IP Library Granted Patent US 11,654,864
Granted Patent B2
US 11,654,864 · App. 16/713,063 · Granted May 23, 2023

Heating device

Inventors: Waldemar Dworakowski (Cracow, PL); Rafal Dlugosz (Poznan, PL)
Assignee: Aptiv Technologies Limited
B60S1/026B60S1/56H05B6/06H05B6/44B60R11/04B60R2011/0026
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Quick Facts
Patent No.
US 11,654,864
App. No.
16/713,063
Granted
May 23, 2023
Kind
B2
Abstract

A heating device includes a housing, a primary induction coil, a controller circuit, and a secondary induction coil. The housing retains a camera lens. The primary induction coil is positioned proximate the housing and generates a magnetic field in response to receiving electrical power from a power supply. The controller circuit is in electrical contact with the primary induction coil and controls the electrical power delivered to the primary induction coil. The secondary induction coil overlays the primary induction coil and receives the magnetic field from the primary induction coil and generates heat. The secondary induction coil is in direct contact with a windshield of a vehicle and heats the viewing window when the primary induction coil receives the electrical power.

Claims (44)

1. A heating device comprising:

a housing configured to retain a camera lens;

a primary induction coil positioned proximate the housing and configured to generate a magnetic field in response to receiving electrical power from a power supply, the primary induction coil surrounding an optical axis of the camera lens;

a controller circuit in electrical contact with the primary induction coil configured to control the electrical power delivered to the primary induction coil; and

a secondary induction coil overlaying the primary induction coil and configured to receive the magnetic field from the primary induction coil and generate heat;

wherein the secondary induction coil is disposed within a windshield of a vehicle or on an inner surface of the windshield and defines a viewing window through which the camera lens views a surrounding area;

wherein the secondary induction coil directly heats the viewing window of the windshield when the primary induction coil receives the electrical power; and

wherein a temperature of the secondary induction coil is controlled by adjusting a voltage or a frequency of a signal applied to the primary induction coil.

2. The heating device in accordance with claim 1 , wherein the controller circuit includes a low-Q resonant circuit in electrical communication with the primary induction coil.

3. The heating device in accordance with claim 1 , wherein the secondary induction coil is comprised of a first layer of resistive material and a second layer of low-Curie point ferrite.

4. The heating device in accordance with claim 1 , wherein the secondary induction coil is located between glass layers of the windshield.

5. The heating device in accordance with claim 1 , wherein the secondary induction coil is formed of a conductive material having a greater electrical resistance relative to the primary induction coil.

6. The heating device in accordance with claim 1 , wherein the secondary induction coil is characterized as segmented, wherein adjoining segments are formed of materials having a different electrical conductivity from one another.

7. The heating device in accordance with claim 1 , wherein a distance between the primary induction coil and the secondary induction coil is in a range from 0.0 mm to 10.0 mm.

8. The heating device in accordance with claim 1 , wherein a number of windings on the primary induction coil is at least one.

9. The heating device in accordance with claim 1 , wherein a number of windings on the secondary induction coil is at least one.

10. The heating device in accordance with claim 1 , wherein the secondary induction coil has a thickness in a range from 1 μm to 1000 μm.

11. The heating device in accordance with claim 1 , wherein the secondary induction coil has a width in a range from 0.1 mm to 10 mm.

12. The heating device in accordance with claim 1 , wherein the temperature of the secondary induction coil is controlled by adjusting the frequency of the signal applied to the primary induction coil.

13. A camera system comprising:

a housing comprising:

a camera lens; and

an imager configured to receive light via the camera lens and render an image of a surrounding area of the camera system;

a primary induction coil:

proximate an end of the housing that is opposite the imager,

surrounding an optical axis of the camera lens, and

configured to generate a magnetic field in response to receiving electrical power from a power supply;

a controller circuit configured to control the electrical power; and

a secondary induction coil:

within a windshield of a vehicle or on an inner surface of the windshield, overlaying the primary induction coil,

defining a viewing window within or on the windshield through which the camera lens views the surrounding area, and

configured to receive the magnetic field from the primary induction coil and directly heat the viewing window of the windshield when the primary induction coil receives the electrical power,

wherein a temperature of the secondary induction coil is controlled by adjusting a voltage applied to the primary induction coil or by adjusting a frequency of a signal delivered to the primary induction coil.

14. The camera system of claim 13 , wherein the secondary induction coil is further configured to remove condensation from the viewing window.

15. The camera system of claim 13 , wherein the secondary induction coil comprises:

a first layer of resistive material configured to dissipate power transmitted by the magnetic field; and

a second layer of low Curie point ferrite.

16. The camera system of claim 15 , wherein the secondary induction coil is further configured to reduce the heat generated by the secondary induction coil once the secondary induction coil reaches a Curie point temperature.

17. The camera system of claim 16 , wherein:

the controller circuit comprises a resonant control circuit in electrical communication with the primary induction coil; and

the reduction of the heat generated by the secondary induction coil causes a resonant frequency of the resonant control circuit to be changed.

18. The camera system of claim 13 , wherein the secondary induction coil is located between glass layers of the windshield.

19. The camera system of claim 13 , wherein the temperature of the secondary induction coil is controlled by adjusting the frequency of the signal applied to the primary induction coil.

20. The camera system of claim 13 , wherein the controller circuit is further configured to monitor an impedance of the primary induction coil to determine a temperature of the primary induction coil.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2024
From: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
To: APTIV TECHNOLOGIES AG
Reel/Frame 066551/0219 →
MERGER Recorded Feb 11, 2024
From: APTIV TECHNOLOGIES (2) S.À R.L.
To: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
Reel/Frame 066566/0173 →
ENTITY CONVERSION Recorded Feb 11, 2024
From: APTIV TECHNOLOGIES LIMITED
To: APTIV TECHNOLOGIES (2) S.À R.L.
Reel/Frame 066746/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2020
From: DWORAKOWSKI, WALDEMAR; DLUGOSZ, RAFAL
To: APTIV TECHNOLOGIES LIMITED
Reel/Frame 053553/0644 →
Priority Claims (1)
EP 18213507 · Dec 18, 2018 · regional
Continuity (1)
Related Publication 20200189523A1 · Jun 18, 2020
Cited By (1)
US 12,534,047