Safety assembly for a lawncare apparatus

Information

  • Patent Grant
  • 11252867
  • Patent Number
    11,252,867
  • Date Filed
    Friday, December 20, 2019
    4 years ago
  • Date Issued
    Tuesday, February 22, 2022
    2 years ago
Abstract
A lawncare apparatus includes a main body, multiple wheels supporting the main body, a cutting blade disposed in the main body, a motor driving the cutting blade, and an operating arm connected to the first end of the main body. The distance in the horizontal direction between the axial central line of the cylindrical gripping portion of the operating arm and the axes of the elongated handle of the main body along the length direction is less than 5 cm. Because of the structure mate relationship between the operating arm and the cylindrical gripping portion, the operator feels more comfortable during the transporting process, the volume of lawncare apparatus during transporting is reduced and the convenience of transporting is improved.
Description
FIELD OF THE DISCLOSURE

The subject disclosure relates to garden tools and, more particularly, to a lawncare apparatus.


BACKGROUND

A commonly used lawncare apparatus, such as a walk-behind lawnmower, includes a cutting device, a deck supporting the cutting device, a chassis having four wheels to which the deck is mounted, and a handle for pushing a main body of the lawncare apparatus disposed at one end of the chassis.


When using the lawnmower, there are two ways to transport the lawnmower from a storage room to a lawn. The first way is to place the four wheels on the ground and push/pull the lawnmower. The second way is to lift the lawnmower away from the ground. The first way requires a large storage room and the second way requires that the lawnmower is of light weight. That is, the way to transport the lawnmower from the storage room to the lawn needs to be improved.


SUMMARY

The following will describe an apparatus which can improve operating comfort of the operator, reduce volume of the apparatus during transporting and/or storage, and further improve convenience of transporting.


To achieve the above object, a described apparatus includes a main body, a plurality of wheels supporting the main body, an accessory disposed in the main body, a motor driving the cutting blade, and an operating arm connected to the first end of the main body, wherein an elongated handle is disposed on the second end of the main body which is away from the operating arm. The operating arm includes a cylindrical gripping portion and the operating arm can be folded to a folded position. When the operating arm is at the folded position and the multiple wheels contacts the level surface, the distance in the horizontal direction between the axial central line of the cylindrical gripping portion and the axes of the elongated handle along the length direction is less than 5 cm.


To achieve the above object, another described apparatus includes a main body, a plurality of wheels supporting the main body, an accessory disposed in the main body, a motor driving the cutting blade, an operating arm connected to a first end of the main body, and an elongated handle positioned on a second end of the main body which is away from the operating arm. The operating arm is capable of being folded to a folded position and the internal profile of the operating arm is mated with the external profile of the elongated handle such that the operating arm at the folded position is clearance fitted with the elongated handle.


The apparatus of the invention can be pulled obliquely. Further, because of the structure mate relationship between the operating arm and the cylindrical gripping portion, the operator will feel more comfortable during the transporting process and the volume of the apparatus during transporting is reduced, and further, the convenience of transporting is improved.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a schematic, isometric view showing an exemplary lawncare apparatus constructed according to the description which follows wherein an operating arm is folded.



FIG. 2 is a side schematic view showing the exemplary lawncare apparatus of FIG. 1.



FIG. 3 is a schematic view showing an exemplary safety switch assembly of the lawncare apparatus of FIG. 1.



FIG. 4 is a side schematic view showing the lawncare apparatus of FIG. 1 in a storage position.



FIG. 5 is a side schematic view showing the lawncare apparatus of FIG. 1 in an obliquely disposed, pulling position.





DETAILED DESCRIPTION

The invention will be described below in details with reference to the drawings and preferred embodiments thereof.


