Contemporary automatic dishwashers for use in a typical household include a tub and at least one rack or basket for supporting soiled dishes within the tub. A spraying system may be provided for recirculating liquid throughout the tub to remove soils from the dishes. In less common configurations, the spraying system may include various sprayers including one or more rotatable sprayers and one or more stationary sprayers.
An upper rack and a lower rack for holding dishes to be cleaned are typically provided within the treating chamber. A silverware basket for holding utensils, silverware, etc. is also usually provided and normally removably mounts to the door or within the lower rack. Various sprayers of the spraying system can be configured to spray toward the racks or silverware basket.
The invention relates to a dishwasher for treating dishes according to an automatic cycle of operation. In one aspect of the invention, the dishwasher includes a tub at least partially defining a treating chamber and having an open face providing access to the treating chamber and a sump, a door selectively closing the open face, a lower dish rack located within the treating chamber, an upper dish rack located within the treating chamber above the lower dish rack, a spraying system, and a recirculation system for recirculating liquid sprayed in the treating chamber from the sump to the spraying system. The spraying system includes a lower rotating sprayer located within the treating chamber beneath the lower dish rack, an upper rotating sprayer located within the treating chamber beneath the upper dish rack, and a manifold located within the treating chamber and having a first sprayer with multiple apertures. A first aperture of the multiple apertures is configured to emit a spray of liquid directly onto a dish adjacent to the manifold in the lower dish rack and a second aperture of the multiple apertures is configured to emit an arcing spray of liquid over the dish adjacent to the manifold in the lower dish rack.
In yet another aspect of the invention, the dishwasher includes a tub at least partially defining a treating chamber and having an open face providing access to the treating chamber and a sump, a door selectively closing the open face, a lower dish rack located within the treating chamber, an upper dish rack located within the treating chamber above the lower dish rack and having four corners, a spraying system, and a recirculation system for recirculating liquid sprayed in the treating chamber from the sump to the spraying system. The spraying system includes a lower rotating sprayer located within the treating chamber beneath the lower dish rack, an upper rotating sprayer located within the treating chamber beneath the upper dish rack, and a manifold located within the treating chamber and having a first sprayer with multiple apertures. A first aperture of the multiple apertures is configured to emit a spray of liquid downwardly into the lower dish rack and a second aperture of the multiple apertures is configured emit a spray of liquid upwardly into one of the four corners of the upper dish rack.
In the drawings:
In
A controller 14 may be located within the cabinet 12 and may be operably coupled with various components of the dishwasher 10 to implement one or more cycles of operation. A control panel or user interface 16 may be provided on the dishwasher 10 and coupled with the controller 14. The user interface 16 may include operational controls such as dials, lights, switches, and displays enabling a user to input commands, such as a cycle of operation, to the controller 14 and receive information.
A tub 18 is located within the cabinet 12 and at least partially defines a treating chamber 20 with an access opening in the form of an open face. A cover, illustrated as a door 22, may be hingedly mounted to the cabinet 12 and may move between an opened position, wherein the user may access the treating chamber 20, and a closed position, as shown in
Dish holders in the form of upper and lower racks 24, 26 are located within the treating chamber 20 and receive dishes for being treated. The racks 24, 26 are mounted for slidable movement in and out of the treating chamber 20 for ease of loading and unloading. As used in this description, the term “dish(es)” is intended to be generic to any item, single or plural, that may be treated in the dishwasher 10, including, without limitation; utensils, plates, pots, bowls, pans, glassware, and silverware.
An additional utensil holder, such as a silverware basket 25 is also located within the treating chamber 20 and receives utensils for being treated. As used in this description, the term “utensil(s)” is intended to be generic to any item, single or plural, that may be placed in the silverware basket 25 for treatment in the dishwasher 10, including, without limitation; forks, knives, spoons, chopsticks, spatulas, tongs, whisks, etc. The silverware basket 25 can be removably mounted to the lower rack 26. As another option, the silverware basket 25 could be positioned in the upper rack 24. As yet another option, the silverware basket 25 could be provided on the interior of the door 22 instead of either rack 24, 26.
