1. Field of the Invention
The present invention relates generally to pressure regulators and, more particularly to, a pressure regulator including a diaphragm.
2. Description of the Related Art
Pressure regulators are configured to produce a desired output pressure of a fluid from an input pressure of the fluid. Often, pressure regulators are configured to reduce the input pressure so that the output pressure is substantially less than the input pressure.
Single stage and dual stage pressure regulators are available to reduce the input pressure. Single stage regulators are often employed to regulate fluid pressure in gas appliances such as gas grills. Dual stage pressure regulators are often employed for regulating fluid pressure of natural gas or propane in domestic fluid systems. For instance, one dual stage pressure regulator has a first stage that reduces the fluid pressure from a storage tank, such as a propane storage tank, to around 10 psi, while a second stage reduces the 10 psi input to around 11 inches water column output pressure. Some regulations require the output pressure not to exceed 2 psi.
Typically, pressure regulators include a housing formed of upper and lower housing portions that are connected together with fasteners and a diaphragm located between the upper and lower housing portions. An outer periphery of the diaphragm often has a lip shaped to fit inside an annular recess in the lower housing portion to help seal between the upper and lower housing portions. However, such lips are subject to leakage. Thus, there is a need in the art for improved sealing between upper and lower housing portions of a pressure regulator.
Generally, the diaphragm of the pressure regulator is shaped to have an inner annular section configured to raise and lower during operation of the pressure regulator. The diaphragm has a flexible connecting section radially extending between the inner annular section and the outer lip. The flexible connecting section has a thickness less than a thickness of the inner annular section and the lip. A diaphragm plate is positioned on top of the inner annular section to provide additional rigidity to the inner annular section as the inner annular section raises and lowers during operation. In some commercial products, the diaphragm plate is loosely located on the inner annular section, which can result in shifting of the diaphragm plate with respect to the inner annular section and potentially cause problems with operation. In other commercial products, the diaphragm plate is insert-molded into the diaphragm to prevent shifting of the diaphragm plate, but this process can be expensive. Thus, there remains a need in the art for a pressure regulator with an improved diaphragm plate that prevents shifting relative to the diaphragm without requiring insert-molding.
In some conventional pressure regulators, projections on the lower housing portion suspend a bottom surface of the inner annular section of the diaphragm above an inner surface of the lower housing portion to reduce contact between the bottom surface and the lower housing portion. However, there still remains some contact between the bottom surface and the projections, which can result in damage to the diaphragm prior to operation. Thus, there is a need in the art for a diaphragm of a pressure regulator in which the bottom surface is completely suspended in the housing without contacting any portions of the housing.
Generally, the pressure regulator includes a valve body disposed in the lower housing portion and is slidable among a plurality of operational positions. Typically, a valve disc is retained by the valve body. The valve disc is configured to engage a valve seat surrounding a fluid passageway when the valve body is in a closed position. When the valve disc and valve body are spaced from the valve seat, fluid passes through the passageway into a pressure chamber of the lower housing portion. A lever operatively couples the diaphragm with the valve body. When the input pressure pushes the valve disc and valve body away from the valve seat to allow fluid to pass through the passageway, pressure in the pressure chamber increases, and the diaphragm rises. As the diaphragm rises, the lever pivots about a pivot point and urges the valve body and valve disc back toward the valve seat. This reduces the amount of fluid that passes through the passageway and reduces the pressure in the pressure chamber. This back and forth action results in pressure regulation by regulating fluid flow through the passageway, around the valve body, and into the pressure chamber. When the fluid flows around the valve body, the valve body tends to vibrate or hum. Thus, there is a need in the art to reduce such vibrations or humming
Accordingly, the present invention provides a pressure regulator including a housing having an upper housing portion and a lower housing portion. The lower housing portion defines an annular recess and the upper housing portion has a bottom surface and an annular protrusion extending from the bottom surface. The pressure regulator also includes a diaphragm disposed between the upper housing portion and the lower housing portion and including an outer lip having a first thickness, a flexible connecting section connected to the outer lip and having a second thickness smaller than the first thickness, and an annular inner section connected to the flexible connecting section. The outer lip has a bottom surface disposed in the annular recess and a top surface. The protrusion is pressed into the top surface so that the outer lip seals between the upper housing portion and the lower housing portion.
