Patent · US9791649B2 · B2 · US
Mounting frame system
- (11) Publication number
- US9791649B2
- (21) Application number
- 14/911,888
- (22) Filing date
- 2014-08-07
- (30) Priority date
- 2013-08-14
- (43) Publication date
- 2017-10-17
- (45) Date of grant
- 2017-10-17
- (51) IPC
- F16B 21/02; G02B 6/36; G02B 6/38; G02B 6/42; H01R 12/00; H05K 1/00
- (52) CPC
- (73) Assignee
- FCI AMERICAS TECHNOLOGY INC; FCI ASIA PTE LTD
- (72) Inventors
- DE BRUIJN JEROEN
- (54) Title
- Mounting frame system
- (57) Abstract
A mounting frame system is disclosed that facilitates the mounting of optical connector modules to printed circuit boards. The mounting frame system can include a mounting frame that is configured to attach to a printed circuit board, and is adapted to attach to a connector module. Thus, the mounting frame system can further allow releasable mounting of optical connector modules to the printed circuit board, such that the mounting is achieved in a safe and reliable manner.
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Claims (20)
- A mounting frame system configured to mount a connector module to a printed circuit board, the mounting frame system comprising: a mounting frame configured to attach to a printed circuit board, and adapted to attach to the connector module, wherein the mounting frame include a base frame that defines an outside wall and at least one locking undercut open to a peripheral side of the outside wall, wherein the locking undercut defines a female counterpart of a twistlock of the connector module.
- The mounting frame system of claim 1, wherein the base frame comprises a mate assist member adapted to hold the connector module in a pre-assembled position.
- The mounting frame system of claim 2, wherein the mate assist member comprises at least one pair of latching arms adapted to latch onto a corresponding latching portion of the connector module to facilitate the mounting of the connector module with the mounting frame.
- The mounting frame system of claim 1, wherein the mounting frame defines an interposer.
- The mounting frame system of claim 1, wherein the outside wall of the base frame protrudes in a direction perpendicular from a surface of the printed circuit board when attached thereto, and the at least one locking undercut is arranged on the outer peripheral wall of the base frame.
- The mounting frame system of claim 5, wherein the locking undercut is arranged on the outer peripheral wall of the base frame at a corner of the base frame.
- The mounting frame system of claim 5, wherein the mounting frame has a top side and a bottom side opposite the top side, the bottom side faces the surface of the printed circuit board in attached condition, and the top side has at least one semi-circular cut-out that allows access to the undercut from the top side of the frame.
- The mounting frame system of claim 1, further comprising the connector module, wherein the connector module is releasable mountable to the mounting frame.
- The mounting frame system as recited in claim 1, wherein the connector module is an optical connector module.
- The mounting frame system of claim 9, wherein the connector module comprises at least one male twistlock member adapted to engage the locking undercut to releasable mount the connector module onto the mounting frame.
- The mounting frame system of claim 10, wherein the male twistlock member comprises a bolt extending through the connector module, and the bolt is arranged on the module such that it is movable in longitudinal direction of the bolt and rotatable around a longitudinal axis of the bolt.
- The mounting frame system of claim 11, wherein the male twistlock member has an upper part projecting from the top face of the connector module and a lower part projecting from the bottom face of the connector module, whereby the upper part comprises a compression spring and the lower part comprises a locking projection extending perpendicular to the longitudinal axis of the bolt.
- The mounting frame system of claim 12, wherein the locking projection has a semi-circular cross section in a plane perpendicular to the longitudinal axis of the bolt.
- The mounting frame system of claim 13, wherein the upper part is arranged coaxially in the compression spring and the spring biases the bolt against a movement in axial direction of the bolt from the top face of the module towards the bottom face of the module.
- The mounting frame system of claim 9, wherein the module comprises an essentially rectangular base and has four male twistlock members arranged on respective four opposite sides of the base.
- The mounting frame system of claim 15, wherein the module is spring loaded onto the mounting frame when mounted thereon.
- The mounting frame system of claim 1, wherein the connector module is an optical connector module and comprises a transducer to convert electromagnetic signals to electrical signals.
