IP Library › Granted Patent US 11,519,518
Granted Patent B2
US 11,519,518 · App. 16/463,807 · Granted Dec 6, 2022

Gear motor, particularly intended for an air circulation valve

Inventors: Samuel Equoy (Besançon, FR); Gaël Andrieux (Evilard, CH)
Assignee: MOVING MAGNET TECHNOLOGIES
F16K31/043F02D9/10F02D9/1065F16K1/221F16K27/0218F16K31/041H02K1/146H02K1/27H02K7/116H02K7/14H02K11/215H02K11/33H02K21/14H02K21/16H02K37/14H02K2213/03
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Quick Facts
Patent No.
US 11,519,518
App. No.
16/463,807
Granted
Dec 6, 2022
Kind
B2
Abstract

The disclosure relates to a motorised air circulation valve including a gear motor, a valve body, and a rotary shaft provided with a shutter. The rotary shaft is rotated by the gear motor, where gear motor includes a set of reduction gears, a brushless electric motor formed by a rotor having N pairs of magnetised poles connected to a pinion of the set of reduction gears, and the pinion drives an output wheel rigidly connected to the rotary shaft. The electric motor includes a stator part having at least two coils, the stator part having two angular sectors, alpha 1 and alpha 2 , of respective radii R 1 and R 2 , with R 1 being greater than R 2 , and the center of the radii and the angular sectors being defined relative to the center of rotation of the rotor. The angular sector alpha 1 is defined by the angular deviation between the axes of the first and last coils considered in a circumferential direction of the motor, the angular sector alpha 1 is less than 180° and includes the coils, the sector alpha 2 is devoid of a fully fitted coil, an end of the gear motor defines a side of the gear motor, and the angular sector alpha 2 of the stator part is positioned facing the side.

Claims (38)

1. A gear motor comprising:

a set of reduction gears;

a gear motor body;

a brushless electric motor formed by a rotor having N pairs of magnetized poles connected to a pinion of the set of reduction gears, the gear motor body having the brushless motor therein;

the pinion driving an output wheel rigidly connected to a rotary shaft;

the brushless electric motor comprising a stator having at least two coils;

the stator having two angular sectors alpha 1 and alpha 2 , of respective radii R 1 and R 2 , with R 1 being greater than R 2 , a center of the radii and the angular sectors being defined relative to a center of rotation of the rotor, the angular sector alpha 1 being defined by an angular deviation between axes of first and last of the coils considered in a circumferential direction of the motor, the angular sector alpha 1 is less than 180° and comprises the coils, the sector alpha 2 being devoid of the at least two coils;

one end of the gear motor body defining a side and the angular sector alpha 2 of the stator is positioned adjacent the side and the angular sector alpha 1 is positioned opposite the side relative to the center of rotation of the rotor; and

a printed circuit attached to the brushless electric motor, and being positioned between the brushless electric motor and the set of reduction gears.

2. The gear motor according to claim 1 , wherein the pinion directly engages the output wheel, and the gear motor has a single reduction stage.

3. The gear motor according to claim 1 , wherein the stator has wide teeth and narrow teeth respectively extending radially from an annular gear, the wide teeth having a width greater than or equal to twice the width of the narrow teeth.

4. The gear motor according to claim 1 , wherein the pinion has a helical shape.

5. The gear motor according to claim 1 , wherein the gear motor comprises a magnetosensitive probe positioned on the printed circuit, and the rotary shaft being rigidly connected to a sensor magnet positioned at an end of the shaft and opposite the magnetosensitive probe.

6. The gear motor according to claim 1 , wherein the gear motor comprises a magnetosensitive probe positioned on the printed circuit, and the rotary shaft being rigidly connected to a sensor magnet as an angular sector rotating around the shaft and positioned opposite the magnetosensitive probe.

7. The gear motor according to claim 1 , wherein a sensor magnet is positioned radially relative to the shaft, opposite the electric motor.

8. The gear motor according to claim 1 , wherein the set of reduction gears has two stages.

9. A motorized air circulation valve comprising:

a gear motor within a gear motor body;

a valve body;

a rotary shaft provided with a shutter, the rotary shaft being moved in rotation by the gear motor;

the gear motor comprising a set of reduction gears;

a brushless electric motor formed by a rotor having N pairs of magnetic poles connected to a pinion of the set of reduction gears;

the pinion driving an output wheel rigidly connected to the rotary shaft;

the brushless electric motor comprising a stator having at least two coils, the stator having two angular sectors alphal and alpha 2 , of respective radii R 1 and R 2 , with R 1 greater than R 2 , a center of the radii and the angular sectors being defined relative to a center of rotation of the rotor, the angular sector alpha 1 being defined by an angular deviation between axes of first and last of the coils considered in a circumferential direction of the motor, the angular sector alpha 1 is less than 180° and comprises coils, the angular sector alpha 2 being devoid of the at least two coils;

one end of the valve body defining a side and the angular sector alpha 2 of the stator is positioned adjacent the side and the angular sector alphal positioned opposite the side relative to the center of rotation of the rotor; and

a printed circuit attached to the brushless electric motor, and being positioned between the brushless electric motor and the set of reduction gears.

10. The motorized air circulation valve according to claim 9 , wherein the gear motor is located above the shutter, the valve body defines a conduit axis and a largest dimension of the gear motor is oriented substantially parallel to the conduit axis.

11. The motorized air circulation valve according to claim 9 , wherein the gear motor is located above the shutter, the valve body defines a conduit axis and a largest dimension of the gear motor is oriented substantially perpendicularly to the conduit axis.

12. The motorized air circulation valve according to claim 9 , wherein the gear motor is formed by an extension of the valve body on one hand and a cover on another hand.

13. A motorized valve comprising:

a valve body;

a gear motor comprising:

a set of reduction gears;

a brushless electric motor formed by a rotor having N pairs of magnetized poles connected to a first gear of the set of reduction gears;

a printed circuit attached to the brushless electric motor, and being positioned between the brushless electric motor and the set of reduction gears;

the first gear driving an output wheel rigidly connected to a rotary shaft having a shaft axis;

the brushless electric motor comprising a stator having at least two coils; and

the stator having two angular sectors alpha 1 and alpha 2 , of respective radii R 1 and R 2 , with R 1 being greater than R 2 , a center of the radii and the angular sectors being defined relative to a center of rotation of the rotor, the angular sector alpha 1 being defined by an angular deviation between axes of first and last of the coils considered in a circumferential direction of the motor, the angular sector alpha 1 is less than 180° and comprises the coils, at least a portion of the angular sector alphal directly adjacent to the first gear in a direction of the shaft axis, the sector alpha 2 being devoid of the at least two coils.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2019
From: EQUOY, SAMUEL; ANDRIEUX, GAËL
To: MOVING MAGNET TECHNOLOGIES
Reel/Frame 049887/0717 →
Priority Claims (1)
FR 1661430 · Nov 24, 2016 · national
Continuity (1)
Related Publication 20190285190A1 · Sep 19, 2019