Referring to FIG. 1 and FIG. 2, in the illustrated embodiment, the lawncare apparatus is a hand push lawnmower. The lawncare apparatus includes a main body 1, a first pair of wheels 11 and a second pair of wheels 12 supporting the main body 1, a cutting blade disposed in the main body 1, a motor driving the cutting blade, and an operating arm 2 connected to the first end (rear end) of the main body 1. The first pair of wheels 11 and the second pair of wheels 12 are disposed respectively at the second end (front end) and the first end (rear end) of the main body 1. The operating arm 2 is pivotally connected to the rear end of the main body 1 by a pivot shaft 22 and positioned above the second pair of wheels 12. The front end of the main body 1, which is away from the operating arm 2, includes an elongated handle 13. In the illustrated embodiment the elongated handle 13 is substantially cylinder-shaped and includes an axis Z2 along the longitude direction. The operating arm 2 includes a cylindrical gripping portion 23 and can be folded to a folded position, and the cylindrical gripping portion 23 includes an axial central line Z1.


When the operating arm is at the folded position and the first pair of wheels 11 and the second pair of wheels 12 both contact the horizontal surface F, if the gripping portion 23 is above the handle 13, the distance d1 in the vertical direction between the axial central line Z1 and the axis Z2 along the longitude direction is greater than the sum of the radius of the gripping portion 23 and the radius of the cylinder-shaped handle 13, and the distance d1 is less than 5 cm. For example, the diameters of the gripping portion 23 and the cylinder-shaped handle 13 are both 1.5 cm, then the distance d1 is at least greater than 1.5 cm. Preferably, the distance d1 is 3 cm, and a distance d2 in the horizontal direction between the axial central line Z1 and the axis Z2 is also less than 5 cm, and in the illustrated embodiment, the distance d2 is preferably 0.5 cm. Therefore, when the operating arm 2 is at the folded position, the user can grip both the gripping portion 23 and the cylinder-shaped handle 13 conveniently.


Additionally, in an alternative embodiment, to allow the user to grip both the gripping portion 23 and the cylinder-shaped handle 13 more conveniently, the internal profile of the gripping portion 23 is mated with the external profile of the cylinder-shaped handle 13, such that when the operation arm 2 is at the folded position, the outer surface of the gripping portion 23 and the cylinder-shaped handle 13 contact with each other. At this time, the gripping portion 23 and the cylinder-shaped handle 13 can lie in a horizontal plane, the distance d2 in the horizontal direction between the axial central line Z1 and the axis Z2 is larger than the sum of the radius of the gripping portion 23 and the radius of the cylinder-shaped handle 13, and the distance d1 is zero. It should be noted that the external profile of the gripping portion 23 may be designed to mate with the internal profile of the cylinder-shaped handle 13.


To allow the user to grip both the gripping portion 23 and the cylinder-shaped handle 13 more stably, a clip K is disposed on the handle 13. When the operation arm is at the folded position, the clip K is engaged with the cylindrical gripping portion 23.


Further, in the illustrated embodiment, the operating arm 2 is extendable, and a safety switch assembly 240 is disposed in the operating arm 2, the operating arm 2 includes an inner pipe 25 and an outer pipe 21, the outer pipe 21 is rotatably connected to the rear end of the main body 1 by the pivot shaft 22, and the end of the outer pipe 21 includes a pipe sleeve 24.


Referring to FIG. 3, the safety switch assembly 240 is disposed in the sleeve pipe 24 and a safety shift structure 25a is disposed in the inner pipe 25. The safety switch assembly 240 includes a safety switch 241 and a trigger assembly 242 configured to trigger the safety switch 241 when the safety shift structure 25a of the inner pipe 25 is disengaged from a safety location and reset the safety switch 241 when the safety shift structure 25a returns to the safety location. The safety switch 241 is electrically connected to a control circuit for controlling the motor in the main body 1.


In the embodiment, the trigger assembly 242 is a contacting spring sheet. One end of the trigger assembly 242 is connected to the safety switch 241 and the other end is a free end. When the inner pipe 25 slides, the wall of the inner pipe 25 presses the trigger assembly 242 to trigger the safety switch 241. The trigger assembly 242 is formed with elasticity. When the inner pipe 25 slides, the safety shift structure 25a moves back to the safe position and, at this time, the safety shift structure 25a is within a receiving groove configured to accommodate the trigger assembly 242, and the trigger assembly 242 is out of outer force and will not trigger the safety switch 241.


When the inner pipe 25 is retracted into the outer pipe 21, the safety shift structure 25a leaves the safe position and the wall of the inner pipe 25 presses the trigger assembly 242 to trigger the safety switch. At this time, even during the transporting process, if the user operates the operating switch by mistake, the motor cannot be started, which can reduce the possibility of danger happening to the user.


