IP Library Granted Patent US 9,634,525
Granted Patent B2
US 9,634,525 · App. 14/619,048 · Granted Apr 25, 2017

Non-contact type power receiving apparatus

Inventors: Sang Ho Cho (Suwon-Si, KR); Hyung Wook Cho (Suwon-Si, KR); Sung Heum Park (Suwon-Si, KR); Chang Mok Han (Suwon-Si, KR); Jae Suk Sung (Suwon-Si, KR); Jeong Man Han (Suwon-Si, KR); Ki Won Chang (Suwon-Si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
H02J50/40H02J50/12
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Quick Facts
Patent No.
US 9,634,525
App. No.
14/619,048
Granted
Apr 25, 2017
Kind
B2
Abstract

In a non-contact type power receiving apparatus, two power receiving coils may share a single rectifying circuit. A non-contact type power receiving apparatus may include a first power receiving coil and a second power receiving coil, and a selective rectifying unit rectifying power from one of the first and second power receiving coils which receives the power from an external power transmitting coil in a non-contact scheme.

Claims (37)

1. A non-contact type power receiving apparatus, comprising:

a first power receiving coil and a second power receiving coil; and

a selective rectifying unit rectifying power from one of the first and second power receiving coils which receives the power from an external power transmitting coil in a non-contact scheme,

wherein the selective rectifying unit includes a plurality of switches forming a first transfer path rectifying power received from the first power receiving coil, and a second transfer path rectifying power received from the second power receiving coil and differing from the first transfer path.

2. The non-contact type power receiving apparatus of claim 1 , wherein the selective rectifying unit includes:

a first switch and a second switch rectifying the power received from the first power receiving coil; and

a third switch and a fourth switch rectifying the power received from the second power receiving coil.

3. The non-contact type power receiving apparatus of claim 2 , further comprising:

a first capacitor charged with the power received from the first power receiving coil at a time of conduction of the first switch and multiplying a voltage level thereof at a time of conduction of the second switch; and

a second capacitor charged with the power received from the second power receiving coil at a time of conduction of the fourth switch and multiplying a voltage level thereof at a time of conduction of the third switch.

4. The non-contact type power receiving apparatus of claim 2 , wherein the first switch has a source and a drain connected to one end of the first power receiving coil,

the second switch has a drain connected to the source of the first switch and a source connected to the other end of the second power receiving coil,

the third switch has a source and a drain connected to one end of the first power receiving coil together with the drain of the first switch, and

the fourth switch has a drain connected to the source of the third switch and a source connected to the other end of the second power receiving coil together with the source of the second switch.

5. The non-contact type power receiving apparatus of claim 3 , wherein the first capacitor is connected between the source of the first switch and the other end of the first power receiving coil, and

the second capacitor is connected between the source of the third switch and one end of the second power receiving coil.

6. The non-contact type power receiving apparatus of claim 1 , further comprising a converting unit converting the rectified power into charging power and transmitting the charging power to a battery.

7. A non-contact type power receiving apparatus, comprising:

a plurality of power receiving units receiving power in a non-contact scheme; and

a plurality of battery cells receiving power from each of the plurality of power receiving units and being charged with the power,

wherein each of the plurality of power receiving units includes:

a first power receiving coil and a second power receiving coil;

a selective rectifying unit rectifying power from one of the first and second power receiving coils which receives the power from an external power transmitting coil in the non-contact scheme; and

a converting unit converting the rectified power into charging power and transmitting the charging power to a corresponding battery cell, and

wherein the plurality of battery cells are electrically connected to one another in at least one of a serial connection scheme and a parallel connection scheme.

8. The non-contact type power receiving apparatus of claim 7 , wherein the selective rectifying unit includes:

a first switch and a second switch rectifying the power received from the first power receiving coil; and

a third switch and a fourth switch rectifying the power received from the second power receiving coil.

9. The non-contact type power receiving apparatus of claim 8 , further comprising:

a first capacitor charged with the power received from the first power receiving coil at a time of conduction of the first switch and multiplying a voltage level thereof at a time of conduction of the second switch; and

a second capacitor charged with the power received from the second power receiving coil at a time of conduction of the fourth switch and multiplying a voltage level thereof at a time of conduction of the third switch.

10. The non-contact type power receiving apparatus of claim 8 , wherein the first switch has a source and a drain connected to one end of the first power receiving coil,

the second switch has a drain connected to the source of the first switch and a source connected to the other end of the second power receiving coil,

the third switch has a source and a drain connected to one end of the first power receiving coil together with the drain of the first switch, and

the fourth switch has a drain connected to the source of the third switch and a source connected to the other end of the second power receiving coil together with the source of the second switch.

11. The non-contact type power receiving apparatus of claim 9 , wherein the first capacitor is connected between the source of the first switch and the other end of the first power receiving coil, and

the second capacitor is connected between the source of the third switch and one end of the second power receiving coil.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2019
From: SAMSUNG ELECTRO-MECHANICS CO., LTD.
To: WITS CO., LTD.
Reel/Frame 050451/0803 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2015
From: CHO, SANG HO; CHO, HYUNG WOOK; PARK, SUNG HEUM; HAN, CHANG MOK; SUNG, JAE SUK; HAN, JEONG MAN; CHANG, KI WON
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 034979/0515 →
Priority Claims (1)
KR 10-2014-0108568 · Aug 20, 2014 · national
Continuity (1)
Related Publication 20160056660A1 · Feb 25, 2016