al. Dec 1997 A
5713519 Sandison et al. Feb 1998 A
5789684 Masek et al. Aug 1998 A
5797520 Donahue Aug 1998 A
5803302 Sato et al. Sep 1998 A
5803367 Heard et al. Sep 1998 A
5806711 Morano et al. Sep 1998 A
5816431 Giannopoulos Oct 1998 A
5816501 LoPresti et al. Oct 1998 A
5826795 Holland et al. Oct 1998 A
5829588 Bloomfield Nov 1998 A
5853102 Jarrett Dec 1998 A
5863431 Salzburg Jan 1999 A
5878899 Manganiello et al. Mar 1999 A
5921426 Randolph Jul 1999 A
5938016 Erdtmann Aug 1999 A
5954273 Ruta et al. Sep 1999 A
5964365 Peeples et al. Oct 1999 A
5967379 Crossdale et al. Oct 1999 A
5996427 Masek et al. Dec 1999 A
6019294 Anderson et al. Feb 2000 A
6027041 Evans Feb 2000 A
6053429 Chang Apr 2000 A
6092740 Liu Jul 2000 A
D431279 Spriegel Sep 2000 S
6196410 Hocking Mar 2001 B1
6257429 Kong Jul 2001 B1
6264115 Liska et al. Jul 2001 B1
6277478 Kurita et al. Aug 2001 B1
6287669 George et al. Sep 2001 B1
D449381 de Begon de Larouziere Oct 2001 S
6302445 Kugele et al. Oct 2001 B1
6371385 Schiller et al. Apr 2002 B1
6390386 Krohn et al. May 2002 B2
6394152 Martin May 2002 B1
D460825 Renz Jul 2002 S
6435426 Copp, Jr. Aug 2002 B1
D462268 Schroeder et al. Sep 2002 S
6455140 Whitney et al. Sep 2002 B1
6475609 Whitney et al. Nov 2002 B1
6536684 Wei Mar 2003 B1
6536687 Navis et al. Mar 2003 B1
6588681 Rothrum et al. Jul 2003 B2
6595441 Petrie et al. Jul 2003 B2
6663018 Rothrum et al. Dec 2003 B2
6698670 Gosis et al. Mar 2004 B1
6712292 Gosis et al. Mar 2004 B1
6717673 Janssen et al. Apr 2004 B1
6749132 Pettit et al. Jun 2004 B2
6752179 Schwartz Jun 2004 B1
6796514 Schwartz Sep 2004 B1
6820824 Joseph et al. Nov 2004 B1
6871594 Estrella Mar 2005 B1
6877677 Schmon et al. Apr 2005 B2
6899239 Gray May 2005 B1
6938836 Bouic Sep 2005 B2
6942126 Douglas et al. Sep 2005 B2
6945429 Gosis et al. Sep 2005 B2
6946122 Yang Sep 2005 B2
6953155 Joseph et al. Oct 2005 B2
6958033 Malin Oct 2005 B1
6982108 Janssen et al. Jan 2006 B2
7014127 Valpey, III et al. Mar 2006 B2
7083119 Bouic et al. Aug 2006 B2
7086549 Kosmyna et al. Aug 2006 B2
7128102 Pendleton et al. Oct 2006 B2
7143960 Joseph et al. Dec 2006 B2
7159734 O'Brien Jan 2007 B1
7165732 Kosmyna et al. Jan 2007 B2
7172139 Bouic et al. Feb 2007 B2
7188785 Joseph et al. Mar 2007 B2
7269969 Strickland et al. Sep 2007 B2
7296759 Alexander et al. Nov 2007 B2
7344040 Kosmyna et al. Mar 2008 B2
7353964 Kosmyna Apr 2008 B2
7354074 Kosmyna et al. Apr 2008 B2
7374111 Joseph et al. May 2008 B2
7380680 Kosmyna et al. Jun 2008 B2
7451884 Kuehn et al. Nov 2008 B2
D582512 Fontaine Dec 2008 S
D586059 Bechtold, Jr. Feb 2009 S
7568638 Gehrung Aug 2009 B2
7625016 Kosmyna et al. Dec 2009 B2
D615161 Gerson et al. May 2010 S
7757972 Kosmyna et al. Jul 2010 B2
7798421 Joseph et al. Sep 2010 B2
7798425 Joseph et al. Sep 2010 B2
7798426 Joseph et al. Sep 2010 B2