A spraying system 28 may be provided for spraying liquid into the treating chamber 20 and is illustrated in the form of a top sprayer 30, an upper rotatable sprayer 32, a lower rotatable sprayer 34, and a distribution header 36. The top sprayer 30 may be located above the upper rack 24 and is illustrated as a fixed spray nozzle that sprays liquid downwardly within the treating chamber 20. The upper rotatable sprayer 32 is located between the upper rack 24 and the lower rack 26 and is illustrated as a rotating spray arm. The upper spray arm 32 may provide a liquid spray upwardly through the bottom of the upper rack 24. The upper rotatable sprayer 32 may optionally also provide a liquid spray downwardly onto the lower rack 26, but for purposes of simplification, this will not be illustrated herein. The lower rotatable sprayer 34 is located underneath the lower rack 26 and is illustrated as a rotating spray arm. The lower spray arm 34 may provide a liquid spray upwardly through the bottom of the lower rack 26.
The number, configuration, and location of the sprayers for the spraying system 28 can vary from the exemplary spraying system 28 shown herein. For example, rather than rotating arms or fixed nozzles, any of the sprayers 30, 32, 34 can be configured as various other types of sprayers, such as, but not limited to, one or more rotating spray discs, fixed spray jets in one or more of the upper rack 24, lower rack 26, and silverware basket 25, or one or more tower sprayers.
The distribution header 36 may be fixedly mounted to the tub 18 adjacent one of both of the racks 24, 26, and as shown herein is provided between the racks 24, 26. The distribution header 36 may not be limited to this position; rather, the distribution header 36 may be located in virtually any part of the treating chamber 20. The distribution header 36 may emit liquid toward one or both of the racks 24, 26.
A liquid recirculation system may be provided for recirculating liquid from the treating chamber 20 to the spraying system 28. The recirculation system may include a sump 38 and a pump assembly 40. The sump 38 collects the liquid sprayed in the treating chamber 20 and may be formed by a sloped or recessed portion of a bottom wall of the tub 18. The pump assembly 40 may include both a drain pump 44 and a recirculation pump 46.
The drain pump 44 may draw liquid from the sump 38 and pump the liquid out of the dishwasher 10 to a household drain line 48. The recirculation pump 46 may draw liquid from the sump 38 and pump the liquid to the spraying system 28 to supply liquid into the treating chamber 20. While the pump assembly 40 is illustrated as having separate drain and recirculation pumps 44, 46 in an alternative embodiment, the pump assembly 40 may include a single pump configured to selectively supply wash liquid to either the spraying system 28 or the drain line 48, such as by configuring the pump to rotate in opposite directions, or by providing a suitable valve system. While not shown, a liquid supply system may include a water supply conduit coupled with a household water supply for supplying water to the sump 38.
As shown herein, the recirculation pump 46 has an outlet conduit 50 in fluid communication with the spraying system 28 for discharging wash liquid from the recirculation pump 46 to the sprayers 30-36. As illustrated, liquid may be supplied to the distribution header 36, upper rotatable sprayer 32, and top sprayer 30 through a supply tube 52 that extends generally rearward from the recirculation pump 46 and upwardly along a rear wall of the tub 18. While the supply tube 52 ultimately supplies liquid to the distribution header 36, upper rotatable sprayer 32, and top sprayer 30, it may fluidly communicate with one or more manifold tubes that directly transport liquid to the distribution header 36, upper rotatable sprayer 32, and top sprayer 30. Further, diverters (not shown) may be provided within the spraying system 28 such that liquid may be selectively supplied to each of the sprayers 30-36. The sprayers 30-36 spray water and/or treating chemistry onto the dish racks 24, 26 (and hence any dishes positioned thereon) to effect a recirculation of the liquid from the treating chamber 20 to the liquid spraying system 28 to define a recirculation flow path.
