IP Library Granted Patent US 9,397,462
Granted Patent B2
US 9,397,462 · App. 13/836,313 · Granted Jul 19, 2016

Rail mounting system and detaching method

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Quick Facts
Patent No.
US 9,397,462
App. No.
13/836,313
Granted
Jul 19, 2016
Kind
B2
Abstract

A rail mounting system for mounting a module on a structure is provided. The rail mounting system comprises a mounting rail comprises a base portion extending along an elongated direction. The base portion comprises a first and a second edge extending along the elongated direction, and further comprises a mating portion extending upwardly from a first edge of the base portion. The rail mounting system further comprises a module configured to be disposed on the mounting rail via the mating portion so as to be mounted on the structure. The module is moveable relative to the mounting rail along a direction from the second edge towards the first edge, so as to be detached from the mounting rail. A rail detaching method is also presented.

Claims (32)

1. A rail mounting system for mounting a module on a structure, the rail mounting system comprising:

a mounting rail configured to be disposed on the structure and comprising a base portion extending along an elongated direction, the base portion comprising a first and a second edge extending along the elongated direction, and the mounting rail further comprising a mating portion extending upwardly from a first edge of the base portion;

a module configured to be disposed on the mounting rail via the mating portion so as to be mounted on the structure, and the module being moveable relative to the mounting rail along a direction from the second edge towards the first edge, so as to be detached from the mounting rail;

wherein the mating portion comprises a connecting portion extending upwardly from the first edge of the base portion, and a flange portion extending from the connecting portion along the direction from the second edge towards the first edge, and wherein the flange portion mates with the module to mount the module on the structure via the mounting rail; and

wherein the mounting rail further comprises an extending portion extending upwardly from the second edge of the base portion, and wherein the mounting rail further comprises a flange portion extending from the extending portion along the direction from the second edge towards the first edge of the base portion.

2. The rail mounting system of claim 1 , wherein the movement of the module relative to the mounting rail is restricted along a direction perpendicular to the base portion and a direction from the first edge towards the second edge.

3. The rail mounting system of claim 2 , wherein the direction perpendicular to the base portion comprises a direction of the module moving upwardly or downwardly relative to the mounting rail, and wherein the upward or downward direction is perpendicular to the elongated direction.

4. The rail mounting system of claim 1 , wherein an angle between the connecting portion and the base portion is greater than 0 degree and smaller than 180 degrees, and wherein an angle between the flange portion and the connection portion is greater than 0 degree and smaller than 180 degrees.

5. The rail mounting system of claim 1 , further comprising a monitoring apparatus disposed on the base portion of the mounting rail, the monitoring apparatus configured to monitor an operation status of the module.

6. The rail mounting system of claim 5 , wherein the monitoring apparatus comprises an electronic element disposed on the base portion of the mounting rail, and an electrical element electrically disposed on the electronic element and electrically connected to the module.

7. The rail mounting system of claim 6 , wherein the electrical element is configured to detect the operation status of the module, and generate and transmit a response signal to the electronic element when the module is in a fault condition, and wherein the electronic element is configured to receive and transmit the response signal to generate an alarm signal.

8. A rail mounting system for mounting a module on a structure, the rail mounting system comprising:

a mounting rail configured to be disposed on the structure and comprising a base portion extending along an elongated direction, the base portion comprising a first and a second edge extending along the elongated direction, and the mounting rail further comprising a mating portion extending upwardly from a first edge of the base portion;

a module configured to be disposed on the mounting rail via the mating portion so as to be mounted on the structure, and the module being moveable relative to the mounting rail along a direction from the second edge towards the first edge, so as to be detached from the mounting rail;

further comprising an input terminal comprising a mating ends being detachably and electrically connected to the module, and a connecting ends extending from the mating ends to be detachably fixed on one of the mounting rail and the structure, and wherein the module is moveable relative to the mounting rail along the direction from the second edge towards the first edge after the module is released by the input terminal.