7798427 Joseph et al. Sep 2010 B2
7802763 Faller et al. Sep 2010 B2
7810744 Schmon et al. Oct 2010 B2
7819263 DiCarlo-Nelson Oct 2010 B1
7819341 Schmon et al. Oct 2010 B2
7823806 Schmon Nov 2010 B2
7878425 Handzel et al. Feb 2011 B2
7921583 Londino Apr 2011 B2
8002200 Joseph et al. Aug 2011 B2
8033413 Gerson et al. Oct 2011 B2
8127963 Gerson et al. Mar 2012 B2
8201709 Namigata et al. Jun 2012 B1
8230997 McWilliams et al. Jul 2012 B1
8272255 Halverson et al. Sep 2012 B2
20020014541 Krohn et al. Feb 2002 A1
20020121139 Purpura et al. Sep 2002 A1
20030003301 Whitney et al. Jan 2003 A1
20030008144 Whitney et al. Jan 2003 A1
20030209573 Bouic Nov 2003 A1
20040016825 Petrie et al. Jan 2004 A1
20040067350 Janssen et al. Apr 2004 A1
20040084553 Joseph et al. May 2004 A1
20040118941 Joseph et al. Jun 2004 A1
20040140373 Joseph et al. Jul 2004 A1
20040164182 Joseph et al. Aug 2004 A1
20040217201 Ruda Nov 2004 A1
20040232714 Coppotelli et al. Nov 2004 A1
20040256484 Joseph et al. Dec 2004 A1
20040256485 Joseph et al. Dec 2004 A1
20050029285 Gay, III et al. Feb 2005 A1
20050045146 McKay et al. Mar 2005 A1
20050067502 Bouic Mar 2005 A1
20050092770 Yechouron May 2005 A1
20050145718 Blette et al. Jul 2005 A1
20050145723 Blette et al. Jul 2005 A1
20050145724 Blette et al. Jul 2005 A1
20050156058 Kosmyna et al. Jul 2005 A1
20050241722 Pendleton et al. Nov 2005 A1
20050242107 Kosmyna et al. Nov 2005 A1
20050247804 Douglas et al. Nov 2005 A1
20050258271 Kosmyna et al. Nov 2005 A1
20050263614 Kosmyna et al. Dec 2005 A1
20050279748 Kosmyna Dec 2005 A1
20060000927 Ruda Jan 2006 A1
20060017286 Kosmyna et al. Jan 2006 A1
20060065591 Joseph Mar 2006 A1
20060102550 Joseph May 2006 A1
20060144960 Kosmyna et al. Jul 2006 A1
20060151630 Joseph et al. Jul 2006 A1
20060157594 Cooke Jul 2006 A1
20060175433 Escoto, Jr. et al. Aug 2006 A1
20060196891 Gerson et al. Sep 2006 A1
20060273204 Joseph et al. Dec 2006 A1
20060283861 Kosmyna et al. Dec 2006 A1
20070131793 Joseph et al. Jun 2007 A1
20070158348 Kosmyna et al. Jul 2007 A1
20070158462 Delbridge Jul 2007 A1
20070252019 Peterson et al. Nov 2007 A1
20070272323 Verhaeghe Nov 2007 A1
20080011879 Gerson et al. Jan 2008 A1
20080054087 Joseph et al. Mar 2008 A1
20080118656 Douglas et al. May 2008 A1
20090072050 Ruda Mar 2009 A1
20090110861 Sherman Apr 2009 A1
20090145980 Jones Jun 2009 A1
20090166443 Joseph et al. Jul 2009 A1
20090183565 Shamoon et al. Jul 2009 A1
20090193880 Halverson et al. Aug 2009 A1
20090200309 Kosmyna et al. Aug 2009 A1
20100108783 Joseph et al. May 2010 A1
20100139858 Douglas et al. Jun 2010 A1
20100163645 Johnson et al. Jul 2010 A1
20100243758 Juo Sep 2010 A1
20100288772 Wambeke et al. Nov 2010 A1
20110220737 Kwon Sep 2011 A1
20110266368 Joseph et al. Nov 2011 A1
20120037529 Hall Feb 2012 A1
20120256010 Joseph et al. Oct 2012 A1
