Wiper blade

Information

  • Patent Grant
  • 11180118
  • Patent Number
    11,180,118
  • Date Filed
    Thursday, January 16, 2020
    4 years ago
  • Date Issued
    Tuesday, November 23, 2021
    2 years ago
Abstract
A wiper blade is presented having a wiper strip, a primary frame, and a pair of secondary frames. The primary frame having a connection device capable of connecting the wiper blade to a wiper arm disposed on a top side of the primary frame, and a connection structure disposed, on opposite ends of the primary frame. The pair of secondary frame, each have a central pivot connection portion and two leg portions extending from the central pivot connection portion, a pivot structure disposed on the central pivot connection portion of the secondary frames wherein the pivot structure of the secondary frames are connected to the connection structures on the ends of the primary frame. A wiper blade is also presented having a wiper strip, a force distribution structure having opposite ends, and a cover.
Description
FIELD OF THE INVENTION

This invention relates to the field of windshield wiper blades.


BACKGROUND

Typical wiper blades used on vehicles are plagued with numerous persistent drawbacks. In an effort to improve upon the traditional, bracketed wiper blade, the beam blade (or flat blade) was developed, keeping a lower profile and generally providing a more uniform force distribution than most bracketed wiper blades. However beam blades do not have the lateral stability of bracketed blades, and can have problems with wrapping (i.e. keeping contact between the outer edges of the wiper blade and the windshield) when their curvature is not sufficiently sharp for the windshield, and banding (i.e. losing contact with the windshield in the middle of the wiper blade, thereby leaving an unwiped band) when their curvature is too sharp for the windshield. Accordingly, beam blades may serve well for original equipment (i.e. the wiper blades installed by manufacturers on cars that are designed specifically for that car, but can experience problems on certain vehicles if designed as aftermarket wiper blades (i.e. replacement blades designed to be used on a variety of different windshields where the manufacturer does not know what vehicle the blade will be used on).


The first generation of hybrid wiper blades developed improved on beam blade performance in these circumstances. These blades combine the use of brackets with a beam to improve on the blades' wrapping characteristics without creating problems with banding. The disclosed concept provides an improvement on the first generation hybrid wiper blades, using a combination of traditional brackets and either beams or flat brackets.


The following patent applications are hereby incorporated by reference in their entirety, including their disclosures with respect to the background and field of art of wiper blades: U.S. patent application Ser. Nos. 13/453,601; 13/679,646; 13/572,100 and 13/587,389.


BRIEF SUMMARY OF THE INVENTION

The following presents a simplified summary of the invention in order to provide a basic understanding of some aspects of the invention. This summary is not an extensive overview of the invention. It is intended to neither identify key or critical elements of the invention nor delineate the scope of the invention. Its sole purpose is to present some concepts of the invention in a simplified form as a prelude to the more detailed description that is presented later.


In one embodiment, a wiper blade has a wiper strip, a primary frame, and a pair of secondary frames. The primary frame having a connection device capable of connecting the wiper blade to a wiper arm disposed on a top side of the primary frame, and a connection structure disposed, on opposite ends of the primary frame. The pair of secondary frame, each have a central pivot connection portion and two leg portions extending from the central pivot connection portion, a pivot structure disposed on the central pivot connection portion of the secondary frames wherein the pivot structure of the secondary frames are connected to the connection structures on the ends of the primary frame.


In one embodiment a wiper blade has a wiper strip, a force distribution structure having opposing ends, and a cover. The cover comprises a cover center section having two end portions and two cover side sections that are made from a soft, elastic material, wherein the cover side sections cover the end portions of the cover center section and extend to and cover the opposing ends of the wiper blade.


In one embodiment, a wiper blade has a wiper strip, a primary frame and a pair of beams. The primary frame has a top side and opposite ends, a connection device capable of connecting the wiper blade to a wiper arm disposed on the top side of the primary frame, and a connection structure disposed, on each of the opposite ends of the primary frame. The pair of beams each beam have a center portion and two leg portions extending in opposite directions from the center portion; wherein a pivot structure is connected to the center portion of the beams, and connects to the connection structure on the ends of the primary frame.





BRIEF DESCRIPTION OF THE FIGURES


FIG. 1 illustrates a perspective view from above of an embodiment of the disclosed concepts.



FIG. 2 illustrates a perspective view from above of an embodiment of the disclosed concepts without a cover attached.



FIG. 3 illustrates a frontal view of the embodiment of the disclosed concepts depicted in FIG. 2.



FIG. 4 illustrates a perspective view from above of an embodiment of the primary frame.



FIG. 5 illustrates a view of the primary frame of an embodiment of the disclosed concepts along the longitudinal axis of the wiper blade.



FIG. 6 illustrates a side view of a secondary frame of an embodiment of the disclosed concepts, wherein the beam is shown flattened for simplicity.



FIG. 7 illustrates a perspective view from above of a secondary frame of an embodiment of the disclosed concepts, wherein the beam is shown flattened for simplicity.



FIG. 8 illustrates a rivet which may be used in the joint of an embodiment of the disclosed concepts.



FIG. 9 illustrates a perspective view from the side of a turn-buckle holder used in a joint of an embodiment of the disclosed concepts.



FIG. 10 illustrates a view of a turn-buckle holder used in a joint of an embodiment of the disclosed concepts along the axis of the channel.



FIG. 11 shows a bottom view of a turn-buckle holder used in a joint of an embodiment of the disclosed concepts.



FIG. 12 shows a cross-sectional view of a turn-buckle holder used in a joint of an embodiment of the disclosed concepts through the turn-buckle holder's channel.



FIG. 13 illustrates a perspective view from the side of a holder half used in a joint in an embodiment of the disclosed concepts.



FIG. 14 illustrates a view of a holder half used in a joint in an embodiment of the disclosed concepts along the axis of the channel.



FIG. 15 illustrates a view of a holder half used in a joint in an embodiment of the disclosed concepts along the axis of the rivet passage.



FIG. 16 illustrates a bottom view of the holder half used in a joint in an embodiment of the disclosed concepts.



FIG. 17 illustrates a frontal view of a symmetric tertiary bracket of an embodiment of the disclosed concepts.



FIG. 18 illustrates a perspective view from above of a symmetric tertiary bracket of an embodiment of the disclosed concepts.



FIG. 19 illustrates a frontal view of an asymmetric tertiary bracket of an embodiment of the disclosed concepts.



FIG. 20 illustrates a perspective view from above of an asymmetric tertiary bracket of an embodiment of the disclosed concepts.



FIG. 21 illustrates a perspective view of the pivoting stud of an embodiment of the disclosed concepts.



FIG. 22 illustrates a side view of a “soft” cover of an embodiment of the disclosed concepts.



FIG. 23 illustrates a perspective view from above of a “soft” cover of an embodiment of the disclosed concepts.



FIG. 24 illustrates cross sectional view of the inside of the “soft cover” of an embodiment of the disclosed concepts.



FIG. 25 illustrates a perspective view from above of the cover center section of the “soft” section of an embodiment of the disclosed concepts.



FIG. 26 illustrates a perspective view from below of the cover center section of the “soft” cover of an embodiment of the disclosed concepts.



FIG. 27 illustrates a perspective view from above of the end portion of the cover side sections of the “soft” cover of an embodiment of the disclosed concepts.



FIG. 28 illustrates a perspective view from below of a cover side sections of the “soft” cover of an embodiment of the disclosed concepts.



FIG. 29 illustrates a frontal view of a cover side section of the “soft” cover of an embodiment of the disclosed concepts.



FIG. 30 illustrates a perspective view from above of a “hard” cover of an embodiment of the disclosed concepts.



FIG. 31 illustrates a perspective view from above of the center cover segment of a “hard” cover of an embodiment of the disclosed concepts.



FIG. 32 illustrates a perspective view from below of the end section of the center cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 33 illustrates a side view of the center cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 34 illustrates a cross-sectional view of the middle of a center cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 35 illustrates a frontal view of the center cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 36 illustrates a cross-sectional view along the middle of the center cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 37 illustrates a top view of the center cover segment of a hardcover of an embodiment of the disclosed concepts.



FIG. 38 illustrates a perspective view from the side of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 39 illustrates a perspective view of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 40 illustrates a frontal view of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 41 illustrates a top view of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 42 illustrates a side view of the inner side of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 43 illustrates a side view of the outer side of a secondary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 44 illustrates a frontal view of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 45 illustrates a cross-sectional view along the middle of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 46 illustrates a top view of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 47 illustrates a perspective view from above of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 48 illustrates a perspective view from below of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 49 illustrates a side view of the inner side of a tertiary cover segment of a hard cover of an embodiment of the disclosed concepts.



FIG. 50 illustrates a side view of the end section of a hard cover of an embodiment of the disclosed concepts.



FIG. 51 illustrates a bottom view of the end section of a hard cover of an embodiment of the disclosed concepts.



FIG. 52 illustrates a perspective view from above an alternative embodiment of the primary frame of an embodiment of the disclosed concepts.



FIG. 53 illustrates a frontal view of the primary frame depicted in FIG. 52.



FIG. 54 illustrates a frontal concept diagram of a novel hybrid wiper blade that is an embodiment of the disclosed concepts.





DETAILED DESCRIPTION

The following detailed description and the appended drawings describe and illustrate exemplary embodiments of the invention solely for the purpose of enabling one of ordinary skill in the relevant art to make and use the invention. As such, the detailed description and illustration of these embodiments are purely exemplary in nature and are in no way intended to limit the scope of the invention, or its protection, in any manner. It should also be understood that the drawings are not to scale and in certain instances details have been omitted, which are not necessary for an understanding of the present invention, such as conventional details of fabrication and assembly.


A novel bracketed and/or hybrid (i.e. having both a spring elastic “beam” and one or more brackets/frames) wiper blade having a cover is presented. Several novel concepts are introduced which can be used both with the disclosed novel wiper blade, or separately with various kinds of traditional, hybrid or beam wiper blades. These novel concepts include, but are not limited to, a novel “soft” cover for any type of wiper blade that is more effective at keeping debris out of the internal structure of the wiper blade than traditional covers; a novel segmented hard cover for any type of wiper blade whose segments connect to each other, and do not require connection to the frame, allowing for a tighter fit line between segments and thus reducing the chance of debris from getting into the mechanism.


In certain embodiments, a wiper blade may include a wiper strip, a primary frame and a pair of secondary frames. The primary frame, may have a top side and opposite ends, a connection device capable of connecting the wiper blade to a wiper arm disposed on the top side of the primary frame, and a connection structure disposed on each of the opposite ends of the primary frame. The pair of secondary frames, may each have a central pivot connection portion, two leg portions extending from the central pivot connection portion, and a pivot structure disposed on the central pivot connection portion of the secondary frames. The pivot structures disposed on the secondary frames may be connected to the connection structures on the ends of the primary frame.


In certain embodiments, the connection structure on the ends of the primary frame may comprise pivot extension walls. In certain embodiments the secondary frame may have a generally thin structure. In certain such embodiments the secondary frame may be a beam. In other such embodiments, the secondary frame may be a bracket. In certain such embodiments, the secondary frame may be provided with a strengthening bead.


In certain embodiments, the pivot structure is a separate structure attached to the secondary frames. In certain embodiments, the legs of the secondary frames may be symmetrical. In other embodiments, one of the two leg portions of a first secondary frame of the pair of secondary frames may be longer than the other leg portion of the first secondary frame of the pair of secondary frames. In certain embodiments at least one leg portion of at least one of the secondary frames is provided with a wiper strip holder capable of securing the wiper strip.


In certain embodiments, the wiper blade may also include at least one tertiary frame, wherein at least one leg portion of at least one of the secondary frames is provided with a tertiary frame connection structure, and wherein the at least one tertiary frame is connected to the tertiary frame connection structure of the least one of the secondary frames.


In certain such embodiments, the wiper blade may also include a cover. In certain such embodiments, the primary frame further comprises a cover-connection structures. In certain such embodiments the cover may be a segmented hard cover, and wherein the cover segments connect to one another via pivot joints, and wherein the cover may be secured to the wiper blades at cover connection structures on the primary frame or secondary frame.


In certain such embodiments the cover may include a cover center section and two cover side sections that are made from a soft, elastic material, wherein the cover side sections cover the ends of the cover center section and extend to the ends of the wiper blade. In certain such embodiments, a central cover portion may be made from a harder material than the two cover side sections.


In certain embodiments, a wiper blade comprising: a wiper strip, a force distribution structure having opposite ends, and a cover. The cover may include a cover center section having two end portions and two cover side sections that are made from a soft, elastic material, wherein the cover side sections cover the end portions of the cover center section and extend to and cover the opposing ends of the wiper blade.


In certain embodiments, a wiper blade may include a wiper strip, a primary frame and a pair of beams. The primary frame may have a top side and opposite ends, a connection device capable of connecting the wiper blade to a wiper arm disposed on the top side of the primary frame, and a connection structure disposed, on each of the opposite ends of the primary frame. The pair of beams, may each having a center portion and two leg portions extending in opposite directions from the center portion. The pivot structure may be connected to the center portion of the beams, and may connect to the connection structure on the ends of the primary frame.


In certain such embodiments the wiper blade may also include at least one tertiary frame, wherein at least one of the beams further comprises at least one tertiary frame connection structure and the at least one tertiary frame is connected to the at least one tertiary frame connection structure. In certain such embodiments, each of the leg portions of at least one of the beams may have a different curvature.


As can be seen in FIGS. 2-4 the main support structure of the wiper blade preferably includes a primary frame 20 having a connection device 10 on its top side to which a connector and/or or adapter (not shown) can be used to connect the wiper blade to a wiper arm. Suitable connectors which allow the wiper blade to be connected to various different types of wiper arms are known in the art, and include U.S. Pat. No. 6,640,380 and U.S. patent application Ser. Nos. 13/558,624, and 13/560,585, each of which is incorporated by reference herein in its entirety. Alternatively, the connection device 10 can be implemented to connect directly to a particular kind of wiper arm with or without the use of a connector and/or adapter. The connection device 10 may attach to the primary frame 20 through the use of welding, screws, rivets, claws, crimping or any other method known in the art. Alternatively, the connection device 10 may be an integrated part of the structure of the primary frame 20. The connection device 10 may be made out of metal, plastic or any other suitable material known in the art or any combination of suitable materials known in the art.


The primary frame 20 may be made out of metal, plastic or any other suitable material known in the art, or any combination of suitable materials known in the art. The primary frame 20 may be straight or predominantly straight in shape when viewed from the front (as shown in FIG. 2-4), or may bear a more pronounced curvature. A connection to a pivot structure may be located at each end of the primary frame 20, and allows the primary frame 20 to connect to a secondary frame 30, in such a manner as to allow the secondary frame 30 to pivot about a pivot axis. A novel pivot structure which is the subject of U.S. Provisional Application 61/603,223 and the nonprovisional application filed concurrently herewith is described below, but any pivot structure known in the art may be used in connection with the described wiper blade.