- The mounting frame system of claim 16, wherein each of the male twistlock members comprises a bolt extending through the connector module, and the bolt is arranged on the module such that it is movable in longitudinal direction of the bolt and rotatable around a longitudinal axis of the bolt.
- The mounting frame system of claim 18, wherein each of the male twistlock members has an upper part projecting from the top face of the connector module and a lower part projecting from the bottom face of the connector module, whereby the upper part comprises a compression spring and the lower part comprises a locking projection extending perpendicular to the longitudinal axis of the bolt.
- The mounting frame system of claim 19, wherein the locking projection has a semi-circular cross section in a plane perpendicular to the longitudinal axis of the bolt, the upper part is arranged coaxially in the compression spring, and the spring biases the bolt against a movement in axial direction of the bolt from the top face of the module towards the bottom face of the module.
Description
The present disclosure relates to a mounting frame system for the mounting of a, preferably optical, connector module to a printed circuit board (PCB).
In many electronic applications, signal lines (such as optical signal lines) are connected to substrates, such as printed circuit boards. The mounting and connection of signal lines, and in particular optical signal lines, to the printed circuit board can require specific connector modules, in particular if the optical signal line, and the respective corresponding optical connector module, is intended to be releasable mountable to the PCB. US 2008/0248678 describes a connector fastening arrangement that mounts a connector housing to a printed circuit board. The connector housing comprises a number of electrical contact terminals ending in corresponding solder contact ends that in assembled condition are in contact with respective solder pads of the printed circuit board. The housing of the connector is directly attached to the printed circuit board, namely by means of locking bolts having a crank pin-like configuration including an offset peg portion that protrudes eccentrically with respect to the axis of rotation and which is dimensioned and designed that it can be inserted through a passage hole provided in the printed circuit board. After inserted through the passage hole, the locking bolt is displaced by a rotational movement, such that the offset peg portion moves a part of the locking device under the bottom side of the PCB, thereby locking the connector housing to the printed circuit board.
Citations (11)
- JP2001522523A
- US2006003608A1
- US2008248678A1
- US2010297857A1
- US2011230067A1
- US2011269330A1
- US2015003791A1
- US3551964A
- US6929484B2
- US7090507B2
- US7871275B1
Record as JSON
{
"publication_number": "US9791649B2",
"country": "US",
"kind": "B2",
"title": "Mounting frame system",
"abstract": "A mounting frame system is disclosed that facilitates the mounting of optical connector modules to printed circuit boards. The mounting frame system can include a mounting frame that is configured to attach to a printed circuit board, and is adapted to attach to a connector module. Thus, the mounting frame system can further allow releasable mounting of optical connector modules to the printed circuit board, such that the mounting is achieved in a safe and reliable manner.",
"claims": [
"1. A mounting frame system configured to mount a connector module to a printed circuit board, the mounting frame system comprising: a mounting frame configured to attach to a printed circuit board, and adapted to attach to the connector module, wherein the mounting frame include a base frame that defines an outside wall and at least one locking undercut open to a peripheral side of the outside wall, wherein the locking undercut defines a female counterpart of a twistlock of the connector module.",
"2. The mounting frame system of claim 1, wherein the base frame comprises a mate assist member adapted to hold the connector module in a pre-assembled position.",
"3. The mounting frame system of claim 2, wherein the mate assist member comprises at least one pair of latching arms adapted to latch onto a corresponding latching portion of the connector module to facilitate the mounting of the connector module with the mounting frame.",
"4. The mounting frame system of claim 1, wherein the mounting frame defines an interposer.",
"5. The mounting frame system of claim 1, wherein the outside wall of the base frame protrudes in a direction perpendicular from a surface of the printed circuit board when attached thereto, and the at least one locking undercut is arranged on the outer peripheral wall of the base frame.",
"6. The mounting frame system of claim 5, wherein the locking undercut is arranged on the outer peripheral wall of the base frame at a corner of the base frame.",
"7. The mounting frame system of claim 5, wherein the mounting frame has a top side and a bottom side opposite the top side, the bottom side faces the surface of the printed circuit board in attached condition, and the top side has at least one semi-circular cut-out that allows access to the undercut from the top side of the frame.",