The present invention also provides a pressure regulator including a housing having upper and lower housing portions and a diaphragm including an outer lip captured between the upper and lower housing portions, a flexible connecting section connected to the outer lip, and an annular inner section connected to the flexible connecting section and having a first locating feature. The pressure regulator also includes a diaphragm plate having a second locating feature shaped to interface with the first locating feature to radially secure the diaphragm plate to the annular inner section of the diaphragm.
The present invention further provides a pressure regulator including a housing having an upper housing portion and a lower housing portion and defining an inlet and an outlet. The lower housing portion includes a plurality of protrusions. The pressure regulator includes a diaphragm having an annular inner section, a flexible connecting section connected to the annular inner section, and an outer lip connected to the flexible connecting section and captured between the upper housing portion and the lower housing portion. The diaphragm defines a central bore. The pressure regulator includes a relief valve having a shaft disposed through the central bore and a head disposed between the diaphragm and the protrusions. The head is configured to suspend the annular inner section of the diaphragm in the housing above a lower chamber surface when no pressurized fluid is present at the inlet.
In addition, the present invention provides a pressure regulator including a housing having upper and lower housing portions defining an inlet and an outlet, the housing defining a valve seat surrounding a passageway in communication with the inlet. The pressure regulator also includes a diaphragm captured between the upper and lower housing portions to define upper and lower pressure chambers and a valve body disposed in the passageway and movable between a plurality of operational positions including an open position spaced from the valve seat and a closed position in contact with the valve seat. The valve body includes a pocket and a spring disposed in the pocket. The pressure regulator further includes a lever operatively coupling the diaphragm to the valve body and a driving pin being non-fixedly located in a recess of the valve body and the valve body being pivoted about the driving pin by the spring to provide an off-axis force against the valve body.
One advantage of the present invention is that the pressure regulator includes a protrusion to compress a lip of a diaphragm into a recess to better seal between upper and lower housing portions of a housing. Another advantage of the present invention is that the pressure regulator includes a diaphragm and a diaphragm plate including locating features to secure the diaphragm plate to the diaphragm to prevent shifting of the diaphragm plate relative to an annular inner section of the diaphragm. Yet another advantage of the present invention is that the pressure regulator includes protrusions and a relief valve to prevent abrasion or wear of the diaphragm prior to use. Still another advantage of the present invention is that the pressure regulator includes a mechanism to reduce noise, vibrations, or humming of the valve body when the fluid flows around the valve body.
Other features and advantages of the present invention will be readily appreciated, as the same becomes better understood, after reading the subsequent description taken in conjunction with the accompanying drawings.
Referring to the drawings and in particular
In the embodiment illustrated, the pressure regulator 10 is a dual-stage pressure regulator having a first stage 12, which is conventional in the art and will not be described in detail. Dual stage pressure regulators are sometimes employed for regulating the pressure of natural gas or propane in domestic fluid systems, although other uses are possible. In some embodiments, the first stage 12 reduces the pressure of fluid from a storage tank, such as a propane storage tank (not shown), to about 10 psi. Thus, about 10 psi is the input pressure for a second stage 14 of the pressure regulator 10. The second stage 14 is configured to reduce the input pressure from the first stage 12. In some embodiments, the second stage 14 reduces the approximately 10 psi input pressure to about 11 inches water column output pressure. Some regulations require the output pressure not to exceed 2 psi. It should be appreciated that the specific pressure set points of the pressure regulator 10 are not intended to limit the present invention.
The pressure regulator 10 includes a housing formed of an upper housing portion 16 and a lower housing portion 18 that are connected together with fasteners (not shown). The housing portions 16, 18 may be formed of metal. The pressure regulator 10 also includes a ring-shaped diaphragm, generally indicated at 20, having an outer periphery or lip 22 that is captured between the housing portions 16, 18. The lower housing portion 18 has an annular and U-shaped recess 24 sized and shaped to receive a bottom section of the outer lip 22. The upper housing portion 16 has an annular protrusion 26 configured to contact an upper surface of the outer lip 22. The protrusion 26 is formed as an arcuate and annular bump on a bottom surface of the upper housing portion 16. In some embodiments, the protrusion 26 is generally “V” shaped in cross-section.