Additional functional systems may be provided for the dishwasher 10. For example, a heating system having a heater 54 may be located within or near the sump 38 for heating liquid contained in the sump 38. A dispensing system 56, which may dispense a detergent during the wash step of the cycle of operation or a rinse aid during the rinse step of the cycle of operation, may be located within the dishwasher 10, such as on an inner surface of the door. A filtering system (not shown) may be fluidly coupled with the recirculation flow path for filtering the recirculated liquid.
As illustrated in
The controller 14 may be operably coupled with one or more components of the dishwasher 10 for communicating with and controlling the operation of the components to complete a cycle of operation. For example, the controller 14 may be coupled with the recirculation pump 46 for circulation of liquid in the tub 18 and the drain pump 44 for drainage of liquid in the tub 18. The controller 14 may also be operably coupled to the heater 54 and the dispensing system 56. The controller 14 may also be coupled with one or more optional sensors 64. Non-limiting examples of optional sensors 64 that may be communicably coupled with the controller 14 include a moisture sensor, a door sensor, a temperature sensor, a detergent and rinse aid presence/type sensor(s).
The distribution header 36 includes a manifold 76 with multiple apertures 78 for spraying liquid into the treating chamber 20. The apertures 78 can be provided on at least one sprayer 80 fluidly coupled to the manifold 76. The sprayer 80 may be fixed or rotatable with respect to the tub 18, and may be in the form of a disc-shaped nozzle, although other configurations of the sprayer 80 are possible. As illustrated herein, the manifold 76 may include multiple fixed sprayers 80, each having multiple apertures 78 configured to spray wash liquid outwardly from the manifold 76. The sprayers 80 may be fixedly mounted to the manifold 76, such that the sprayers 80 remain stationary when liquid is emitted from the apertures 78.
The manifold 76 can be in fluid communication with the supply tube 52 for receiving liquid recirculated by the recirculation system, and can define a hollow passage through which liquid may flow to the sprayers 80 and out the apertures 78. The manifold 76 extends along at least one wall of the tub 18. As shown herein, the manifold 76 extends along the rear wall 70 and along at least a portion of the left and right side walls 66, 68. The manifold 76 can have a generally U-shaped body with two opposing portions 82, 84 positioned on opposite sides of the supply tube 52. The left opposing portion 82 includes a left rear segment 86 extending laterally from the supply tube 52 along the rear wall 70 of the tub 18 and a left side segment 88 extending along the left side wall 66 of the tub 18. The right opposing portion 84 includes a right rear segment 90 extending laterally from the supply tube 52 along the rear wall 70 of the tub 18 and a right side segment 92 extending along the right side wall 68 of the tub 18. The side segments 88, 92 can be substantially flush with the side walls 66, 68 of the tub 18, while the rear segments 86, 90 can meet to form a central bowed portion 94 to accommodate for the passage of the supply tube 52 upwardly to fluidly couple with the top and upper sprayers 30, 32.
The bowed portion 94 can also have a port 96 through which liquid may be supplied from the supply tube 52 to the opposing portions 82, 84 of the manifold 76. A valve 98 may be provided in the supply tube 52 for controlling the delivery of liquid to the manifold 76 and the top and upper sprayers 30, 32. The valve 98 can be configured to permit liquid delivery to all three at one time, only to the manifold 76, or only to the top and upper sprayers 30, 32. The valve 98 can be operably coupled with the controller 14 (
As illustrated, two sprayers 80 are provided on each opposing portion 82, 84, with one sprayer 80 provided on the left rear segment 86, one sprayer 80 provided on the left side segment 88, one sprayer 80 provided on the right rear segment 90, and one sprayer 80 provided on the right side segment 92, although the right side sprayer 80 is not visible in
In the illustrated embodiment, the manifold 76 is provided on an outer face of the distribution header 36, which can also have a generally U-shape body extending horizontally along the rear wall 70 of the tub 18 and along the side walls 66, 68 of the tub 18. The inner face of the distribution header 36 opposite the manifold 76 can optionally form a cover 100 for the manifold 76, with the sprayers 80 provided on the exterior of the cover 100. The cover 100 can provide food particles and other debris from getting trapped behind the manifold 76. The manifold 76 and the cover 100 can be integrally formed with each other. The manifold 76 and the integral cover 100 can be coupled with the tub 18 in any suitable manner; as shown herein, one or more brackets 102 can be used to attach the manifold 76 to the tub 18.
