IP Library Granted Patent US 10,021,992
Granted Patent B2
US 10,021,992 · App. 15/278,404 · Granted Jul 17, 2018

Power adjustment and safety systems for power motion furniture

Inventors: Tyler Mesko (Germantown, WI); Richard M. Weeden (Germantown, WI); Douglas A. Dorn (Germantown, WI)
Assignee: Raffel Systems, LLC
A47C31/00A47C7/506A47C7/563
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Quick Facts
Patent No.
US 10,021,992
App. No.
15/278,404
Granted
Jul 17, 2018
Kind
B2
Abstract

The present invention relates to safety mats for power motion furniture, power motion furniture systems comprising electronic architecture including the safety mats, and methods of using the same. In particular, the present invention provides object sensing safety mats for use with power motion furniture wherein the safety mats sense obstructions of movement between an extended or raised configuration of the power motion furniture and prevents movement or return of the extended or raised configuration when an obstruction is detected.

Claims (43)

1. A power motion furniture apparatus comprising:

a) a chair comprising:

a seat portion;

a backrest portion;

a base upon which the seat portion and the backrest portion are connected; and

a frame configured to pivotally support the base from a floor, such that the frame and the base interdependently define the height and tilt angle of the seat and backrest portions from the floor; and

b) a powered adjustment system configured to move the chair base from a seating position whereby the chair base rests upon the chair frame into a raised forward tilting position whereby the chair seat and chair backrest are in a raised and forward tilting position and a space exists between the chair base and the chair frame, wherein the powered adjustment system comprises:

an actuator;

an electronic actuator controller that controls operation of the actuator;

an electronic floor sensor mat controller, wherein the electronic floor sensor mat controller is electronically connected in-line between the electronic actuator controller and the actuator; and

a floor sensor mat, wherein the floor sensor mat is independent of the chair frame and chair base, takes the shape of the empty space therebetween, is exposed when the chair base is in a forward tilting position, and is electronically connected to the electronic floor sensor mat controller;

wherein the electronic actuator controller is communicatively coupled to the actuator and electronic floor sensor mat controller and selectively controls operation of the actuator when the floor sensor mat controller identifies the presence of an object on the floor sensor mat, wherein selectively controls operation comprises preventing lowering of the chair base from a raised forward tilting position into a seating position.

2. The power motion furniture apparatus of claim 1 , wherein selectively controls operation further comprises, subsequent to preventing lowering of the chair base from a raised forward tilting position into a seating position, raising of the chair base from the raised forward tilting position into a higher raised forward tilting position.

3. The power motion furniture apparatus of claim 1 , wherein the electronic floor sensor mat controller employs software that identifies if an object is present on the floor sensing mat.

4. The power motion furniture apparatus of claim 3 , wherein the software employed by the floor sensor mat controller actively monitors the status of a material within the floor sensor mat.

5. The power motion furniture apparatus of claim 4 , wherein the software identifies a change in the status of the material as the presence of an object on the mat.

6. The power motion furniture apparatus of claim 5 , wherein a change in the status of the material is an electrical change.

7. The power motion furniture apparatus of claim 5 , wherein a change in the status of the material is a change in strain, pressure, deflection, or a combination thereof.

8. The power motion furniture apparatus of claim 1 , wherein the actuator controller prevents the base from being lowered until the floor sensor mat controller no longer identifies the presence of the object on the floor sensor mat.

9. The power motion furniture apparatus of claim 1 , wherein the chair further comprises:

(c) a powered leg rest component extendably connected to the chair base, wherein the leg rest component comprises:

a leg rest section and a footrest section, both leg rest and footrest sections having a top surface upon which the legs and feet of an occupant of the chair can rest and a bottom surface, whereby when the leg rest component is in a stowed position the bottom surface of the leg rest and footrest sections are nearly perpendicular to, and below, the chair seat portion; and

a footrest sensor mat located upon the bottom surface of the footrest section of the leg rest component.

10. The power motion furniture apparatus of claim 9 , wherein the actuator powers the leg rest component to extend or retract between the stowed position and a fully extended position.

11. The power motion furniture apparatus of claim 9 , wherein the footrest sensor mat is electronically connected to the electronic floor sensor mat controller.

