IP Library › Granted Patent US 9,664,405
Granted Patent B2
US 9,664,405 · App. 14/048,335 · Granted May 30, 2017

Control system for energy recovery ventilator

Inventors: Dwight H. Heberer (Brownsburgn, IN); Daniel J. Dempsey (Carmel, IN)
Assignee: CARRIER CORPORATION
F24F12/006F24F11/0015F24F11/0076F24F2011/0013F24F2011/0016Y02B30/563
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,664,405
App. No.
14/048,335
Granted
May 30, 2017
Kind
B2
Abstract

An energy recovery ventilator control system is operable to be energized by electrical connection to a heating and cooling system including a thermostat/humidistat in fluid communication with each of an intake air duct and an exhaust air duct. The energy recovery ventilator control system is operable to regulate air temperature and humidity within a building using a temperate and humidity control scheme.

Claims (14)

1. An energy recovery ventilator operable to be energized by electrical connection to a heating and cooling system in fluid communication with each of an intake air duct and an exhaust air duct, the control system comprising:

a humidity sensor operable to detect an outside humidity level and including a switch that is operable to be in a first state when the outside humidity is at a preset humidity level and a second state when the outside humidity level is lower than the preset humidity level;

an air temperature sensor operable to detect an outside air temperature and including a switch that is operable to be in a first state when the outside air temperature is at a preset outside temperature level and a second state when the outside air temperature is higher than the preset outside air temperature level;

an exhaust fan motor;

an intake fan motor operable to be in electrical communication with an intake fan motor switch contact;

an exhaust damper motor operable to be in electrical communication with an exhaust damper motor switch contact and operable to open and close an exhaust damper;

an intake damper motor operable to be in electrical communication with a first intake damper switch contact and a second intake damper switch contact and operable to open and close an intake damper;

a dehumidification control switch in electrical communication with the intake fan motor through the intake fan motor switch contact and the intake damper motor through the first intake damper motor switch contact; and

a cold air switch operable to be in electrical communication with the humidity sensor, the air temperature sensor, the exhaust damper motor through the exhaust damper motor switch contact, and the intake damper motor through the second intake damper motor switch contact, wherein the cold air switch is operable to be energized if the outside humidity measured by the humidity sensor is at the preset humidity level or if the outside temperature measured by the air temperature sensor is at the preset outside air temperature level.

2. The energy recovery ventilator according to claim 1 , wherein the dehumidification control switch is operable, when energized to provide power to the intake fan motor by closing the intake fan motor switch contact, while opening the first intake damper switch contact to shut off the intake damper motor.

3. The energy recovery ventilator according to claim 1 , wherein the intake fan motor switch contacts are normally opened, the exhaust damper motor switch contacts are normally opened, the first intake damper motor switch contacts are normally opened, and the second intake damper motor switch contacts are normally closed.

4. The energy recovery ventilator according to claim 1 , wherein the intake fan motor switch contacts are normally opened, the exhaust damper motor switch contacts are normally opened, the first intake damper motor switch contacts are normally closed, and the second intake damper motor switch contacts are normally opened.

5. The energy recovery ventilator according to claim 1 , wherein if the humidity sensor detects that the outside humidity is at least about 85%, then the humidity sensor is operable to energize the cold air switch to disable current flow to the exhaust fan motor and the intake fan motor; close the exhaust damper by disabling current flow to the exhaust damper motor; and close the intake damper by disabling current flow to the intake damper motor.

6. The energy recovery ventilator according to claim 1 , further comprising a transformer and a power supply, wherein both the transformer and the power supply are in electrical communication with the heating and cooling system and are operable to provide a reduced operating voltage to the exhaust fan motor and the intake fan motor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2013
From: HEBERER, DWIGHT H.; DEMPSEY, DANIEL J.
To: CARRIER CORPORATION
Reel/Frame 031363/0285 →
Continuity (2)
Provisional Application 61727614 · Nov 16, 2012
Related Publication 20140138076A1 · May 22, 2014