Additionally, referring to FIG. 2 again, when the lawnmower is at the using position, the first pair wheels 11 and the second pair wheels 12 are supported on the supporting surface F. If light is shining from a direction perpendicular to the supporting surface F, the main body 1 of the lawnmower projects a first orthographic projection on the supporting surface F. Referring to FIG. 4, the lawnmower is at the storage position. When the lawnmower is stored, the lawnmower stands uprightly for storing in a storage room and the operating arm 2 is folded and only the second wheels 2 are supported on the supporting surface F. For improving stability, a supporting portion 26 is disposed on the main body 1 for supporting on the supporting surface F, and the supporting portion can be integrated with or separated from the main body 1. In the same way, at this time if light is shining from a direction perpendicular to the supporting surface F, the main body 1 of the lawnmower projects a second orthographic projection on the supporting surface F. Since the width of the lawnmower at the using position is the same as that of the lawnmower at the storage position, and the distance D1 between the first pair wheels 11 and the second pair wheels 12 is larger than the distance D2 between the first pair of wheels 11 and the supporting portion 26, the first orthographic projection area of the lawnmower at the using position is larger than the second orthographic projection area of the lawnmower at the storage position.


Referring to FIG. 5, when the lawnmower is changed from the using position to the obliquely pulled position, only the second pair wheels 12 contact the supporting surface and the hands of the user grip a pull portion which is preferably the cylindrical gripping portion 23. At this time, the operating arm 2 is at the folded position, the distance of the gripping portion 23 relative to the supporting surface F is H; the distance of the gripping portion 23 relative to the point the second pair wheels 12 contacting the supporting surface F is L, and the ratio of H to L may be 0.5˜1, preferably 0.8˜0.9, for meeting the needs of ergonomics. Therefore, when pulling the lawnmower, only part of the weight of the lawnmower is supported by the user, which makes the user feel more labor-saving.


From the above, the described lawncare apparatus can be pulled obliquely, and because of the structure mate relationship between the operating arm and the cylindrical gripping portion, the user can feel more comfortable during transporting and the pulling process is more stable, so that the volume of the lawncare apparatus during transporting is reduced and the operability of lawnmower pulling is improved. Since a safety switch mechanism is disposed on the operating arm, misoperation of the lawncare apparatus can be avoided and safety of pulling is improved.


The general principle, primary features and advantages of the invention have been illustrated and described above. Those skilled in the art will appreciate that the foregoing embodiments are not intended to limit the invention in any form and technical implementations derived with equal substitutions or equivalent variations shall be considered as falling within the scope of the claimed invention.

Claims
  • 1. An apparatus, comprising: a main body;a plurality of wheels supporting the main body;a functional accessory coupled to the main body;a motor supported by the main body and drivingly coupled to the functional accessory;a control circuit electrically coupled to the motor for controlling operation of the motor;an operating arm connected to the main body, the operating arm comprising a first member and a second member telescopically coupled with the first member, wherein the first member will slidably move relative to the second member and in a direction towards the main body in response to the operating arm being subjected to a first force that is in the direction that is towards the main body; anda safety assembly operably coupled to the operating arm to detect relative movement between the first member and the second member and comprising a switch coupled to the control circuit for triggering the control circuit to cause the control circuit to disable operation of the motor when the first member is slidably moved towards the main body from a predetermined position relative to the second member and to reset the switch for triggering the control circuit to cause the control circuit to enable operation of the motor when the first member is slidably moved away from the main body to the predetermined position relative to the second member.
  • 2. The apparatus as recited in claim 1, wherein the safety assembly comprises a moveable element that is biased towards the first member and wherein the moveable element provides a second force upon the first member to inhibit the first member from being slidably moved towards the main body from the predetermined position relative to the second member.
  • 3. The apparatus as recited in claim 2, wherein the moveable element is rotatably moveable.
  • 4. The apparatus as recited in claim 2, wherein the moveable element comprises a rounded end that engages with the first member.
  • 5. The apparatus as recited in claim 1, wherein the safety assembly is mounted to the second member.
  • 6. The apparatus as recited in claim 1, wherein the first member has a first surface portion and a second surface portion, wherein the second surface portion is radially closer to a longitudinal axis of the first member than the first surface portion, and wherein the first surface portion defines the predetermined position relative to the second member.
  • 7. The apparatus as recited in claim 6, wherein the first member has an angled surface that provides a transition from the second surface portion to the first surface portion.
  • 8. The apparatus as recited in claim 1, wherein the safety assembly continues to cause the control circuit to disable operation of the motor when the first member is moved from the predetermined position relative to the second member in a direction that is towards the main body.
  • 9. The apparatus as recited in claim 1, wherein the safety assembly is electrically connected to the control circuit.
  • 10. The apparatus as recited in claim 1, wherein the first member comprises a pipe.
  • 11. The apparatus as recited in claim 10, wherein the second member comprises a pipe.
  • 12. The apparatus as recited in claim 11, wherein the first member is disposed at least partially within the second member.
  • 13. The apparatus as recited in claim 1, wherein the second member is rotatably attached to the main body.
  • 14. The apparatus as recited in claim 1, wherein the functional accessory is a cutting blade.
Priority Claims (2)
Number Date Country Kind
201210387914.9 Oct 2012 CN national
201220602040.X May 2013 CN national
RELATED APPLICATION INFORMATION

