IP Library Granted Patent US 9,407,202
Granted Patent B2
US 9,407,202 · App. 14/440,983 · Granted Aug 2, 2016

Spin-transfer torque type injection locking oscillator and design method thereof

Inventors: ChulSoon Park (Daejeon, KR); SeongJun Cho (Daejeon, KR)
Assignee: Korea Advanced Institute of Science and Technology
H03B15/006B82Y25/00G01R33/093G01R33/098G01R33/1284H01F10/329H01L43/12H03B27/00H03L7/23H03L7/24G06F17/5068
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Quick Facts
Patent No.
US 9,407,202
App. No.
14/440,983
Granted
Aug 2, 2016
Kind
B2
Abstract

The present invention provides a spin-transfer torque type injection locking oscillator which improves both power and noise performance by using pair of spin-transfer torque devices. One is optimized for high power and the other is optimized for low noise characteristics. The output signal of the low noise spin-transfer torque device is injected into the high output power spin-transfer torque for phase locking. The present invention has several advantages such as the miniaturization, the high quality and low cost, and the mass production of integrated chips by the nanoscale.

Claims (32)

1. A spin-transfer torque type injection locking oscillator, comprising:

a low noise spin-transfer torque device operating as an injection oscillator by current control;

a high output power spin-transfer torque device operating as a free running oscillator by current control; and

a coupler coupling an output terminal of the low noise spin-transfer torque device and an input terminal of the high output power spin-transfer torque device,

wherein the high output power spin-transfer torque device outputs signals by receiving output signals of the low noise spin-transfer torque device.

2. The spin-transfer torque type injection locking oscillator of claim 1 , wherein the high output power spin-transfer torque device is an array formed by a plurality of spin-transfer torque devices.

3. The spin-transfer torque type injection locking oscillator of claim 1 , wherein the coupler is a direction coupler, a combiner, or a circulator.

4. The spin-transfer torque type injection locking oscillator of claim 1 , wherein the low noise spin-transfer torque device includes a structure of magnetic vortex.

5. The spin-transfer torque type injection locking oscillator of claim 1 , wherein the low noise spin-transfer torque device and the high output power spin-transfer torque device is operate by voltage control instead of the current control.

6. A spin-transfer torque type injection locking oscillator, comprising:

a high output power spin-transfer torque device operating as an injection oscillator by current control;

a low noise spin-transfer torque device operating as a free running oscillator by current control; and

a coupler coupling an output terminal of the high output spin-transfer torque device and an input terminal of the low noise spin-transfer torque device,

wherein the high output power spin-transfer torque device generates output signals by receiving output signals of the low noise spin-transfer torque device.

7. The spin-transfer torque type injection locking oscillator of claim 6 , wherein the high output power spin-transfer torque device is an array formed by a plurality of spin-transfer torque devices.

8. The spin-transfer torque type injection locking oscillator of claim 6 , wherein the coupler is a direction coupler, a combiner, or a circulator.

9. The spin-transfer torque type injection locking oscillator of claim 6 , wherein the low noise spin-transfer torque device includes a structure of magnetic vortex.

10. The spin-transfer torque type injection locking oscillator of claim 6 , wherein the low noise spin-transfer torque device and the high output power spin-transfer torque device operate by voltage control instead of the current control.

11. A spin-transfer torque type injection locking oscillator, comprising:

a current control injection oscillator including

a low noise spin-transfer torque device operating by current control, and

a first power supply supplying a first current to the low noise spin-transfer torque device;

a current control free running oscillator including

a high output power spin-transfer torque device operating by current control, and

a second power supply supplying a second current to the high output power spin-transfer torque device;

a coupler coupling an output terminal of the low noise spin-transfer torque device and an input terminal of the high output power spin-transfer torque device,

wherein the current control free running oscillator outputs signals by receiving output signals of the current control injection oscillator.

12. The spin-transfer torque type injection locking oscillator of claim 11 , wherein the high output power spin-transfer torque device is an array formed by a plurality of spin-transfer torque devices.

13. The spin-transfer torque type injection locking oscillator of claim 11 , wherein the coupler is a direction coupler, a combiner, or a circulator.

14. The spin-transfer torque type injection locking oscillator of claim 11 , wherein the low noise spin-transfer torque device includes a structure of magnetic vortex.

15. The spin-transfer torque type injection locking oscillator of claim 11 , wherein the low noise spin-transfer torque device and the high output power spin-transfer torque device operate by voltage control instead of the current control.

16. The spin-transfer torque type injection locking oscillator of claim 11 , wherein the first current supplied to the low noise spin-transfer torque device and the second current supplied to the high output power spin-transfer torque device are different in magnitude each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2015
From: PARK, CHULSOON; CHO, SEONGJUN
To: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY
Reel/Frame 035576/0146 →
Priority Claims (1)
KR 10-2012-0126036 · Nov 8, 2012 · national
Continuity (1)
Related Publication 20150303873A1 · Oct 22, 2015