9. A rail mounting system for mounting an electrical breaker on a structure, the rail mounting system comprising:

a mounting rail configured to be disposed on the structure and comprising a base portion extending along an elongated direction, the base portion comprising a first and a second edge extending along the elongated direction, and the mounting rail further comprising a mating portion extending upwardly from a first edge of the base portion;

an electrical breaker configured to be disposed on the mounting rail via the mating portion, so as to be mounted on the structure via the mounting rail;

an input terminal configured to be electrically connected to the electrical breaker with one end, and to be disposed on the structure or the mounting rail with the other end thereof;

wherein the electrical breaker is moveable relative to the mounting rail along a direction from the second edge towards the first edge, so as to be detached from the mounting rail after the electrical breaker is released by the one end of the input terminal; and

wherein the mating portion comprises a connecting portion extending upwardly from the first edge of the base portion, and a flange portion extending from the connecting portion along the direction from the second edge towards the first edge, and wherein the flange portion mates with the module to mount the electrical breaker on the structure via the mounting rail.

10. The rail mounting system of claim 9 , wherein the movement of the electrical breaker relative to the mounting rail is restricted along a direction perpendicular to the base portion and a direction from the first edge towards the second edge, wherein the direction perpendicular to the base portion comprises a direction of the electrical breaker moving upwardly or downwardly relative to the mounting rail along a direction perpendicular to the elongated direction.

11. The rail mounting system of claim 9 , wherein an angle between the connecting portion and the base portion is greater than 0 degree and smaller than 180 degrees, and wherein an angle between the flange portion and the connection portion is greater than 0 degree and smaller than 180 degrees.

12. The rail mounting system of claim 9 , wherein the mounting rail further comprises an extending portion extending upwardly from the second edge of the base portion, and wherein the mounting rail further comprises a flange portion extending from the extending portion along the direction from the second edge towards the first edge of the base portion.

13. The rail mounting system of claim 9 , further comprising a monitoring apparatus disposed on the base portion of the mounting rail to monitor the operation of the module.

14. The rail mounting system of claim 13 , wherein the monitoring apparatus comprises an electronic element disposed on the base portion, and an electrical element electrically disposed on the electronic element and electrically connected to the module, wherein the electrical element is configured to detect the operation of the module and generate and transmit a response signal to the electronic element when the module is in a fault condition, and wherein the electronic element is configured to receive and transmit the response signal to generate an alarm signal.

15. A rail detaching method for detaching a module from a structure, the rail detaching method comprising:

detaching an input terminal from a module to release the module;

moving the module relative to a mounting rail along a direction from a second edge towards a first edge of the mounting rail, wherein the mounting rail is disposed on the structure and comprises a base portion extending along an elongated direction, wherein the base portion comprises a first and a second edge extending along the elongated direction, wherein a mating portion extends upwardly from a first edge of the base portion, and wherein the module mates with the module to mount the module on the structure via the mounting rail;

removing the module from the mounting rail, so as to detach the module from the structure; and

positioning a monitoring apparatus on the base portion of the mounting rail such that the monitoring apparatus is configured to monitor the operation of the module, wherein the monitoring apparatus comprises an electronic element disposed on the base portion, and an electrical element electrically disposed on the electronic element and electrically connected to the module, wherein the electrical element is configured to detect the operation of the module and generate and transmit a response signal to the electronic element when the module is in a fault condition, and wherein the electronic element is configured to receive and transmit the response signal to generate an alarm signal.

16. The rail detaching method of claim 15 , wherein the movement of the module relative to the mounting rail is restricted along a direction perpendicular to the base portion and a direction from the first edge towards the second edge, wherein the direction perpendicular to the base portion comprises a direction of the modulae moving upwardly or downwardly relative to the mounting rail along a direction perpendicular to the elongated direction.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2023
From: ABB SCHWEIZ AG
To: ACLEAP POWER INC.
Reel/Frame 064819/0383 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ADDRESS OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 063410 FRAME: 0501. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 11, 2023
From: ABB POWER ELECTRONICS INC.
To: ABB SCHWEIZ AG
Reel/Frame 064671/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2023
From: ABB POWER ELECTRONICS INC.
To: ABB SCHWEIZ AG
Reel/Frame 063410/0501 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2020
From: ABB SCHWEIZ AG
To: ABB POWER ELECTRONICS INC.
Reel/Frame 052430/0136 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2019
From: GENERAL ELECTRIC COMPANY
To: ABB SCHWEIZ AG
Reel/Frame 050207/0405 →