IP Library Granted Patent US 9,225,199
Granted Patent B2
US 9,225,199 · App. 13/427,850 · Granted Dec 29, 2015

Variable power energy harvesting system

Inventors: Ross E. Teggatz (McKinney, TX); Wayne T. Chen (Plano, TX); Brett Smith (McKinney, TX); Eric Blackall (Richardson, TX)
Assignee: TRIUNE IP, LLC
H02J7/34H02J7/00H02J7/35H02J3/383H02J7/047Y02E10/56Y02E10/563Y02E10/566
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Quick Facts
Patent No.
US 9,225,199
App. No.
13/427,850
Granted
Dec 29, 2015
Kind
B2
Abstract

Systems for harvesting energy from a variable output energy harvesting apparatus are disclosed. The systems include an energy harvesting apparatus for providing energy input to a switched mode power supply and a control loop for dynamically adjusting energy harvesting apparatus input to the switched mode power supply, whereby system output power is substantially optimized to the practical. Exemplary embodiments include systems for harvesting energy using solar cells in boost, buck, and buck-boost configurations.

Claims (29)

1. A single-chip system for harvesting energy from a variable output energy harvesting apparatus comprising:

energy harvesting apparatus for providing energy input;

a switched mode power supply operably coupled to receive the input of the ene harvesting apparatus, and for providing a system output power signal; and

a control loop having control logic for dynamically adjusting energy harvesting apparatus input to the switched mode power supply, thereby regulating the system output power signal, wherein the control loop further comprises a battery temperature sensor apparatus having components that are contained in the single chip system, the battery temperature sensing apparatus having a plurality of temperature sensing ranges selectable as a function of a battery temperature, and the control loop configured to select a regulation voltage across the battery as a function of the battery temperature sensing ranges.

2. A system for harvesting energy according to claim 1 wherein the energy harvesting apparatus further comprises one or more photovoltaic cells coupled to the single chip system.

3. A system for harvesting energy according to claim 1 wherein the switched mode power supply further comprises a boost configuration contained in the single chip system with battery thermal control circuitry.

4. A system for harvesting energy according to claim 1 wherein the switched mode power supply further comprises a buck configuration contained in the single chip system with over and under voltage protection circuitry.

5. A system for harvesting energy according to claim 1 wherein the switched mode power supply further comprises a buck-boost configuration contained in the single chip system.

6. A system for harvesting energy according to claim 1 wherein the switched mode power supply is adapted to provide low power input voltage regulation contained in the single chip system.

7. A system for harvesting energy according to claim 1 wherein the switched mode power supply is adapted to provide low power temperature independent MPPT regulation.

8. A system for harvesting energy according to claim 1 wherein the switched mode power supply is adapted to provide hysteretic input voltage regulation.

9. A system for harvesting energy according to claim 1 wherein the switched mode power supply is adapted to provide a low power mode and polling capability contained in the single chip system.

10. A system for harvesting energy according to claim 1 wherein the switched mode power supply is adapted to provide a low power linear mode contained in the single chip system.

11. A system for harvesting energy according to claim 1 further comprising a charge pump in parallel with the switched mode power supply contained in the single chip system.

12. A system for harvesting energy according to claim 1 wherein the energy harvesting apparatus further comprises a plurality of energy harvesting devices in a reconfigurable stack coupled to the single chip system.

13. A system for harvesting energy according to claim 1 further comprising one or more storage capacitors interposed between the energy harvesting apparatus single chip system.

14. A system for harvesting energy according to claim 1 further comprising a load operably coupled to the single chip system for receiving the system output power signal.

15. A system for harvesting energy from variable output energy harvesting apparatus comprising:

an energy harvesting apparatus configured to provide an energy input;

a single chip system comprising:

a switched mode power supply operably coupled to receive the input of the energy harvesting apparatus, and configured to provide a system output power signal; and

a control loop having control logic configured to dynamically adjust the energy input to the switched mode power supply as a function of battery hysteresis and batten′ temperature, wherein the control loop is adapted to provide hysteretic input voltage regulation by using a plurality of temperature sensing ranges selectable as a function of a battery temperature, and the control loop configured to select a regulation voltage across the battery as a function of the battery temperature sensing ranges.

16. A system for harvesting energy according to claim 15 wherein the switched mode power supply is adapted to provide low power temperature-independent MPPT regulation.

17. A system for harvesting energy variable output energy harvesting apparatus comprising:

an energy harvesting apparatus for providing energy input;

a single chip system comprising:

a switched mode power supply operably coupled to receive the input of the energy harvesting apparatus, and configured to provide a system output power signal; and

a control loop having control logic for dynamically adjusting the energy input to the switched mode power supply as a function of battery temperature by using a plurality of response curves having different degrees of hysteresis, where each of the response curves is associated with a different temperature sensing range that is selectable as a function of a battery temperature and the control loop configured to select a regulation voltage across the battery as a function of the battery temperature sensing ranges.

18. A system for harvesting energy according to claim 17 wherein the switched mode power supply is adapted to provide a low power mode and polling capability.

Assignments (4)
ASSIGNMENT OF PATENT SECURITY INTEREST PREVIOUSLY RECORDED AT REEL/FRAME (040646/0799) Recorded Feb 17, 2023
From: HSBC BANK USA, NATIONAL ASSOCIATION, AS RESIGNING AGENT
To: JPMORGAN CHASE BANK, N.A., AS SUCCESSOR AGENT
Reel/Frame 062781/0544 →
SECURITY INTEREST Recorded Nov 17, 2016
From: SEMTECH CORPORATION; SEMTECH NEW YORK CORPORATION; SIERRA MONOLITHICS, INC.; SEMTECH EV, INC.; TRIUNE SYSTEMS, L.L.C.; TRIUNE IP, LLC
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 040646/0799 →
SECURITY INTEREST Recorded May 28, 2015
From: TRIUNE SYSTEMS, L.L.C.
To: HSBC BANK USA, NATIONAL ASSOCIATION
Reel/Frame 035732/0307 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2015
From: TEGGATZ, ROSS E.; CHEN, WAYNE; SMITH, BRETT; BLACKALL, ERIC
To: TRIUNE SYSTEMS, LLC
Reel/Frame 035032/0057 →
Continuity (2)
Provisional Application 61466049 · Mar 22, 2011
Related Publication 20120293021A1 · Nov 22, 2012