In the illustrated embodiment, the sprayers 80 include a face 104 defining a periphery 106, and the group of lower apertures 78L is located on a lower portion of the periphery 106 and oriented to spray liquid in a path along a substantially downward angle relative to the sprayer 80, the group of upper apertures 78U is located on an upper portion of the periphery 106 and oriented to spray liquid in a path along a substantially upward angle relative to the sprayer 80, and the group of central apertures 78C is located on the face 104 between the upper and lower apertures 78U, 78L and oriented to spray liquid in a path along a substantially outward curve relative to the sprayer 80. While each group is shown as including multiple apertures 78, any of the groups could instead include a single aperture.
The upper dish rack 24 has four corners, a left front corner 108, a left rear corner 110, a right rear corner 112, and a right front corner 114, and at least one of the upper apertures 78U emits a spray of liquid upwardly into at least one of the four corners 108-114 of the upper dish rack 24. As shown, the left side sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the left front corner 108, the left rear sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the left rear corner 110, right left rear sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the right rear corner 112, and the right side sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the right front corner 114. Other upper apertures 78U on the sprayers 80 may emit liquid to other zones of the upper dish rack 24.
Likewise, the lower rack 26 has four corners, a left front corner 116, a left rear corner 118, a right rear corner 120, and a right front corner 122, and at least one of the upper apertures 78U emits a spray of liquid downwardly into at least one of the four corners 116-122 of the lower dish rack 26. As shown, the left side sprayer 80 has at least one lower aperture 78L which emits a spray of liquid into the left front corner 116, the left rear sprayer 80 has at least one lower aperture 78L which emits a spray of liquid into the left rear corner 118, right left rear sprayer 80 has at least one lower aperture 78L which emits a spray of liquid into the right rear corner 120, and the right side sprayer 80 has at least one lower aperture 78L which emits a spray of liquid into the right front corner 114. Other lower apertures 78L on the sprayers 80 may emit liquid to other zones of the upper dish rack 24. For example, the silverware basket 25 is shown as being located on the right side of the lower dish rack 26, and one or more of the lower apertures 78L can be configured to emit liquid into the silverware basket 25. As shown, the right side sprayer 80 may emit liquid into one or more zones of the silverware basket 25.
The lower dish rack 26 can be conceptually divided into multiple zones, including a first zone Z1 adjacent the left side 126 of the lower dish rack 26, a second zone Z2 near a middle portion of the rack 26, and a third zone Z3 adjacent the right side 130 of the lower dish rack 26. An exemplary dish X is shown as being loaded in the first zone Z1 adjacent to the manifold 76 and the silverware basket 25 is shown as being provided in the third zone Z3.
The lower apertures 78L on the left side sprayer 80 emit a spray of liquid directly into the first zone Z1 and onto the dish X in the lower dish rack 26, while the central apertures 78C on the left side sprayer 80 emit an arcing spray of liquid over the dish X into the second zone Z2. The lower apertures 78L on the right side sprayer 80 emit a spray of liquid directly into the third zone Z3 and into the silverware basket 25, while the central apertures 78C on the right side sprayer 80 an arcing spray of liquid over the silverware basket 25 into the second zone Z2.
The spray paths from the left side sprayer 80 into the first and second zones Z1, Z2 can be configured such that they do not intersect in the lower dish rack 26 in order to maximize the area of the lower dish rack 26 covered by the manifold 76. Likewise, the spray paths from the right side sprayer 80 into the second and third zones Z2, Z3 can be configured such that they do not intersect in the lower dish rack 26. However, the arcing spray paths of liquid from the left and right side sprayers 80 into the second zone Z2 may at least both reach the middle of the lower dish rack 26, and may even overlap each other in the second zone Z2 in order to provide full coverage of the lower dish rack 26 in conjunction with the other apertures 78.
