IP Library Granted Patent US 8,907,257
Granted Patent B2
US 8,907,257 · App. 13/322,585 · Granted Dec 9, 2014

Contactlessly chargeable heater

Inventor: Gi Soo Chung (Gyeonggi-do, KR)
Assignee: Korea Institute of Industrial Technology
H05B3/347H02J7/025H01F38/14H05B2203/015
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Quick Facts
Patent No.
US 8,907,257
App. No.
13/322,585
Granted
Dec 9, 2014
Kind
B2
Abstract

The present invention relates to a contactlessly chargeable heater. In one example, the contactlessly chargeable heater includes: an induction patch emitting magnetic field by means of current applied to an inner coil; and a heating body, receiving the magnetic field from the charging patch to perform a contactless charging operation, and including a conductive metal yarn for emitting heat via the power generated through the contactless charging operation. The conductive metal yarn is woven together using threads within the heating body.

Claims (22)

1. A heating apparatus comprising:

an induction patch generating a magnetic field when a current flows in an internal coil; and

a heating element receiving the magnetic field from the induction patch to perform non-contacting charging and having conductive metal yarns generating heat using charged power,

wherein the conductive metal yarns are woven within the heating element with a fabric,

wherein the conductive metal yarns include a plurality of metal parts centrally positioned, a coating part surrounding the metal parts, and a void created between the metal parts and the coating part.

2. The heating apparatus of claim 1 , wherein the induction patch receives power from a battery and applies a current to the internal coil.

3. The heating apparatus of claim 2 , wherein one end of each of the conductive metal yarns is in the form of a coil to receive the magnetic force from the induction patch.

4. The heating apparatus of claim 3 , further comprising a variable resistor provided within the heating element, and a controller controlling an amount of the current flowing in the digital yarns by adjusting the size of the variable resistor.

5. The heating apparatus of claim 2 , further comprising a variable resistor provided within the heating element, and a controller controlling an amount of the current flowing in the digital yarns by adjusting the size of the variable resistor.

6. The heating apparatus of claim 1 , wherein one end of each of the conductive metal yarns is in the form of a coil to receive the magnetic field from the induction patch.

7. The heating apparatus of claim 1 , wherein the conductive metal yarns form part of at least one of warps and wefts for weaving the heating element.

8. The heating apparatus of claim 1 , wherein the induction patch forms a saddle of a motorcycle and the heating element is woven to produce motorcycle rider's clothes.

9. The heating apparatus of claim 1 , wherein the induction patch forms a chair and the heating element is woven to produce a chair user's clothes.

10. The heating apparatus of claim 1 , wherein the induction patch forms handles of a bicycle and the heating element is woven to produce bicycle rider's gloves.

11. The heating apparatus of claim 1 , wherein the induction patch forms a curtain rod and the heating element is woven to produce a curtain.

12. The heating apparatus of claim 1 , further comprising a temperature sensing unit attached to a surface of the heating element and having a bimetal or thermistor for sensing the temperature of the heating element.

13. The heating apparatus of claim 1 , further comprising a variable resistor provided within the heating element, and a controller controlling an amount of the current flowing in the digital yarns by adjusting the size of the variable resistor.

14. The heating apparatus of claim 1 , wherein the conductive metal yarns further include cover yarn surrounding the outer circumferential surface of the coating part.

15. The heating apparatus of claim 14 , wherein the coating part comprises a material selected from the group consisting of ethylenetetrafluoroethylene (ETFE), fluorinated ethylenepropylene (FEP), polytetrafluoroethylene (PTFE), polyvinylidenefluoride (PVDF), and perfluoroalkoxy (PFA).

16. The heating apparatus of claim 14 , further comprising a variable resistor provided within the heating element, and a controller controlling an amount of the current flowing in the digital yarns by adjusting the size of the variable resistor.

17. The heating apparatus of claim 1 , wherein the coating part comprises a material selected from the group consisting of ethylenetetrafluoroethylene (ETFE), fluorinated ethylenepropylene (FEP), polytetrafluoroethylene (PTFE), polyvinylidenefluoride (PVDF), and perfluoroalkoxy (PFA).

18. The heating apparatus of claim 17 , further comprising a variable resistor provided within the heating element, and a controller controlling an amount of the current flowing in the digital yarns by adjusting the size of the variable resistor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2020
From: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
To: GAIA HEALTHCARE INC.
Reel/Frame 053883/0868 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2011
From: CHUNG, GI SOO
To: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
Reel/Frame 027287/0574 →
Priority Claims (1)
KR 10-2010-0038390 · Apr 26, 2010 · national
Continuity (1)
Related Publication 20130032589A1 · Feb 7, 2013