IP Library Granted Patent US 9,814,606
Granted Patent B2
US 9,814,606 · App. 12/286,474 · Granted Nov 14, 2017

Prosthetic vacuum system

Inventors: Morris J. Danzig (Lincolnshire, IL); Donald Ray McKinney (Gurnee, IL)
A61F2/80A61F2/68A61F2/78A61F2002/5001A61F2002/6614A61F2002/701A61F2002/704A61F2002/742A61F2002/747A61F2002/768A61F2002/7635A61F2002/7655A61F2002/802A61F2002/807
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Quick Facts
Patent No.
US 9,814,606
App. No.
12/286,474
Granted
Nov 14, 2017
Kind
B2
Abstract

An improved prosthetic device with a vacuum system for maintaining a negative pressure seal between the socket and the residual limb. The vacuum system includes a vacuum surge chamber which maintains seal vacuum and increases the time between recharging a Li ion battery, allowing the battery to be recharged-up to 500 times. The system is small, lightweight, and concealable within the prosthetic device so that it neither impedes use of the device nor detracts from a cosmetically accurate limb.

Claims (23)

1. A vacuum system for maintaining a negative pressure in a cavity between a socket of a prosthetic device and a residual limb on which the prosthetic device is attached, the prosthetic device having a foot portion and a heel portion, the system comprising:

a vacuum pump assembly; and

a vacuum surge chamber having a total volume in the range of from about 1.0 to about 1.75 cubic inches and capable of being secured between the foot portion and the heel portion of the prosthetic device, the vacuum surge chamber being capable of operative connection to the prosthetic socket and to the vacuum pump assembly and maintained by the vacuum pump assembly at a negative pressure.

2. A vacuum system in accordance with claim 1 , wherein the vacuum pump assembly comprises:

a vacuum pump;

a power source for powering the vacuum pump; and

means for sensing pressure and actuating the vacuum pump.

3. A vacuum system in accordance with claim 2 , wherein the means for sensing pressure and actuating the vacuum pump comprises a pressure sensor operatively associated with one of the cavity and the surge chamber, whereby the sensor is adapted and constructed to trigger an actuation event when the negative pressure in the cavity decays to a predetermined differential from atmospheric pressure to actuate the vacuum pump to increase the negative pressure in the cavity, and to trigger an actuation event to de-activate the vacuum pump when the negative pressure in the cavity reaches a predetermined threshold.

4. The vacuum system of claim 3 , wherein the means for sensing pressure and actuating the vacuum pump comprises a circuit board for actuating the pump when the pressure sensor detects a loss of negative pressure and sends a signal to the circuit board.

5. The vacuum system of claim 2 , wherein the power source comprises a Li-ion battery.

6. A vacuum system in accordance with claim 1 , further comprising an inline filter disposed between the socket and the vacuum pump assembly.

7. A vacuum system in accordance with claim 1 , wherein the vacuum surge chamber volume is about 1.5 cubic inches.

8. A vacuum system for maintaining a negative pressure in a cavity between a socket of a prosthetic device, having a pipe forming a part thereof, and a residual limb on which the prosthetic device is attached, the system comprising:

a vacuum pump assembly; and

a vacuum surge chamber having a total volume in the range of from about 1.0 to about 1.75 cubic inches and capable of being operatively connected with the pipe, the prosthetic socket and to the vacuum pump assembly and having a contour adapted to be concealed on the prosthetic device, the vacuum surge chamber being maintained at a negative pressure by the vacuum pump assembly.

9. A vacuum system in accordance with claim 8 , wherein the vacuum pump assembly comprises:

a vacuum pump;

a power source; and

means for sensing pressure and actuating the pump.

10. A vacuum system in accordance with claim 9 , wherein the means for sensing pressure and actuating the pump comprises a pressure sensor operatively associated with one of the cavity and the surge chamber, whereby the sensor is adapted and constructed to trigger an actuation event when the negative pressure in the cavity decays to a predetermined differential from atmospheric pressure to actuate the vacuum pump to increase the negative pressure in the cavity, and to trigger an actuation event to de-activate the vacuum pump when the negative pressure in the cavity reaches a predetermined threshold.

11. The vacuum system of claim 10 , wherein the means for sensing pressure and actuating the pump comprises a circuit board for actuating the pump when the pressure sensor detects a loss of negative pressure and sends a signal to the circuit board.

12. The vacuum system of claim 9 , in which the power source comprises a Li-ion battery.

13. A vacuum system in accordance with claim 8 , wherein the vacuum surge chamber volume is about 1.5 cubic inches.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2019
From: SRT PROSTHETICS & ORTHOTICS
To: OSSUR ICELAND EHF
Reel/Frame 050027/0747 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2018
From: MCKINNEY, DONALD RAY
To: SRT PROSTHETICS & ORTHOTICS
Reel/Frame 045038/0644 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2018
From: DANZIG, MORRIS J.
To: SRT PROSTHETICS & ORTHOTICS
Reel/Frame 045038/0698 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2009
From: DANZIG, MORRIS J.; MCKINNEY, DONALD RAY
To: LINCOLNSHIRE MANUFACTURING, LLC
Reel/Frame 022349/0430 →
Continuity (2)
Continuation In Part 11640150 · Dec 14, 2006
Related Publication 20090157196A1 · Jun 18, 2009