The diaphragm 20 further includes an annular inner section 28 and a flexible connecting section 30 radially connecting the outer lip 22 and the annular inner section 28. In one embodiment, the flexible connecting section 30 is generally annular. The outer lip 22 has a first thickness and the flexible connecting section 30 has a second thickness less than the first thickness, making the flexible connecting section 30 flexible to allow raising and lowering of the annular inner section 28 within the housing. The annular inner section 28 has at least one, preferably a plurality of locating features formed in an upper surface thereof. The locating features shown in
The pressure regulator 10 includes a ring-shaped diaphragm plate 36 engaging the diaphragm 20. The diaphragm plate 36 is preferably formed as a separate rigid piece configured to be seated on the diaphragm 20 without being rigidly connected to the diaphragm 20. In some embodiments, however, the diaphragm plate 36 may be rigidly connected to the diaphragm 20. The diaphragm plate 36 is formed with at least one, preferably a plurality of locating features (in some cases stamped in the plate 36 when the plate 36 is metal or molded into the plate 36 when the plate 36 is plastic). The locating features of the diaphragm plate 36 are shaped to co-locate with the locating features of the diaphragm 20 to radially lock the diaphragm plate 36 to the diaphragm 20. In the embodiment illustrated, the locating features of the diaphragm plate 36 include alternating ridges 38 and grooves 40 shaped to mate with the grooves 34 and ridges 32 of the annular inner section 28, respectively, of the diaphragm 20. It should be appreciated that, when aligned to one another, the diaphragm plate 36 substantially covers an upper surface of the annular inner section 28 of the diaphragm 20. It should also be appreciated that the locating features prevent shifting of the diaphragm plate 36 laterally or radially relative to the diaphragm 20.
The pressure regulator 10 also includes a relief valve, generally indicated at 41. The diaphragm 20 and diaphragm plate 36 define a central bore 42 to receive the relief valve 41. The relief valve 41 includes a yoke 43 and a shaft or stem 44 extending axially from the yoke 43. The central bore 43 receives the stem 44 of the yoke 43. The relief valve 41 also includes a head 45 having an outer periphery sized to extend beyond the diameter of the central bore 43 and contact a bottom surface of the annular inner section 28. This contact seals against fluid flow between the head 44 and the annular inner section 28 under certain conditions. The pressure regulator 10 includes a spring retainer 46 disposed about the stem 44. The stem 44 is slidably received in the spring retainer 46. The pressure regulator 10 also includes a regulator spring 47 and a relief spring 49 disposed about the stem 44 and contacting the spring retainer 46, which supports the regulator spring 47 and the relief spring 49. The pressure regulator 10 further includes a relief spring retainer 49a disposed about the stem 44 and contacting the other end of the relief spring 49. It should be appreciated that, as pressure increases in a lower pressure chamber 53, separation may occur between the head 45 and the annular inner section 28 to relieve pressure in the lower pressure chamber 53, which is conventional in the art.
The pressure regulator 10 also includes a valve body, generally indicated at 52, located in a passageway 54 defined in the lower housing portion 18 that leads from an inlet 50 to a lower pressure chamber 53 defined in the housing. The valve body 52 is slidable in the passageway 54 among a plurality of operational positions. The pressure regulator 10 further includes a disc-shaped valve 56 carried by the valve body 52. The valve 56 is fixed to the valve body 52 to move with the valve body 52. The pressure regulator 10 also includes a valve seat 58 shaped for engagement by the valve 56 when the valve 56 is in a closed position thereby preventing the flow of fluid from the inlet 50 to the passageway 54. When the valve 56 and valve body 52 are spaced from the valve seat 58, fluid is allowed to flow from the inlet 50 through the passageway 54 and into the lower pressure chamber 46. The valve body 52 is formed of metal, but may be formed of other materials.