20120273583 Gerson et al. Nov 2012 A1
20120279609 Pellegrino et al. Nov 2012 A1
20120279613 Pellegrino et al. Nov 2012 A1
20120279887 Pellegrino et al. Nov 2012 A1
20120279970 Pellegrino et al. Nov 2012 A1
20120280062 Pellegrino et al. Nov 2012 A1
20120280063 Pellegrino et al. Nov 2012 A1
20130001322 Pellegrino et al. Jan 2013 A1
Foreign Referenced Citations (180)
Number Date Country
200032550 Jul 2000 AU
199935838 Jan 2001 AU
2004202537 Jan 2005 AU
963436 Feb 1975 CA
965388 Apr 1975 CA
1006450 Mar 1977 CA
1192852 Sep 1985 CA
2099763 Jul 1992 CA
2569369 Jul 1998 CA
2660187 Jul 1998 CA
2595507 Jun 2006 CA
2277096 Apr 2007 CA
540159 Aug 1973 CH
688082 May 1997 CH
1142830 Mar 2004 CN
534273 Sep 1931 DE
2412743 Sep 1975 DE
2900998 Jul 1980 DE
3020831 Dec 1981 DE
8304005 Jun 1983 DE
3439442 Apr 1986 DE
3517122 May 1986 DE
3507734 Sep 1986 DE
3346165 Apr 1987 DE
8807118 Aug 1988 DE
4002190 Aug 1991 DE
4102326 Jul 1992 DE
4209258 Sep 1993 DE
19618514 Nov 1997 DE
29905100 Jun 1999 DE
20117496 Jan 2002 DE
29825015 Mar 2004 DE
29825119 Jan 2005 DE
29825120 Feb 2005 DE
98901823 Mar 2005 DE
202004003116 Jul 2005 DE
202004003376 Jul 2005 DE
202004006907 Sep 2005 DE
69831653 Sep 2006 DE
69836570 Sep 2007 DE
0092359 Oct 1983 EP
0202124 Nov 1986 EP
0230364 Jul 1987 EP
0345607 Dec 1989 EP
0388199 Sep 1990 EP
0388696 Sep 1990 EP
0467334 Jan 1992 EP
0345607 Sep 1992 EP
0230364 Sep 1994 EP
0624353 Nov 1994 EP
0634224 Jan 1995 EP
0636548 Feb 1995 EP
0678334 Oct 1995 EP
0689825 Jan 1996 EP
0636548 Feb 1997 EP
0536344 Oct 1997 EP
0847809 Jun 1998 EP
0740692 Dec 1998 EP
0624353 Feb 1999 EP
0987060 Mar 2000 EP
1123957 Aug 2001 EP
1047732 Sep 2002 EP
1366823 Mar 2003 EP
1139841 May 2003 EP
1047731 Jun 2003 EP
1210181 Oct 2003 EP
1415719 May 2004 EP
1424135 Jun 2004 EP
1435265 Jul 2004 EP
1368129 Jun 2005 EP
1566223 Aug 2005 EP
1579922 Sep 2005 EP
1611960 Jan 2006 EP
1415719 Nov 2006 EP
000638176-0001 Jan 2007 EP
1961488 Aug 2008 EP
2090372 Aug 2009 EP
2090373 Aug 2009 EP
2105208 Sep 2009 EP
1435265 Nov 2009 EP
2221112 Aug 2010 EP
1385632 Mar 2011 EP
2090372 Nov 2011 EP
2090373 Nov 2011 EP
2105208 Nov 2011 EP
1282085 Jan 1962 FR
2631254 Nov 1989 FR
2639324 May 1990 FR
2798868 Mar 2001 FR
202363 Aug 1923 GB
256179 Jun 1927 GB
290866 May 1928 GB
843161 Aug 1960 GB
1077369 Jul 1967 GB
1567685 May 1980 GB
2103173 Feb 1983 GB
2170471 Aug 1986 GB
2239821 Jul 1991 GB
2303087 Feb 1997 GB
52113870 Sep 1977 JP
64-27659 Jan 1989 JP
JUM 03-81879 Aug 1991 JP
JUM 05-39671 May 1993 JP
06-328014 Nov 1994 JP
06-335643 Dec 1994 JP
07-289956 Nov 1995 JP
08-133338 May 1996 JP
08-192851 Jul 1996 JP
JUM 3027372 Aug 1996 JP
107170 Jan 1998 JP
11-28394 Feb 1999 JP
2001508698 Jul 2001 JP
2001252599 Sep 2001 JP
2007130521 May 2007 JP
2008036561 Feb 2008 JP
10-2007-0023711 Feb 2007 KR
10-2010-0052366 May 2010 KR
90-015758 Dec 1990 WO