As shown in FIG. 5, the profile of the primary frame 20 below the connection device 10, when viewed along the longitudinal axis of the wiper blade, is preferably U shaped to add strength and rigidity to the primary frame. The primary frame may have a horizontal wall 21 from which two side walls 22 may descend vertically. The distance between the side walls 22 may be constant along the length of the primary frame 20, or it may taper or expand as it approaches either end of the primary frame 20. As described above, at either end of the primary frame is a connection to a pivot structure. One such connection is shown in FIGS. 2-5, as pivot extension walls 23. These pivot extension walls 23 extend from the side walls 22 of the primary frame 20 and facilitate the connection of the primary frame 20 to the pivot structure. The pivot extension walls may be provided with holes 24 which will form part of the pivot structure, wherein a rivet, or protrusions may be placed to facilitate the pivoting of the secondary frame 30. Persons of skill in the art will recognize that various alternative pivot structures, and connections to pivot structures might be used and remain within the scope of the disclosed concepts, including without limitation providing the pivot extension walls with protrusions instead of holes, or a rivet onto which other parts of the pivot structure can attach by in any known manner. The horizontal wall 21 may end before, or part way along, the pivot extension walls 23 in order to give the pivot structure a wider range of motion, or may optionally extend all the way to the end of, or past, the pivot extension walls 23.



FIGS. 52 and 53 show another embodiment of the primary frame 20 wherein the horizontal wall 21 running along the top of the primary frame 20 is angled such that from an area near the connection device 10 the surface of the horizontal wall 21 decreases in height it approaches the pivot extension walls 23. The walls joining the horizontal wall 21 to the side walls 22 in this embodiment is also sloped (and in some embodiments, may be fluted), and the width of the horizontal wall 21 is narrower nearer to the connection device 10 than on the ends of the primary frame 20. This allows a cover 60, 70 to have a greater degree of fluting and a narrower top, which can give it an aerodynamic effect similar to spoiler, which can improve the wiper blade's wind-lift performance.


As discussed in greater detail below, the primary frame 20 and/or the connection device 10 may also have cover-connection structures, such as projections, recesses, extension walls with holes, recesses, projections or rivets, etc., to facilitate the connection of the cover 60, 70, or portions thereof, to the primary frame 20.


The secondary frame 30 is preferably made out of metal, such as steel, and can optionally be spring-elastic. The secondary frame 30 can also be made from plastic, or any other suitable material known in the art. In certain embodiments (not shown in the figures), the secondary frame 30 can be a curved, spring-elastic beam, making the such embodiments “hybrid” wiper blades, as they are a hybrid combining elements of a bracketed (or framed) wiper blade and a beam (or frameless) wiper blade. The secondary frame 30 preferably has a central pivot connection portion 31, which connects the secondary frame 30 to the primary frame 20 via a pivot structure. The central pivot connection portion 31 is preferably flattened (as shown in FIGS. 6 and 7), but may be curved. The central pivot connection portion 31 may have connecting structures, such as recesses 32; projections; or pivot joint wings having either (1) a rivet or projections to attach to corresponding recesses, holes or clips in the primary frame's 20 pivot extension walls 23 or other connection to a pivot structure; or (2) recesses to receive corresponding projections, rivets, etc. in the primary frame's 20 pivot extension walls 23 or other connection to a pivot structure. Persons of skill in the art will recognize that numerous types of pivot structures can be used, whether directly connecting the secondary frame 30 to the primary frame 20, or as described below in the novel pivot joint presented, using an intermediary piece (or pieces) to join the two.


On either side of the central pivot connection portion 31, the secondary frame 30 has legs 33, 34. The legs 33, 34 of the secondary frame 30 may be symmetric or asymmetric (as shown). The legs 33, 34 of the secondary frame 30 may be of the same, or different in lengths. In some embodiments, it may be advantageous to have the outer leg 33 (the leg further from the middle of the wiper blade) with a longer length than the inner leg 34 to allow a more compact primary frame 20, while still allowing the wiper blade to wrap around the curvature of the windshield along its extremities, and improve wipe quality. Similarly, each leg 33, 34 may be independently straight, curved, or have a more elaborate structure depending on the vehicle(s) for which they are designed. In some embodiments having curved legs 33,34 it may be advantageous to have the curvature of the inner leg 34 (i.e. the leg closer to the center of the wiper blade) be different than the curvature of the outer leg 33. In some embodiments, it can be particularly advantageous to provide the inner leg 34 with a sharper curvature than the curvature of the outer leg 33 in order to provide better wrapping of the wiper blade around the curvature of a windshield, and thus improving wipe quality. Similarly, in embodiments with straight legs 33, 34 it may be advantageous to provide the outer leg 33 with a smaller angle of descent from the central pivot connection portion θ than the angle of descentq of the inner leg 34.


As shown in FIGS. 6 and 7, the secondary frame 30 may be a generally thin bracket, and may optionally be provided with a strengthening and stiffening bead 35, giving it a more robust form, and increasing its lateral rigidity. The strengthening bead 35 may be provided along either, or both legs 33, 34, and may also extend onto portions of the central pivot connection portion 31.


As discussed above, persons of skill in the art will recognize that the pivoting structure joining the primary frame 20 and the secondary frame 30 may be made in many different ways known in the art, either by directly connecting the two frames directly, or by using intermediary structures to do so. One such method for connecting the primary frame 20 to the secondary frame 30, described in greater detail in U.S. Provisional Patent Application No. 61/603,223, and in the concurrently filed non-provisional application entitled Hinged Wiper Blade filed concurrently herewith uses a turn-buckle holder 51 made up of two holder halves 52 held together by a rivet 50. Thus, when assembled, one holder half 52 is attached to the secondary frame 30 opposite the other holder half 52 at the central pivot connection portion 31 wherein the central pivot connection portion 31 is inserted into the channel 54 formed between the upper channel wall 56 and lower channel wall 57 of each holder half 52. The holder halves 52 are then pushed together such that the holder half's 52 projections 55 engage the recesses 32 on the central pivot connection portion 31 of the secondary frame 30. Alternatively, in embodiments where the central pivot connection portion 31 has projections, the holder halves 52 can be implemented so as to have recesses to receive such projections.


Once the holder 52 halves have been pushed together such that the turn-buckle holder 51 contains the secondary frame 30 within its channel 54, the turn-buckle holder 51 can be placed between the pivot extension walls 23 of the primary frame 20, and a rivet 50 (shown in FIG. 8) can be passed through the holes 24 in the pivot extension walls 23 and through the rivet passage 53 in the turn-buckle holder 51 and secured on the opposite side. Persons of skill in the art will recognize that various modifications of such a structure can be made while remaining within the scope of the disclosed concepts, including without limitation, providing protrusions on the pivot extension walls 23 which can engage the rivet passage 53 in the holder, or providing the holder 51 with protrusions that can engage the holes 24 in the pivot extension walls 23. FIGS. 9-12 show various views of the holder 51. FIG. 12, in particular, shows a cross-section of the turn-buckle holder 51 taken through the channel 54 along its plane. As can be seen in FIG. 12, the projections inside the holder halves 52 (and thus also the corresponding recesses 32 in the secondary frame 30) can be made of varying sizes, and need not be symmetric with the projections 55 in the opposite holder half 52. In certain embodiments, such as that depicted in FIG. 12, two different sizes of projections 55 may be used in the holder halves 52 in order to facilitate proper alignment of the secondary frame 30 with the turn-buckle holder 51 during assembly. In an alternative embodiment, the turn-buckle holder 51 is a unitary structure. Such a structure can be made through insert molding, where the unitary turn-buckle holder is molded around the secondary frame. This provides a tighter grip by the turn-buckle holder on the secondary frame.



FIGS. 13-16 show various views of a holder half 52. As can best be seen in FIGS. 13 and 15, the lower channel wall 57 may be angled, or curved in order to allow pivoting of the secondary frame 30 within the turn-buckle holder 51, or to facilitate the attachment of the turn-buckle holder to the secondary frame 30 by providing a wider entry point on the edges of the channel 54 in the holder half 52 while still providing a snug-fitting attachment in the middle portion of the holder half 52. Alternatively, both the top channel wall 56 and the lower channel wall 57 may be shaped to follow the contour of the central pivot connection portion 31 of the secondary frame 30 or to facilitate insertion of the secondary frame 30 into the holder halves 52. This novel pivot-hinge connection between the primary and secondary frames can be accomplished within the limited height of the pivot extension walls 23 of the primary frame 20, and thus allows the disclosed wiper blade to maintain a relatively low profile, thereby reducing the effect of wind-lift on the wiper blade at high speeds and reducing or obviating the need for a spoiler on the wiper blade.


The ends of the secondary frame 30 may either be provided with a wiper strip holder, such as the claws 43 on the tertiary frames 40, 41, or may with a connection extension 36 having a structure to connect to a tertiary frame 40, 41. In certain embodiments, as shown in FIGS. 6-7 and 17-21 the connection between the secondary frame 30 and the tertiary frame(s) 41, 42 is formed by passing a pivoting stud 44 through a hole 42 in the central joint connection portion of the tertiary frame and a hole 37 in the connection extensions 36 on the secondary frame 30. As shown in FIG. 21, the pivoting stud 44 has a tertiary base portion 45 sized to fit in the hole 42 of the tertiary frame 40, 41, and a bottom portion 47 that is wider than the hole 42 in the tertiary frame 40, 41. Thus tertiary frame 40, 41, is supported on the bottom portion 47 of the pivoting stud 44 when the wiper blade is assembled. Accordingly the base portion 47 may be curved (as shown in FIG. 21) or angled in order to facilitate the pivoting of the tertiary frame 40, 41. The pivoting stud 44 is also provided with a top portion 48 and a neck 46 wherein the diameter of the neck is approximately the same as the width of top portion 48 and smaller than the length of the top portion. Both are the top portion and the neck are sized to fit into the hole 37 of the secondary frame, and the height of the neck is approximately the same as the thickness of the connection extension 36 of the secondary frame 30. During assembly, the pivoting stud's 44 top portion 48 and neck 46 are inserted into hole 37 in the connection extension 36 of the secondary frame 30, and then turned such that the top portion 48 is perpendicular to the long side of the hole 37 in the connection extension 36. Accordingly a high friction material, such as natural or synthetic rubber is preferred for the pivoting stud 44, but plastic and/or other suitable materials may also be used. Persons of skill in the art will recognize that alternative forms of connecting the tertiary frames to the secondary frames may be used within the scope of the disclosed concepts, and that any of the forms for creating a pivoting structure/joint between the primary and secondary frames discussed above could be implemented between the secondary and tertiary frames, and vice versa.


The tertiary frames 40, 41 may be symmetrical tertiary frames 40 or asymmetrical tertiary frames 41. In certain embodiments, as shown in FIGS. 2-3, it may be advantageous to use symmetrical tertiary frames 40 on the connection extensions 36 nearer to the middle of the wiper blade, and asymmetric tertiary frames 41 on the connection extensions 36 nearer to the extremities of the wiper blade. In such embodiments it may be advantageous to put the longer leg of the asymmetric tertiary frames 41 extending outward from the wiper blade so as to provide a better wrap around the surface of a curved windshield of a vehicle.


Whether symmetric or asymmetric, the tertiary frames are provided with claws 43 which support the wiper strip 15. The wiper blade described herein can use any of the traditional wiper strips known in the art, which generally have a base portion having grooves into which metal vertebrae are inserted to provide lateral support for the wiper strip 15. Alternatively, the wiper blade described above can be implemented using the wiper strip carrier described in U.S. patent application Ser. No. 13/558,624, which is incorporated herein by reference in its entirety, and is attached hereto.


As shown in FIGS. 19 and 20, the tertiary strip may have a structure to support and/or secure the cover 60, 70. The support structure shown in FIGS. 19 and 20 is a chamfered “T” shaped structure 49 which the end of the cover can grip onto and support itself. Such a support structure can be put on either an asymmetric tertiary frame 41, as shown, or on a symmetric tertiary frame 40. Any other types of supporting structures for the cover 60, 70 described above with regard to the primary frame, or otherwise known in the art, including rivets, projections, recesses, wing walls having same, etc. can be used on the tertiary frames 40, 41. Similar such supporting structures can also optionally be included in the secondary frame 30 as well.


The novel “soft” cover 60 introduced in this provisional patent application can be used with any known type of wiper blade, including the above-described wiper blade, beam blades,


The wiper blade covers on commercial wiper blades (whether with or without spoilers) generally have a hard plastic cap (see U.S. Pat. Nos. 7,293,321 and 7,523,520) hovering over the connection device (See U.S. Pat. No. 6,944,905). Particularly in beam blades, the hard plastic cap above the cover must leave a gap between the top surface of the cover and the bottom surface of the cap. Failure to leave such a gap results in the cap pushing down on the cover during the operation of the wiper blade, which compresses the material of the cover, and exerts a force onto the beam or other support structure, which can have adverse effects on the wipe quality of the wiper blade. Similarly, designing a connection device to form a contact seal with a cover can really only be done by custom-tailoring the wiper blade to a particular curvature of a particular windshield. Thus for aftermarket wiper blades, where the manufacturer does not know what windshield its products will be used on, the required specific calculations cannot be made across multiple windshields, and thus the same problem of cover-material compression and adverse forces on the beam/support structure may be present on some windshields but not others. Accordingly most wiper blade manufacturers (particularly after-market manufacturers) provide wiper blades with a gap between the cover and the cap or other structure that covers it. The novel “soft” cover 60 presented in this application solves these problems by reversing the order of the pieces. This allows the relatively softer material on the cover side sections 64 stretch when necessary as the wiper moves over the windshield, which lessens or eliminates the adverse forces put upon the beam, vertebrae and/or support structure of the wiper blade. At the same time the relatively harder material of the cover center section 61 helps secure the connection with the cover side sections 64. Persons of skill in the art will recognize that it is not necessary for the cover center section 61 to be made from a harder material than the cover side sections 64. Indeed they can be made from the same material. Suitable materials for both the cover center section 61 and the cover side sections 64 include natural and synthetic rubber, plastic, and other materials known in the art. However, in some embodiments it has been found advantageous to use a plastic material with a Shore hardness A values above 90 in the cover center section 61, and plastic, natural rubber, or synthetic rubber material with Shore hardness A values between 60 and 90 in the cover side sections 64. Improved results have been found using a material of Shore hardness A between 80 and 88 in the cover side sections 64, as it is still flexible enough not to affect the beam/support structure, but hard enough to maintain good grips on the cover center section 61 as well as on the wiper blade's primary frame 20, secondary frame 30, tertiary frame 40, 41 and/or a beam (in the case of beam blades and/or hybrid blades).


Accordingly a cover center (“hard”) section 61 is provided with side connecting structures 62, and top recesses/holes 63 which receive corresponding side receiving structures 65 and top projections 66 from the cover side sections 64. The cover center section 61 is preferably, but not necessarily, made from a harder material than the cover side sections 64.



FIGS. 22-24 show the novel “soft” cover with the cover center section 61 and the cover side sections 64 connected. FIG. 24, which has a cross-sectional view, shows the mechanics of the connections between the sections of the cover 60, showing the top projections 66 on the cover side sections 64 engaging the top recesses/holes 63 in the cover center section 61.