Referring to
The pressure regulator 10 also includes a lever, generally indicated at 70, pivotally supported about pivot axis P in the lower housing portion 18. The lever 70 has a projection 71 at one end and the other end of the lever 70 is captured in the yoke 43 so that as the yoke 43 rises, the end of the lever 70 also rises. The pressure regulator 10 includes a driving pin 72 fixed to the lever 70 at a second end of the lever 70. The driving pin 72 is sized to fit within a recess 74 defined in the valve body 52. The valve body 52 includes a surface 73 that defines the recess 74 and an elongated slot 76. The lever 70 has a thickness sized to fit within the slot 76 in the valve body 52 for movement in the slot 76. When the lever 70 pivots counterclockwise about pivot axis P, such as when the diaphragm 20 and yoke 41 are rising in the housing formed by the upper and lower housing portions 16, 18, the driving pin 72 contacts the surface 73 defining the recess 74 to urge the valve body 52 toward the valve seat 58. When pressure on the valve 56 pushes the valve body 52 away from the valve seat 58, the surface 71 presses against the driving pin 72 to pivot the lever 70 clockwise.
The pressure regulator 10 also includes a vibration dampener assisting in preventing vibration and/or humming of the valve body 52 in the passageway 54. In the embodiment illustrated, the vibration dampener is a spring 80 located in the spring pocket 64. The spring 80 may be a compression spring. The spring 80 has one end that abuts the inner surface 65 of the valve body 52 and an opposing end engaged by the projection 71 on the lever 70. The spring pocket 64 is located offset from a central axis A (
Alternative embodiments 110, 210, 310 of the pressure regulator 10 are shown in
Referring to
In
Referring to
Embodiments of the present invention have been described in an illustrative manner. It is to be understood that the terminology, which has been used, is intended to be in the nature of words of description rather than of limitation.
Many modifications and variations of the present invention are possible in light of the above teachings. Therefore, the present invention may be practiced other than as specifically described.
The present invention claims priority to and the benefit of co-pending U.S. Provisional Patent Application Ser. No. 61/782,081, filed Mar. 14, 2013, which is hereby incorporated by reference in its entirety.
Number | Name | Date | Kind |
---|---|---|---|
1540439 | Thrall | Jun 1925 | A |
1546047 | Thrall | Jul 1925 | A |
2052246 | Thrall | Aug 1936 | A |
2442156 | White | May 1948 | A |
2694410 | Ey | Nov 1954 | A |
3032054 | Irwin | May 1962 | A |
3042064 | Pommerseim | Jul 1962 | A |
3160169 | Peterson | Dec 1964 | A |
3339581 | Courtot | Sep 1967 | A |
3411522 | Golden et al. | Nov 1968 | A |
3768503 | Billington | Oct 1973 | A |
3890999 | Moskow | Jun 1975 | A |
3991785 | Trinkwalder, Jr. | Nov 1976 | A |
4152848 | Trinkwalder | May 1979 | A |
4226257 | Trinkwalder | Oct 1980 | A |
D258075 | Mann | Jan 1981 | S |
4269215 | Odar | May 1981 | A |
4295489 | Arends et al. | Oct 1981 | A |
4356820 | Trinkwalder, Jr. | Nov 1982 | A |