This application claims the benefit of and is a continuation of U.S. application Ser. No. 15/238,276, filed Aug. 16, 2016, now U.S. Pat. No. 10,524,420, which is a continuation of U.S. application Ser. No. 14/048,158, filed Oct. 8, 2013, now U.S. Pat. No. 9,888,627, which application claims the benefit of CN 201210387914.9, filed on Oct. 15, 2012, and CN 201220602040.X, filed on May 3, 2013, the disclosures of which are each incorporated herein by reference in their entirety.

US Referenced Citations (128)
Number Name Date Kind
1899564 Frey Feb 1933 A
D158847 Flanigan Jun 1950 S
2702448 Smith Feb 1955 A
2727753 Johnson et al. Dec 1955 A
2867960 Stiles Jan 1959 A
3038737 Lill Jun 1962 A
3142950 West Aug 1964 A
3209887 Feldstein Oct 1965 A
3230695 West Jan 1966 A
3253391 Meldahl May 1966 A
3357716 Musichuk Dec 1967 A
3423103 Maltarp Jan 1969 A
3462924 Erickson et al. Aug 1969 A
3485017 Beares et al. Dec 1969 A
3527469 Gobin Sep 1970 A
3534432 Davies et al. Oct 1970 A
3603065 Weber Sep 1971 A
3659170 Burkett Apr 1972 A
3702016 Keesee Nov 1972 A
3750378 Thorud Aug 1973 A
3809837 Yoshioka May 1974 A
3816873 Thorud et al. Jun 1974 A
3823291 Milcoy Jul 1974 A
3855763 Seifert Dec 1974 A
3942604 Black, III Mar 1976 A
3982082 Thorud et al. Sep 1976 A
4003190 Braun Jan 1977 A
4043102 Uhlinger Aug 1977 A
4044532 Lessig, III Aug 1977 A
4161639 Nofel Jul 1979 A
4167221 Edmonson et al. Sep 1979 A
4181333 Stelma Jan 1980 A
4221108 Owens Sep 1980 A
3029887 Schantz Apr 1982 A
4362228 Plamper et al. Dec 1982 A
4363206 Schmitt Dec 1982 A
4394893 Kronich Jul 1983 A
4413466 Beugelsdyk et al. Nov 1983 A
4428180 Carlson Jan 1984 A
4432191 Schmitt Feb 1984 A
4476643 Hilchey et al. Oct 1984 A
4503958 Nishio Mar 1985 A
4573307 Wick Mar 1986 A
4659884 Wollenhaupt Apr 1987 A
4753062 Roelle Jun 1988 A
4833935 Roelle May 1989 A
4850182 Barnard et al. Jul 1989 A
4870811 Steele Oct 1989 A
4882897 Oshima et al. Nov 1989 A
4899446 Akiba Feb 1990 A
4932622 Hayakawa Jun 1990 A
4936160 Barnard et al. Jun 1990 A
4981011 Olejak Jan 1991 A
5020308 Braun et al. Jun 1991 A
5138824 Oshima Aug 1992 A
5163275 Hare et al. Nov 1992 A
5203147 Long Apr 1993 A
5209051 Langdon May 1993 A
5261215 Hartz et al. Nov 1993 A
5558210 Jonischus Sep 1996 A
5606851 Bruener et al. Mar 1997 A
5636504 Kaley et al. Jun 1997 A
5784868 Wadzinski et al. Jul 1998 A
5806374 Mizutani et al. Sep 1998 A
6006434 Templeton et al. Dec 1999 A
6078015 Martinez Jun 2000 A
6082083 Stalpes et al. Jul 2000 A
6095294 McGourthy, Sr. et al. Aug 2000 A
6220005 Plamper et al. Apr 2001 B1
6293349 Marshall Sep 2001 B1
6404078 Thomas Jun 2002 B1
6644002 Trefz Nov 2003 B2
6658829 Kobayashi et al. Dec 2003 B2
6698173 Joseph Mar 2004 B2
6708473 Nicolay et al. Mar 2004 B2
6737598 Allen May 2004 B1