For
In the illustrated embodiment, the group of lower apertures 78L is located on a lower portion of the periphery 106 of the sprayer 80 and oriented to spray liquid in a path along a substantially downward angle relative to the sprayer 80, and the group of upper apertures 78U is located on an upper portion of the periphery 106 and oriented to spray liquid in a path along a substantially upward angle relative to the sprayer 80. While each group is shown as including multiple apertures 78, any of the groups could instead include a single aperture.
At least one of the upper apertures 78U emits a spray of liquid upwardly into at least one of the four corners 108-114 of the upper dish rack 24. As shown, the left side sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the left front corner 108, the left rear sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the left rear corner 110, right left rear sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the right rear corner 112, and the right side sprayer 80 has at least one upper aperture 78U which emits a spray of liquid into the right front corner 114.
The upper sprayer 32 shown in
The silverware basket 25 is shown as being located on the right side 130 of the lower dish rack 25, and one or more of the lower apertures 78L can be configured to emit liquid into the silverware basket 25. The right side sprayer 80 may emit liquid into one or more zones SWA, SWB, SWC of the silverware basket 25. As shown the right rear sprayer 80 has at least one lower aperture 78L which emits a spray of liquid into the first zone SWA and the right side sprayer 80 has at least two lower apertures 78L which respectively emit a spray of liquid into the second and third zones SWB, SWC. Other apertures 78 on the sprayers 80 may emit liquid to other zones of the lower dish rack 26.
For
The sprayers 80 are rotatably mounted to the manifold 76 such that emission of liquid from the apertures 78 causes the sprayers 80 to spin. For the four side sprayers 80 illustrated, the apertures 78 can be configured to emit liquid in substantially either spray pattern shown above for the first and second embodiments in
In the third embodiment, the supply tube 52 is a dual-feed tube having a first passage 136 extending to the manifold 76 and a second passage 138 extending to the upper rotatable sprayer 32 and top sprayer 30. A valve 140 can be provided to control the flow of wash liquid to either or both of the passages 136, 138 for controlling the delivery of liquid to the manifold 76 and the top and upper sprayers 30, 32. The valve 140 can be configured to permit liquid delivery to both passages 136, 138 at one time, only to the first passage 136, or only to the second passage 138. The valve 140 can be operably coupled with the controller 14 (
Any of the manifolds 76 and other sprayers of the spraying systems 28 disclosed herein can be configured to have a spray pattern that differs from those already disclosed. The spray patterns can differ based on the racks or zones to be covered, the number of racks within the dishwasher 10, and the location of the racks within the dishwasher.
The manifold 76 may be fixedly mounted to the tub 18 between the upper rack 24 and the top rack 148, and may emit liquid toward one or both of the racks 24, 148. As illustrated, the manifold 76 is configured to emit liquid toward both of the racks 24, 148, with the apertures 78 of the manifold 76 configured to spray in different directions in order to provide full coverage of the dishes being treated. For example, groups of lower apertures 78L emit a spray of liquid downwardly into the upper rack 24 while groups of upper apertures 78U emit a spray of liquid upwardly into the top rack 148. While not shown, the dish racks 24, 148 can be conceptually divided into multiple zones, which can be treated by different apertures 78 or groups of apertures 78 on the manifold 76.
As shown, the at least one of the apertures 78 on the side nozzles 80 of the manifold (only one of which is visible in
The mounting arrangement can further include a retainer 162 formed on a coupling 164 which includes a port 166 supplying liquid from the supply tube 52 to the upper rotatable sprayer 32. The sprayer 32 is automatically coupled with the port 166 when the upper rack 24 (
There are several advantages of the present disclosure arising from the various features of the apparatuses described herein. For example, the embodiment of the invention described above allows for more complete spray coverage of the treating chamber. Typical spraying systems for dishwashers are limited to spraying from the bottom up and/or the top down for a primarily vertical spray path. This limitation creates areas of limited coverage, particularly in the corners of the dish racks and the silverware basket. The embodiments of the present invention described herein provides a manifold with directional apertures dedicated to different areas of the treating chamber, including the corners of the dish rack and the silverware basket.
