IP Library Granted Patent US 11,963,910
Granted Patent B2
US 11,963,910 · App. 17/955,936 · Granted Apr 23, 2024

System and method of braking for a patient support apparatus

Inventors: William Dwight Childs (Plainwell, MI); Anish Paul (Portage, MI)
Assignee: Stryker Corporation
A61G1/0287A61G1/0231A61G1/0237A61G1/0275B60T1/065B60T1/08B60T7/06B60T7/102B60T7/22B60T11/046B60T2201/022F16D2125/60
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Quick Facts
Patent No.
US 11,963,910
App. No.
17/955,936
Granted
Apr 23, 2024
Kind
B2
Abstract

A patient support apparatus includes a base having a length and including a plurality of caster wheels enabling movement of the patient support apparatus across a floor surface. An auxiliary wheel support structure is secured to the base and rotatably supports at least one non-castered auxiliary wheel. A drive mechanism including a motor may be configured to drive the auxiliary wheel. A braking system including at least one brake member may be configured to apply a braking force to decelerate the auxiliary wheel and is movable between a first position wherein the at least one brake member is disengaged from the auxiliary wheel and a deployed position wherein the at least one brake member is frictionally engaged with the auxiliary wheel to restrict rotation of the auxiliary wheel. The braking system may be configured to synchronize the braking forces applied to first and second auxiliary wheels.

Claims (28)

1. A patient support apparatus comprising:

a base having a length and including a plurality of caster wheels enabling movement of the patient support apparatus across a floor surface;

first and second non-castered auxiliary wheels;

a braking system configured to apply a braking force to the first non-castered auxiliary wheel and/or the second non-castered auxiliary wheel; and

the braking system operable in a first mode to modulate the braking force to direct movement of the patient support apparatus in a non-straight path, wherein modulation of the braking force includes one auxiliary wheel of the first and second non-castered auxiliary wheels being braked at a different speed than the other auxiliary wheel of the first and second non-castered auxiliary wheels.

2. The patient support apparatus of claim 1 wherein the braking system is operable in a second mode to synchronize the braking force to brake the patient support apparatus in a substantially straight path.

3. The patient support apparatus of claim 2 comprising a control system operably coupled to the braking system, the control system configured to direct the braking system to operate in the second mode.

4. The patient support apparatus of claim 1 comprising a control system operably coupled to the braking system, the control system configured to direct the braking system to operate in the first mode.

5. The patient support apparatus of claim 4 wherein the control system is configured to direct modulation of the braking force when a user desires to steer the patient support apparatus in the non-straight path.

6. The patient support apparatus of claim 5 wherein the control system is configured to (1) synchronize the braking force when a user desires to brake the patient support apparatus in a straight path and (2) modulate the braking force wherein one auxiliary wheel of the first and second non-castered auxiliary wheels is braked at a different speed than the other auxiliary wheel of the first and second non-castered auxiliary wheels when the user desires to steer the patient support apparatus in the non-straight path.

7. The patient support apparatus of claim 4 comprising a sensor, wherein the control system selectively actuates the braking system based on input from the sensor.

8. The patient support apparatus of claim 4 comprising a handle operable by a user to push or steer the patient support apparatus and a handle sensor located at the handle, the control system configured to (1) synchronize the braking force in response to signals from the handle sensor when a user wishes to brake the patient support apparatus and (2) modulate the braking force in response to signals from the handle sensor when a user desires to steer the patient support apparatus in the non-straight path.

9. The patient support apparatus of claim 1 wherein the braking system includes at least one brake member, wherein the brake member is movable between a deployed position and a non-deployed position, and wherein the brake member brakes at least one auxiliary wheel of the first and second non-castered auxiliary wheels in the deployed position.

10. The patient support apparatus of claim 1 comprising a drive mechanism configured to drive the first and second non-castered auxiliary wheels, wherein the drive mechanism includes a motor.

11. The patient support apparatus of claim 1 wherein the braking system includes a clutch, wherein the clutch is operable to synchronize the braking force applied to the first and second non-castered auxiliary wheels.

12. A patient support apparatus comprising:

a base having a length and including a plurality of caster wheels enabling movement of the patient support apparatus across a floor surface;

first and second non-castered auxiliary wheels;

a braking system configured to apply a braking force to the first non-castered auxiliary wheel and/or the second non-castered auxiliary wheel;

said braking system operable in a first mode to control the braking force to direct movement of the patient support apparatus in a non-straight path, wherein the braking system is operable control the braking force to slow one auxiliary wheel of the first and second non-castered auxiliary wheels relative to the other auxiliary wheel of the first and second non-castered auxiliary wheels.

13. The patient support apparatus of claim 12 wherein the braking system is operable in a second mode to synchronize the braking force to brake the patient support apparatus in a substantially straight path.

14. The patient support apparatus of claim 12 comprising a control system operably coupled to the braking system, the control system configured to direct the braking system to operate in the first mode.

15. The patient support apparatus of claim 14 comprising a sensor, wherein the control system selectively actuates the braking system based on input from the sensor.

16. The patient support apparatus of claim 15 wherein the sensor detects a wheel speed of at least one of the auxiliary wheels.

17. The patient support apparatus of claim 15 the sensor detects presence of an object or person, and the control system actuating the braking system when the sensor detects the presence of the object or person to avoid a collision with the object or a person.

18. The patient support apparatus of claim 12 wherein the braking system includes at least one brake member, wherein the at least one brake member is movable between a deployed position and a non-deployed position, and wherein the brake member brakes at least one auxiliary wheel of the first and second non-castered auxiliary wheels in the deployed position.

19. The patient support apparatus of claim 12 comprising a drive mechanism configured to drive the first and second non-castered auxiliary wheels, wherein the drive mechanism includes a motor.

20. The patient support apparatus of claim 12 wherein the braking system includes a clutch, wherein the clutch is operable to synchronize the braking force applied to the first and second non-castered auxiliary wheels.

Assignments (1)
CHANGE OF ADDRESS Recorded Dec 18, 2024
From: STRYKER CORPORATION
To: STRYKER CORPORATION
Reel/Frame 069737/0184 →
Continuity (4)
Continuation 17165210 · Feb 2, 2021
Continuation 15201689 · Jul 5, 2016
Provisional Application 62196396 · Jul 24, 2015
Related Publication 20230025253A1 · Jan 26, 2023