6751936 Kucera et al. Jun 2004 B2
6796392 Kobayashi et al. Sep 2004 B2
7178322 Osborne Feb 2007 B2
7179200 Wu Feb 2007 B1
7263818 Osborne Sep 2007 B2
7293397 Osborne Nov 2007 B2
7543430 Kaskawitz et al. Jun 2009 B2
7591126 Cox Sep 2009 B2
7707812 Cheung May 2010 B2
7712292 Stover et al. May 2010 B2
7762049 Eaton et al. Jul 2010 B2
8098036 Matsunaga Jan 2012 B2
8193464 Ahn Jun 2012 B2
8316510 Anraku Nov 2012 B2
8359821 Park Jan 2013 B2
8713761 Grewe et al. May 2014 B2
8925293 Mikula et al. Jan 2015 B2
9060463 Yamaoka et al. Jun 2015 B2
9218924 Coussins et al. Dec 2015 B2
9462747 Schmalz Oct 2016 B2
9491907 Edholm et al. Nov 2016 B2
9596806 Yamaoka et al. Mar 2017 B2
9648805 Nie et al. May 2017 B2
9651138 Helin et al. May 2017 B2
9826686 Yamaoka et al. Nov 2017 B2
9847186 Wadzinski Dec 2017 B2
9888627 Yamaoka et al. Feb 2018 B2
9986686 Yamaoka et al. Jun 2018 B2
10070588 Yamaoka et al. Sep 2018 B2
10123478 Shaffer et al. Nov 2018 B2
10477772 Yamaoka et al. Nov 2019 B2
10485169 Yamaoka et al. Nov 2019 B2
10485176 Yamaoka et al. Nov 2019 B2
10492365 Yamaoka et al. Dec 2019 B2
10524420 Yamaoka et al. Jan 2020 B2
20060075732 Nottingham Apr 2006 A1
20060096135 Schaffer et al. May 2006 A1
20090217636 Loxterkamp Sep 2009 A1
20090293655 Tseng et al. Dec 2009 A1
20100162674 Eaton Jul 2010 A1
20110088362 Rosa et al. Apr 2011 A1
20110126502 Pitman et al. Jun 2011 A1
20110302895 Park Dec 2011 A1
20120317821 Tsuchiya Dec 2012 A1
20120317948 Abe et al. Dec 2012 A1
20130111866 Schmalz May 2013 A1
20130212996 Shao et al. Aug 2013 A1
20140102063 Yamaoka Apr 2014 A1
20140190141 Edholm Jul 2014 A1
20140196425 Lewis Jul 2014 A1
20140331809 Mikula Nov 2014 A1
20180228089 Yamaoka et al. Aug 2018 A1
Foreign Referenced Citations (43)
Number Date Country
1299582 Jun 2001 CN
200953749 Sep 2006 CN
201146132 Nov 2008 CN
101516178 Aug 2009 CN
201345826 Nov 2009 CN
101897261 Dec 2010 CN
201821663 May 2011 CN
201821663 May 2011 CN
202019551 Nov 2011 CN
102523817 Jul 2012 CN
102683052 Sep 2012 CN
202455826 Oct 2012 CN
102845186 Jan 2013 CN
202873363 Apr 2013 CN
3827926 Feb 1990 DE
102004020985 Nov 2005 DE
0047416 Mar 1982 EP
0822346 Apr 1998 EP
0903074 Mar 1999 EP
1543711 Jun 2005 EP
1543711 Jun 2005 EP
24245700 Mar 2012 EP
2622953 Aug 2013 EP
3381259 Oct 2018 EP
2768300 Mar 1999 FR
2780375 Dec 1999 FR
2386813 Jan 2003 GB
2386813 Oct 2003 GB
H0530835 Feb 1993 JP
H0584102 Nov 1993 JP
H05284834 Nov 1993 JP
2003130017 May 2003 JP
2009034000 Feb 2009 JP
2009268437 Nov 2009 JP
2011072211 Apr 2011 JP
2013063052 Apr 2013 JP
2013066401 Apr 2013 JP
2013153753 Aug 2013 JP
2013165676 Aug 2013 JP
2013247888 Dec 2013 JP
2008026550 Mar 2008 WO
20120115543 Aug 2012 WO
20130122266 Aug 2013 WO
Non-Patent Literature Citations (58)
Entry
