IP Library Patent Application 14535987
Patent Application
App. No. 14/535,987

METHOD AND APPARATUS FOR LINKED HORIZONTAL DRAPERY PANELS HAVING VARYING CHARACTERISTICS TO BE MOVED INDEPENDENTLY BY A COMMON DRIVE SYSTEM

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
14/535,987
Abstract

A curtain assembly comprises a rotatable drive element wherein at least one helical guide structure is formed on, or into, the outer surface of the drive element. A drive attachment element having a structure that communicates with the helical guide structure to move the drive attachment element axially along the drive element when the drive element is rotated. Specific embodiments incorporate either a manual or motor-driven rotation assembly for rotating the drive element. Further specific embodiments involve a helical guide structure that comprises a helical groove and a structure that comprises a tooth that engages with the helical groove. Further specific embodiments include a sensor, such as an accelerometer, that detects a disturbance or vibration on the drive element, such as a tug, slide or tap, and activating the motor in response to the disturbance.

Claims (61)

1 . A window covering assembly, comprising:

a drive element;

the drive element extending a length between a first end and a second end;

the drive element having an exterior surface;

the exterior surface having a guide structure;

a first drive attachment element operatively connected to the drive element and in communication with the guide structure;

a motor operatively connected to the drive element;

a sensor operatively connected to the drive element and the motor;

wherein when the sensor detects a disturbance the motor is activated; and

wherein when motor is activated the drive element is rotated and the first drive attachment element is driven along a length of the drive element.

2 . The window covering assembly of claim 1 wherein the motor is positioned within the drive element.

3 . The window covering assembly of claim 1 wherein the sensor is an accelerometer.

4 . The window covering assembly of claim 1 wherein the sensor is selected from the group consisting of a sound detector, a vibration sensor, a strain sensor, a stress sensors, a length detector, a gyroscope, a load sensor and a motion sensor.

5 . The window covering assembly of claim 1 wherein the disturbance is a vibration.

6 . The window covering assembly of claim 1 further comprising a curtain connected to the drive element such that when the drive element is rotated the curtain is moved along a length of the drive element.

7 . The window covering assembly of claim 1 wherein the sensor is tuned to detect a disturbance above a predetermined threshold.

8 . The window covering assembly of claim 1 wherein the sensor is tuned to detect a disturbance within a predetermined frequency range.

9 . The window covering assembly of claim 1 wherein the disturbance is generated from a tug on a curtain connected to the drive element or a baton connected to the drive element.

10 . The window covering assembly of claim 1 wherein the disturbance is generated from a tap on the drive element.

11 . The window covering assembly of claim 1 wherein the disturbance is generated from one or more idler attachment elements sliding a distance on the drive element.

12 . The window covering assembly of claim 1 wherein when the sensor activates the motor, the motor drives in an opposite direction to a direction of a last movement.

13 . The window covering assembly of claim 1 wherein the guide structure is a helical guide structure and the drive attachment element includes at least one tooth in communication with the helical guide structure.

14 . A window covering assembly comprising:

a drive element extending a length;

the drive element having a guide structure;

a first drive attachment element connected to the drive element;

a curtain connected to the drive element;

a motor operatively connected to the drive element;

a motor controller operatively connected to the motor;

a sensor operatively connected to the motor controller;

wherein when the sensor detects a disturbance within predetermined parameters the sensor transmits a signal to the motor controller; and

wherein the motor controller activates the motor in response to receiving a signal from the sensor and the motor rotates the drive element thereby moving the curtain across a length of the drive element.

15 . The window covering assembly of claim 14 wherein the disturbance is a tug on the curtain or a baton connected to drive element, a slide of an idler attachment element connected to the drive element or a tap on the drive element.

16 . The window covering assembly of claim 14 wherein the sensor is an accelerometer.

17 . A method of operating a window covering assembly comprising the steps of:

providing a drive element extending a length from a first end to a second end and having a guide structure;

connecting a first drive attachment element to the drive element;

connecting a motor to the drive element;

connecting a motor controller to the motor;

connecting a sensor to the drive element;

detecting a disturbance by the sensor;

transmitting a signal by the sensor to the motor controller in response to detecting a disturbance;

activating the motor by the motor controller in response to detecting a disturbance by the sensor; and

rotating the drive element in a direction opposite a direction of a last movement of the drive element.

18 . The method of operating a window covering assembly of claim 17 further comprising the steps of;

connecting a curtain to the drive element; and

moving the curtain along a length of the drive element when the drive element rotates.

19 . The method of operating a window covering assembly of claim 17 further comprising the step of: generating the disturbance by tugging on a curtain connected to the drive element or tugging on a baton connected to the drive element.

20 . The method of operating a window covering assembly of claim 17 further comprising the step of: generating the disturbance by the drive element.

21 . The method of operating a window covering assembly of claim 17 further comprising the step of: generating the disturbance by sliding an idler attachment element connected to the drive element along a length of the drive element.

22 . The method of operating a window covering assembly of claim 17 further comprising the step of comparing the disturbance with predetermined parameters.

23 . The method of operating a window covering assembly of claim 17 further comprising the step of tuning the sensor to detect disturbances above a predetermined threshold.

24 . The window covering assembly of claim 17 wherein the sensor is an accelerometer.

25 . A window covering assembly, comprising:

a drive element extending a length between a first end and a second end;

an accelerometer connected to the drive element;

a motor connected to the drive element;

a guide structure connected to or positioned in the drive element;

a plurality of attachment elements positioned around the drive element;

a curtain connected to the plurality of attachment elements; and

wherein when a vibration is detected by the accelerometer the motor is activated which rotates the drive element thereby opening or closing the curtain.

Assignments (2)
CHANGE OF NAME Recorded May 19, 2016
From: QMOTION INCORPORATED
To: CURRENT PRODUCTS CORP
Reel/Frame 038643/0215 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2014
From: MULLET, WILLIS JAY; MATTHEWS, DANIEL T.; FOX, MICHAEL D.; HAND, RICHARD SCOTT; SCALF, SEAN SWAIN
To: QMOTION INCORPORATED
Reel/Frame 034225/0882 →