IP Library Granted Patent US 10,828,212
Granted Patent B2
US 10,828,212 · App. 16/790,855 · Granted Nov 10, 2020

Elevated height wheelchair

Inventors: James P. Mulhern (Nanticoke, PA); Stephen J. Antonishak (Nanticoke, PA)
Assignee: Pride Mobility Products Corporation
A61G5/06A61G5/04A61G5/042A61G5/104A61G5/1059A61G5/1078A61G5/1089A61G5/122A61G5/125A61G5/127A61G5/128B60K31/02A61G2203/10A61G2203/14A61G2203/42A61G2203/70B60K2031/0091
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,828,212
App. No.
16/790,855
Granted
Nov 10, 2020
Kind
B2
Abstract

Embodiments of the present disclosure include a wheelchair configured to reposition an occupant between a lowered and a raised position. The wheelchair can include a frame, a seat moveable relative to the frame, a drive wheel, and one or more pairs of arm assemblies. The arm assembly includes a wheel configured to move from a first spatial location when the wheel chair is operating on flat, level ground to a second spatial location that is different than the first spatial location. Arm limiters can selectively engage the arm assembly based on at least one of a seat position, position of the arm assembly and surface conditions of ground surface. The arm limiters can limit the range of motion of the arm assembly and sometimes other operational aspects of the chair.

Claims (38)

1. A powered wheelchair comprising:

a frame;

a lift mechanism coupled to the frame;

a seat coupled to the lift mechanism, the lift mechanism configured to move the seat from a lowered position to a raised position;

a pair of drive wheels;

at least one drive coupled to the frame and configured to apply a torque to at least one of the drive wheels;

an arm assembly including an arm member pivotably coupled to the frame and a wheel rotatably coupled to the arm member, the arm member configured to be in a first position relative to the frame when the wheelchair is operating on flat ground; and

an arm limiter supported by the frame and configured to move linearly relative to the frame from a first configuration, whereby the arm member is capable of pivoting from the first position relative to the frame through a first range of rotation that is uninhibited by the arm limiter, to a second configuration, whereby the arm member is capable of pivoting from the first position relative to the frame through a second range of rotation that is inhibited by the arm limiter, wherein the second range of rotation is smaller than the first range of rotation.

2. The powered wheelchair of claim 1 , wherein the arm assembly further comprises a stop member disposed at a stop member position along the arm member, wherein the stop member is engageable by the arm limiter.

3. The powered wheelchair of claim 2 , wherein the arm limiter abuts the stop member when the arm limiter is in the second configuration.

4. The powered wheelchair of claim 2 , wherein the arm member pivots about a pivot axis at a proximal end of the arm member and the wheel is rotatably coupled to a distal end of the arm member.

5. The powered wheelchair of claim 4 , wherein the stop member position is closer to the pivot axis than to the distal end of the arm member.

6. The powered wheelchair of claim 2 , wherein the stop member comprises a projection from the arm member.

7. The powered wheelchair of claim 6 , further comprising:

a reference plane co-planar with a planar ground surface supporting the pair of drive wheels,

wherein the stop member further comprises an upward facing engagement surface relative to the reference plane that is configured to engage the arm limiter when the arm limiter is in the second configuration.

8. The powered wheelchair of claim 6 , further comprising:

a reference plane coplanar with a planar ground surface supporting the pair of drive wheels,

wherein the stop member further comprises a rearward facing engagement surface relative to the reference plane that is configured to engage the arm limiter when the arm limiter is in the second configuration.

9. The powered wheelchair of claim 2 , wherein the stop member further comprises a curved surface.

10. The power wheelchair of claim 1 , further comprising a linkage assembly that operatively connects the lift mechanism to the arm limiter such that as the seat moves between the lowered and raised positions, the linkage assembly causes the arm limiter to move between the first and second configurations.

11. The powered wheelchair of claim 1 , wherein the arm assembly is a forward arm assembly.

12. The powered wheelchair of claim 1 , wherein the arm assembly is a rearward arm assembly.

13. The powered wheelchair of claim 1 , wherein the arm limiter is prevented from moving into the second configuration when the arm member has rotated from the first position relative to the frame to a second position relative to the frame.

14. The power wheelchair of claim 1 , further comprising:

a reference plane co-planar with a planar ground surface supporting the pair of drive wheels,

wherein the arm limiter is prevented from moving into the second configuration when the front wheel is elevated by a threshold distance above the reference plane.

15. The power wheelchair of claim 1 , further comprising:

a controller configured, in response to input from an input device, to power the at least one drive such as the wheelchair moves at a lowered-seat drive speed that is between 0.0 mph and 10.0 mph when the seat is in the lowered position.

16. The power wheelchair of claim 1 , further comprising:

a controller configured, in response to input from an input device, to operate the wheelchair in an elevated motion mode to (i) power the at least one drive such that the wheelchair is capable of moving at a maximum raised-seat drive speed when the seat is in the raised position and the arm limiter assembly is in the second configuration, and (ii) power the at least one drive such that the wheelchair is capable of moving at a maximum raised-inhibited drive speed that is less than the maximum raised-seat drive speed when the seat is in the raised position and the arm limiter assembly is in the first configuration.

17. The powered wheelchair of claim 1 , further comprising an inclination sensor that is configured to determine whether the frame is in a level position with respect to the horizontal or an unleveled position with respect to the horizontal.

18. The powered wheelchair of claim 17 , further comprising:

a controller configured, in response to input from an input device, to power the at least one drive such that the wheelchair moves at a raised-seat drive speed that is between 0.0 mph and 5.0 mph when the seat is in the raised position and the frame is in the level position.

19. The powered wheelchair of claim 18 , wherein the controller is further configured, in response to input from the input device, to automatically power the at least one drive to reduce the raised-seat drive speed to a raised-inhibited drive speed that is no more than 3.0 mph when the seat is in the raised position and the frame is in the unlevel position.

20. The powered wheelchair of claim 17 , further comprising:

a controller configured to move the arm limiter from the first configuration to the second configuration in response to the frame moving from the level position to the unlevel position.

21. The powered wheelchair of claim 1 , wherein the arm limiter does not restrict downward rotation of the arm member.

Assignments (2)
SECURITY INTEREST Recorded Apr 18, 2022
From: PRIDE MOBILITY PRODUCT CORPORATION
To: M&T BANK
Reel/Frame 059724/0582 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2020
From: MULHERN, JAMES P.; ANTONISHAK, STEPHEN J.
To: PRIDE MOBILITY PRODUCTS CORPORATION
Reel/Frame 051869/0157 →
Continuity (7)
Continuation 16664439 · Oct 25, 2019
Continuation 15804510 · Nov 6, 2017
Continuation 15132148 · Apr 18, 2016
Continuation 14572559 · Dec 16, 2014
Provisional Application 61938880 · Feb 12, 2014
Provisional Application 61916500 · Dec 16, 2013
Related Publication 20200179194A1 · Jun 11, 2020
Cited By (1)
US 12,409,085