IP Library Granted Patent US 12709530
Granted Patent B2
US 12709530 · App. 18/584,784 · Granted Aug 18, 2026

Scissor lift descent control systems and methods

Inventors: Louis Bafile (Oshkosh, WI); Eko Prasetiawan (Oshkosh, WI)
Assignee: Oshkosh Corporation
B66F17/006B66F7/0625B66F7/0666B66F11/04F16D55/02F16D59/00F16D65/186H02K7/06B66F11/042B66F11/044F16D2121/22F16D2127/002F16D2127/04
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Quick Facts
Patent No.
US 12709530
App. No.
18/584,784
Granted
Aug 18, 2026
Kind
B2
Abstract

A lift device comprises a base, a retractable lift mechanism, a work platform, a linear actuator, an electromagnetic brake, and a manual release device. The electromagnetic brake is movable between an engaged position and a disengaged position. In the event of a power failure, the electromagnetic brake is biased toward and engaged position, where an armature is biased away from a magnetic body and into contact with a friction disk by at least one engagement spring, thereby preventing rotation of the friction disk. In a disengaged position, a current is applied to the wire coil to produce an electromagnetic force on the armature that overcomes a spring force of the at least one engagement spring, thereby compressing the at least one engagement spring, pulling the armature out of contact with the friction disk, and allowing the rotation of the friction disk.

Claims (42)

1 . A lift device comprising:

a base having a plurality of wheels;

a retractable lift mechanism having a first end coupled to the base and being movable between an extended position and a retracted position;

a work platform configured to support a load, the work platform being coupled to and supported by a second end of the retractable lift mechanism;

a linear actuator configured to selectively move the retractable lift mechanism between the extended position and the retracted position, the linear actuator having an electric motor;

an electromagnetic brake coupled to the linear actuator and movable between an engaged position and a disengaged position, wherein the electromagnetic brake includes a friction disk, an armature, and a wire coil, the friction disk is rotationally coupled to a rotor of the electric motor of the linear actuator; and

a manual release device configured to manually move the electromagnetic brake from the engaged position to the disengaged position, wherein the manual release device includes a manual pull handle configured to pull a cable fixed to the armature, thereby moving the electromagnetic brake from the engaged position into the disengaged position,

in the event of a power failure, the electromagnetic brake is biased toward the engaged position, where the armature is biased into contact with the friction disk by at least one engagement spring, thereby preventing rotation of the friction disk, and

in the disengaged position, a current is applied to the wire coil to produce an electromagnetic force on the armature that overcomes a spring force of the at least one engagement spring, thereby compressing the at least one engagement spring, pulling the armature out of contact with the friction disk, and allowing the rotation of the friction disk.

2 . The lift device of claim 1 , wherein the electric motor is a DC shut motor including one or more terminals, wherein when the electromagnetic brake is moved into the disengaged position by the manual release device, the one or more terminals are biased toward a shunted position and the DC shut motor acts as a generator to reduce a rotational speed of the rotor of the electric motor and, thereby, reduce a speed at which the retractable lift mechanism is moved toward the retracted position.

3 . The lift device of claim 1 , wherein the electric motor is a permanent magnet motor including one or more terminals, wherein when the electromagnetic brake is moved into the disengaged position by the manual release device, the one or more terminals are biased toward a shunted position and the permanent magnet motor acts as a generator to reduce a rotational speed of the rotor of the electric motor and, thereby, reduce a speed at which the retractable lift mechanism is moved toward the retracted position.

4 . The lift device of claim 1 , wherein the electric motor includes one or more terminals, wherein when the electromagnetic brake is moved into the disengaged position by the manual release device, the one or more terminals are biased toward a shunted position and the electric motor acts as a generator to reduce a rotational speed of the rotor of the electric motor and, thereby, reduce a speed at which the retractable lift mechanism is moved toward the retracted position.

5 . The lift device of claim 1 , wherein the linear actuator is arranged between the base and the work platform.

6 . The lift device of claim 1 , further comprising a descent control mechanism configured to reduce a speed at which the retractable lift mechanism is moved from the extended position to the retracted position.