As shown in FIGS. 25-26, the top holes 63 in the cover center section 61 may be located on a recessed ledge such that when the cover side sections 64 are attached, a smooth, continuous surface is present on the combined structure (see FIG. 22-24). The side connecting structures 62 on the cover center section 61 may project outwardly from the main body of the of the cover center section 61, and may optionally include bottom projections (shown in FIGS. 24-26) which grip a corresponding recess or hole in the cover side sections' 64 side receiving structures 65. These side connecting structures 62 may further be laterally recessed in order to provide a smooth transition of the outer surfaces of the cover center section and the cover side sections 64 on the sides as well. Moreover, the recessed ledge housing the top hole 63 and the recessed side connecting structures 62 may be joined such that the cover side section lip which covers these structures forms a seal along the boundary of these structures to prevent any water or debris from entering therein. The cover center section may have a hole for the connection device to pass through, and may have internal grips 68 which grip may be used to grip the primary frame 20, connection device 10, and/or beam (in the case of beam or hybrid wiper blades).



FIGS. 27 and 28 show the corresponding structures on the cover side sections 64 that connect it to the cover center section 61. The side receiving structures 65 on the cover side sections 64 receive the side connecting structures 62 from the cover center section 61. As shown in FIG. 28, these side receiving structures 65 may have a recess or hole in them to receive the optional bottom projection of the side connecting structures 62. For added ease of making the connection, and to ensure a better connection, as shown in FIGS. 24 & 29, the side receiving structures 65 can project outwardly from the cover side section 64. This increases the surface area of the side connections, and provides a guiding path for the insertion of the side connecting structures 62 into the side receiving structures 65. The top projection 66 may be located on a lip of the which may be elevated, or have a smaller thickness than the main walls of the cover side section in order to facilitate the smooth transition in the outer surface of the joined cover center section 61 and cover side sections 64. This lip may also help form a seal to keep water and debris out of the internal structure of the wiper blade. Accordingly, the top projection 66 and side receiving structures 65 together with the top hole 63 and side connecting structures form a three sided locking mechanism which ensures better protection against the elements without interfering with the operation of the underlying support structure, whether it is brackets or beams.



FIG. 28 also shows several different kinds of internal grip structures. The contoured grip 68a extends back from the side receiving structures 65, gripping and following the contour of the bottom of the primary frame 20, including sloping downwards towards the end of the grip structure to follow the contour of the pivot extension walls 23. The rib grip 68b acts both as a structural supporting rib, and as a loose grip on the secondary frame 30, and has a recess cut into it to accommodate a bead 35 on the secondary frame 30. This loose grip allows the secondary frame to move upwards and downwards during operation of the wiper blade within a set range without interfering with the movement of the secondary frame 30. The loose internal grip can also be used on the “quarter” portion of beam/hybrid blades—half way between the center and the end of the beam—to give that part of the beam room to bend without interfering with its behavior. Intermittent or continuous claw-like grips (not shown) can also be used, particularly on beam blades and/or hybrid blades where the cover must be secured to the beam. One possible internal end grip 69 is also shown in FIG. 28. This grip has a slotted pocket in the end portion of the cover which receives the chamfered “T” structure on the tertiary frame 41 of the above-described wiper blade. Other types of end grips may be used, including detents, dovetails, projections, and all such end grips described in U.S. patent application Ser. Nos. 13/453,601, 13/572,100 and 13/587,389, which are incorporated herein by reference in their entirety.


A second type of novel cover—a “hard” cover 70 is presented in FIGS. 30-52. As shown in FIG. 30, the cover 70 may be composed of multiple segments. A center cover segment 71 has an opening 74 through which the connection device 10 can be passed. Secondary cover segments 72 can be attached to each side of the central cover segment 71. Optional, tertiary cover segments 73 can be attached to the outer ends of the secondary cover segments 72. Additional cover segments can also be used on covers of this type. The outermost end of the outermost segment has an end section 75. The segments of the “hard” cover are preferably made of a plastic, and need not actually be “hard”. It can be advantageous to use a plastic having a Shore hardness A of greater than 90. However, any suitable material known in the art can be used to make the cover 70, including materials having a Shore hardness A values of 90 or less.



FIGS. 31-37 illustrate various views of the center cover segment 71 of the cover 70. The end sections of the center cover segment 71 has receiving walls 711, which are used to connect to the secondary cover segments 72 using a pivoting connection. The receiving walls 711 may have a receiving channel 712 and a seating recess 713 which receives a projection 722 from the secondary cover segments 72. The a seating hole may also be used in place of a seating recess 713. In some embodiments it may be advantageous for the receiving walls to be narrower than the main walls of the center cover segment 71, or to have the receiving walls 711 taper so as to allow them to deflect enough to allow the insertion of the projections 722 of the secondary cover segment 72. Persons of skill in the art will recognize that the projection may be located on the center cover segment 71, and that the seating recess may be located on the secondary cover segment 72. Likewise other pivoting connections known in the art, including the use of rivets, or additional structures known in the art which allow the center cover segment and the secondary cover segment to form a pivoting connection may also be used.


The center cover segment 71 may also have a lip 714 which can cover the sides of the connection device, and hold grips 715 and/or other structures which can help secure the center cover segment 71 to the primary frame 20. Additional internal grips 717, 718 can be located along the inner surface of the center cover section 71 and may also help secure the center cover section to the primary frame 20. As can be seen in FIGS. 33 and 34, the internal grips 717, 718 may be implemented as appropriate to fit a particular design of primary frame 20. For instance the inner internal grips 717 are sized to secure the shorter middle portion of the side walls 22 of the primary frame 20, while the outer internal grips 718 are sized to secure the larger pivot extension walls 23 of the primary frame 20.


As shown in FIGS. 30, 31, 33 and 34, the cover 70 may be provided with fluting 716 on its outer walls. The fluting may act as an aerofoil to help increase the downward force on the wiper blade at higher speeds. Alternatively the cover may be shaped to embody a spoiler, with or without fluting. Such spoilers can be embodied as a symmetric isosceles triangle (with or without fluting), as an asymmetric right triangle (with or without fluting), or in any other suitable shape. Similarly, embodiments of the cover 70 that do not have a spoiler may also be symmetric, as shown in FIGS. 30-51, or asymmetric.



FIGS. 38-43 illustrate various views of the secondary cover segments 72 of the cover 70. The inner side of the secondary cover segment includes a connecting wall 721 which contains a projections 722 which pass through the receiving channel 712 and into the seating recess 713 of the receiving wall 711 of the center cover segment 71. The connecting wall 721 may be narrowed, or may taper in order to bend to allow the insertion of the projection 722 into the seating recess 713. As best shown in FIGS. 39 and 41, the connecting wall 721 is preferably laterally recessed, such that the receiving wall 711 of the center cover segment 71 can cover it. The outer edge 723 of the inner side of the secondary cover segment 72 and the edge of the receiving wall 711 may have complementary shapes which allow the secondary cover segment 72 and the center cover segment 71 to form a pivot joint that can move during the operation of the windshield wiper as the curvature of the windshield underneath the wiper strip 15 changes. The outer edge 723 of the inner side of the secondary cover segment 72 may also define a covering portion 724 which covers a portion of the outer edge of the center cover segment 71, and can help prevent water, ice or debris from entering the internal structure of the wiper blade. Persons of skill in the art will recognize that a covering portion can instead be located on the receiving walls of the center cover segment, and can cover corresponding portions of the inner side of the secondary cover segment. Persons of skill in the art will also recognize that a covering wall (not shown) can be used to join the portions of the edge of the segment that is covered by the covering portion 724, in order to increase the protection against debris, water and ice at the joint between the center cover segment and the secondary cover segment.


The secondary cover segment may have an end section 75, or it may have a second receiving wall 725 with a second receiving channel 726 and a second seating recess 727 which connect the secondary cover segment 72 to a tertiary cover segment 73. Persons of skill in the art will recognize that it is not necessary for the cover 70 to be symmetric, or to have the same number of segments on each side of the center cover segment 71. As discussed above, persons of skill in the art will also recognize that the projections and recesses connecting the cover segments may be reversed, and that other pivoting structures such as rivets may be used to make the pivoting connection between the cover segments.


As illustrated n FIGS. 42 and 43, the secondary cover segment 72 may also have internal grips 728, 729 which can grip the portion of the frame that the secondary cover segment 72 covers. The internal grips 728, 729 depicted are sized to secure the secondary frame 30 of the wiper blade. The internal grips may be sized to form a tight grip on the corresponding portion of the frame, or may be sized larger than the frame in order to give the frame a defined freedom of movement within the grip to allow for greater variability in its positioning during the operation of the wiper blades, as the curvature of the windshield under the wiper changes.


An embodiment of a tertiary cover segment is illustrated in FIGS. 33-50. The depicted tertiary cover segment 73 has a second connecting wall 731 having a second projection 732 which engages the second seating recess 727 on the second receiving wall 725 of the secondary cover segment 72. The tertiary cover segment 73 may have an outer edge 733 which is shaped complementary to the second receiving wall 725 of the secondary cover segment 72 so as to allow the joint between the secondary cover segment 72 and the tertiary cover segment 71 to pivot and move during the operation of the wiper blade. The tertiary cover segment 73 may have a second covering portion 734 which covers the corresponding portion of the receiving wall 725 of the secondary cover segment 72 so as to help prevent water, ice and debris from entering the internal structure of the wiper blade. The edge of the second receiving wall 725 may be provided with a wall to help cover the region underneath the second covering portion 734 to add additional protection against the elements.


As can be seen in FIGS. 46 and 47, on the second connecting wall, opposite the second projections 732, reinforcing projections may be added to strengthen the integrity of the second connecting wall 731, and the connection between the secondary cover segment 72 and the tertiary cover segment 73. The second connecting wall 731 may be narrow, or may taper, so as to allow it to deflect enough to allow the second projection to enter the second seating recess 727. Again, a hole may be used in place of the second seating recess 726, and other pivoting connections known in the art, such as rivets, may also be used to establish the joint connection between the tertiary cover segments 73 and the secondary cover segments 72.


The receiving channel 712 and second receiving channel 726 may be provided with a ramp or chamfer structure to facilitate the insertion of the corresponding projection 722 and second projection 732 into same.


The tertiary cover segments 73 may be provided with internal grips to secure the segments to the corresponding portion of the cover, as described above relating to the internal grips of the center cover segment 71 and the secondary cover segments 72. The tertiary cover segment may also be provided with ribs between the side walls to give them additional structural strength and stability. Indeed, ribs may be provided to any of the cover segments 71, 72, 73, or cover sections 61, 62 described above, and the ribs may also help form the internal grips of all such structures. Persons of skill in the art will also recognize that there are numerous shapes that the internal grips can take, as described above, or as otherwise known in the art, including “L” shaped grips, “C” shaped grips, etc.


The tertiary cover segment 73 may optionally connect to additional cover segments (not shown), or may have on their outer end an end section 75. The end section 75 of the cover 70 may optionally have a securing structure, connecting the end section to the frame of the wiper blade. One such structure is depicted in FIG. 51, shows a recess 751 and a detent 752 that are shaped to engage the “T” shaped ends of the outer tertiary frames 41 of the wiper blades. As described above in connection with the “soft” cover, numerous structures are known in the art for forming that sort of connection, including without limitation the structures described in the patents and patent applications incorporated therein by reference, and all such structures and other structures known in the art may be used, and are contemplated as within the scope of the disclosed concepts.


A novel hybrid wiper blade is presented in FIG. 54. A specific embodiment of this hybrid wiper blade is set forth in concurrently filed provisional patent application entitled Hinged Wiper Blade filed concurrently herewith. The novel hybrid wiper blade generally has a primary frame, which may be as described above, and can be generally flat, curved, triangular, or have any other suitable desired shape. The primary frame 120 preferably has a connection device 110 attached to its top surface or formed integrally therewith, in any of the methods known in the art or depicted above. At either end the primary frame connects to a pair of beams 130, preferably made from spring-elastic steel, although other suitable materials may be used. As described above with respect to the connection device 1 in FIG. 1, any manner of connector, adaptor or specialized design for a particular wiper arm known in the art can be used with the connection device 110.


The connection between the beams 130 and the primary frame 120 is preferably formed by a pivot joint of some sort. This may be accomplished in any method currently known in the art. For example the beams 130 may be provided with structures (similar to a connection device 10, 110) having a two pairs of claws which are crimped, welded or form-fitted onto the beams 130, and having two parallel side walls having which may have projection, recesses or holes, rivets or other structures which can attach to recesses or holes, projections, clips and/or holes, and other complementary structures on the ends of the primary frame 120 in order to form a pivoting connection. The beams 130 may be symmetric across the pivot joint in length and/or curvature, or asymmetric (as shown in FIG. 54).


Tertiary frames 140 are secured to the beams 130, and in turn secure the wiper strip (and any vertebrae, and/or wiper strip carrier as described above. The connection between the beams 130 and the tertiary frames 140 may be made in any manner known in the art, including the use of pivoting studs 44 and other pivot joints known in the art as described above. Like the inner and outer tertiary frames 40,41 described above, the hybrid blade depicted in FIG. 54 may have symmetric or asymmetric tertiary frames 140. Additionally, any one or more of the connection device 110, primary frame 120, beams 130, and tertiary frames 140 may be provided with structure to help it connect to a cover 60, 70 described above, or any other type of cover or spoiler known in the art.


The descriptions set forth above are meant to be illustrative and not limiting, and persons of skill in the art will recognize that various common and known deviations from the above described structures are considered to be within the scope of the disclosed concepts described herein.

Claims
  • 1. A wiper blade comprising: a wiper strip;a force distribution structure separate from the wiper strip, having opposing ends, and comprising one or more beams and/or brackets, the force distribution structure securing the wiper strip;a connection device capable of connecting to a wiper arm of a vehicle as the connection device disposed on the force distribution structure anda cover separate from the wiper strip and force distribution structure, the cover secured to and covering the force distribution structure, comprising a cover center section having two end portions and two cover side sections, wherein the cover side sections have side walls and a bottom surface that define a U-shape and each of the cover side sections cover one of the end portions of the cover center section and extend to and cover one of the opposing ends of the force distribution structure;wherein the cover center section comprises one or more internal grips provided on an inner surface of the cover that grip the force distribution structure; andwherein each cover side section further comprises one or more internal grips provided on an internal surface of each of the side sections that grip the force distribution structure; and wherein each cover side section includes a protrusion inserting into a hole of a tab of the cover center section, and each tab extends from a terminal end surface of the cover center section.
  • 2. The wiper blade of claim 1, wherein the side sections have a Shore hardness value at or between 60 and 90, and the center section has a Shore hardness value at or above 90.
  • 3. The wiper blade of claim 1, wherein the one or more internal grips on the inner surface of the cover side sections include a claw.
  • 4. The wiper blade of claim 1 further comprising the one or more internal grips provided on an inner surface of the center section of the cover, wherein the one or more internal grips grip the force distribution structure.
  • 5. The wiper blade of claim 1, wherein each end of the force distribution structure is a chamfered “T” structure, and the one or more internal grips of the cover side sections include an end grip with a slotted pocket; wherein the chamfered “T” structures of the ends of the force distribution structure are disposed within the slotted pockets of the cover side sections.
  • 6. The wiper blade of claim 1 wherein the side connecting structures on the end portions of the cover center section comprise bottom projections which grip a corresponding recess or hole in the side receiving structures in the cover side sections.
  • 7. The wiper blade of claim 1 wherein the cover side sections further comprise a spoiler.
  • 8. The wiper blade of claim 1 wherein the cover side sections further comprise a spoiler.
  • 9. A wiper blade comprising: a wiper strip;a force distribution structure separate from the wiper strip, having opposite ends, and comprising one or more beams, and/or brackets, the force distribution structure securing the wiper strip;a connection device capable of connecting to a wiper arm of a vehicle as the connection device is disposed on the force distribution structure; anda cover separate from the wiper strip and force distribution structure, the cover secured to and covering the force distribution structure, comprising a cover center section having two end portions and two cover side sections, wherein the cover side sections have side walls and a bottom surface that define a U-shape and each of the cover side sections cover one of the end portions of the cover center section and extend to and cover one of the opposing ends of the wiper blade,wherein each cover side section further comprises one or more internal grips provided on an inner surface of each of the side sections that grip the force distribution structure; and wherein each cover side section includes a protrusion inserting into a hole of a tab of the cover center section, and each tab extends from a terminal end surface of the cover center section.
  • 10. The wiper blade of claim 9, wherein each end of the force distribution structure is a chamfered “T” structure, and the one or more internal grips include an end grip with a slotted pocket for receiving one of the ends of the force distribution structure.
  • 11. The wiper blade of claim 9 wherein the one or more internal grips on the inner surface of the cover side sections include a claw.
  • 12. The wiper blade of claim 9 wherein side connecting structures on the end portions of the cover center section comprise bottom projections which grip a corresponding recess or hole in side receiving structures in the cover side sections.
CROSS REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. application Ser. No. 14/715,144, filed May 18, 2015, which is a continuation of U.S. application Ser. No. 13/776,376 filed on Feb. 25, 2013, which claims the benefit of U.S. Provisional Application No. 61/603,222 filed Feb. 24, 2012, the disclosures of which are hereby incorporated herein by reference in their entirety.