1992006794 Apr 1992 WO
9211930 Jul 1992 WO
9214437 Sep 1992 WO
9219386 Nov 1992 WO
1994003337 Feb 1994 WO
1994008730 Apr 1994 WO
9507762 Mar 1995 WO
9511170 Apr 1995 WO
1995019402 Jul 1995 WO
9800796 Jan 1998 WO
9832539 Jul 1998 WO
9906301 Feb 1999 WO
1999036477 Jul 1999 WO
1999036478 Jul 1999 WO
1999040580 Aug 1999 WO
9950153 Oct 1999 WO
0030844 Jun 2000 WO
0038562 Jul 2000 WO
2001014766 Mar 2001 WO
2002072276 Sep 2002 WO
02085533 Oct 2002 WO
03006170 Jan 2003 WO
03045575 Jun 2003 WO
2003095101 Nov 2003 WO
2004030938 Apr 2004 WO
2004030939 Apr 2004 WO
2004037432 May 2004 WO
2004037433 May 2004 WO
2004060574 Jul 2004 WO
2004060575 Jul 2004 WO
2004082848 Sep 2004 WO
2004094072 Nov 2004 WO
2005077543 Aug 2005 WO
2005115631 Dec 2005 WO
2005118151 Dec 2005 WO
2005120178 Dec 2005 WO
2005120718 Dec 2005 WO
2006002497 Jan 2006 WO
2006065850 Jun 2006 WO
2006069015 Jun 2006 WO
2006098799 Sep 2006 WO
2007037921 Apr 2007 WO
2007075724 Jul 2007 WO
2006098799 Sep 2007 WO
2007149760 Dec 2007 WO
2007149760 Dec 2007 WO
2008022027 Feb 2008 WO
2008060939 May 2008 WO
2008109733 Sep 2008 WO
2008154559 Dec 2008 WO
2009058466 May 2009 WO
2009076150 Jun 2009 WO
2009076150 Jun 2009 WO
2009120547 Oct 2009 WO
2012068316 May 2012 WO
2012154619 Nov 2012 WO
2012154621 Nov 2012 WO
2012154622 Nov 2012 WO
2012154623 Nov 2012 WO
2012154624 Nov 2012 WO
2012154625 Nov 2012 WO
2013003592 Jan 2013 WO
Non-Patent Literature Citations (33)
Entry
Complaint and Demand for Jury Trial, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co, Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Aug. 19, 2008 (30 pages).
Defendants' Claim Chart, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Mar. 2, 2009 (140 pages).
Defendants' Identification of Claim Terms, Phrases or Clauses That May Require Court Construction, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Apr. 6, 2009 (3 pages).
Defendant's Prior Art Statement, 3M Innovative Properties Company and 3M Company vs. Illinois Tool Works, Inc. and ITW Finishing LLC, Case No. 06-2459 [U.S. District Court, District of Minnesota] filed Apr. 2, 2007 [12 pages].
Defendants' Prior Art Statement, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Mar. 2, 2009 (46 pages).
DeVilbiss PT-500, 510 and 520 2½ Gallon Pressure Tank service bulletin—SB-21-041-B., 6 pages.
DeVilbiss Products PT-500, 510 and 520 2½ Gallon Pressure Tank, Oct. 1998, 7 pages.
DeVilbiss Industrial Distributor Net Price List Spray Equipment, DDP-104, Supplement 1, Oct. 1, 1988, 3 pages.
Falkman, M.A. Plastic Discs Scrap Waste for Disposable Containers. Packaging Digest, Jun. 1996, 2 pages.
Louis M. Gerson Co., Inc. and Gerson Professional Products, Inc. Answers to 3M's First Set of Interrogatories to Gerson (Nos. 1-22), 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Dec. 11, 2008 (14 pages).