4491149 | Trinkwalder | Jan 1985 | A |
4619436 | Bonzer et al. | Oct 1986 | A |
4624442 | Duffy et al. | Nov 1986 | A |
4669761 | Huling | Jun 1987 | A |
4754778 | Duffy et al. | Jul 1988 | A |
4782850 | Duffy et al. | Nov 1988 | A |
4842013 | Rice et al. | Jun 1989 | A |
4889158 | Rice et al. | Dec 1989 | A |
4972868 | Davis et al. | Nov 1990 | A |
4972871 | Rice et al. | Nov 1990 | A |
5062449 | Woollums et al. | Nov 1991 | A |
5271601 | Bonzer et al. | Dec 1993 | A |
5388865 | Hawkins | Feb 1995 | A |
5402820 | Duffy et al. | Apr 1995 | A |
D362297 | Lee | Sep 1995 | S |
D362298 | Lee | Sep 1995 | S |
D362488 | Lee | Sep 1995 | S |
D362712 | Lee | Sep 1995 | S |
D363761 | Eggleston et al. | Oct 1995 | S |
5582201 | Lee et al. | Dec 1996 | A |
D379845 | Lee | Jun 1997 | S |
5662100 | Fox et al. | Sep 1997 | A |
5697398 | Gidney et al. | Dec 1997 | A |
5709369 | Hawkins et al. | Jan 1998 | A |
5735306 | Olds et al. | Apr 1998 | A |
5739434 | Jensen | Apr 1998 | A |
5740833 | Olds et al. | Apr 1998 | A |
5769122 | Baumann et al. | Jun 1998 | A |
5816286 | Scott et al. | Oct 1998 | A |
D403050 | Schlick | Dec 1998 | S |
5881765 | Turney et al. | Mar 1999 | A |
5941281 | Baumann et al. | Aug 1999 | A |
5964446 | Walton et al. | Oct 1999 | A |
5970977 | Sattelberg | Oct 1999 | A |
5996617 | Olds et al. | Dec 1999 | A |
6026859 | Wears et al. | Feb 2000 | A |
6035878 | Adams et al. | Mar 2000 | A |
6056008 | Adams et al. | May 2000 | A |
6095196 | McCarty et al. | Aug 2000 | A |
6102071 | Walton et al. | Aug 2000 | A |
6178997 | Adams et al. | Jan 2001 | B1 |
6213150 | Gethmann | Apr 2001 | B1 |
6223769 | Bragg et al. | May 2001 | B1 |
6244297 | Baumann | Jun 2001 | B1 |
6371156 | Walton et al. | Apr 2002 | B1 |
6382253 | McCarty et al. | May 2002 | B1 |
6416268 | Gethmann | Jul 2002 | B2 |
6441744 | Adams et al. | Aug 2002 | B1 |
D464582 | Pepperling et al. | Oct 2002 | S |
6536469 | Dilger et al. | Mar 2003 | B2 |
6539315 | Adams et al. | Mar 2003 | B1 |
6668855 | Heald et al. | Dec 2003 | B2 |
6672331 | Heald et al. | Jan 2004 | B2 |
6701957 | McCarty et al. | Mar 2004 | B2 |
6830061 | Adams et al. | Dec 2004 | B2 |
6895351 | Grumstrup et al. | May 2005 | B2 |
6903659 | Vanderah et al. | Jun 2005 | B2 |
6935370 | McCarty et al. | Aug 2005 | B2 |
6948519 | Cavagna | Sep 2005 | B2 |
6953182 | Lovell et al. | Oct 2005 | B2 |
6957661 | Borton et al. | Oct 2005 | B1 |
6968857 | Hawkins et al. | Nov 2005 | B2 |
6971403 | Heald et al. | Dec 2005 | B2 |
7013918 | McCarty et al. | Mar 2006 | B2 |
7049975 | Vanderah et al. | May 2006 | B2 |
7064671 | Vanderah et al. | Jun 2006 | B2 |
7261119 | Olds | Aug 2007 | B2 |
7318447 | Law | Jan 2008 | B2 |
7320340 | Bush et al. | Jan 2008 | B2 |
7328718 | Olds et al. | Feb 2008 | B2 |
7578314 | McCarty et al. | Aug 2009 | B2 |
D607355 | Horner et al. | Jan 2010 | S |
D616067 | Cavagna | May 2010 | S |
7766045 | Fagerlund et al. | Aug 2010 | B2 |
D623272 | Cavagna | Sep 2010 | S |
D623273 | Cavagna | Sep 2010 | S |
D623274 | Cavagna | Sep 2010 | S |
7802592 | McCarty | Sep 2010 | B2 |
7828009 | Neumann et al. | Nov 2010 | B2 |
7896028 | Weyer, Jr. et al. | Mar 2011 | B2 |