One World's Initial Invalidity Contentions, Case No. 19-1293-LPS (49 pages).
One World's Initial Invalidity Contentions Exhibits A-1-A-2 463 Chart, Case No. 19-1923-LPS (19 pages).
One World's Initial Invalidity Contentions Exhibits B-1-B-6 806 Chart, Case No. 19-1923-LPS (72 pages).
One World's Initial Invalidity Contentions Exhibits C-1-C-2 686 Chart, Case No. 19-1923-LPS (37 pages).
One World's Initial Invalidity Contentions Exhibit D-1 686 Chart, Case No. 19-1923-LPS (35 pages).
One World's Initial Invalidity Contentions Exhibits E-1-E-4 588 Chart, Case No. 19-1923-LPS (124 pages).
One World's Initial Invalidity Contentions Exhibits F-1-F-2 805 Chart, Case No. 19-1923-LPS (37 pages).
One World's Initial Invalidity Contentions Exhibits G-1-G-3 772 Chart, Case No. 19-1923-LPS (69 pages).
One World's Initial Invalidity Contentions Exhibits H-1-H-2 176 Chart, Case No. 19-1923-LPS (78 pages).
One World's Initial Invalidity Contentions Exhibit I-1 420 Chart, Case No. 19-1923-LPS (19 pages).
ANSI B.71.1-2012.
Black and Decker CM2040 electric lawn mower (56 pages) undated.
Cub Cadet CC 500 BAT electric lawn mower (50 pages) undated.
Earthwise CST00012 electric string trimmer (12 pages) undated.
Greenworks 21052 electric string trimmer (29 pages) undated.
Greenworks 21212 electric string trimmer (26 pages) undated.
Homelite UT41110 electric trimmer (16 pages) undated.
Neuton CE6 electric lawn mower (74 pages) undated.
Recharge Ultralite PMLI-14 electric lawn mower (25 pages) undated.
Ryobi RY14110 electric lawn mower (63 pages) undated.
Ryobi RY40100 electric lawn mower (80 pages) undated.
Sun Joe SB600E electric trimmer (15 pages) undated.
Toro e-Cycler 20360 electic lawn mower (12 pages) undated.
Worx WG789 electric lawn mower (58 pages) undated.
Case IPR2020-0083—U.S. Pat. No. 9,060,463—Petition for Inter Partes Review filed May 1, 2020.
Case IPR2020-00884—U.S. Pat. No. 9,596,806—Petition for Inter Partes Review filed May 1, 2020.
Case IPR2020-0085—U.S. Pat. No. 9,648,805—Petition for Inter Partes Review filed May 1, 2020.
Case IPR2020-0086—U.S. Pat. No. 9,826,686—Petition for Inter Partes Review filed May 1, 2020.
Case IPR2020-00887—U.S. Pat. No. 9,986,686—Petition for Inter Partes Review filed May 1, 2020.
Case IPR2020-00888—U.S. Pat. No. 10,070,588—Petition for Inter Partes Review filed May 1, 2020.
Case PGR2020-00059—Petition for Post-Grant Review of U.S. Pat. No. 10,477,772 filed May 1, 2020.
Case PGR2020-00060—Petition for Post-Grant Review of U.S. Pat. No. 10,485,176 filed May 1, 2020.
Case PGR2020-00061—Petition for Post-Grant Review of U.S. Pat. No. 10,524,420 filed May 1, 2020.
16 CFR part 1205 (2012).
ANSI/OPEI B71.1-2012; “American National Standard for Consumer Turf Care Equipment—Pedestrian-Controlled Mowers and Ride-On Mowers.—Safety Specifications”.
