IP Library Granted Patent US 8,502,641
Granted Patent B2
US 8,502,641 · App. 09/801,201 · Granted Aug 6, 2013

Rate-of-change switches and controllable apparatus

Inventor: John L. Lautzenhiser (Hamilton, IN)
Assignee: Intelpro LLC
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Quick Facts
Patent No.
US 8,502,641
App. No.
09/801,201
Granted
Aug 6, 2013
Kind
B2
Abstract

A switching function is performed in response to a predetermined rate-of-change of an output signal, thereby providing rate-of-change switching. Rate-of-change switches ( 63 and 154 ) each include a user-controlled transducer ( 38 A, 38 B, or 39 ), a differentiator ( 40 A, 40 B, 112 , or 156 ), and a discriminator ( 42, 114, 134, 160 , or 162 ). The rate-of-change switches ( 63 and 154 ) perform at least one switching function when an output from the differentiator ( 40 A, 40 B, 112 , or 156 ) or a second differentiator ( 158 ) exceeds an allowable magnitude. The rate-of-change switches ( 63 and 154 ) may be used to control a timed-opportunity switch ( 26 or 172 ), a conveyance, such as a wheelchair ( 12 ), and such functions as extending and retracting leg supports, and/or an environmental control unit ( 14 or 174 ). The rate-of-change switches ( 63 or 154 ) may be attached to a body member ( 18, 64 , or 67 ) and be actuated by body-member gestures.

Claims (81)

1. A switch which comprises:

a. a tilt-sensitive transducer that produces an output signal in response to a user input;

b. a first differentiator adapted to receive said output signal and adapted to determine a first derivative of said output signal;

c. a second differentiator connected to said first differentiator adapted to determine a second derivative of said output signal representing a rate-of-change of the output signal; and

d. means, connected to said second differentiator, for performing a first switching function based at least in part on the rate-of-change of the output signal.

2. A switch as claimed in claim 1 which further comprises means, connected to said first differentiator, for performing a second switching function.

3. A method which comprises:

body-member tilting a first tilt-sensitive transducer;

producing a first output signal proportional to said tilting step;

differentiating said first output signal with respect to time and determining a rate-of-change; and

performing a first switching function in response to said differentiated first output signal based on said rate-of-change;

wherein performing a switching function that includes momentary contact switching, and said method further comprises:

initiating a sequential plurality of time delays in which one is a window of opportunity;

refraining from said momentary-contact switching step during a first time delay that follows said initiating step;

performing said momentary-contact switching step within said window of opportunity that follows said first time delay;

refraining from said momentary-contact switching step during a second time delay that follows said window of opportunity; and

initiating operation of a first electrical device subsequent to successful completion of the preceding steps.

4. A method as claimed in claim 3 in which said method further comprises:

a. body-member tilting a second tilt-sensitive transducer;

b. producing a second output signal proportional to said tilting of said second tilt-sensitive transducer;

c. differentiating said second output signal with respect to time; and

d. performing a logic output as a function of said first and second differentiated output signals.

5. A method as claimed in claim 3 in which said method further comprises:

a. momentary-contact switching during said second time delay; and

b. initiating operation of a second electrical device in response to said momentary-contact switching step occurring during said second time delay.

6. A method which comprises:

a. producing an output signal;

b. determining a first rate-of-change of said output signal;

c. selectively performing a switching function in response to said output signal and based at least in part on said first rate-of-change exceeding a predetermined rate-of-change threshold;

d. determining a second rate-of-change of said output signal; and

e. preventing variations in said output signal from performing said switching function based at least in part on said second rate-of-change not exceeding said predetermined rate-of-change threshold.

7. A method as claimed in claim 6 in which said method further comprises activating control of an apparatus in response to said switching function.

8. A method as claimed in claim 6 in which said method further comprises controlling an apparatus in response to said output signal.

9. A method as claimed in claim 6 in which said method further comprises activating control of an apparatus in response to said switching function being performed inside a window of opportunity.

10. A method as claimed in claim 6 in which said method further comprises:

a. activating control of an apparatus in response to said switching function being performed inside a window of opportunity; and

b. aborting said activating step in response to said switching function being performed outside said window of opportunity.

11. A method as claimed in claim 6 in which said method further comprises activating a shut-down function of an apparatus in response to said switching function.

12. A method as claimed in claim 6 in which said method further comprises activating a selected one of a first or a second apparatus in response to said switching function.

13. A method as claimed in claim 6 in which said method further comprises:

a. activating a selected one of a first or a second apparatus in response to performing said switching function during a window of opportunity; and

b. proportionally controlling a function of said selected apparatus as a function of said proportional output signal.

14. A method as claimed in claim 6 in which said method further comprises:

a. activating a selected one of a first or a second apparatus in response to performing said switching function during a window of opportunity;

b. selecting a function of said selected apparatus to be controlled; and

c. said selecting step comprises performing an other switching function.

15. A method as claimed in claim 6 in which said method further comprises:

a. activating a selected one of a first or a second apparatus in response to performing said switching function during a window of opportunity;

b. selecting a function of said selected apparatus to be controlled;

c. said selecting step comprises performing an other switching function;

d. controlling said selected function; and

e. said controlling step comprises performing still an other switching function.

16. A method as claimed in claim 6 in which said method further comprises:

a. initiating cascading a plurality of task opportunities;

b. selecting a task; and

c. said selecting step comprises performing said switching function.

17. A method as claimed in claim 6 in which said method further comprises:

a. initiating cascading a plurality of task opportunities;

b. selecting a task;

c. said selecting step comprises performing said switching function;

d. selectively controlling said task; and

e. said selective controlling step comprises performing an other switching function.

18. A method as claimed in claim 6 in which said method further comprises:

a. initiating cascading a plurality of task opportunities; and

b. said initiating step comprises performing said switching function.

19. A method as claimed in claim 6 in which said method further comprises:

a. initiating cascading a plurality of task opportunities;

b. said initiating step comprises performing said switching function;

c. selecting a task; and

d. said selecting step comprises performing an other switching function.

20. A method as claimed in claim 6 in which said method further comprises:

a. initiating cascading a plurality of task opportunities;

b. said initiating step comprises performing said switching function;

c. selecting a task;

d. said selecting step comprises performing an other switching function;

e. selectively controlling said task; and

f. said selective controlling step comprises performing still an other switching function.

21. A method as claimed in claim 6 in which said producing step comprises actuating an input.

22. A method as claimed in claim 6 in which said producing step comprises body-member actuating an input.

23. A method as claimed in claim 6 in which said selectively performing step further comprises selectively adjusting said predetermined rate-of-change threshold.

24. A method as claimed in claim 6 in which at least one of said determining steps comprises differentiating said output signal.

Assignments (4)
CHANGE OF NAME Recorded Dec 13, 2016
From: INTELPRO LLC
To: INTELLIPRO LLC
Reel/Frame 040907/0345 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2011
From: LAUTZENHISER TECHNOLOGIES, LLC
To: INTELPRO LLC
Reel/Frame 025912/0842 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2007
From: MAGITEK.COM, LLC
To: LAUTZENHISER TECHNOLOGIES, LLC
Reel/Frame 019848/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2001
From: LAUTZENHISER, JOHN L.; LAUTZENHISER, LLOYD L.
To: MAGITEK.COM, LLC
Reel/Frame 011614/0186 →
Continuity (2)
Provisional Application 60187953 · Mar 9, 2000
Related Publication 20010048291A1 · Dec 6, 2001