IP Library Granted Patent US 10,925,781
Granted Patent B2
US 10,925,781 · App. 16/129,165 · Granted Feb 23, 2021

Methods and systems for automatically articulating cots

Inventors: Joseph G. Bourgraf (Maineville, OH); Brian Michael Magill (Cincinnati, OH)
Assignee: Ferno-Washington, Inc.
A61G1/013A61G1/02A61G1/0212A61G1/0243A61G1/0256A61G1/0262A61G1/0287A61G1/0562A61G2203/12A61G2203/16A61G2203/20A61G2203/40A61G2203/42A61G2203/726A61G2205/60
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Quick Facts
Patent No.
US 10,925,781
App. No.
16/129,165
Granted
Feb 23, 2021
Kind
B2
Abstract

A power ambulance cot having a cot control system operably connected to a cot actuation system to control independent raising and lowering of front and back legs thereof, and which detects a presence of a signal requesting a change in elevation of a support frame thereof and causes the cot actuation system to raising or the lowering of the front and/or back legs automatically upon detecting a condition during loading/unloading a patient from an emergency vehicle or transporting the patient up or down an escalator and methods thereafter are disclosed.

Claims (36)

1. A method of articulating a powered ambulance cot to load a patient into an emergency vehicle having a loading surface, the method comprising:

configuring the cot to comprise:

a support frame provided with a pair of front load wheels, a pair of front legs each having a front wheel and an intermediate load wheel, and a pair of back legs each having a back wheel;

a cot actuation system having a front actuator which moves together the pair of front legs relative to the support frame and a back actuator which moves together the pair of back legs relative to the support frame;

a set of operator controls configured to receive tactile input;

a cot control system;

a communication circuit configured to exchange communication signals with the emergency vehicle; and

a plurality of sensors at least one of which is configured to determine a condition of the front actuator, at least one of which is configured to determine a condition of the back actuator, at least one of which is configured to determine an angle of the pair of front legs relative to the support frame, at least one of which is configured to determine an angle of the pair of back legs relative to the support frame, at least one of which is configured to detect the location of the front load wheels with respect to the loading surface and at least one of which provides a gravitational reference signal, wherein the cot actuation system, the set of operator controls, the cot control system and at least one of the plurality of sensors cooperate to independently control raising and lowering of the pair of front legs and the pair of back legs;

using, upon placement of the cot in cooperation with the loading surface by having the front load wheels disposed over the loading surface, an automated process of the cot control system to send signals to activate the cot actuation system to:

detect the location of the front load wheels with respect to the loading surface;

lower the support frame until the front load wheels contact the loading surface upon detection of the loading surface being substantially directly beneath the front load wheels;

raise the pair of front legs relative to the support frame until the front wheel of each of the front legs is at or above the loading surface;

upon the cot being rolled farther onto the loading surface, have the intermediate load wheel of each of the front legs contact the loading surface;

raise the pair of back legs relative to the support frame until the back wheels are at or above the loading surface; and

upon the cot being rolled still farther onto the loading surface, have the back wheel of each of the back legs contact the loading surface; and

overriding, upon receipt by the set of operator controls of at least one tactile input thereto from a user, at least one part of the automated process of the cot control system.

2. The method according to claim 1 , wherein the cot control system activates the cot actuation system to raise the pair of front legs relative to the support frame upon detecting the front load wheels contacting the loading surface in addition to detecting the presence of the signal requesting the front legs be raised.

3. The method according to claim 1 , wherein the cot control system activates the cot actuation system to raise the pair of back legs relative to the support frame upon detecting the intermediate load wheels contacting the loading surface in addition to detecting the presence of the signal requesting the back legs be raised.

4. The method according to claim 1 , wherein the front actuator and the back actuator are actuated contemporaneously to keep the cot level relative to gravity when raising the support frame of the powered ambulance cot to the height which places the front load wheels above the loading surface of the emergency vehicle via the cot control system detecting the presence of the signal requesting the support frame be raised and activating the cot actuation system.