US Referenced Citations (962)
Number Name Date Kind
D56762 Minier Dec 1920 S
2310751 Scinta Feb 1943 A
2550094 Smulski Apr 1951 A
2589339 Carson Mar 1952 A
2616112 Smulski Nov 1952 A
2643411 Nesson Jun 1953 A
2658223 Enochian Nov 1953 A
2799887 Nemic Jul 1957 A
2801436 Scinta Aug 1957 A
2814820 Elliot et al. Dec 1957 A
2890472 Olson Jun 1959 A
2932843 Zaiger et al. Apr 1960 A
2937393 Brueder May 1960 A
2946078 Deibel et al. Jul 1960 A
3029460 Hoyler Apr 1962 A
3037233 Peras et al. Jun 1962 A
3056991 Smithers Oct 1962 A
3082464 Smithers Mar 1963 A
3088155 Smithers May 1963 A
3089174 Bignon May 1963 A
3104412 Hinder Sep 1963 A
3116510 Oishei et al. Jan 1964 A
3132367 Wise May 1964 A
3139644 Smith Jul 1964 A
3147506 Williams Sep 1964 A
3147507 Glynm Sep 1964 A
3192551 Appel Jul 1965 A
3234578 Golub et al. Feb 1966 A
3296647 Gumbleton Jan 1967 A
3317945 Ludwig May 1967 A
3317946 Anderson May 1967 A
3350738 Anderson Nov 1967 A
D211570 Tomlin Jul 1968 S
3405421 Tomlin Oct 1968 A
3418679 Barth et al. Dec 1968 A
3480986 Forster Dec 1969 A
3588941 Schlesinger Jun 1971 A
3588942 Schlesinger Jun 1971 A
3618155 Mower Nov 1971 A
3665544 Sakamoto May 1972 A
3673631 Yamadai et al. Jul 1972 A
3685086 Frohlich Aug 1972 A
3751754 Quinlan et al. Aug 1973 A
3757377 Hayhurst Sep 1973 A
3780395 Quinlan et al. Dec 1973 A
3857741 Hultgren et al. Dec 1974 A
3862465 Ito Jan 1975 A
3872535 Arman Mar 1975 A
3872537 Bianchi Mar 1975 A
3879793 Schlegel Apr 1975 A
3879794 Roberts, Jr. Apr 1975 A
3881213 Tilli May 1975 A
3881214 Palu May 1975 A
D236337 Deibel Aug 1975 S
3929222 Smith et al. Dec 1975 A
3942212 Steger et al. Mar 1976 A
3969784 Journee Jul 1976 A
D240809 Deibel Aug 1976 S
3995347 Kohler Dec 1976 A
4007511 Deibel Feb 1977 A
4009504 Arman Mar 1977 A
4028770 Appel Jun 1977 A
4047480 Vassiliou Sep 1977 A
4063328 Arman Dec 1977 A
D248375 Bergstein Jul 1978 S
D248388 Hughes Jul 1978 S
4102003 Hancu Jul 1978 A
4127912 Deibel et al. Dec 1978 A
4127916 Berg et al. Dec 1978 A
D253040 Fournier et al. Oct 1979 S
D253167 Fournier et al. Oct 1979 S
D257339 Ellinwood Oct 1980 S
4239104 Roccaforte et al. Dec 1980 A
4308635 Maiocco Jan 1982 A
4309790 Bauer et al. Jan 1982 A
4324019 Mohnach et al. Apr 1982 A
4327458 Maiocco May 1982 A
4334001 Horie et al. Jun 1982 A
4339839 Knights Jul 1982 A
4342126 Neefeldt Aug 1982 A
4343063 Batt Aug 1982 A
4343064 van den Berg et al. Aug 1982 A
4354293 Le Sausse et al. Oct 1982 A
D267939 Duvoux Feb 1983 S
D267940 Duvoux Feb 1983 S
D268020 Duvoux Feb 1983 S
4400845 Noguchi et al. Aug 1983 A
4416032 Mohnach et al. Nov 1983 A
4422207 Maiocco et al. Dec 1983 A
4438543 Noguchi et al. Mar 1984 A
4464808 Berry Aug 1984 A
4547925 Blackborow et al. Oct 1985 A
4561143 Beneteau Dec 1985 A
D282243 Mason Jan 1986 S
D282718 Fireman Feb 1986 S
4570284 Verton Feb 1986 A
4587686 Thompson May 1986 A
4590638 Beneteau May 1986 A
D286499 Moreno Nov 1986 S
D287709 Mower et al. Jan 1987 S
4649591 Guerard Mar 1987 A
4670284 Berkoff Jun 1987 A
4670934 Epple et al. Jun 1987 A
D295020 Franchi Apr 1988 S
4741071 Bauer et al. May 1988 A
D296317 Mower et al. Jun 1988 S
4760934 Netsch Aug 1988 A
4766636 Shinpo Aug 1988 A
D298116 Sussich Oct 1988 S
4782547 Mohnach Nov 1988 A
D298926 Rusnak Dec 1988 S
4795288 Sakai Jan 1989 A
4807326 Arai et al. Feb 1989 A
D301329 Cavicchioli May 1989 S
4852206 Fisher Aug 1989 A
D304709 Sussich Nov 1989 S
D307408 Mower et al. Apr 1990 S
D308352 Bradley Jun 1990 S
D308660 Fisher Jun 1990 S
D308845 Charet et al. Jun 1990 S
4930180 Longman Jun 1990 A
D310193 Charet Aug 1990 S
4971472 Pethers Nov 1990 A
4976001 Wright Dec 1990 A
4984325 Arai et al. Jan 1991 A
4989290 Hoshino Feb 1991 A
5027947 Reighart Jul 1991 A
5042106 Maubray Aug 1991 A
5056183 Haney, III Oct 1991 A
5062176 Unterborn et al. Nov 1991 A
D322053 Bradley Dec 1991 S
D322772 Leu et al. Dec 1991 S
D322952 Wu Jan 1992 S
5082078 Umeda et al. Jan 1992 A
D323637 Dippie Feb 1992 S
D324014 Ruminer Feb 1992 S
5084933 Buechele Feb 1992 A
5086534 Journee Feb 1992 A
D324359 Chen Mar 1992 S
D324667 Williams Mar 1992 S
5093954 Kuzuno Mar 1992 A
D327013 Reighart Jun 1992 S
D327461 Nelson Jun 1992 S
5123140 Raymond Jun 1992 A
D327667 Mar Jul 1992 S
D328061 Su Jul 1992 S
5138739 Maubray Aug 1992 A
D329034 Charet et al. Sep 1992 S
D329997 Leu Oct 1992 S
D330181 Charet et al. Oct 1992 S
D330691 Leu Nov 1992 S
D330696 Alain Nov 1992 S
D331036 Isley Nov 1992 S
D331037 Hsi Nov 1992 S
D331212 Poteet Nov 1992 S
D331556 Ismert Dec 1992 S
5168596 Maubray Dec 1992 A
5170527 Lyon, II Dec 1992 A
D332593 Gerardiello et al. Jan 1993 S
5179761 Buechele et al. Jan 1993 A
5182831 Knight Feb 1993 A
D334161 Wu et al. Mar 1993 S
D334549 Esquibel Apr 1993 S
5206969 Patterson et al. May 1993 A
D336739 Wu et al. Jun 1993 S
5218735 Maubray Jun 1993 A
5228167 Yang Jul 1993 A
5233721 Yang Aug 1993 A
D341561 Heckman et al. Nov 1993 S
5257436 Yang Nov 1993 A
D342225 Heckman et al. Dec 1993 S
5276937 Lan Jan 1994 A
5283925 Maubray Feb 1994 A
D345329 Kanellis et al. Mar 1994 S
D345330 Yang Mar 1994 S
D345537 Bianco et al. Mar 1994 S
D345538 Bianco et al. Mar 1994 S
5289608 Kim Mar 1994 A
5307536 Lescher May 1994 A
5311636 Lee May 1994 A
5312177 Coulter May 1994 A
D347610 Charet et al. Jun 1994 S
5319826 Mower Jun 1994 A
5325564 Swanepoel Jul 1994 A
D349877 Oyama Aug 1994 S
5333351 Sato Aug 1994 A
D350723 Longazel Sep 1994 S
5349716 Millar Sep 1994 A
5361896 Yang Nov 1994 A
D353354 Oyama Dec 1994 S
5372449 Bauer et al. Dec 1994 A
5383248 Ho Jan 1995 A
5383249 Yang Jan 1995 A
5392489 Mohnach Feb 1995 A
D357626 Snow et al. Apr 1995 S
5408719 DeRees et al. Apr 1995 A
5412177 Clark May 1995 A
5435041 Ho Jul 1995 A
5454135 Okuya et al. Oct 1995 A
5459900 Mege et al. Oct 1995 A
5463790 Chiou et al. Nov 1995 A
D365079 Abbott et al. Dec 1995 S
5485650 Swanepoel Jan 1996 A
5487205 Scherch et al. Jan 1996 A
5497528 Wu Mar 1996 A
5509166 Wagner et al. Apr 1996 A
D370199 Kim May 1996 S
5519913 Schedule May 1996 A
D370653 Kim Jun 1996 S
D370654 Kim Jun 1996 S
D372217 Abbott et al. Jul 1996 S
5564157 Kushida et al. Oct 1996 A
5566419 Zhou Oct 1996 A
5568670 Samples et al. Oct 1996 A
D375289 Waselewski et al. Nov 1996 S
5577292 Blachetta et al. Nov 1996 A
D376792 Chodkiewicz Dec 1996 S
5593125 Storz et al. Jan 1997 A
D377754 Abbott et al. Feb 1997 S
5606766 Lee Mar 1997 A
5628085 Edele et al. May 1997 A
D379613 Chen Jun 1997 S
5647088 Bommer et al. Jul 1997 A
D382848 Chen Aug 1997 S
5661870 Eustache et al. Sep 1997 A
5661871 Scorsiroli Sep 1997 A
D389449 Hussaini Jan 1998 S
D390823 Baranowski et al. Feb 1998 S
D392612 Jonasson et al. Mar 1998 S
5732437 Jonasson et al. Mar 1998 A
D393619 Jeffer et al. Apr 1998 S
5742973 Kessler Apr 1998 A
D395271 Kim Jun 1998 S
D395864 Stahlhut et al. Jul 1998 S
D395865 Powell et al. Jul 1998 S
D396840 Vita Aug 1998 S
5791010 Brady et al. Aug 1998 A
5819361 Merkel et al. Oct 1998 A
5836110 Buening Nov 1998 A
D402953 Kim Dec 1998 S
D404354 Witek et al. Jan 1999 S
D406094 Lai Feb 1999 S
D406257 Lee Mar 1999 S
D406755 Garganese Mar 1999 S
D406756 Garganese Mar 1999 S
5875672 Fourie et al. Mar 1999 A
5885023 Witek et al. Mar 1999 A
5889334 Hongo Mar 1999 A
5899334 Domerchie et al. May 1999 A
D411161 Wooten Jun 1999 S
D411504 Hsu Jun 1999 S
5907885 Tilli et al. Jun 1999 A
5911358 Kenner et al. Jun 1999 A
5920947 Varner Jul 1999 A
D413261 Yerich Aug 1999 S
D414456 Hussaini et al. Sep 1999 S
5970569 Merkel et al. Oct 1999 A
5970570 Groninger Oct 1999 A
D417180 Shih Nov 1999 S
D418103 Don Dec 1999 S
D418474 Witek et al. Jan 2000 S
D419950 Spector Feb 2000 S
6026537 Hojnacki Feb 2000 A
6055697 Wollenschlaeger May 2000 A
6063216 Damm et al. May 2000 A
D427134 Lee Jun 2000 S
6070723 Lewis Jun 2000 A
6088872 Schmid et al. Jul 2000 A
D430097 Breesch et al. Aug 2000 S
6101665 Sahara et al. Aug 2000 A
D431223 Breesch et al. Sep 2000 S
6119301 Nakatsukasa et al. Sep 2000 A
D431520 Breesch et al. Oct 2000 S
D432072 Breesch et al. Oct 2000 S
D434715 Wang Dec 2000 S
6158078 Kotlarski Dec 2000 A
6161248 Merkel et al. Dec 2000 A
6192546 Kotlarski Feb 2001 B1
6202251 Kotlarski Mar 2001 B1
6216311 Van Damme et al. Apr 2001 B1
D442537 Kim May 2001 S
6226829 Kotlarski May 2001 B1
D443245 Kim Jun 2001 S
D443582 De Block Jun 2001 S
D443854 De Block Jun 2001 S
6247590 Baker Jun 2001 B1
D444760 Houssat et al. Jul 2001 S
D445754 Benoit Jul 2001 S
6266843 Doman et al. Jul 2001 B1
6279191 Kotlarski et al. Aug 2001 B1
6279746 Hussaini et al. Aug 2001 B1
D448295 Mozes Sep 2001 S
6286176 Westermann et al. Sep 2001 B1
6292974 Merket et al. Sep 2001 B1
6295690 Merkel et al. Oct 2001 B1
6301742 Kota Oct 2001 B1
6305066 De Paolo et al. Oct 2001 B1
6308373 Merkel et al. Oct 2001 B1
6327738 Lewis Dec 2001 B1
6332236 Ku Dec 2001 B1
6336243 Charng Jan 2002 B1
D453316 Watanabe Feb 2002 S
6363569 Kotlarski Apr 2002 B1
6367117 Sahara et al. Apr 2002 B1
D457479 De Block et al. May 2002 S
6393654 Nacamuli May 2002 B2
6397428 Kotlarski Jun 2002 B2
6415473 Rapp Jul 2002 B1
D462044 Gfatter et al. Aug 2002 S
6427282 Kotlarski Aug 2002 B1
6434780 Kotlarski Aug 2002 B1
D462262 Leja Sep 2002 S
6449797 De Block Sep 2002 B1
6453505 Terai Sep 2002 B1
D464012 Hussaini et al. Oct 2002 S
D464600 Chen Oct 2002 S
6499181 Kotlarski Dec 2002 B1
D469731 Geer Feb 2003 S
6513186 Zimmer Feb 2003 B1
6516491 Merkel et al. Feb 2003 B2
6523218 Kotlarski Feb 2003 B1
D471505 Wang Mar 2003 S
6530111 Kotlarski Mar 2003 B1
D472510 Lin Apr 2003 S
D473180 Sun Apr 2003 S
D473507 Huang Apr 2003 S
6550096 Stewart et al. Apr 2003 B1
6553607 De Block Apr 2003 B1
D474143 Ho May 2003 S
6564441 Ibe et al. May 2003 B2
6581237 Kotlarski Jun 2003 B1
6606759 Hoshino Aug 2003 B1
6609267 Journee et al. Aug 2003 B1
6611988 De Block Sep 2003 B1
6619094 Juhl Sep 2003 B2
6622540 Jones et al. Sep 2003 B2
6625842 De Block Sep 2003 B1
6632738 Sone Oct 2003 B2
6634056 De Block Oct 2003 B1
6640380 Rosenstein et al. Nov 2003 B2