20040007270 | Olds | Jan 2004 | A1 |
20040040600 | Cavagna | Mar 2004 | A1 |
20040261855 | Hart et al. | Dec 2004 | A1 |
20060096643 | McCarty et al. | May 2006 | A1 |
20060185736 | Cavagna | Aug 2006 | A1 |
20070075287 | Lechner | Apr 2007 | A1 |
20070272313 | Olds | Nov 2007 | A1 |
20080053535 | Leggitt | Mar 2008 | A1 |
20080078460 | Roper et al. | Apr 2008 | A1 |
20080257418 | Kranz et al. | Oct 2008 | A1 |
20080257421 | Kranz | Oct 2008 | A1 |
20080257423 | Quijano | Oct 2008 | A1 |
20080257424 | Quijano | Oct 2008 | A1 |
20080257427 | Zhang et al. | Oct 2008 | A1 |
20080258095 | Hawkins et al. | Oct 2008 | A1 |
20080258096 | Hawkins | Oct 2008 | A1 |
20080258097 | Griffin et al. | Oct 2008 | A1 |
20080258098 | Hawkins | Oct 2008 | A1 |
20080258099 | Hawkins | Oct 2008 | A1 |
20090065073 | Davis | Mar 2009 | A1 |
20090260697 | Mevius et al. | Oct 2009 | A1 |
20090261281 | Mevius et al. | Oct 2009 | A1 |
20090288718 | Jablonski | Nov 2009 | A1 |
20090309059 | McCarty et al. | Dec 2009 | A1 |
20090314360 | Checiches et al. | Dec 2009 | A1 |
20100025603 | Burlage et al. | Feb 2010 | A1 |
20100051117 | Lin et al. | Mar 2010 | A1 |
20100071786 | Hawkins et al. | Mar 2010 | A1 |
20100243080 | Zecchi et al. | Sep 2010 | A1 |
20100243081 | Zecchi et al. | Sep 2010 | A1 |
20100269925 | Roper et al. | Oct 2010 | A1 |
20100270490 | Roper et al. | Oct 2010 | A1 |
20100289258 | Cavagna | Nov 2010 | A1 |
20100313971 | Moore et al. | Dec 2010 | A1 |
20100319799 | McCarty | Dec 2010 | A1 |
Number | Date | Country |
---|---|---|
689 14 708 | Nov 1994 | DE |
696 06 525 | Jul 2000 | DE |
696 12 879 | Mar 2002 | DE |
600 05 840 | Jul 2004 | DE |
698 20 653 | Sep 2004 | DE |
699 18 949 | Jul 2005 | DE |
601 10 836 | Mar 2006 | DE |
698 30 565 | May 2006 | DE |
698 32 400 | Jul 2006 | DE |
600 28 742 | May 2007 | DE |
600 29 326 | Jul 2007 | DE |
602 21 105 | Mar 2008 | DE |
0 229 005 | Apr 1989 | EP |
0 192 625 | May 1989 | EP |
0 398 858 | Nov 1990 | EP |
0 331 665 | Apr 1994 | EP |
0 581 287 | Jun 1997 | EP |
0 817 990 | Feb 2000 | EP |
0 949 553 | May 2001 | EP |
0 934 559 | Jan 2002 | EP |
0 880 733 | Mar 2002 | EP |
0 920 657 | Nov 2002 | EP |
1 198 740 | Oct 2003 | EP |
1 015 950 | Dec 2003 | EP |
1 049 893 | Jul 2004 | EP |
1 354 252 | May 2005 | EP |
0 958 466 | Jun 2005 | EP |
1 562 095 | Aug 2005 | EP |
1 017 950 | Nov 2005 | EP |
1 165 992 | Jun 2006 | EP |
1 441 273 | Jun 2006 | EP |
1 196 834 | Jul 2006 | EP |
1 396 774 | Jul 2006 | EP |
1 698 815 | Sep 2006 | EP |
1 519 253 | Jan 2007 | EP |
1 366 392 | Jul 2007 | EP |
1 020 779 | Oct 2007 | EP |
1 857 905 | Nov 2007 | EP |
0 994 291 | Feb 2008 | EP |
1 362 201 | Oct 2008 | EP |
1 709 501 | Jan 2009 | EP |
1 566 585 | Jun 2009 | EP |
1 735 557 | Sep 2009 | EP |
1 999 530 | May 2010 | EP |
1 943 446 | Oct 2010 | EP |
2 278 426 | Jan 2011 | EP |
2 278 427 | Jan 2011 | EP |
1 809 551 | Feb 2011 | EP |
1 428 088 | Apr 2011 | EP |
WO 9630817 | Oct 1996 | WO |
WO 97 07445 | Feb 1997 | WO |
WO 97 17641 | May 1997 | WO |
WO 97 37162 | Oct 1997 | WO |
WO 98 08150 | Feb 1998 | WO |
WO 98 18069 | Apr 1998 | WO |
WO 98 34057 | Aug 1998 | WO |