Another advantage is that the embodiment of the invention described above allows more intense coverage of the lower dish rack. While some attempts have been made to provide more full coverage in the lower dish rack be providing additional spray zones, these are often not effective during operation because the way in which the user loads dishes. It is common practice for many users of dishwasher to load larger, bulkier, and/or more heavily solid dishes in the lower rack, and these dishes can block some of the spray from the additional zones. The embodiments of the present invention described herein provides a manifold with directional apertures dedicated to different areas of the lower dish rack, including directly spraying into the lower dish rack, and spraying in the arcing curve in order to cover the middle section of the lower dish rack.
While the invention has been specifically described in connection with certain specific embodiments thereof, it is to be understood that this is by way of illustration and not of limitation. Reasonable variation and modification are possible within the scope of the forgoing disclosure and drawings without departing from the spirit of the invention which is defined in the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
1598352 | Kehoe et al. | Aug 1926 | A |
1897821 | Poli | Feb 1933 | A |
2407533 | Brock | Sep 1946 | A |
2918927 | Clearman | Dec 1959 | A |
3060944 | Brollo | Oct 1962 | A |
3095885 | Hertell | Jul 1963 | A |
3217721 | Hertel | Nov 1965 | A |
3253784 | Long et al. | May 1966 | A |
3285779 | Dunham | Nov 1966 | A |
3468486 | Mercer | Sep 1969 | A |
3586011 | Mazza | Jun 1971 | A |
3648931 | Jacobs | Mar 1972 | A |
3718149 | Mazza | Feb 1973 | A |
3828818 | Hunt | Aug 1974 | A |
3915180 | Jacobs | Oct 1975 | A |
4094702 | Rabuffetti | Jun 1978 | A |
4172463 | Woolley | Oct 1979 | A |
4279384 | Yamamoto | Jul 1981 | A |
4320781 | Bouvet et al. | Mar 1982 | A |
5131419 | Roberts | Jul 1992 | A |
5264043 | Milocco | Nov 1993 | A |
5331986 | Lim et al. | Jul 1994 | A |
5494062 | Springer | Feb 1996 | A |
5497798 | Fritz et al. | Mar 1996 | A |
5542443 | Yura et al. | Aug 1996 | A |
5849101 | Edwards et al. | Dec 1998 | A |
6003529 | Perry, Jr. | Dec 1999 | A |
6432216 | Thies | Aug 2002 | B1 |
6491049 | Tuller et al. | Dec 2002 | B1 |
6666220 | Spanyer et al. | Dec 2003 | B2 |
6869029 | Ochoa, Sr. et al. | Mar 2005 | B2 |
7270132 | Inui et al. | Sep 2007 | B2 |
7331356 | Vanderroest et al. | Feb 2008 | B2 |
7445013 | VanderRoest et al. | Nov 2008 | B2 |
7475696 | Vanderroest et al. | Jan 2009 | B2 |
7523758 | Vanderroest et al. | Apr 2009 | B2 |
7594513 | VanderRoest et al. | Sep 2009 | B2 |
7947132 | Vanderroest et al. | May 2011 | B2 |
8137479 | Vanderroest et al. | Mar 2012 | B2 |
8187390 | Vanderroest et al. | May 2012 | B2 |
8454762 | Vanderroest et al. | Jun 2013 | B2 |
8454763 | Vanderroest et al. | Jun 2013 | B2 |
20040173249 | Assmann et al. | Sep 2004 | A1 |
20040255982 | VanderRoest | Dec 2004 | A1 |