6643889 Kotlarski Nov 2003 B1
6651292 Komerska Nov 2003 B2
6665904 Kerchaert Dec 2003 B1
6668419 Kotlarski Dec 2003 B1
6675433 Stewart et al. Jan 2004 B1
6675434 Wilhelm et al. Jan 2004 B1
6681440 Zimmer et al. Jan 2004 B2
D487047 Kim Feb 2004 S
6687948 Kotlarski Feb 2004 B2
6718594 Kotlarski Apr 2004 B1
D490763 Kim Jun 2004 S
6766906 Charng Jun 2004 B2
D494125 Leu Aug 2004 S
D494527 Hsu Aug 2004 S
D494528 Chiang Aug 2004 S
6785931 Lee et al. Sep 2004 B2
6789289 Roodt Sep 2004 B2
6792644 Roodt Sep 2004 B2
6796000 Varner Sep 2004 B2
6806452 Bos et al. Oct 2004 B2
6810555 Ritt Nov 2004 B2
6810556 Kotlarski Nov 2004 B1
6813803 Leutsch Nov 2004 B2
6813923 Jones et al. Nov 2004 B2
6820302 Zimmer Nov 2004 B2
6820303 Zimmer et al. Nov 2004 B2
6820304 Gossez et al. Nov 2004 B1
D499962 Lee et al. Dec 2004 S
D500728 Leu Jan 2005 S
6836924 Egan-Walter Jan 2005 B2
6836925 Swanepoel Jan 2005 B1
6836926 De Block Jan 2005 B1
6836927 De Block et al. Jan 2005 B2
D501819 Hsu Feb 2005 S
6857160 Weiler et al. Feb 2005 B2
6859971 Siklosi Mar 2005 B2
6874195 Kotlarski Apr 2005 B2
6883966 Zimmer Apr 2005 B2
6886213 Merkel et al. May 2005 B2
6904639 Dietrich et al. Jun 2005 B2
6910243 Zimmer Jun 2005 B1
6910244 De Block et al. Jun 2005 B2
D508226 Lin Aug 2005 S
D508888 Carroll Aug 2005 S
6944905 De Block et al. Sep 2005 B2
6946810 Kohlrausch Sep 2005 B2
6951043 Fehrsen Oct 2005 B1
D511735 Aoyama et al. Nov 2005 S
6964079 Zimmer Nov 2005 B2
6964080 Knauf Nov 2005 B2
6966096 Baseotto et al. Nov 2005 B2
D512362 Breesch et al. Dec 2005 S
6973698 Kotlarski Dec 2005 B1
6978511 Poton Dec 2005 B2
6978512 Dietrich et al. Dec 2005 B2
7007339 Weilet et al. Mar 2006 B2
7024722 Neubauer et al. Apr 2006 B2
7036181 Zimmer May 2006 B2
D522380 Dibnah et al. Jun 2006 S
7055207 Coughlin Jun 2006 B2
7055208 Merkel et al. Jun 2006 B2
7076829 Ritt Jul 2006 B2
D527336 Van Baelen Aug 2006 S
7093317 Zimmer Aug 2006 B1
7134163 Varner Nov 2006 B2
7137167 Torii et al. Nov 2006 B2
7143463 Baseotto et al. Dec 2006 B2
7150065 Zimmer Dec 2006 B2
7150066 Huang Dec 2006 B1
7150795 Javaruski et al. Dec 2006 B2
7166979 Zimmer Jan 2007 B2
7171718 Moein et al. Feb 2007 B2
D538218 Elwell et al. Mar 2007 S
7196440 Lamprecht Mar 2007 B2
7207082 Lee Apr 2007 B2
7228588 Kraemer et al. Jun 2007 B2
D546669 Sheppard et al. Jul 2007 S
D547713 Goeller Jul 2007 S
D549151 Janssis et al. Aug 2007 S
D549152 Goeller Aug 2007 S
7256565 Merkel et al. Aug 2007 B2
7257856 Zimmer Aug 2007 B2
7258233 Lee Aug 2007 B2
7272890 Zimmer et al. Sep 2007 B2
D552486 Herring et al. Oct 2007 S
7281294 Wilms et al. Oct 2007 B2
D556118 Claes Nov 2007 S
7293321 Breesch Nov 2007 B2
7299520 Huang Nov 2007 B2
7316047 Thienard Jan 2008 B2
7316048 Yamane et al. Jan 2008 B2
7316087 Smith Jan 2008 B1
D564434 Claes Mar 2008 S
D564955 Claes Mar 2008 S
7337900 Reiber et al. Mar 2008 B2
7341396 Huang Mar 2008 B2
7353562 Huang Apr 2008 B2
D569327 Lin May 2008 S
D569328 Lin May 2008 S
7370385 Chiang May 2008 B2
D573457 Park Jul 2008 S
7398577 Genet Jul 2008 B2
D575146 Lee Aug 2008 S
D577324 McCray Sep 2008 S
7434291 Chiang Oct 2008 B2
D579849 Garrastacho et al. Nov 2008 S
7451520 Weiler et al. Nov 2008 B2
D582765 Gustafson et al. Dec 2008 S
7461429 Huang Dec 2008 B2
7464433 Thomar et al. Dec 2008 B2
D584160 Zimmermann Jan 2009 S
7472451 Hara et al. Jan 2009 B2
D586663 Tidqvist Feb 2009 S
D586716 Radfar Feb 2009 S
D586717 Depondt Feb 2009 S
D587186 Herinckx et al. Feb 2009 S
7484264 Kraemer et al. Feb 2009 B2
7493672 Op't Roodt Feb 2009 B2
D588933 Bonzagni et al. Mar 2009 S
7503095 Lin et al. Mar 2009 B2
7506401 Park Mar 2009 B2
7509704 Bauer et al. Mar 2009 B2
7523519 Egner-Walter et al. Apr 2009 B2
7523520 Breesch Apr 2009 B2
7523522 Herring et al. Apr 2009 B2
D592121 Bratec et al. May 2009 S
7526832 Matsumoto et al. May 2009 B2
7527151 Park May 2009 B2
D593480 Kim Jun 2009 S
D593923 Bratec et al. Jun 2009 S
7543353 Ko Jun 2009 B2
7552502 Kagawa et al. Jun 2009 B2
D596102 Kim Jul 2009 S
7559110 Kotlarski et al. Jul 2009 B1
D601077 Kim Sep 2009 S
7581280 Op't Roodt et al. Sep 2009 B2
7581887 Zimmer Sep 2009 B2
7584520 Hussaini et al. Sep 2009 B2
7596479 Weiler et al. Sep 2009 B2
7603741 Verelst et al. Oct 2009 B2
7603742 Nakano et al. Oct 2009 B2
7607194 Weber et al. Oct 2009 B2
7614499 Mueller Nov 2009 B2
7621016 Verelst et al. Nov 2009 B2
7628560 Westermann et al. Dec 2009 B2
7634833 Boland et al. Dec 2009 B2
7636980 Nakano Dec 2009 B2
D608717 Aglassinger Jan 2010 S
D610518 Aglassinger Feb 2010 S
D610519 Aglassinger Feb 2010 S
D610520 Aglassinger Feb 2010 S
D611809 Borgerson et al. Mar 2010 S
7669276 Verelst et al. Mar 2010 B2
7687565 Geilenkirchen Mar 2010 B2
7690073 Marmoy et al. Apr 2010 B2
7690509 Herring et al. Apr 2010 B2
7699169 Lewis Apr 2010 B2
D615918 Kim May 2010 S
7707680 Hawighorst et al. May 2010 B2
7716780 Scholl et al. May 2010 B2
7718509 Endo et al. May 2010 B2
7743457 Metz Jun 2010 B2
7748076 Weiler et al. Jul 2010 B2
D621322 Lee et al. Aug 2010 S
7780214 Kraus et al. Aug 2010 B2
7788761 Weiler et al. Sep 2010 B2
7793382 Van De Rovaart Sep 2010 B2
7797787 Wilms et al. Sep 2010 B2
7805800 Wilms et al. Oct 2010 B2
7810206 Weiler et al. Oct 2010 B2
7814611 Heinrich et al. Oct 2010 B2
D627288 Lee Nov 2010 S
7823953 Haas Nov 2010 B2
7832045 Weiler et al. Nov 2010 B2
7832047 Herinckx et al. Nov 2010 B2
7836542 Dietrich et al. Nov 2010 B2
7849553 Weiler et al. Dec 2010 B2
D632557 Clamagirand et al. Feb 2011 S
7886401 Weber et al. Feb 2011 B2
7891043 Kraus et al. Feb 2011 B2
7891044 Fink et al. Feb 2011 B2
7895702 Tisch et al. Mar 2011 B2
7895703 Ina et al. Mar 2011 B2
7898141 Hurst et al. Mar 2011 B2
7899596 Zimmer Mar 2011 B2
7908703 Van Bealen Mar 2011 B2
7908704 Kraemer Mar 2011 B2
7921503 Chiang Apr 2011 B1
7921504 Chiang Apr 2011 B1
7921506 Baek et al. Apr 2011 B2
7926659 Kim Apr 2011 B2
7930796 Weiler et al. Apr 2011 B2
D637132 Kim May 2011 S
7937798 Fink et al. May 2011 B2
7941891 Breesch May 2011 B2
7941892 Kraus et al. May 2011 B2
7945985 Stubner May 2011 B2
7945987 Verelst et al. May 2011 B2
7950717 Metz May 2011 B2
7962787 Camilleri et al. Jun 2011 B2
7966689 Rovaart et al. Jun 2011 B2
7971312 Crabee et al. Jul 2011 B2
7975849 Kim Jul 2011 B2
7979950 Boland Jul 2011 B2
7989955 Yagi Aug 2011 B2
7989995 Reith et al. Aug 2011 B2
7992248 Koppen et al. Aug 2011 B2
7996953 Braun et al. Aug 2011 B2
D644925 Jaworski Sep 2011 S
8020246 Bauer et al. Sep 2011 B2
8020248 Hasegawa Sep 2011 B2
8020249 Masuda et al. Sep 2011 B2
8024836 Moll et al. Sep 2011 B2
8026645 Stubner et al. Sep 2011 B2
D647451 Lin Oct 2011 S
8042690 Lewis Oct 2011 B2
D647795 Eaton et al. Nov 2011 S
8051526 Summerville et al. Nov 2011 B2
8060976 Mayer et al. Nov 2011 B2
8069528 Verelst et al. Dec 2011 B2
8076807 Bohn et al. Dec 2011 B2
D651509 Methe et al. Jan 2012 S
8096013 Eschenbrenner et al. Jan 2012 B2
8099823 Kraemer et al. Jan 2012 B2
8104134 Ritt Jan 2012 B2
8104136 Carangelo Jan 2012 B2
8117710 Kraus et al. Feb 2012 B2
8125111 Bohn et al. Feb 2012 B2
8141198 Wilms et al. Mar 2012 B2
8148467 Pieters et al. Apr 2012 B2
8151656 Nicgorski, II Apr 2012 B2
8156604 Kraus et al. Apr 2012 B2
8156605 Dietrich et al. Apr 2012 B2
8165796 Hoetzer Apr 2012 B2
D658494 Raimer et al. May 2012 S
8166605 Lee May 2012 B2
8169791 Wolf et al. May 2012 B2
8180518 Petricoin, Jr. May 2012 B2
8181305 Boos May 2012 B2
8181306 Merkel May 2012 B2
8181307 Wilms et al. May 2012 B2
8181308 Kwon et al. May 2012 B2
8186002 Kinnaert et al. May 2012 B2
8191200 Kim Jun 2012 B2
8191201 De Block et al. Jun 2012 B2
8196253 Barias Jun 2012 B2
8196254 Mahfoudh et al. Jun 2012 B2
8196255 De Block et al. Jun 2012 B2
8205290 Weiler et al. Jun 2012 B2
8205291 Eschenbrenner et al. Jun 2012 B2
8214965 Volz et al. Jul 2012 B2
8230547 Wilms et al. Jul 2012 B2
8234746 Lutterodt et al. Aug 2012 B2
8245350 Van De Rostyne et al. Aug 2012 B2
8256851 Pelosse Sep 2012 B2
8261403 Ehde Sep 2012 B2
8261405 Kim et al. Sep 2012 B2
8261628 Moecklin et al. Sep 2012 B2
8266759 Braun et al. Sep 2012 B2
8272096 Wilms et al. Sep 2012 B2
8272360 Hartmann et al. Sep 2012 B2
8286533 Hurst et al. Oct 2012 B2
8294327 Chaumet et al. Oct 2012 B2
D671827 Raimer et al. Dec 2012 S
8322456 Pozgay et al. Dec 2012 B2
8327500 De Block et al. Dec 2012 B2
8328011 Skurdalsvold et al. Dec 2012 B2
8333093 Kleckner et al. Dec 2012 B2
D674733 Lee Jan 2013 S
8341799 Koppen et al. Jan 2013 B2
8347449 Genet et al. Jan 2013 B2
8356520 Hurst et al. Jan 2013 B2
8359701 De Block et al. Jan 2013 B2
8361595 Van De Rostyne et al. Jan 2013 B2
8370986 Wilms et al. Feb 2013 B2
8370987 Ritt Feb 2013 B2
8370988 Kraus et al. Feb 2013 B2
8373322 Wegner et al. Feb 2013 B2
8375503 Aznag Feb 2013 B2
8381348 Egner-Walter et al. Feb 2013 B2
8381349 Ku Feb 2013 B2
8381350 Op't Roodt et al. Feb 2013 B2
8397340 Weiler et al. Mar 2013 B2
8397341 Ehde Mar 2013 B2
D679234 Depondt Apr 2013 S
D679235 Depondt Apr 2013 S
D680051 Tolentino et al. Apr 2013 S
8410651 Lauk Apr 2013 B2
8413291 Wu Apr 2013 B2
8413292 Yang et al. Apr 2013 B2
8418644 Fiedor et al. Apr 2013 B2
8424149 Coemans et al. Apr 2013 B2
8429786 Van Baelen et al. Apr 2013 B2
8434621 Hun et al. May 2013 B2
8448289 Reith et al. May 2013 B2
8448290 Op't Roodt et al. May 2013 B2
D684862 DiFranza Jun 2013 S
8453292 Jeon Jun 2013 B2
D685260 Thielemier Jul 2013 S
D686912 Ehde et al. Jul 2013 S
8474088 Wu Jul 2013 B2
8484794 Westermann et al. Jul 2013 B2
8490239 Ehde Jul 2013 B2
8495787 Garrastacho et al. Jul 2013 B2
8499408 Boland Aug 2013 B2
8505151 Depondt et al. Aug 2013 B2
8505152 Boland Aug 2013 B2
8505724 Bult et al. Aug 2013 B2
8510895 Beelen et al. Aug 2013 B2
8510897 Ku Aug 2013 B2
8510898 Ku Aug 2013 B2
8522393 Boland Sep 2013 B2
8539634 Wilms et al. Sep 2013 B2
8544136 Kraemer et al. Oct 2013 B2
8544137 Thienard Oct 2013 B2
8549695 Reith et al. Oct 2013 B2
8552113 Pieters et al. Oct 2013 B2
