IP Library Granted Patent US 12,031,638
Granted Patent B2
US 12,031,638 · App. 17/372,214 · Granted Jul 9, 2024

HVAC actuator

Inventor: Mattia Lovati (Milan, IT)
Assignee: Tyco Fire & Security GmbH
F16K31/047F16K31/54
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Quick Facts
Patent No.
US 12,031,638
App. No.
17/372,214
Granted
Jul 9, 2024
Kind
B2
Abstract

A heating, ventilation, or air conditioning (HVAC) actuator is shown. The actuator includes a motor and an epicyclic gear train assembly, including a sun gear, an annulus, and a plurality of planet gears. The epicyclic gear train assembly is configured to receive, at at least one of the sun gear or the annulus, an input motion at a first rotational velocity from the motor. The epicyclic gear train assembly is further configured to provide an output motion at a second rotational velocity to an HVAC component, the second rotational velocity different than the first rotational velocity.

Claims (59)

1. A heating, ventilation, or air conditioning (HVAC) actuator, the actuator comprising:

a motor to provide an input motion according to a signal from a controller, wherein the controller generates the signal based on the obtained measurements from one or more sensors that obtain measurements of the input motion and an output motion; and

an epicyclic gear train assembly comprising a sun gear, an annulus, and a plurality of planet gears, the epicyclic gear train assembly configured to:

receive, at at least one of the sun gear or the annulus, the input motion at a first rotational velocity from the motor; and

provide the output motion at a second rotational velocity to an HVAC component, the second rotational velocity different than the first rotational velocity.

2. The HVAC actuator of claim 1 , wherein the epicyclic gear train assembly comprises a plurality of epicyclic gear trains in series, such that a first output motion of a first epicyclic gear train of the epicyclic gear train assembly is the input motion to a second epicyclic gear train in the epicyclic gear train assembly.

3. The HVAC actuator of claim 1 , wherein the HVAC actuator is a linear actuator and the epicyclic gear train assembly is configured to:

provide the output motion to a linear motion converter, the linear motion converter comprising at least one of a leadscrew, a screw, a ball screw, a roller screw, a rack and pinion arrangement, a chain drive or a belt drive,

wherein the linear motion converter converts the received output motion to a linear motion and provides the linear motion to a valve stem of a valve assembly.

4. The HVAC actuator of claim 1 , wherein the HVAC actuator is a rotary actuator and the epicyclic gear train assembly is configured to provide the output motion to a valve stem of a valve assembly.

5. The HVAC actuator of claim 1 , wherein the epicyclic gear train assembly comprises a transmission ration ratio within a range of 11:1 to 25:1.

6. The HVAC actuator of claim 1 , wherein:

the input motion is received at the sun gear and the second rotational velocity is a first value; or

the input motion is received at the annulus and the second rotational velocity is a second value,

wherein the second value is substantially greater than the first value.

7. The HVAC actuator of claim 1 , further comprising the controller coupled to the motor and comprising a processing circuit configured to:

receive at least one of position, velocity, or acceleration data relating to operation of the epicyclic gear train assembly; and

provide a control signal to the motor, the control signal instructing the motor to adjust the input motion based on the at least one of the position, velocity, or acceleration data,

wherein the controller, the motor, and the epicyclic gear train assembly are disposed within a single housing.

8. A heating, ventilation, or air conditioning (HVAC) system for controlling an HVAC actuator, the system comprising:

a motor; and

an epicyclic gear train assembly comprising a sun gear, an annulus, and a plurality of planet gears, the epicyclic gear train assembly configured to:

receive, at at least one of the sun gear or the annulus, an input motion at a first rotational velocity from the motor; and

provide an output motion at a second rotational velocity to an HVAC component, the second rotational velocity different than the first rotational velocity;

one or more sensors configured to obtain measurements of the input motion and the output motion; and

a controller comprising a processing circuit configured to adjust the input motion based on the obtained measurements from the one or more sensors.

