IP Library › Granted Patent US 11,980,124
Granted Patent B2
US 11,980,124 · App. 16/972,350 · Granted May 14, 2024

Robotic lawn mower with sensor for detecting relative movement between body parts of the lawn mower

Inventors: Stefan Stark (Huskvarna, SE); Svante Larsson (Eksjö, SE); Staffan Palm (Hok, SE)
Assignee: HUSQVARNA AB
A01D34/008B60R21/0136G05D1/0227A01D34/78A01D2101/00
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Quick Facts
Patent No.
US 11,980,124
App. No.
16/972,350
Granted
May 14, 2024
Kind
B2
Abstract

A self-propelled robotic lawnmower may include a lawnmower body, a body part movably arranged in relation to the lawnmower body, and an elongated sensor element extending in an interface between the lawnmower body and the body part. The elongated sensor element may be configured to generate a signal when a portion of the elongated sensor element is subjected to a change in thickness in a direction perpendicular to a direction of elongation of the elongated sensor element by a relative movement between the body part and the lawnmower body.

Claims (36)

1. A self-propelled robotic lawnmower comprising:

a lawnmower body,

a body part movably arranged in relation to the lawnmower body, and

an elongated sensor element extending in an interface between the lawnmower body and the body part,

wherein the elongated sensor element is configured to generate a signal when a portion of the elongated sensor element is subjected to a change in thickness, in a direction perpendicular to a direction of elongation of the elongated sensor element, by a relative movement between the body part and the lawnmower body,

wherein the lawnmower body comprises a first body portion, a second body portion, and a link arm connecting the first and second body portions, and wherein the body part is movably arranged at the link arm, and

wherein the body part is movably arranged at an underside of the link arm.

2. The lawnmower according to claim 1 , wherein the elongated sensor element is configured to generate the signal when a portion of the elongated sensor element is squeezed between the body part and the lawnmower body.

3. The lawnmower according to claim 1 , wherein at least one of the body part and the lawnmower body comprises one or more protrusions configured to abut against the elongated sensor element at least during the relative movement between the body part and the lawnmower body.

4. The lawnmower according to claim 3 , wherein the one or more protrusions comprises at least two protrusions arranged at a distance from each other along the direction of elongation of the elongated sensor element.

5. The lawnmower according to claim 1 , wherein the elongated sensor element is elastic in directions perpendicular to the direction of elongation of the elongated sensor element.

6. The lawnmower according to claim 1 , wherein the lawnmower comprises wheels and a wheel housing adjacent to one of the wheels, and wherein the body part forms at least a portion of the wheel housing.

7. The lawnmower according to claim 1 , wherein the body part is an upper body part.

8. The lawnmower according to claim 1 , wherein the body part is a bumper of the lawnmower.

9. The lawnmower according to claim 1 , wherein the elongated sensor element comprises at least two conductors, and wherein the elongated sensor element is configured to generate the signal by short-circuiting the at least two conductors.

10. The lawnmower according to claim 1 , wherein the elongated sensor element is a switch cord.

11. The lawnmower according to claim 1 , wherein one of the lawnmower body and the body part comprises a groove, and wherein the elongated sensor element is arranged in the groove.

12. The lawnmower according to claim 1 , wherein elongated sensor element is a switch mat.

13. The lawnmower according to claim 1 , wherein the lawnmower comprises:

a control unit,

a cutting unit, and

a propulsion system configured to propel the lawnmower, and wherein the control unit is configured to detect signals generated by the elongated sensor element, and in response to a detection of a signal, stop operation of the cutting unit, and/or stop operation of the propulsion system.

14. The lawnmower according to claim 13 , wherein the control unit is configured to generate a control signal through the elongated sensor element, and wherein the elongated sensor element is configured to generate the signal by short-circuiting the control signal.

15. A self-propelled robotic lawnmower comprising:

a lawnmower body,

a body part movably arranged in relation to the lawnmower body, and

an elongated sensor element extending in an interface between the lawnmower body and the body part,

a control unit,

a cutting unit, and

a propulsion system configured to propel the lawnmower,

wherein the control unit is configured to detect signals generated by the elongated sensor element, and in response to a detection of a signal, stop operation of the cutting unit, and/or stop operation of the propulsion system,

wherein the elongated sensor element is configured to generate a signal when a portion of the elongated sensor element is subjected to a change in thickness, in a direction perpendicular to a direction of elongation of the elongated sensor element, by a relative movement between the body part and the lawnmower body,

wherein the control unit is configured to generate a control signal through the elongated sensor element, and

wherein the elongated sensor element is configured to generate the signal by short-circuiting the control signal.

16. The lawnmower according to claim 15 , wherein the lawnmower body comprises a first body portion, a second body portion, and a link arm connecting the first and second body portions, and wherein the body part is movably arranged at the link arm.

17. The lawnmower according to claim 16 , wherein the body part is movably arranged at an underside of the link arm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2020
From: STARK, STEFAN; LARSSON, SVANTE; PALM, STAFFAN
To: HUSQVARNA AB
Reel/Frame 054681/0813 →
Priority Claims (1)
SE 1850763-2 · Jun 21, 2018 · national
Continuity (1)
Related Publication 20210235616A1 · Aug 5, 2021