8555455 Boland Oct 2013 B2
8555456 Ehde Oct 2013 B2
8561717 Pozgay et al. Oct 2013 B2
D692750 Ehde et al. Nov 2013 S
D692818 Tolentino et al. Nov 2013 S
D692819 Tolentino et al. Nov 2013 S
D693213 Lee et al. Nov 2013 S
8574791 Maus et al. Nov 2013 B2
8575078 Duval et al. Nov 2013 B2
8581530 Tisch Nov 2013 B2
8582809 Halimeh et al. Nov 2013 B2
8584303 Wolfgarten et al. Nov 2013 B2
8590097 Bohn et al. Nov 2013 B2
D695632 Akana et al. Dec 2013 S
8595888 Op't Roodt et al. Dec 2013 B2
8595889 Op't Roodt et al. Dec 2013 B2
8613357 Putnam Dec 2013 B2
D697790 Iwegbu Jan 2014 S
8646181 Baumann et al. Feb 2014 B2
D700524 Ferriter Mar 2014 S
8661602 Op't Roodt et al. Mar 2014 B2
D702619 Kim Apr 2014 S
8686612 Roos et al. Apr 2014 B2
8707506 Wu Apr 2014 B1
D704127 Depondt May 2014 S
D704128 Depondt May 2014 S
D704129 Depondt May 2014 S
D704619 Kim May 2014 S
D704620 Kim May 2014 S
8717011 Henning May 2014 B2
8719994 Thienard et al. May 2014 B2
8720033 Koppen et al. May 2014 B2
8728367 Lay et al. May 2014 B2
D706200 Tolentino et al. Jun 2014 S
D706201 Depondt Jun 2014 S
D706202 Depondt Jun 2014 S
8745812 Kruse et al. Jun 2014 B2
8745813 Ishida et al. Jun 2014 B2
8749186 Stubner et al. Jun 2014 B2
8759449 Pieters et al. Jun 2014 B2
D708890 Kim et al. Jul 2014 S
D709362 Kim Jul 2014 S
8769762 Op't Roodt et al. Jul 2014 B2
8770063 Bhatti Jul 2014 B2
8782847 Depondt Jul 2014 B2
D711217 Jacobs et al. Aug 2014 S
8800097 Wegner et al. Aug 2014 B2
8800099 Boland Aug 2014 B2
8806700 Tolentino et al. Aug 2014 B2
8813608 Hurst et al. Aug 2014 B2
8823228 Mill et al. Sep 2014 B2
8839483 Roodt et al. Sep 2014 B2
D714635 Demar et al. Oct 2014 S
D715142 Allen et al. Oct 2014 S
8850653 Depondt Oct 2014 B2
8854455 Haug Oct 2014 B2
8857595 Mili et al. Oct 2014 B2
8863370 Weiler et al. Oct 2014 B2
8871994 Wei et al. Oct 2014 B2
D717225 Kuo Nov 2014 S
8881338 Thielen et al. Nov 2014 B2
8893348 Vankerkhove et al. Nov 2014 B2
8909421 Zimmer Dec 2014 B2
8913132 Seger et al. Dec 2014 B2
8913133 Huelsen et al. Dec 2014 B2
8917323 Seger et al. Dec 2014 B2
8931133 Coart et al. Jan 2015 B2
8935056 Zimmer Jan 2015 B2
8938847 Avasiloaie et al. Jan 2015 B2
8950034 Wilms Feb 2015 B2
8950035 Benner et al. Feb 2015 B2
8957619 Karcher Feb 2015 B2
8963464 Braun et al. Feb 2015 B2
D725025 Poton Mar 2015 S
8973207 Depondt Mar 2015 B2
8973209 Depondt Mar 2015 B2
8979066 Pfetzer et al. Mar 2015 B2
8984707 Boland Mar 2015 B2
8985241 Pozgay et al. Mar 2015 B2
8997304 Oslizlo et al. Apr 2015 B2
9003594 Guidez Apr 2015 B2
9003596 Avasiloaie et al. Apr 2015 B2
9008905 Prskawetz et al. Apr 2015 B2
9015896 De Block Apr 2015 B2
9018877 Braun et al. Apr 2015 B2
9021651 Wolfgarten May 2015 B2
9021652 Coemans et al. May 2015 B2
9045111 Zimmer Jun 2015 B2
9045113 Aznag et al. Jun 2015 B2
9050946 Zimmer et al. Jun 2015 B2
9056595 Wegner et al. Jun 2015 B2
9071089 Kastinger et al. Jun 2015 B2
9073519 Depondt Jul 2015 B2
9079567 Wegner et al. Jul 2015 B2
9096196 Criel et al. Aug 2015 B2
9108595 Tolentino et al. Aug 2015 B2
9114754 Ehlgen et al. Aug 2015 B2
9114783 Depondt Aug 2015 B2
9120463 Kim et al. Sep 2015 B2
9120464 Pack et al. Sep 2015 B2
9151372 Keller Oct 2015 B2
9174609 Tolentino et al. Nov 2015 B2
9174611 Tolentino et al. Nov 2015 B2
9180839 Oslizlo et al. Nov 2015 B2
D744331 Vos et al. Dec 2015 S
9211867 Beelen et al. Dec 2015 B2
9211868 Bousset et al. Dec 2015 B2
9225274 Lingenfelser et al. Dec 2015 B2
D746700 Boehnen et al. Jan 2016 S
9227596 Van De Rovaart et al. Jan 2016 B2
9227598 Smets et al. Jan 2016 B2
9233664 Weidlich Jan 2016 B2
9254820 Geubel et al. Feb 2016 B2
9260085 Bex et al. Feb 2016 B2
9266504 De Block Feb 2016 B2
9272676 Heger et al. Mar 2016 B2
9505380 Tolentino et al. Nov 2016 B2
D777079 Tolentino et al. Jan 2017 S
D784804 Peers et al. Apr 2017 S
D787308 Kawashima et al. May 2017 S
D787312 Peers et al. May 2017 S
20010013236 Weyerstall et al. Aug 2001 A1
20020043092 Jones et al. Apr 2002 A1
20020112306 Komerska Aug 2002 A1
20020174505 Kim Nov 2002 A1
20020192017 Rosenstein et al. Dec 2002 A1
20030014828 Edner-Walter et al. Jan 2003 A1
20030028990 Zimmer Feb 2003 A1
20030033683 Kotlarski Feb 2003 A1
20030074763 Egner-Walter et al. Apr 2003 A1
20030159229 Weiler et al. Aug 2003 A1
20030209049 Jones et al. Nov 2003 A1
20030221276 Siklosi Dec 2003 A1
20030229961 Barnett Dec 2003 A1
20040010882 Breesch Jan 2004 A1
20040025280 Krickau et al. Feb 2004 A1
20040025281 Baseotto et al. Feb 2004 A1
20040052577 Lee et al. Mar 2004 A1
20040098821 Kraemer et al. May 2004 A1
20040159994 Lenzen et al. Aug 2004 A1
20040211021 Weber et al. Oct 2004 A1
20040244137 Poton Dec 2004 A1
20040250369 Matsumoto et al. Dec 2004 A1
20050005387 Kinoshita et al. Jan 2005 A1
20050011033 Thomar et al. Jan 2005 A1
20050039292 Boland Feb 2005 A1
20050166349 Nakano et al. Aug 2005 A1
20050177970 Scholl et al. Aug 2005 A1
20050252812 Lewis Nov 2005 A1
20060010636 Vacher Jan 2006 A1
20060026786 Ku Feb 2006 A1
20060112511 Op't Roodt et al. Jun 2006 A1
20060117515 Fink et al. Jun 2006 A1
20060130263 Coughlin Jun 2006 A1
20060156529 Thomar et al. Jul 2006 A1
20060179597 Hoshino et al. Aug 2006 A1
20060218740 Coughlin Oct 2006 A1
20060230571 Son Oct 2006 A1
20060248675 Vacher et al. Nov 2006 A1
20060282972 Huang Dec 2006 A1
20070017056 Cooke et al. Jan 2007 A1
20070067939 Huang Mar 2007 A1
20070067941 Huang Mar 2007 A1
20070089257 Harita et al. Apr 2007 A1
20070089527 Shank et al. Apr 2007 A1
20070186366 Alley Aug 2007 A1
20070220698 Huang Sep 2007 A1
20070226940 Thienard Oct 2007 A1
20070226941 Kraemer et al. Oct 2007 A1
20070234501 Ho et al. Oct 2007 A1
20070266517 Kim et al. Nov 2007 A1
20080083082 Rovaart et al. Apr 2008 A1
20080086830 Kim Apr 2008 A1
20080092320 Cempura et al. Apr 2008 A1
20080098554 Cho May 2008 A1
20080115308 Lee May 2008 A1
20080148509 Bacarella et al. Jun 2008 A1
20080196192 Yao Aug 2008 A1
20080222830 Chiang Sep 2008 A1
20080222831 Thienard Sep 2008 A1
20080222832 Huang Sep 2008 A1
20080263805 Sebring Oct 2008 A1
20080289133 Kim Nov 2008 A1
20090007364 Jarasson et al. Jan 2009 A1
20090013492 Henin Jan 2009 A1
20090056049 Jarasson et al. Mar 2009 A1
20090064440 Boland Mar 2009 A1
20090126140 Heinrich et al. May 2009 A1
20090151110 Ku Jun 2009 A1
20090158545 Grasso et al. Jun 2009 A1
20090158547 Kim Jun 2009 A1
20090172910 De Block et al. Jul 2009 A1
20090178226 Lee et al. Jul 2009 A1
20090199357 Thienard Aug 2009 A1
20100000041 Boland Jan 2010 A1
20100005608 Chien Jan 2010 A1
20100005609 Kim Jan 2010 A1
20100024149 Erdal Feb 2010 A1
20100024151 Ku Feb 2010 A1
20100050360 Chiang Mar 2010 A1
20100050361 Chang et al. Mar 2010 A1
20100064468 Kang Mar 2010 A1
20100083454 Op't Roodt et al. Apr 2010 A1
20100186185 Grasso et al. Jul 2010 A1
20100205763 Ku Aug 2010 A1
20100212101 Thienard et al. Aug 2010 A1
20100236008 Yang et al. Sep 2010 A1
20100236675 Schneider Sep 2010 A1
20100242204 Chien Sep 2010 A1
20100281645 Kim et al. Nov 2010 A1
20110005020 Koppen et al. Jan 2011 A1
20110041280 Choi et al. Feb 2011 A1
20110047742 Kim et al. Mar 2011 A1
20110072607 Van Baelen et al. Mar 2011 A1
20110107542 Op't Roodt May 2011 A1
20110113582 Kruse et al. May 2011 A1
20110113583 Shanmugham et al. May 2011 A1
20110162161 Amado Jul 2011 A1
20110192511 Marrone Aug 2011 A1
20110219563 Guastella et al. Sep 2011 A1
20110277264 Ehde Nov 2011 A1
20110277266 Umeno Nov 2011 A1
20120027206 Suzuki et al. Feb 2012 A1
20120047673 Depondt Mar 2012 A1
20120054976 Yang et al. Mar 2012 A1
20120060316 Avasiloaie et al. Mar 2012 A1
20120066857 Webert Mar 2012 A1
20120090123 Caillot et al. Apr 2012 A1
20120102669 Lee et al. May 2012 A1
20120144615 Song et al. Jun 2012 A1
20120159733 Kwon Jun 2012 A1
20120180245 Ku Jul 2012 A1
20120180246 Ku Jul 2012 A1
20120186035 Lee Jul 2012 A1
20120266405 Tolentinto et al. Oct 2012 A1
20120279008 Depondt Nov 2012 A1
20120311808 Yang et al. Dec 2012 A1
20120317740 Yang et al. Dec 2012 A1
20130025084 Tolentino et al. Jan 2013 A1
20130067674 Chiang Mar 2013 A1
20130067675 Chien Mar 2013 A1
20130067678 Ehde Mar 2013 A1
20130104334 Depondt May 2013 A1
20130117957 Ku May 2013 A1
20130125333 Tolentino et al. May 2013 A1
20130152323 Chien Jun 2013 A1
20130152326 Oslizlo et al. Jun 2013 A1
20130152330 Kim et al. Jun 2013 A1
20130167316 Egner-Walter et al. Jul 2013 A1
20130185889 Tolentino et al. Jul 2013 A1
20130192015 Tolentino et al. Aug 2013 A1
20130192016 Kim et al. Aug 2013 A1
20130198992 Tolentino et al. Aug 2013 A1
20130205532 Tolentino et al. Aug 2013 A1
20130219649 Tolentinto et al. Aug 2013 A1
20130227809 Tolentinto et al. Sep 2013 A1
20130227810 Tolentinto et al. Sep 2013 A1
20130247323 Geubel et al. Sep 2013 A1
20130255026 Depondt Oct 2013 A1
20130263400 Duesterhoeft et al. Oct 2013 A1
20130291329 Izabel Nov 2013 A1
20130298348 Caillot et al. Nov 2013 A1
20130305475 Kim et al. Nov 2013 A1
20130305478 Kim et al. Nov 2013 A1
20130333145 Depondt Dec 2013 A1
20130333146 Depondt Dec 2013 A1
20140026348 Schaeuble Jan 2014 A1
20140026349 Schaeuble Jan 2014 A1
20140026350 Boland Jan 2014 A1
20140068886 Ku Mar 2014 A1
20140082875 Peers et al. Mar 2014 A1
20140115811 Kim et al. May 2014 A1
20140130287 Bex et al. May 2014 A1
20140150198 Kim et al. Jun 2014 A1
20140182075 Polocoser et al. Jul 2014 A1
20140196241 Kim et al. Jul 2014 A1
20140259504 Piotrowski et al. Sep 2014 A1
20140259505 Fournier et al. Sep 2014 A1
20140283325 Kawashima et al. Sep 2014 A1
20140317875 Tolentino et al. Oct 2014 A1
20140338144 An et al. Nov 2014 A1
20140359963 An et al. Dec 2014 A1
20140373301 Kim et al. Dec 2014 A1
20150026908 Izabel et al. Jan 2015 A1
20150047141 Houssat et al. Feb 2015 A1
20150059116 An et al. Mar 2015 A1
20150074935 An et al. Mar 2015 A1
20150089764 Wu Apr 2015 A1
20150135468 Kim May 2015 A1
20150158463 Yi Jun 2015 A1
20150166016 Wang Jun 2015 A1
20150246659 Park Sep 2015 A1
20150251636 Kim et al. Sep 2015 A1
