IP Library Granted Patent US 7,673,809
Granted Patent B2
US 7,673,809 · App. 11/162,124 · Granted Mar 9, 2010

Thermostat relay control

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Quick Facts
Patent No.
US 7,673,809
App. No.
11/162,124
Granted
Mar 9, 2010
Kind
B2
Abstract

The present invention, in illustrative embodiments, includes methods and devices for reducing power consumption in a thermostat by adjusting pulse levels (duration and/or voltage) that are used to control an HVAC relay in light of variations of ambient conditions or other relay conditions. In some illustrative embodiments, an ambient condition is observed using existing thermostat features, such as, for example, a temperature sensor, and used to adjust pulse parameters.

Claims (34)

1. A thermostat for managing one or more conditions in a controlled space, the thermostat comprising:

a temperature sensing element for sensing a current sensed temperature, resulting in a current sensed temperature value;

a relay;

a controller coupled to the temperature sensing element and the relay, the controller applying an electrical pulse to the relay to selectively actuate the relay, wherein the controller is configured to reduce power consumption by setting at least one parameter of the electrical pulse to a value that is dependent on the current sensed temperature value such that the electrical pulse is sufficient to actuate the relay without undue waste of energy.

2. The thermostat of claim 1 wherein the relay is a latching relay.

3. The thermostat of claim 1 wherein the electrical pulse has a duration and an amplitude, and the controller is configured to set at least one of the duration of the electrical pulse and the amplitude of the electrical pulse according to the sensed temperature.

4. The thermostat of claim 1 wherein the electrical pulse has a duration and an amplitude, and the controller is configured to set both the duration and the amplitude of the electrical pulse according to the sensed temperature.

5. The thermostat of claim 1 wherein the thermostat is configured for use in an HVAC system, and wherein the relay is configured for relaying power for at least one of a ventilation system, a heating system, or an air conditioning system.

6. The thermostat of claim 1 wherein the controller has access to a lookup table for determining parameters for the electrical pulse based on the temperature.

7. The thermostat of claim 1 wherein the controller uses a formula to determine parameters for the electrical pulse according to the temperature.

8. A thermostat for managing one or more conditions in a controlled space, the thermostat comprising:

a temperature sensing element for sensing a current sensed temperature;

a relay;

a controller coupled to the temperature sensing element and the relay, the controller applying an electrical pulse to the relay to selectively set or reset the relay, wherein the controller is configured to set at least one parameter of the electrical pulse to a value that is dependent on the current sensed temperature;

wherein the electrical pulse has an amplitude and a duration, and the controller is configured such that, at a first temperature the electrical pulse has a first duration and a first amplitude, and at a second temperature higher than the first temperature, the electrical pulse has a second duration and a second amplitude, wherein at least one of the following conditions is true:

the second duration is longer than the first duration;

the second amplitude is greater than the first amplitude.

9. A thermostat for managing one or more conditions in a controlled space, the thermostat comprising:

a relay, the relay having a temperature dependent switching characteristic that when the relay is at a higher temperature, an electrical switching pulse needs to be more energetic to actuate the relay than when the relay is at a lower temperature;

a temperature sensing element for sensing a current temperature in or around the relay; and

a controller coupled to the temperature sensing element and the relay, the controller applying an electrical switching pulse to the relay to selectively actuate the relay, wherein the controller is configured to provide a more energetic electrical switching pulse when the temperature sensing element senses a higher temperature than when the temperature sensing element senses a lower temperature.

10. The thermostat of claim 9 wherein the relay is a latching relay.

11. The thermostat of claim 9 wherein the electrical pulse has a duration and an amplitude, and the controller is configured to set at least one of the duration of the electrical pulse and the amplitude of the electrical pulse according to the sensed temperature of the relay.

12. The thermostat of claim 9 wherein the electrical pulse has a duration and an amplitude, and the controller is configured to set both the duration and the amplitude of the electrical pulse according to the sensed temperature of the relay.

13. The thermostat of claim 9 wherein the thermostat is configured for use in an HVAC system, and wherein the relay is configured for relaying power for at least one of a ventilation system, a heating system, or an air conditioning system.

14. The thermostat of claim 9 wherein the controller has access to a lookup table for determining parameters for the electrical pulse using the temperature.

15. The thermostat of claim 9 wherein the controller uses a formula to determine parameters for the electrical pulse according to the temperature.

16. A thermostat for managing one or more conditions in a controlled space, the thermostat comprising:

a relay;

a temperature sensing element for sensing a temperature in or around the relay; and

a controller coupled to the temperature sensing element and the relay, the controller applying an electrical pulse to the relay to selectively set or reset the relay, wherein at least one parameter of the electrical pulse is dependent on the sensed temperature of the relay;

wherein the electrical pulse has an amplitude and a duration, and the controller is adapted such that, at a first temperature the electrical pulse has a first duration and a first amplitude, and at a second temperature higher than the first temperature, the electrical pulse has a second duration and a second amplitude, wherein at least one of the following conditions is true:

the second duration is longer than the first duration;

the second amplitude is greater than the first amplitude.

Assignments (3)
CHANGE OF NAME Recorded Jun 12, 2025
From: ADEMCO INC.
To: RESIDEO LLC
Reel/Frame 071546/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2021
From: HONEYWELL INTERNATIONAL INC.
To: ADEMCO INC.
Reel/Frame 056522/0420 →
SECURITY INTEREST Recorded Oct 26, 2018
From: ADEMCO INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 047337/0577 →