9. The HVAC system of claim 8 , wherein the epicyclic gear train assembly comprises a plurality of epicyclic gear trains in series, such that a first output motion of a first epicyclic gear train of the epicyclic gear train assembly is the input motion to a second epicyclic gear train in the epicyclic gear train assembly.

10. The HVAC system of claim 8 , wherein the HVAC actuator is a linear actuator and the epicyclic gear train assembly is configured to:

provide the output motion to a linear motion converter, the linear motion converter comprising at least one of a leadscrew, a screw, a ball screw, a roller screw, a rack and pinion arrangement, a chain drive or a belt drive,

wherein the linear motion converter converts the received output motion to a linear motion and provides the linear motion to a valve stem of a valve assembly.

11. The HVAC system of claim 8 , wherein the HVAC actuator is a rotary actuator and the epicyclic gear train assembly is configured to provide the output motion to a valve stem of a valve assembly.

12. The HVAC system of claim 8 , wherein the epicyclic gear train assembly comprises a transmission ratio within a range of 11:1 to 25:1.

13. The HVAC system of claim 8 , wherein:

the input motion is received at the sun gear and the second rotational velocity is a first value; or

the input motion is received at the annulus and the second rotational velocity is a second value,

wherein the second value is substantially greater than the first value.

14. The HVAC system of claim 8 , wherein the processing circuit is further configured to:

receive at least one of position, velocity, or acceleration data relating to operation of the epicyclic gear train assembly; and

provide a control signal to the motor, the control signal instructing the motor to adjust the input motion based on the at least one of the position, velocity, or acceleration data,

wherein the controller, the motor, and the epicyclic gear train assembly are disposed within a single housing.

15. A flow control system, the flow control system comprising:

a motor to provide an input motion according to a signal from a controller, wherein the controller generates the signal based on the obtained measurements from one or more sensors that obtain measurements of the input motion and an output motion; and

an epicyclic gear train assembly comprising a sun gear, an annulus, and a plurality of planet gears, the epicyclic gear train assembly configured to:

receive, at at least one of the sun gear or the annulus, an input motion at a first rotational velocity from the motor; and

provide an output motion at a second rotational velocity to a valve stem of a valve assembly, the second rotational velocity different than the first rotational velocity; and

the valve assembly disposed within a fluid stream and configured to modulate fluid flow in the fluid stream based on the output motion.

16. The flow control system of claim 15 , wherein the epicyclic gear train assembly comprises a plurality of epicyclic gear trains in series, such that a first output motion of a first epicyclic gear train of the epicyclic gear train assembly is the input motion to a second epicyclic gear train in the epicyclic gear train assembly.

17. The flow control system of claim 15 , wherein the HVAC actuator is a linear actuator and the epicyclic gear train assembly is configured to:

provide the output motion to a linear motion converter, the linear motion converter comprising at least one of a leadscrew, a screw, a ball screw, a roller screw, a rack and pinion arrangement, a chain drive or a belt drive,

wherein the linear motion converter converts the received output motion to a linear motion and provides the linear motion to the valve stem of the valve assembly.

18. The flow control system of claim 15 , wherein the epicyclic gear train assembly comprises a transmission ratio within a range of 11:1 to 25:1.

19. The flow control system of claim 15 , wherein:

the input motion is received at the sun gear and the second rotational velocity is a first value; or

the input motion is received at the annulus and the second rotational velocity is a second value,

wherein the second value is substantially greater than the first value.

20. The flow control system of claim 15 , further comprising the controller coupled to the motor and comprising a processing circuit configured to:

receive at least one of position, velocity, or acceleration data relating to operation of the epicyclic gear train assembly; and

provide a control signal to the motor, the control signal instructing the motor to adjust the input motion based on the at least one of the position, velocity, or acceleration data,

wherein the controller, the motor, and the epicyclic gear train assembly are disposed within a single housing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 066957/0796 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2021
From: LOVATI, MATTIA
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058509/0392 →
Continuity (2)
Provisional Application 63050569 · Jul 10, 2020
Related Publication 20220010888A1 · Jan 13, 2022
Cited By (1)
US 12,545,504