5. The method according to claim 4 , wherein the height is predetermined, and once the predetermined height is reached, the front actuator is further actuated by the cot control system to raise a front end of the cot.

6. The method according to claim 5 , wherein the cot control system activates the cot actuation system to extend the pair of back legs relative to the support frame upon detecting the front load wheels contacting the loading surface in addition to detecting the presence of the signal requesting the front legs be raised.

7. The method of claim 1 wherein the cot control system is operably connected to a line indicator in order to automatically project a visible line upon the cot control system detecting the intermediate load wheel of each of the front legs being in contact with the loading surface and the rear wheels being off the loading surface.

8. The method of claim 1 , whereupon the automated process of the cot control system is overridden by at least one of the (a) raising the support frame, (b) lowering the support frame, (c) automatically raising the pair of front legs and (d) raising of the pair of back legs.

9. The method of claim 1 , whereupon the automated process of the cot control system is overridden by actuating the front actuator and the back actuator independent of input from the control system.

10. A method of automatically articulating a powered ambulance cot to unload a patient from an emergency vehicle having a loading surface, the method comprising:

configuring the cot to comprise:

a support frame provided with a pair of front load wheels, a pair of front legs each having a front wheel and an intermediate load wheel, and a pair of back legs each having a back wheel;

a cot actuation system having a front actuator which moves together the pair of front legs relative to the support frame and a back actuator which moves together the pair of back legs relative to the support frame;

a set of operator controls configured to receive tactile input;

a cot control system;

a communication circuit configured to exchange communication signals with the emergency vehicle; and

a plurality of sensors at least one of which is configured to determine a condition of the front actuator, at least one of which is configured to determine a condition of the back actuator, at least one of which is configured to determine an angle of the pair of front legs relative to the support frame, at least one of which is configured to determine an angle of the pair of back legs relative to the support frame, at least one of which is configured to detect the location of the front load wheels with respect to the loading surface and at least one of which provides a gravitational reference signal, wherein the cot actuation system, the set of operator controls, the cot control system and at least one of the plurality of sensors cooperate to independently control raising and lowering of the pair of front legs and the pair of back legs;

using, upon the cot being rolled on the loading surface until only the back wheel of each of the back legs is off the loading surface, an automated process of the cot control system to send signals to activate the cot actuation system to move the pair of back legs relative to the support frame until the back wheels are supporting the cot below the loading surface;

using, upon the cot being rolled farther off the loading surface until both the front wheel and intermediate load wheel of each of the front legs, the automated process of the cot control system to send signals to activate the cot actuation system to lower the pair of front legs relative to the support frame until the front wheel of each of the front legs supporting the support frame is below the loading surface; and

overriding, upon receipt by the set of operator controls of at least one tactile input thereto from a user, at least one part of the automated process of the cot control system.

11. The method of claim 10 , wherein the cot control system is operably connected to a line indicator to automatically project a visible line upon the cot control system detecting that the intermediate load wheel of each of the front legs is in contact with the loading surface while the rear wheels are not in contact with the loading surface.

Assignments (3)
SECURITY INTEREST Recorded Jan 6, 2026
From: FERNO GROUP, INC.; FERNO-WASHINGTON, INC.; FERNO CANADA INC.; TRAVERSE RESCUE, LLC
To: THE HUNTINGTON NATIONAL BANK
Reel/Frame 074229/0457 →
SECURITY INTEREST Recorded May 5, 2025
From: FERNO-WASHINGTON, INC., SUBSIDIARY OF FERNO GROUP, INC.
To: FERNO FINANCE I, LLC
Reel/Frame 071168/0422 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2018
From: BOURGRAF, JOSEPH G.; MAGILL, BRIAN MICHAEL
To: FERNO-WASHINGTON, INC.
Reel/Frame 046856/0539 →
Continuity (3)
Division 15300427
Provisional Application 61975441 · Apr 4, 2014
Related Publication 20190015270A1 · Jan 17, 2019