WO 99 15823 | Apr 1999 | WO |
WO 99 15942 | Apr 1999 | WO |
WO 99 39122 | Aug 1999 | WO |
WO 00 57091 | Sep 2000 | WO |
WO 00 70253 | Nov 2000 | WO |
WO 01 01214 | Jan 2001 | WO |
WO 01 01215 | Jan 2001 | WO |
WO 01 16523 | Mar 2001 | WO |
WO 02 05049 | Jan 2002 | WO |
WO 02 10625 | Feb 2002 | WO |
WO 02 057861 | Jul 2002 | WO |
WO 02 063403 | Aug 2002 | WO |
WO 02 066875 | Aug 2002 | WO |
WO 02 071165 | Sep 2002 | WO |
WO 02 088861 | Nov 2002 | WO |
WO 03 073189 | Sep 2003 | WO |
WO 2004 053612 | Jun 2004 | WO |
WO 2004 077187 | Sep 2004 | WO |
WO 2004 088444 | Oct 2004 | WO |
WO 2005 003876 | Jan 2005 | WO |
WO 2005 073821 | Aug 2005 | WO |
WO 2005 103542 | Nov 2005 | WO |
WO 2007 106374 | Sep 2007 | WO |
WO 2007 126863 | Nov 2007 | WO |
WO 2007 132128 | Nov 2007 | WO |
WO 2008 016430 | Feb 2008 | WO |
WO 2008 018953 | Feb 2008 | WO |
WO 2008 042665 | Apr 2008 | WO |
WO 2008 130849 | Oct 2008 | WO |
WO 2008 131110 | Oct 2008 | WO |
WO 2008 131235 | Oct 2008 | WO |
WO 2008 131237 | Oct 2008 | WO |
WO 2008 131246 | Oct 2008 | WO |
WO 2008 131248 | Oct 2008 | WO |
WO 2008 131250 | Oct 2008 | WO |
WO 2008 131254 | Oct 2008 | WO |
WO 2008 131255 | Oct 2008 | WO |
WO 2008 134246 | Nov 2008 | WO |
WO 2009 035864 | Mar 2009 | WO |
WO 2009 132007 | Oct 2009 | WO |
WO 20091 32006 | Oct 2009 | WO |
WO 2009 142861 | Nov 2009 | WO |
WO 2010 008676 | Jan 2010 | WO |
WO 2010 014291 | Feb 2010 | WO |
WO 2010 047848 | Apr 2010 | WO |
WO 2010 065254 | Jun 2010 | WO |
WO 2010 077472 | Jul 2010 | WO |
WO 2010 126762 | Nov 2010 | WO |
WO 2010 126809 | Nov 2010 | WO |
Entry |
---|
MacMillan Dictionary, “Adjacent”, Jul. 2016. |
NGVI North America, Regulators N-LPR Vapor Regulator Description & Dimensions, catalog, pp. 8-9, dated prior to Mar. 14, 2013; 2 pages. |
Sherwood LPG Products, LPG Regulator, Apr. 2007; 16 pages. |
Cramer Decker Propane Equipment, Regulators First and Second Stage Residential Sherwood Regulators, pp. 4-12, dated prior to Mar. 14, 2013; 9 pages. |
REGO, LP-Gas & Anhydrous Ammonia Equipment, Section A Regulators and Accessories, catalog, pp. A1-A36, Elon, North Carolina, USA, 37 pages. |
English language abstract for DE 689 14 708 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 696 06 525 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 696 12 879 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 698 20 653 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 698 30 565 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 698 32 400 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract for DE 699 18 949 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract and machine-assisted English translation for EP 1 698 815 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract and machine-assisted English translation for EP 1 857 905 extracted from the www.espacenet.com database on Apr. 15, 2014. |
English language abstract and machine-assisted English translation for WO 2007 132128 extracted from the www.espacenet.com database on Apr. 15, 2014. |
Number | Date | Country | |
---|---|---|---|
20140261787 A1 | Sep 2014 | US |
Number | Date | Country | |
---|---|---|---|
61782081 | Mar 2013 | US |