7 . The lift device of claim 6 , wherein the descent control mechanism is a centrifugal brake rotationally coupled to the rotor of the electric motor.

8 . The lift device of claim 1 , wherein the electric motor of the linear actuator of is a permanent magnet motor having terminals that are biased toward a shunted position, such that, in the event of the power failure, when the electromagnetic brake is moved into the disengaged position by the manual release device and the work platform is being lowered, the permanent magnet motor acts as a generator, electromagnetically reducing a rotational speed of the rotor of the electric motor and, thereby, reducing a speed at which the retractable lift mechanism is moved from the extended position to the retracted position.

9 . A lift device comprising:

a base having a plurality of wheels;

a battery arranged within the base;

a retractable lift mechanism having a first end coupled to the base and being moveable between an extended position and a retracted position;

a work platform configured to support a load, the work platform being coupled to and supported by a second end of the retractable lift mechanism;

a linear actuator configured to selectively move the retractable lift mechanism between the extended position and the retracted position, the linear actuator having an electric motor;

an electromagnetic brake coupled to the linear actuator and movable between an engaged position and a disengaged position; and

a manual release device configured to manually move the electromagnetic brake from the engaged position to the disengaged position, wherein the electric motor of the linear actuator is biased into a shunted configuration, so that, in the event of the battery being fully discharged or a power failure and the electromagnetic brake is moved into the disengaged position by the manual release device, the electric motor acts as a generator to electromagnetically reduce a rotational speed of a rotor of the electric motor and, thereby, reduce a speed at which the retractable lift mechanism is moved toward the retracted position.

10 . The lift device of claim 9 , further comprising a descent control mechanism in the form of a centrifugal brake rotationally coupled to the rotor.

11 . The lift device of claim 10 , wherein the centrifugal brake is configured to reduce the rotational speed of the rotor once the rotor exceeds a predetermined rotational speed.

12 . The lift device of claim 11 , wherein the predetermined rotational speed is between 1850 rpm and 2250 rpm.

13 . The lift device of claim 9 , wherein the linear actuator is arranged between the base and the work platform.

14 . The lift device of claim 9 , wherein the electric motor is a DC shunt motor.

15 . The lift device of claim 9 , wherein the electric motor is a permanent magnet motor.

16 . A lift device comprising:

a base having a plurality of wheels;

a battery arranged within the base;

a retractable lift mechanism having a first end coupled to the base and being moveable between an extended position and a retracted position;

a work platform configured to support a load, the work platform being coupled to and supported by a second end of the retractable lift mechanism;

a linear actuator configured to selectively move the retractable lift mechanism between the extended position and the retracted position, the linear actuator having an electric motor;

an electromagnetic brake coupled to the linear actuator and movable between an engaged position and a disengaged position; and

a manual release device configured to manually move the electromagnetic brake from the engaged position to the disengaged position, wherein the electric motor of the linear actuator is configured such that, in response to the battery being fully discharged or a power failure, the electric motor acts as a generator to electromagnetically reduce the electric motor and, thereby, reduce a speed at which the retractable lift mechanism is moved toward the retracted position.

17 . The lift device of claim 16 , wherein the electromagnetic brake includes a pressure plate, a friction disk, an armature, a magnetic body, and a wire coil, the friction disk is rotationally coupled to a rotor of the electric motor of the linear actuator and is disposed between the armature and the pressure plate, and the armature is disposed between the magnetic body and the friction disk.

18 . The lift device of claim 17 , wherein, in the engaged position, the armature is biased away from the magnetic body and into contact with the friction disk by at least one engagement spring, thereby preventing rotation of the friction disk, and, in the disengaged position, a current is applied to the wire coil to produce an electromagnetic force on the armature that overcomes a spring force of the at least one engagement spring, thereby compressing the at least one engagement spring, pulling the armature out of contact with the friction disk, and allowing the rotation of the friction disk.

19 . The lift device of claim 18 , further comprising a descent control mechanism in the form of a centrifugal brake rotationally coupled to the rotor of the electric motor of the linear actuator.

20 . The lift device of claim 16 , wherein the linear actuator is arranged between the base and the work platform.