20150251637 Tolentino et al. Sep 2015 A1
20150258965 An Sep 2015 A1
20150274131 Tolentinto et al. Oct 2015 A1
20150353054 Tolentino et al. Dec 2015 A1
20160046263 Tolentino et al. Feb 2016 A1
20160059828 Tolentino et al. Mar 2016 A1
20160159323 Tolentinto et al. Jun 2016 A1
20160280186 Peers et al. Sep 2016 A1
20160375867 Tolentino et al. Dec 2016 A1
20170057464 Tolentinto et al. Mar 2017 A1
20170072912 Tolentino et al. Mar 2017 A1
20170113656 Tolentino Apr 2017 A1
Foreign Referenced Citations (599)
Number Date Country
206463 Jun 1976 AR
206463 Jul 1976 AR
409933 Feb 1971 AU
409933 Feb 1971 AU
410701 Feb 1971 AU
410701 Feb 1971 AU
649730 Jun 1994 AU
649730 Jun 1994 AU
729371 Jul 2001 AU
729371 Jul 2001 AU
741730 Dec 2001 AU
741730 Dec 2001 AU
762557 Jun 2003 AU
762557 Jun 2003 AU
770944 Mar 2004 AU
770944 Mar 2004 AU
2003257828 Mar 2004 AU
2003257828 Mar 2004 AU
780818 Apr 2005 AU
780818 Apr 2005 AU
2006100618 Aug 2006 AU
2006100618 Aug 2006 AU
2006241297 Jun 2007 AU
2006241297 Jun 2007 AU
2006203445 Oct 2007 AU
2006203445 Oct 2007 AU
2008100641 Aug 2008 AU
2008100641 Aug 2008 AU
2009238193 Oct 2009 AU
2009238193 Oct 2009 AU
2009324257 Aug 2010 AU
2009324257 Aug 2010 AU
2010294766 Feb 2012 AU
8304484 Apr 1984 BR
8304484 Apr 1984 BR
8604381 May 1987 BR
8604381 May 1987 BR
8707390 Nov 1988 BR
8707390 Nov 1988 BR
8903473 Mar 1990 BR
8903473 Mar 1990 BR
8907154 Feb 1991 BR
8907154 Feb 1991 BR
9005080 Aug 1991 BR
9005080 Aug 1991 BR
9105809 Aug 1992 BR
9105809 Aug 1992 BR
9200129 Oct 1992 BR
9200129 Oct 1992 BR
0006164 Apr 2001 BR
0007263 Oct 2001 BR
0007263 Oct 2001 BR
0106665 Apr 2002 BR
0106665 Apr 2002 BR
0106667 Apr 2002 BR
0106667 Apr 2002 BR
0306135 Oct 2004 BR
0306135 Oct 2004 BR
PI0411532 Aug 2006 BR
PI0411532 Aug 2006 BR
PI0506158 Oct 2006 BR
PI0506158 Oct 2006 BR
PI0007263 Jan 2009 BR
PI0519259 Jan 2009 BR
0006164 Aug 2009 BR
0006917 Aug 2009 BR
0006917 Aug 2009 BR
PI0606903 Aug 2009 BR
PI0606903 Aug 2009 BR
PI0901324 Apr 2010 BR
PI0006963 Sep 2010 BR
PI0706762 Apr 2011 BR
PI0706762 Apr 2011 BR
PI1000961 Jun 2011 BR
PI0621265 Dec 2011 BR
PI0621265 Dec 2011 BR
954258 Sep 1974 CA
966609 Apr 1975 CA
1038117 Sep 1978 CA
1075414 Apr 1980 CA
1124462 Jun 1982 CA
1184712 Apr 1985 CA
1257059 Jul 1989 CA
1263803 Dec 1989 CA
2027227 Apr 1991 CA
1289308 Sep 1991 CA
2037400 Feb 1992 CA
2093956 Apr 1992 CA
2079846 Jul 1993 CA
2118874 Sep 1994 CA
2156345 Feb 1996 CA
2174030 May 1997 CA
2260175 Jan 1998 CA
2220462 Jul 1998 CA
2243143 Jan 1999 CA
2344888 Apr 2000 CA
2414099 Jan 2002 CA
2472914 Aug 2003 CA
2487799 Dec 2003 CA
2500891 Apr 2004 CA
2515071 Aug 2004 CA
2515071 Aug 2004 CA
2242776 Jul 2005 CA
2553977 Sep 2005 CA
2554048 Sep 2005 CA
2514372 Jan 2006 CA
2574330 Feb 2006 CA
2523315 Apr 2006 CA
2541641 Apr 2006 CA
2522729 Jun 2006 CA
2598104 Sep 2006 CA
2550409 Nov 2006 CA
2568561 May 2007 CA
2569175 May 2007 CA
2569176 May 2007 CA
2569977 Jun 2007 CA
2560155 Sep 2007 CA
2645821 Oct 2007 CA
2649474 Nov 2007 CA
2649760 Nov 2007 CA
2651069 Nov 2007 CA
2590443 Apr 2008 CA
2631513 May 2008 CA
2574242 Jul 2008 CA
2617013 Nov 2008 CA
2628517 Apr 2009 CA
2671767 Jan 2010 CA
2500891 May 2011 CA
2789431 Aug 2011 CA
2789431 Aug 2011 CA
2809243 Mar 2012 CA
2809243 Mar 2012 CA
2809292 Mar 2012 CA
2809292 Mar 2012 CA
2809947 Mar 2012 CA
2809947 Mar 2012 CA
2831801 Oct 2012 CA
2835703 Nov 2012 CA
2835703 Nov 2012 CA
2843527 Jan 2013 CA
2843527 Jan 2013 CA
2843637 Feb 2013 CA
2843637 Feb 2013 CA
2843644 Feb 2013 CA
2843644 Feb 2013 CA
2797693 May 2013 CA
2797693 May 2013 CA
147027 Jun 2013 CA
147028 Jun 2013 CA
2799267 Jun 2013 CA
2799267 Jun 2013 CA
2740384 Jul 2013 CA
2740384 Jul 2013 CA
2865292 Aug 2013 CA
2906863 Sep 2014 CA
2898928 Jan 2017 CA
2865295 Mar 2017 CA
2014002239 May 2015 CL
2014002241 May 2015 CL
2015002693 Apr 2016 CL
101983148 Mar 2011 CN
101983148 Mar 2011 CN
202593459 Dec 2012 CN
202593459 Dec 2012 CN
102963337 Mar 2013 CN
102963337 Mar 2013 CN
102991462 Mar 2013 CN
102991462 Mar 2013 CN
102991466 Mar 2013 CN
102991466 Mar 2013 CN
103101514 May 2013 CN
103101514 May 2013 CN
103101516 May 2013 CN
103101516 May 2013 CN
103108782 May 2013 CN
103108782 May 2013 CN
103183008 Jul 2013 CN
103183008 Jul 2013 CN
103183009 Jul 2013 CN
103183009 Jul 2013 CN
103223923 Jul 2013 CN
103223923 Jul 2013 CN
103228498 Jul 2013 CN
103228498 Jul 2013 CN
7141449 Dec 2014 CO
7141460 Dec 2014 CO
2309063 Aug 1974 DE
2311293 Sep 1974 DE
2353368 May 1975 DE
3222864 Dec 1983 DE
3919050 Dec 1990 DE
4439275 May 1995 DE
19650929 Jun 1998 DE
19734843 Feb 1999 DE
19745460 Apr 1999 DE
19814609 Oct 1999 DE
10054287 May 2002 DE
10228494 Jan 2004 DE
10320930 Nov 2004 DE
10343571 Apr 2005 DE
102004019157 Nov 2005 DE
102004061088 Jun 2006 DE
102005019389 Nov 2006 DE
102005062462 Jun 2007 DE
102006057024 Jun 2008 DE
102007030169 Jan 2009 DE
102007051549 Apr 2009 DE
102008042516 May 2009 DE
102008001045 Oct 2009 DE
102008021457 Nov 2009 DE
102008002447 Dec 2009 DE
102008049269 Apr 2010 DE
102008049270 Apr 2010 DE
102009000483 Apr 2010 DE
102009001025 Aug 2010 DE
102010012983 Feb 2011 DE
102009029469 Mar 2011 DE
102009029470 Mar 2011 DE
102009048212 Apr 2011 DE
102010016348 Apr 2011 DE
102010041152 May 2011 DE
102010003269 Sep 2011 DE
202011005213 Sep 2011 DE
202011100429 Sep 2011 DE
102010003645 Oct 2011 DE
102010028102 Oct 2011 DE
102010029107 Nov 2011 DE
102010030880 Jan 2012 DE
102010039526 Feb 2012 DE
0594451 Apr 1994 EP
0633170 Jan 1995 EP
0665143 Aug 1995 EP
0683703 Nov 1995 EP
0695246 Feb 1996 EP
0749378 Dec 1996 EP
0757636 Feb 1997 EP
0760761 Mar 1997 EP
0777594 Jun 1997 EP
0792704 Sep 1997 EP
0810936 Dec 1997 EP
0828638 Mar 1998 EP
0841229 May 1998 EP
0847346 Jun 1998 EP
0847347 Jun 1998 EP
0853561 Jul 1998 EP
0853563 Jul 1998 EP
0853565 Jul 1998 EP
0885791 Dec 1998 EP
0914269 May 1999 EP
0926028 Jun 1999 EP
0930991 Jul 1999 EP
0935546 Aug 1999 EP
0943511 Sep 1999 EP
1022202 Jul 2000 EP
1037778 Sep 2000 EP
0783998 Oct 2000 EP
1056628 Dec 2000 EP
1098795 May 2001 EP
1098796 May 2001 EP
1109706 Jun 2001 EP
1119475 Aug 2001 EP
1119476 Aug 2001 EP
1178907 Feb 2002 EP
1197406 Apr 2002 EP
1243489 Sep 2002 EP
1247707 Oct 2002 EP
1257445 Nov 2002 EP
1289804 Mar 2003 EP
1289806 Mar 2003 EP
1294596 Mar 2003 EP
1337420 Aug 2003 EP
1412235 Apr 2004 EP
1017514 Jun 2004 EP
1425204 Jun 2004 EP
1436179 Jul 2004 EP
1448414 Aug 2004 EP
1462327 Sep 2004 EP
1485279 Dec 2004 EP
1494901 Jan 2005 EP
1494902 Jan 2005 EP
1501710 Feb 2005 EP
1519862 Apr 2005 EP
1547883 Jun 2005 EP
1612113 Jan 2006 EP
1312522 Apr 2006 EP
1666319 Jun 2006 EP
1708911 Oct 2006 EP
1719673 Nov 2006 EP
1733939 Dec 2006 EP
1740424 Jan 2007 EP
1744940 Jan 2007 EP
1753646 Feb 2007 EP
1758772 Mar 2007 EP
1769987 Apr 2007 EP
1792794 Jun 2007 EP
1799518 Jun 2007 EP
1800977 Jun 2007 EP
1800978 Jun 2007 EP
1833708 Sep 2007 EP
1846274 Oct 2007 EP
1849666 Oct 2007 EP
1937524 Jul 2008 EP
2015971 Jan 2009 EP
2050638 Apr 2009 EP
2079617 Jul 2009 EP
2109557 Oct 2009 EP
2113432 Nov 2009 EP
2127969 Dec 2009 EP
2134576 Dec 2009 EP
2138363 Dec 2009 EP
2143603 Jan 2010 EP
2146877 Jan 2010 EP
2177406 Apr 2010 EP
2230140 Sep 2010 EP
2236364 Oct 2010 EP
2236366 Oct 2010 EP
2253520 Nov 2010 EP
2258592 Dec 2010 EP
1559623 Jan 2011 EP
2300283 Mar 2011 EP
2321160 May 2011 EP
2338747 Jun 2011 EP
2426017 Mar 2012 EP
002088146-0001 Aug 2012 EP
002088146-0002 Aug 2012 EP
2532558 Dec 2012 EP
2551157 Jan 2013 EP
2560847 Feb 2013 EP
2571733 Mar 2013 EP
2578458 Apr 2013 EP
2421729 Mar 2014 EP
2817183 Dec 2014 EP
2817184 Dec 2014 EP
002674887-0001 Feb 2015 EP
2969671 Jan 2016 EP
2437959 Apr 1980 FR
2736025 Jan 1997 FR
2738201 Mar 1997 FR
2744973 Aug 1997 FR
2747976 Oct 1997 FR
2804392 Aug 2001 FR
2879987 Jun 2006 FR
2957877 Sep 2011 FR
1395918 May 1975 GB
1405579 Sep 1975 GB
2188672 Oct 1987 GB
2220844 Jan 1990 GB
2324237 Oct 1998 GB
2348118 Sep 2000 GB
1110560 May 2010 HK
1110560 May 2010 HK
1105928 Aug 2010 HK
1105928 Aug 2010 HK
1108573 Oct 2011 HK
1108573 Oct 2011 HK
1110561 Jul 2012 HK
1110561 Jul 2012 HK
60092136 May 1985 JP
0374242 Mar 1991 JP
3572527 Oct 2004 JP
2008037388 Feb 2008 JP
10-089115 Feb 2009 KR
10-0891195 Apr 2009 KR
20120029616 Mar 2012 KR
169141 Jun 1993 MX
9708272 Aug 1998 MX
9708273 Aug 1998 MX
PA03010189 Mar 2004 MX
PA03010190 Mar 2004 MX
PA05002760 Jun 2005 MX
PA05002988 Jun 2005 MX
PA05008266 Sep 2005 MX
PA05005581 Nov 2005 MX
PA06008594 Aug 2006 MX
PA06008594 Aug 2006 MX
2007007828 Jul 2007 MX
2007007829 Jul 2007 MX
2008012325 Oct 2008 MX
2008013480 Oct 2008 MX
2008013814 Dec 2008 MX
2008014163 Feb 2009 MX
2009013050 Jan 2010 MX
2009013051 Jan 2010 MX
2010009333 Oct 2010 MX
2011000597 Mar 2011 MX
2011000598 Mar 2011 MX
2011003242 Apr 2011 MX
2011003243 Apr 2011 MX
2011003911 Sep 2011 MX
2012002314 Jun 2012 MX
2012002314 Jun 2012 MX
2013002710 May 2013 MX
2013002710 May 2013 MX
2013006881 Jul 2013 MX
2013006881 Jul 2013 MX
2014001106 Mar 2014 MX
2013011449 Jun 2014 MX
2013006260 Jul 2014 MX
2014001162 Jul 2014 MX
2014001161 Nov 2014 MX
2014010123 Nov 2014 MX
2014010122 May 2015 MX
2015013210 Dec 2015 MX
122308 Apr 2006 MY
122308 Apr 2006 MY
122563 Apr 2006 MY
122563 Apr 2006 MY
128028 Jan 2007 MY
128028 Jan 2007 MY
128970 Mar 2007 MY
128970 Mar 2007 MY
1800978 May 2011 PT
1800977 Jan 2012 PT
1800977 Jan 2012 PT
2238198 Oct 2004 RU
2251500 May 2005 RU
2260527 Sep 2005 RU
2260528 Sep 2005 RU
2268176 Jan 2006 RU
2271287 Mar 2006 RU
2293034 Feb 2007 RU
2294291 Feb 2007 RU
2007127898 Jan 2009 RU
80415 Feb 2009 RU
2346834 Feb 2009 RU
2369500 Oct 2009 RU
2381120 Feb 2010 RU
2394706 Jul 2010 RU
2416536 Apr 2011 RU
105237 Jun 2011 RU
108350 Sep 2011 RU
108741 Sep 2011 RU
2456180 Jul 2012 RU
2493033 Sep 2013 RU
2526773 Aug 2014 RU
2543448 Feb 2015 RU
2560217 Aug 2015 RU
2560954 Aug 2015 RU
2561173 Aug 2015 RU
2577830 Mar 2016 RU
2577981 Mar 2016 RU
2578001 Mar 2016 RU
2015144362 Apr 2017 RU
M404153 May 2011 TW
M404153 May 2011 TW
201325952 Jul 2013 TW
