IP Library Granted Patent US 12,437,918
Granted Patent B2
US 12,437,918 · App. 18/891,578 · Granted Oct 7, 2025

Capacitor mount

Inventors: Jonathan Coburn Charles (Ormond Beach, FL); Christopher Roger Baron (Palm Coast, FL); Jeffrey Steven Howard (Deltona, FL)
Assignee: AmRad Manufacturing, LLC
H01G2/04
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Quick Facts
Patent No.
US 12,437,918
App. No.
18/891,578
Granted
Oct 7, 2025
Kind
B2
Abstract

A mount includes a rectangular shaped back surface configured to interface to a surface of a separate object, a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter, and a channel configured to receive a strap and that extends through the mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion, wherein the strap extended through the channel secures the cylindrical-shaped capacitor having a first diameter or the cylindrical-shaped capacitor having a second diameter received by the mount.

Claims (84)

1. A system comprising:

an apparatus suitable for use in an air-conditioning system and configured to provide a plurality of selectable capacitance values, the apparatus comprising:

at least three capacitive devices, each of the at least three capacitive devices providing a capacitor having a capacitance value, each of the at least three capacitive devices having a capacitor terminal;

a case configured to receive the at least three capacitive devices, the case having an open end;

a cover positioned at the open end of the case, the cover comprising:

at least three capacitor cover terminals, each of the at least three capacitor cover terminals corresponding to one of the at least three capacitors, and each of the at least three capacitor cover terminals having three contacts extending from the cover;

at least three insulation structures, each of the at least three insulation structures configured to provide insulation for a respective one of the at least three capacitor cover terminals; and

a common cover terminal having four contacts extending from the cover, wherein the common cover terminal is electrically connected to the at least three capacitive devices;

at least three conductors, each of the at least three conductors configured to electrically connect the capacitor terminal of one of the at least three capacitive devices to the corresponding capacitor cover terminal; and

a bottom cup having a post, the bottom cup positioned within the case between at least one of the at least three capacitive devices and a bottom wall of the case; and

a mount comprising:

a rectangular shaped back surface configured to interface to a surface of a separate object;

a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter;

a connector extending from the rectangular shaped back surface, the connector being configured to interface to another connector of a second mount; and

a channel configured to receive a strap and that extends through the mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion;

wherein the strap extends through the channel and secures the apparatus to the mount.

2. The mount of claim 1 , further comprising a plurality of openings, each opening of the plurality of openings configured to receive a cable tie and each opening of the plurality of openings extending through the mount.

3. The mount of claim 2 , wherein each opening of the plurality of openings is connected through a series of channels.

4. The mount of claim 2 , wherein each opening has dimensions of about 0.1 inches by about 0.25 inches.

5. The mount of claim 1 , wherein the first arch having the first radius is located at a center of the first arch-shaped cutout, and the second arch having the second radius is located at a first end and a second end of the first arch-shaped cutout.

6. The mount of claim 1 , further comprising a plurality of holes configured to receive fasteners and that extend through the mount to the rectangular shaped back surface.

7. The mount of claim 1 , wherein the rectangular shaped back surface has a height in a range of one inch to five inches and a width in a range of one inch to ten inches.

8. The mount of claim 1 , wherein the channel configured to receive the strap has dimensions of about 0.25 inches by about 0.5 inches.

9. The mount of claim 1 , wherein the first radius is about 2.16 inches.

10. The mount of claim 9 , wherein the second radius is about 2.5 inches.

11. The mount of claim 1 , wherein the mount is formed of at least one of the following materials: polymer, ceramic, and metal.

12. A system comprising:

a first apparatus suitable for use in an air-conditioning system and configured to provide a first plurality of selectable capacitance values, the first apparatus comprising:

at least three capacitive devices, each of the at least three capacitive devices providing a first capacitor having a capacitance value, each of the at least three capacitive devices having a capacitor terminal;

a case configured to receive the at least three capacitive devices, the case having an open end;

a cover positioned at the open end of the case, the cover comprising:

at least three capacitor cover terminals, each of the at least three capacitor cover terminals corresponding to one of the at least three capacitors, and each of the at least three capacitor cover terminals having three contacts extending from the cover;

at least three insulation structures, each of the at least three insulation structures configured to provide insulation for a respective one of the at least three capacitor cover terminals; and

a common cover terminal having four contacts extending from the cover, wherein the common cover terminal is electrically connected to the at least three capacitive devices;

at least three conductors, each of the at least three conductors configured to electrically connect the capacitor terminal of one of the at least three capacitive devices to the corresponding capacitor cover terminal;

a second apparatus suitable for use in the air-conditioning system and configured to provide a second plurality of selectable capacitance values, the second apparatus comprising:

a container capable of receiving a plurality of capacitive devices, each of the capacitive devices having a first capacitor terminal and a second capacitor terminal;

a cover mountable to the container, the cover comprising:

a common cover terminal having at least one contact extending from the cover;

a plurality of capacitor cover terminals, each of the plurality of capacitor cover terminals having at least one contact extending from the cover; and

a plurality of insulation structures, each insulation structure associated with one of the plurality of capacitor cover terminals;

a plurality of first conductors, each first conductor electrically connectable to one of the first capacitor terminals of the plurality of capacitive devices and one of the plurality of capacitor cover terminals;

a second conductor electrically connectable to each of the second capacitor terminals of the plurality of capacitive devices and the common cover terminal; and

a relay having contacts and being capable of opening said contacts in response to a condition;

a first mount comprising:

a rectangular shaped back surface configured to interface to a surface of a separate object;

a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter;

a connector extending from the rectangular shaped back surface, the connector being configured to interface to another connector of a second mount; and

a channel configured to receive a strap and that extends through the first mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion; and

a second mount comprising:

a rectangular shaped back surface configured to interface to a surface of a separate object;

a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter;

a connector extending from the rectangular shaped back surface, the connector being configured to interface to the first connector of the first mount; and

a channel configured to receive a strap and that extends through the second mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion;

wherein a first strap extends through the channel of the first mount and around the first apparatus and secures the first apparatus to the first mount, wherein a second strap extends through the channel of the second mount and around the second apparatus and secures the second apparatus to the second mount, and wherein the first mount is connected to the second mount via the interface between the connector of the first mount and the connector of the second mount.