Notice of Opposition and Grounds of Opposition to European Patent No. EP 0954381, Illinois Tool Works, Inc. vs. 3M Company, dated Jun. 19, 2006, 21 pages.
Plaintiffs' Claim Chart, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Feb. 2, 2009 (52 pages).
Plaintiffs' Prior Art Statement, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Apr. 1, 2009 (25 pages).
SATA Jet 90, Operating Instructions, SATA-Fabspritztechnik GmH & Co., 6 pages.
SATA GmbH & Co. KG, “SATA RPS—The cup system for mixing and painting”, K-126995/4022-063, 4 pages.
Service Bulletin, SB-4-043-D, Replaces SB-4-043-C, De Vilbiss, “120175 (GFC-502) 32 Oz. Aluminum Gravity Feed Cup with Disposable Lid and Cup Liner”, May 2000.
Service Bulletin; SB-21-041-B, replaces SB-21-041-A, PT-500, 510, and 520 2½ Gallon Pressure Tank, Oct. 1987 product literature, 6 pages.
International Search Report for PCT Application No. PCT/US05/45146 dated Apr. 21, 2006, 12 pages.
International Search Report for PCT Application No. PCT/US11/61091 dated May 11, 2012, 10 pages.
International Search Report for PCT Application No. PCT/US12/36680 dated Nov. 16, 2012, 12 pages.
International Search Report for PCT Application No. PCT/US12/36684 dated Nov. 23, 2012, 1 page.
International Search Report for PCT Application No. PCT/US12/36682 dated Nov. 23, 2012, 10 pages.
Amended Complaint and Demand for Jury Trial 3M Innovative Properties Company and 3M Company vs. Illinois Tool Works, Inc. and ITW Finishing, L.L.C., Case No. 06-2459 (U.S. District Court, District of Minnesota) filed Aug. 7, 2006 (5 pgs).
Answer and Counter-Claim to amended Complaint, 3M Innovative Properties Company and 3M Company vs. Illinois Tool Works, Inc. and ITW Finishing, L.L.C., Case No. 06-2459 (U.S. District Court, District of Minnesota) filed Aug. 21, 2006 (8 pgs).
Answer of Defendants Demand for Jury Trial, 3M Innovative Properties Company and 3M Company vs. Louis M. Gerson Co., Inc., and Gerson Professional Products, Inc., Civil No. 08-04960 JRT-FLN (U.S. District Court, District of Minnesota), filed Oct. 15, 2008 (4 pages).
Complaint and Demand for Jury Trial, 3M Innovative Properties Company and 3M Company vs. Illinois Tool Works, Inc. and ITW DeVilbiss, Case No. 06-2459 (U.S. District Court, District of Minnesota), filed Jun. 16, 2006 (29 pgs).
International Search Report for PCT Application No. PCT/US12/36685 dated Nov. 23, 2012, 10 pages.
International Search Report for PCT Application No. PCT/US12/36686 dated Nov. 23, 2012, 12 pages.
International Search Report for PCT Application No. PCT/US12/36687 dated Nov. 30, 2012, 12 pages.
Inter Partes Reexamination of U.S. Pat. No. 7,374,111 filed Dec. 9, 2008, issued Reexamination U.S. Appl. No. 95/000,422, 86 pages.
International Search Report for PCT Application No. PCT/US12/44648 dated Jan. 24, 2013, 11 pages.
U.S. Appl. No. 13/728,678, filed Dec. 27, 2012, entitled “Convertible Paint Cup Assembly with Air Inlet Valve”.
International Search Report for PCT Application No. PCT/US2012/071843 dated Apr. 29, 2013, 11 pages.
Related Publications (1)
Number Date Country
20230271203 A1 Aug 2023 US
Provisional Applications (2)
Number Date Country
60828245 Oct 2006 US
60815142 Jun 2006 US
Divisions (1)
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Parent 11762890 Jun 2007 US
Child 13268340 US
Continuations (3)
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Parent 17324186 May 2021 US
Child 18314009 US
Parent 16049292 Jul 2018 US
Child 17324186 US
Parent 13268340 Oct 2011 US
Child 14093122 US
Continuation in Parts (1)
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Parent 14093122 Nov 2013 US
Child 16049292 US