201325952 Jul 2013 TW
201325953 Jul 2013 TW
201325953 Jul 2013 TW
WO 8103308 Nov 1981 WO
WO 9106451 May 1991 WO
WO 9206869 Apr 1992 WO
WO 9712787 Apr 1997 WO
WO 9801328 Jan 1998 WO
WO 9801329 Jan 1998 WO
WO 9850261 Nov 1998 WO
WO 9851203 Nov 1998 WO
WO 9851550 Nov 1998 WO
WO 9908818 Feb 1999 WO
WO 9915382 Apr 1999 WO
WO 9956992 Nov 1999 WO
WO 0005111 Feb 2000 WO
WO 0006431 Feb 2000 WO
WO 0021808 Apr 2000 WO
WO 0021809 Apr 2000 WO
WO 0021811 Apr 2000 WO
WO 0038963 Jul 2000 WO
WO 0038964 Jul 2000 WO
WO 0053470 Sep 2000 WO
WO 0061409 Oct 2000 WO
WO 0126942 Apr 2001 WO
WO 0130618 May 2001 WO
WO 0140034 Jun 2001 WO
WO 0149537 Jul 2001 WO
WO 0158732 Aug 2001 WO
WO 0162559 Aug 2001 WO
WO 0189890 Nov 2001 WO
WO 0189891 Nov 2001 WO
WO 0189892 Nov 2001 WO
WO 0194166 Dec 2001 WO
WO 0204168 Jan 2002 WO
WO 0204266 Jan 2002 WO
WO 0204267 Jan 2002 WO
WO 0204268 Jan 2002 WO
WO 0234590 May 2002 WO
WO 0234596 May 2002 WO
WO 0234597 May 2002 WO
WO 0240328 May 2002 WO
WO 0240329 May 2002 WO
WO 02051677 Jul 2002 WO
WO 02052917 Jul 2002 WO
WO 02066301 Aug 2002 WO
WO 02090155 Nov 2002 WO
WO 02090156 Nov 2002 WO
WO 03026938 Apr 2003 WO
WO 03033316 Apr 2003 WO
WO 03042017 May 2003 WO
WO 03045746 Jun 2003 WO
WO 03091078 Nov 2003 WO
WO 03101794 Dec 2003 WO
WO 03106233 Dec 2003 WO
WO 2004002792 Jan 2004 WO
WO 2004045927 Jun 2004 WO
WO 2004045928 Jun 2004 WO
WO 2004048163 Jun 2004 WO
WO 2004056625 Jul 2004 WO
WO 2004069617 Aug 2004 WO
WO 2004076251 Sep 2004 WO
WO 2004098962 Nov 2004 WO
WO 2004098963 Nov 2004 WO
WO 2004110833 Dec 2004 WO
WO 2005025956 Mar 2005 WO
WO 2005039944 May 2005 WO
WO 2008051483 May 2005 WO
WO 2005054017 Jun 2005 WO
WO 2005080160 Sep 2005 WO
WO 2005082691 Sep 2005 WO
WO 2005087560 Sep 2005 WO
WO 2005092680 Oct 2005 WO
WO 2005102801 Nov 2005 WO
WO 2005115813 Dec 2005 WO
WO 2005123471 Dec 2005 WO
WO 2006000393 Jan 2006 WO
WO 2006013152 Feb 2006 WO
WO 2006040259 Apr 2006 WO
WO 2006048355 May 2006 WO
WO 2006061284 Jun 2006 WO
WO 2006069648 Jul 2006 WO
WO 2006074995 Jul 2006 WO
WO 2006079591 Aug 2006 WO
WO 2006081893 Aug 2006 WO
WO 2006106006 Oct 2006 WO
WO 2006106109 Oct 2006 WO
2006119679 Nov 2006 WO
WO 2006114355 Nov 2006 WO
WO 2006117081 Nov 2006 WO
WO 2006117085 Nov 2006 WO
WO 2006117308 Nov 2006 WO
WO 2007009885 Jan 2007 WO
WO 2007014389 Feb 2007 WO
WO 2007014395 Feb 2007 WO
WO 2007035288 Mar 2007 WO
WO 2007042377 Apr 2007 WO
WO 2007045549 Apr 2007 WO
WO 2007071487 Jun 2007 WO
WO 2007073974 Jul 2007 WO
WO 2007102404 Sep 2007 WO
WO 2007122095 Nov 2007 WO
WO 2007128677 Nov 2007 WO
WO 2008003633 Jan 2008 WO
WO 2008043622 Apr 2008 WO
WO 2008076402 Jun 2008 WO
WO 2008122453 Oct 2008 WO
WO 2008124113 Oct 2008 WO
WO 2008135308 Nov 2008 WO
WO 2009000498 Dec 2008 WO
WO 2009115494 Sep 2009 WO
WO 2009121849 Oct 2009 WO
WO 2009124792 Oct 2009 WO
WO 2009132982 Nov 2009 WO
WO 2009153097 Dec 2009 WO
WO 2009155230 Dec 2009 WO
WO 2010016000 Feb 2010 WO
2010033646 Mar 2010 WO
WO 2010028866 Mar 2010 WO
WO 2010028918 Mar 2010 WO
WO 2010033646 Mar 2010 WO
WO 2010034445 Apr 2010 WO
WO 2010034447 Apr 2010 WO
WO 2010035794 Apr 2010 WO
WO 2010091757 Aug 2010 WO
WO 2010098877 Sep 2010 WO
WO 2010112579 Oct 2010 WO
WO 2010121665 Oct 2010 WO
2010127888 Nov 2010 WO
WO 2011032753 Mar 2011 WO
WO 2011032760 Mar 2011 WO
WO 2011040743 Apr 2011 WO
WO 2011060979 May 2011 WO
WO 2011116995 Sep 2011 WO
WO 2011120723 Oct 2011 WO
WO 2011124404 Oct 2011 WO
WO 2011131395 Oct 2011 WO
WO 2011144400 Nov 2011 WO
WO 2011157465 Dec 2011 WO
WO 2012001175 Jan 2012 WO
WO 2012014054 Feb 2012 WO
WO 2012033363 Mar 2012 WO
2013016493 Jan 2013 WO
2013019645 Feb 2013 WO
2013019723 Feb 2013 WO
2013089312 Jun 2013 WO
2013126907 Aug 2013 WO
2013126910 Aug 2013 WO
13176352 Nov 2013 WO
2014145538 Sep 2014 WO
2016160687 Oct 2016 WO
2017075066 May 2017 WO
200006220 Jul 2001 ZA
Non-Patent Literature Citations (73)
Entry
Non-Final Rejection towards U.S. Appl. No. 13/453,601 dated Jul. 9, 2013.
Non-Final Rejection towards U.S. Appl. No. 13/453,601 dated Jan. 10, 2014.
Final Rejection towards U.S. Appl. No. 13/453,601 dated Aug. 1, 2014.
Non-Final Rejection towards U.S. Appl. No. 13/453,601 dated Feb. 4, 2015.
Final Rejection towards U.S. Appl. No. 13/453,601 dated Jun. 3, 2015.
Non-Final Rejection towards U.S. Appl. No. 13/453,601 dated Jan. 8, 2016.
Notice of Allowance towards U.S. Appl. No. 13/453,601 dated May 20, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/558,624 dated May 16, 2014.
Final Rejection towards U.S. Appl. No. 13/558,624 dated Sep. 29, 2014.
Non-Final Rejection towards U.S. Appl. No. 13/558,624 dated Mar. 6, 2015.
Notice of Allowance towards U.S. Appl. No. 13/558,624 dated Jun. 29, 2015.
Non-Final Rejection towards U.S. Appl. No. 13/560,585 dated Jul. 29, 2014.
Final Rejection towards U.S. Appl. No. 13/560,585 dated Jan. 28, 2015.
Non-Final Rejection towards U.S. Appl. No. 13/560,585 dated Jun. 24, 2015.
Notice of Allowance towards U.S. Appl. No. 13/560,585 dated Mar. 22, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/679,646 dated Feb. 2, 2015.
Final Rejection towards U.S. Appl. No. 13/679,646 dated Sep. 2, 2015.
Non-Final Rejection towards U.S. Appl. No. 13/679,646 dated Jun. 13, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/679,646 dated Jan. 4, 2017.
Non-Final Rejection towards U.S. Appl. No. 13/572,100 dated Jun. 3, 2014.
Non-Final Rejection towards U.S. Appl. No. 13/587,389 dated Oct. 31, 2014.
Final Rejection towards U.S. Appl. No. 13/587,389 dated Feb. 25, 2015.
Notice of Allowance towards U.S. Appl. No. 13/587,389 dated Jun. 19, 2015.
Non-Final Rejection towards U.S. Appl. No. 14/928,467 dated Apr. 28, 2016.
Final Rejection towards U.S. Appl. No. 14/928,467 dated Sep. 14, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/194,070 dated Apr. 8, 2013.
Final Rejection towards U.S. Appl. No. 13/194,070 dated Aug. 27, 2013.
Non-Final Rejection towards U.S. Appl. No. 13/194,070 dated Dec. 26, 2013.
Notice of Allowance towards U.S. Appl. No. 13/194,070 dated Apr. 18, 2014.
Non-Final Rejection towards U.S. Appl. No. 14/329,423 dated Sep. 10, 2014.
Notice of Allowance towards U.S. Appl. No. 14/329,423 dated Apr. 15, 2015.
Non-Final Rejection towards U.S. Appl. No. 29/413,428 dated Nov. 7, 2012.
Notice of Allowance towards U.S. Appl. No. 29/413,428 dated Jun. 14, 2013.
Notice of Allowance towards U.S. Appl. No. 29/413,430 dated Nov. 26, 2012.
Non-Final Rejection towards U.S. Appl. No. 29/375,477 dated Sep. 7, 2012.
Notice of Allowance towards U.S. Appl. No. 29/375,477 dated Jan. 15, 2014.
Notice of Allowance towards U.S. Appl. No. 29/429,262 dated Jun. 27, 2013.
Non-Final Rejection towards U.S. Appl. No. 14/035,610 dated Apr. 22, 2016.
Final Rejection towards U.S. Appl. No. 14/035,610 dated Aug. 5, 2016.
Non-Final Rejection towards U.S. Appl. No. 14/035,610 dated Dec. 30, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/776,376 dated Nov. 18, 2014.
Non-Final Rejection towards U.S. Appl. No. 13/840,256 dated Nov. 26, 2014.
Non-Final Rejection towards U.S. Appl. No. 14/715,180 dated Jan. 7, 2016.
Final Rejection towards U.S. Appl. No. 14/715,180 dated Aug. 16, 2016.
Definition of rectangular in Oxford Dictionary 2017.
Non-Final Rejection towards U.S. Appl. No. 14/715,180 dated May 22, 2017.
Non-Final Rejection towards U.S. Appl. No. 14/721,476 dated May 16, 2017.
lnternational Search Report and Written Opinion issued in PCT Application No. PCT/US2013/027684 dated Apr. 29, 2013.
International Search Report and Written Opinion issued in PCT Application No. PCT/US2014/030329 dated Jun. 3, 2014.
First Office Action issued in connection with CA Application No. 2865292 dated Aug. 25, 2015.
Second Office Action issued in connection with CA Application No. 2865292 dated Aug. 15, 2016.
Non-Final Rejection towards U.S. Appl. No. 13/776,383 dated Mar. 10, 2015.
Final Rejection towards U.S. Appl. No. 13/776,383 dated Aug. 14, 2015.
International Search Report and Written Opinion issued in PCT Application No. PCT/US2013/027688 dated Apr. 25, 2013.
First Office Action issued in connection with CA Application No. 2865295 dated Aug. 25, 2015.
Non-Final Rejection towards U.S. Appl. No. 14/216,082 dated Apr. 12, 2017.
Non-Final Rejection towards U.S. Appl. No. 14/200,792 dated Oct. 23, 2015.
Final Rejection towards U.S. Appl. No. 14/200,792 dated Feb. 23, 2016.
Notice of Allowance issued towards U.S. Appl. No. 14/200,792 dated Jul. 22, 2016.
Non-Final Rejection towards U.S. Appl. No. 15/359,271 dated May 11, 2017.
Notice of Allowance issued towards U.S. Appl. No. 29/504,287 dated Sep. 12, 2016.
Non-Final Rejection towards U.S. Appl. No. 29/504,292 dated Jun. 19, 2015.
Final Rejection towards U.S. Appl. No. 29/504,292 dated Jan. 20, 2016.
Advisory Action towards U.S. Appl. No. 29/504,292 dated May 19, 2016.
Notice of Allowance issued towards U.S. Appl. No. 29/504,292 dated Aug. 16, 2016.
International Search Report and Written Opinion issued in PCT Application No. PCT/US2016/024490 dated Jun. 21, 2016.
Notice of Allowance issued towards U.S. Appl. No. 29/525,746 dated Apr. 7, 2016.
Notice of Allowance issued towards U.S. Appl. No. 29/571,419 dated Jan. 31, 2017.
Notice of Allowance issued towards U.S. Appl. No. 29/571,424 dated Feb. 1, 2017.
International Search Report and Written Opinion issued in PCT Application No. PCT/US2016/058887 dated Jan. 3, 2017.
International Search Report dated Oct. 19, 2012 for PCT/US2012/048843 filed Jul. 30, 2012.
International Search Report dated Sep. 19, 2012 for PCT/US2012/048617 filed Jul. 27, 2012.
International Search Report dated Sep. 19, 2012 for PCT/US2012/048262 filed Jul. 26, 2012.
Related Publications (1)
Number Date Country
20200148172 A1 May 2020 US
Provisional Applications (1)
Number Date Country
61603222 Feb 2012 US
Continuations (2)
Number Date Country
Parent 14715144 May 2015 US
Child 16744575 US
Parent 13776376 Feb 2013 US
Child 14715144 US