IP Library Granted Patent US 9,460,321
Granted Patent B1
US 9,460,321 · App. 14/464,634 · Granted Oct 4, 2016

Zero-power receiver

Inventor: Robert W. Brocato (Sandia Park, NM)
Assignee: Sandia Corporation
G06K7/0008G01J5/34G06K7/10079G06K19/0723H03D1/00H03H9/56H03H9/64H04L27/06
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Quick Facts
Patent No.
US 9,460,321
App. No.
14/464,634
Granted
Oct 4, 2016
Kind
B1
Abstract

An unpowered signal receiver and a method for signal reception detects and responds to very weak signals using pyroelectric devices as impedance transformers and/or demodulators. In some embodiments, surface acoustic wave devices (SAW) are also used. Illustrative embodiments include satellite and long distance terrestrial communications applications.

Claims (32)

1. A zero power signal receiver, comprising;

at least a first receiver stage to receive an input, the first receiver stage having a bandpass filter electrically connected to a first pyroelectric device having an input resistor and a first pyroelectric element thermally coupled to the input resistor;

a detector receiving a detector input from a receiver stage to produce an output; and

a second pyroelectric device having a second input resistor and a second pyroelectric element thermally coupled to the second input resistor, wherein the second pyroelectric device provides the input to the first receiver stage.

2. The zero power signal receiver of claim 1 , further comprising an antenna wherein the second pyroelectric device provides an impedance transformation between an output impedance of the antenna and an input impedance of the first receiver stage.

3. The zero power signal receiver of claim 1 , further comprising a second receiver stage wherein the first receiver stage provides an input to the second receiver stage.

4. The zero power signal receiver of claim 1 , wherein at least one receiver stage has the bandpass filter electrically connected to the input resistor.

5. The zero power signal receiver of claim 1 , wherein at least one receiver stage has an amplifier electrically connected to at least one of the bandpass filter and the first pyroelectric device.

6. The zero power signal receiver of claim 1 , wherein at least one receiver stage uses the first pyroelectric device to perform amplitude demodulation.

7. The zero power signal receiver of claim 1 , wherein the detector produces an output adapted to communicate with biological systems.

8. A zero power signal receiver, comprising:

a first pyroelectric device having a first input resistor to receive an input signal, and a first pyroelectric element being thermally coupled to the first input resistor;

a bandpass filter to receive an input from the first pyroelectric element;

a second pyroelectric device having a second input resistor to receive an input from the bandpass filter, and a second pyroelectric element being thermally coupled to the second input resistor; and

a detector to receive an input from the second pyroelectric element and to produce an output.

9. The zero power signal receiver of claim 8 , further comprising an antenna that provides the input signal to the first pyroelectric device.

10. The zero power signal receiver of claim 9 , wherein the first pyroelectric device provides an impedance transformation between an output impedance of the antenna and an input impedance of the bandpass filter.

11. The zero power signal receiver of claim 8 , wherein the second pyroelectric device performs amplitude demodulation.

12. The zero power signal receiver of claim 8 , wherein the detector produces an output adapted to communicate with biological systems.

13. The zero power signal receiver of claim 8 , wherein the detector comprises a FET.

14. A zero power signal receiver, comprising:

a first bandpass filter to receive an input signal;

a first pyroelectric device having a first input resistor to receive an input from the first bandpass filter, and a first pyroelectric element being thermally coupled to the first input resistor;

a second bandpass filter to receive an input from the first pyroelectric element;

a second pyroelectric device having a second input resistor to receive an input from the second bandpass filter, and a second pyroelectric element being thermally coupled to the second input resistor; and

a detector to receive an output from the second pyroelectric element and to produce an output.

15. The zero power signal receiver of claim 14 , further comprising an antenna that provides the input signal to the first bandpass filter.

16. The zero power signal receiver of claim 14 , wherein the first pyroelectric device performs amplitude demodulation.

17. The zero power signal receiver of claim 14 , wherein the second pyroelectric device performs amplitude demodulation.

18. The zero power signal receiver of claim 14 , wherein the first bandpass filter comprises a SAW device.

19. The zero power signal receiver of claim 14 , wherein the detector produces an output adapted to communicate with biological systems.

20. The zero power signal receiver of claim 14 , wherein the detector comprises a FET.

Assignments (3)
CHANGE OF NAME Recorded May 25, 2018
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 047052/0192 →
CONFIRMATORY LICENSE Recorded Feb 20, 2015
From: SANDIA CORPORATION
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 035054/0403 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2014
From: BROCATO, ROBERT W.
To: SANDIA CORPORATION
Reel/Frame 033704/0564 →