13. The system of claim 12 , wherein at least one of the first mount and the second mount further comprises a plurality of openings, each opening of the plurality of openings configured to receive a cable tie and each opening of the plurality of openings extending through the at least one of the first mount and the second mount.

14. The system of claim 13 , wherein each opening of the plurality of openings is connected through a series of channels.

15. The system of claim 13 , wherein each opening has dimensions of about 0.1 inches by about 0.25 inches.

16. The system of claim 12 , wherein the first mount is substantially identical to the second mount.

17. The system of claim 12 , wherein at least one of the first mount and the second mount comprises a plurality of holes configured to receive fasteners and that extend through the at least first mount and the second mount.

18. The system of claim 12 , wherein the rectangular shaped back surface of at least one of the first mount and the second mount has a height in a range of one inch to five inches and a width in a range of one inch to ten inches.

19. The system of claim 12 , wherein at least one of the first channel and the channel has dimensions of about 0.25 inches by about 0.5 inches.

20. The system of claim 12 , wherein the first radius of the first mount and the first radius of the second mount are each about 2.16 inches.

21. The system of claim 20 , wherein the second radius of the first mount and the second radius of the second mount are each about 2.5 inches.

22. A system comprising:

a first mount comprising:

a rectangular shaped back surface configured to interface to a surface of a separate object;

a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter;

a connector extending from the rectangular shaped back surface, the connector configured to interface to another connector of a second mount; and

a channel configured to receive a strap and that extends through the first mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion; and

a second mount comprising:

a rectangular shaped back surface configured to interface to a surface of a separate object;

a first side surface perpendicular to the rectangular back surface and having a first arch-shaped cutout, and a second side surface perpendicular to the rectangular back surface and having a second arch-shaped cutout, wherein each of the first arch-shaped cutout and the second arch-shaped cutout comprises a first arch having a first radius and a second arch having a second radius, different from the first radius, the first radius of the first arch allows the mount to receive a cylindrical-shaped capacitor having a first diameter and the second radius of the second arch allows the mount to receive a cylindrical-shaped capacitor having a second diameter, different from the first diameter;

a connector extending from the rectangular shaped back surface, the connector being configured to interface to the first connector of the first mount; and

a channel configured to receive a strap and that extends through the second mount, the channel having a closed channel portion, a first open channel portion, and a second open channel portion;

wherein the first mount is connected to the second mount via the interface between the first connector of the first mount and the second connector of the second mount.

23. The system of claim 22 , wherein at least one of the first mount and the second mount further comprises a plurality of openings, each opening of the plurality of openings configured to receive a cable tie and each opening of the plurality of openings extending through the at least one of the first mount and the second mount.

24. The system of claim 23 , wherein each opening of the plurality of openings is connected through a series of channels.

25. The system of claim 23 , wherein each opening has dimensions of about 0.1 inches by about 0.25 inches.

26. The system of claim 22 , wherein the first mount is substantially identical to the second mount.

27. The system of claim 22 , wherein at least one of the first mount and the second mount comprises a plurality of holes configured to receive fasteners and that extend through the at least first mount and the second mount.

28. The system of claim 22 , wherein the rectangular shaped back surface of at least one of the first mount and the second mount has a height in a range of one inch to five inches and a width in a range of one inch to ten inches.

29. The system of claim 22 , wherein at least one of the first channel and the channel has dimensions of about 0.25 inches by about 0.5 inches.

30. The system of claim 12 , wherein the first radius of the first mount and the first radius of the second mount are each about 2.16 inches, and wherein the second radius of the first mount and the second radius of the second mount are each about 2.5 inches.

Assignments (4)
SECURITY INTEREST Recorded Nov 6, 2025
From: HVAC SOUTH, LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 073482/0908 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBERS 15969608 TO 15989608 AND 16161205 TO 16171205 PREVIOUSLY RECORDED ON REEL 71738 FRAME 759. ASSIGNOR(S) HEREBY CONFIRMS THE CONFIRMATORY ASSIGNMENT. Recorded Oct 2, 2025
From: AMRAD MANUFACTURING, LLC
To: HVAC SOUTH, LLC
Reel/Frame 073080/0923 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2025
From: BARON, CHRISTOPHER ROGER; HOWARD, JEFFREY STEVEN
To: AMRAD MANUFACTURING, LLC
Reel/Frame 071932/0414 →
CONFIRMATORY ASSIGNMENT Recorded May 13, 2025
From: AMRAD MANUFACTURING, LLC
To: HVAC SOUTH, LLC
Reel/Frame 071738/0759 →
Continuity (2)
Provisional Application 63584739 · Sep 22, 2023
Related Publication 20250104913A1 · Mar 27, 2025
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