American National Standards Institute, Inc.; Apr. 23, 2012, 118 pages.
Canadian Intellectual Property Office, Office Action and Examination Search Report issued on CA Appl. No. 2,829,898, dated Jan. 27, 2015, 4 pgs.
United States Patent and Trademark Office, Office Action issued on U.S. Appl. No. 14/048,158, Notification dated May 1, 2017, 29 pgs.
United States Patent and Trademark Office, Non-Final Office Action issued on U.S. Appl. No. 15/250,476, Notification dated Oct. 13, 2017, 17 pgs.
United States Patent and Trademark Office, Non-Final Office Action issued on U.S. Appl. No. 15/250,516, Notification dated Oct. 13, 2017, 16 pgs.
United States Patent and Trademark Office, Final Office Action issued on U.S. Appl. No. 15/250,476, dated Mar. 1, 2018, 11 pgs.
United States Patent and Trademark Office, Office Action issued on U.S. Appl. No. 15/238,276, Notification dated Feb. 26, 2019, 9 pgs.
United States Patent and Trademark Office, Non-Final Office Action issued on U.S. Appl. No. 15/373,840, Notification dated Apr. 19, 2019, 14 pgs.
United States Patent and Trademark Office, Non-Final Office Action issued on U.S. Appl. No. 15/373,798, Notification dated Apr. 29, 2019, 21 pgs.
United States Patent and Trademark Office, Non-Final Office Action issued on U.S. Appl. No. 15/910,282, Notification dated Jul. 30, 2019, 6 pgs.
United States Patent and Trademark Office, Office Action issued on U.S. Appl. No. 16/406,337, Notification dated Jul. 30, 2019, 8 pgs.
United States Patent and Trademark Office, Final Office Action issued on U.S. Appl. No. 15/238,276, Notification dated Aug. 2, 2019, 7 pgs.
Decision dated Nov. 6, 2020 for IPR2020-00883, 24 pages.
Decision dated Nov. 6, 2020 for IPR2020-00884, 62 pages.
Decision dated Nov. 6, 2020 for IPR2020-00885, 43 pages.
Decision dated Nov. 6, 2020 for IPR2020-00886, 62 pages.
Decision dated Nov. 6, 2020 for IPR2020-00887, 55 pages.
Decision dated Nov. 6, 2020 for IPR2020-00888, 74 pages.
Decision dated Dec. 7, 2020 for PGR2020-00059, 48 pages.
Decision dated Dec. 7, 2020 for PGR2020-00060, 57 pages.
Decision dated Dec. 7, 2020 for PGR2020-00061, 19 pages.
U.S. Patent and Trademark Office, Non-Final Office Action issued in U.S. Appl. No. 17/209,722, dated Jun. 25, 2021, 12 pgs.
ANSI/OPEI B71.1.-2012; “American National Standard for Consumer Turf Care Equipment—Pedestrian-Controlled Mowers and Ride-On Mowers—Safety Specifications”; American National Standards Institute, Inc.: Apr. 23, 2012, 118 pages.
Related Publications (1)
Number Date Country
20200120867 A1 Apr 2020 US
Continuations (2)
Number Date Country
Parent 15238276 Aug 2016 US
Child 16722589 US
Parent 14048158 Oct 2013 US
Child 15238276 US