20040255992 | Rudiger | Dec 2004 | A1 |
20050022847 | Nito et al. | Feb 2005 | A1 |
20050150529 | Vanderroest et al. | Jul 2005 | A1 |
20050224098 | Fujii et al. | Oct 2005 | A1 |
20060054198 | Choi | Mar 2006 | A1 |
20070056613 | Haas et al. | Mar 2007 | A1 |
20070119485 | Gunnerson et al. | May 2007 | A1 |
20090159103 | Gillum et al. | Jun 2009 | A1 |
20110030742 | Dalsing et al. | Feb 2011 | A1 |
20110114139 | Buesing et al. | May 2011 | A1 |
20120111376 | Worrasangasilpa | May 2012 | A1 |
20120125381 | Vanderroest et al. | May 2012 | A1 |
20120125382 | Vanderroest et al. | May 2012 | A1 |
20120138100 | Chen et al. | Jun 2012 | A1 |
20120138110 | Chen et al. | Jun 2012 | A1 |
20130092194 | Carlson et al. | Apr 2013 | A1 |
20130139859 | Park | Jun 2013 | A1 |
Number | Date | Country |
---|---|---|
PI0505649 | Sep 2006 | BR |
PI0506303 | Jul 2007 | BR |
2527846 | Jun 2006 | CA |
2527848 | Jun 2006 | CA |
1182570 | May 1998 | CN |
7417444 | Oct 1974 | DE |
2911005 | Sep 1980 | DE |
3403359 | Aug 1985 | DE |
10124645 | Dec 2001 | DE |
102006012453 | Oct 2006 | DE |
102012217566 | Mar 2013 | DE |
0291713 | Nov 1988 | EP |
0517015 | Dec 1992 | EP |
0755650 | Jan 1997 | EP |
0786230 | Jul 1997 | EP |
795292 | Sep 1997 | EP |
1040787 | Oct 2000 | EP |
1252856 | Oct 2002 | EP |
1264570 | Dec 2002 | EP |
1488730 | Dec 2004 | EP |
1676520 | Jul 2006 | EP |
1676521 | Jul 2006 | EP |
2583611 | Apr 2013 | EP |
2321711 | Jun 2009 | ES |
2340859 | Jun 2010 | ES |
668181 | Mar 1952 | GB |
2295535 | Jun 1996 | GB |
11076127 | Mar 1999 | JP |
2001218721 | Aug 2001 | JP |
2002065562 | Mar 2002 | JP |
2002219088 | Aug 2002 | JP |
2007105210 | Apr 2007 | JP |
19950003025 | Feb 1995 | KR |
19970064554 | Oct 1997 | KR |
19980031929 | Aug 1998 | KR |
19990031442 | Jul 1999 | KR |
20040006218 | Jan 2004 | KR |
200366704 | Oct 2004 | KR |
20050122359 | Dec 2005 | KR |
20060013790 | Feb 2006 | KR |
20060087396 | Aug 2006 | KR |
100842370 | Jun 2008 | KR |
20080083911 | Sep 2008 | KR |
2009014510 | Feb 2009 | KR |
PA05013870 | Jun 2006 | MX |
PA05013873 | Jun 2006 | MX |
0022973 | Apr 2000 | WO |
2004058035 | Jul 2004 | WO |
Entry |
---|
Bosch User Manual for Dishwasher, p. 22, Downloaded from boschappliances.com on Feb. 15, 2005. |
The Perfect Ten, 2005 American Building Product Awards, Home Magazine, homemag.com, Published Feb. 2005. |
Asko Unveils New Dishwasher, Appliance Magazine, Published May 8, 2003, Downloaded From appliancemagazine.com Sep. 26, 2005. |
Dishwashers, Power at a Price, Consumer Reports, p. 34, Published Mar. 2005. |
Bosch SHU43 Built-in Dishwasher, epinions.com, Published Jan. 26, 2001. |
First Look, Power Washer, p. 91, Good Housekeeping Magazine, Published Sep. 2004. |
USPTO Notice of Intent to Issue a Reexam Certificate for U.S. Appl. No. 96/000,044, dated Mar. 19, 2014. |
European Search Report for Corresponding EP15151651.5, Jun. 1, 2015. |
European Search Report for Corresponding EP12158456.9, dated Dec. 6, 2017. |
Number | Date | Country | |
---|---|---|---|
20150201823 A1 | Jul 2015 | US |