12. The power motion furniture apparatus of claim 9 , wherein the electronic actuator controller selectively controls actuation of the leg rest component when the floor sensor mat controller identifies the presence of an object in contact with the footrest sensor mat, wherein selectively controls actuation of the leg rest component comprises preventing retraction of the leg rest component from an extended position into a stowed position.

13. The power motion furniture apparatus of claim 12 , wherein selectively controls actuation of the leg rest component overrides input signals from a user control or switch of the power motion furniture.

14. The power motion furniture apparatus of claim 9 , wherein the actuator controller prevents the leg rest component from retracting until the floor sensor mat controller no longer identifies the presence of the object in contact with the footrest sensor mat.

15. A powered adjustment system for a lift chair comprising:

an actuator;

an electronic actuator controller that controls operation of the actuator;

an electronic floor sensor mat controller, wherein the electronic floor sensor mat controller is electronically connected in-line between the electronic actuator controller and the actuator; and

a floor sensor mat, wherein the floor sensor mat:

is independent of the chair;

takes the shape of empty space beneath the lift chair;

is exposed when the lift chair is in a raised, forward tilting position; and

is electronically connected to the electronic floor sensor mat controller;

wherein the electronic actuator controller is communicatively coupled to the actuator and electronic floor sensor mat controller and selectively controls operation of the actuator when the floor sensor mat controller identifies the presence of an object on the floor sensor mat, wherein selectively controls operation comprises preventing lowering of the lift chair from a raised forward tilting position into a seating position.

16. The powered adjustment system for a lift chair of claim 15 , further comprising a footrest sensor mat located upon the bottom surface of a footrest component of the lift chair.

17. The powered adjustment system for a lift chair of claim 16 , wherein the electronic floor sensor mat controller employs software that identifies if an object is present on the floor sensing mat and/or is in contact with the footrest sensor mat via actively monitoring the status of a material within the floor sensor mat and/or footrest sensor mat.

18. The powered adjustment system for a lift chair of claim 17 , wherein the software identifies a change in the status of the material as the presence of an object on the floor sensor mat and/or in contact with footrest sensor mat.

19. The powered adjustment system for a lift chair of claim 18 , wherein a change in the status of the material is an electrical change.

20. The powered adjustment system for a lift chair of claim 18 , wherein a change in the status of the material is a change in strain, pressure, deflection, or a combination thereof.

Assignments (7)
SECURITY INTEREST Recorded May 14, 2024
From: RAFFEL SYSTEMS, LLC; MICRO-AIR, LLC; MA IMT HOLD CO, LLC; CHECK TECHNOLOGY SOLUTIONS LLC; INNOVATIVE MOTION TECHNOLOGIES, LLC
To: CIBC BANK USA, AS AGENT
Reel/Frame 067410/0134 →
RELEASE OF SECURITY INTEREST Recorded Jun 13, 2022
From: EAST WEST BANK
To: RAFFEL SYSTEMS, LLC.
Reel/Frame 060346/0177 →
SECURITY INTEREST Recorded Dec 15, 2021
From: INNOVATIVE MOTION TECHNOLOGIES, LLC; RAFFEL SYSTEMS, LLC; MICRO-AIR, LLC
To: CIBC BANK USA, AS AGENT
Reel/Frame 058518/0348 →
RELEASE OF SECURITY INTEREST Recorded Aug 14, 2019
From: CIBC BANK USA, AS SUCCESSOR TO THE PRIVATEBANK AND TRUST COMPANY
To: RAFFEL SYSTEMS, LLC
Reel/Frame 050051/0361 →
SECURITY INTEREST Recorded Aug 13, 2019
From: RAFFEL SYSTEMS, LLC
To: EAST WEST BANK
Reel/Frame 050040/0962 →
SECURITY INTEREST Recorded Dec 12, 2016
From: RAFFEL SYSTEMS, LLC
To: THE PRIVATEBANK AND TRUST COMPANY
Reel/Frame 040883/0956 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2016
From: MESKO, TYLER; WEEDEN, RICHARD M.; DORN, DOUGLAS A.
To: RAFFEL SYSTEMS, LLC
Reel/Frame 039961/0262 →
Continuity (1)
Related Publication 20180084922A1 · Mar 29, 2018