"8. The mounting frame system of claim 1, further comprising the connector module, wherein the connector module is releasable mountable to the mounting frame.",
"9. The mounting frame system as recited in claim 1, wherein the connector module is an optical connector module.",
"10. The mounting frame system of claim 9, wherein the connector module comprises at least one male twistlock member adapted to engage the locking undercut to releasable mount the connector module onto the mounting frame.",
"11. The mounting frame system of claim 10, wherein the male twistlock member comprises a bolt extending through the connector module, and the bolt is arranged on the module such that it is movable in longitudinal direction of the bolt and rotatable around a longitudinal axis of the bolt.",
"12. The mounting frame system of claim 11, wherein the male twistlock member has an upper part projecting from the top face of the connector module and a lower part projecting from the bottom face of the connector module, whereby the upper part comprises a compression spring and the lower part comprises a locking projection extending perpendicular to the longitudinal axis of the bolt.",
"13. The mounting frame system of claim 12, wherein the locking projection has a semi-circular cross section in a plane perpendicular to the longitudinal axis of the bolt.",
"14. The mounting frame system of claim 13, wherein the upper part is arranged coaxially in the compression spring and the spring biases the bolt against a movement in axial direction of the bolt from the top face of the module towards the bottom face of the module.",
"15. The mounting frame system of claim 9, wherein the module comprises an essentially rectangular base and has four male twistlock members arranged on respective four opposite sides of the base.",
"16. The mounting frame system of claim 15, wherein the module is spring loaded onto the mounting frame when mounted thereon.",
"17. The mounting frame system of claim 1, wherein the connector module is an optical connector module and comprises a transducer to convert electromagnetic signals to electrical signals.",
"18. The mounting frame system of claim 16, wherein each of the male twistlock members comprises a bolt extending through the connector module, and the bolt is arranged on the module such that it is movable in longitudinal direction of the bolt and rotatable around a longitudinal axis of the bolt.",
"19. The mounting frame system of claim 18, wherein each of the male twistlock members has an upper part projecting from the top face of the connector module and a lower part projecting from the bottom face of the connector module, whereby the upper part comprises a compression spring and the lower part comprises a locking projection extending perpendicular to the longitudinal axis of the bolt.",
"20. The mounting frame system of claim 19, wherein the locking projection has a semi-circular cross section in a plane perpendicular to the longitudinal axis of the bolt, the upper part is arranged coaxially in the compression spring, and the spring biases the bolt against a movement in axial direction of the bolt from the top face of the module towards the bottom face of the module."
],
"description_excerpt": "The present disclosure relates to a mounting frame system for the mounting of a, preferably optical, connector module to a printed circuit board (PCB).\n\nIn many electronic applications, signal lines (such as optical signal lines) are connected to substrates, such as printed circuit boards. The mounting and connection of signal lines, and in particular optical signal lines, to the printed circuit board can require specific connector modules, in particular if the optical signal line, and the respective corresponding optical connector module, is intended to be releasable mountable to the PCB. US 2008/0248678 describes a connector fastening arrangement that mounts a connector housing to a printed circuit board. The connector housing comprises a number of electrical contact terminals ending in corresponding solder contact ends that in assembled condition are in contact with respective solder pads of the printed circuit board. The housing of the connector is directly attached to the printed circuit board, namely by means of locking bolts having a crank pin-like configuration including an offset peg portion that protrudes eccentrically with respect to the axis of rotation and which is dimensioned and designed that it can be inserted through a passage hole provided in the printed circuit board. After inserted through the passage hole, the locking bolt is displaced by a rotational movement, such that the offset peg portion moves a part of the locking device under the bottom side of the PCB, thereby locking the connector housing to the printed circuit board.",
"cpc": [
"G02B 6/3897",
"F16B 21/02",
"G02B 6/4231",
"G02B 6/4261",
"G02B 6/428",
"G02B 6/4292"
],
"ipc": [
"F16B 21/02",
"G02B 6/36",
"G02B 6/38",
"G02B 6/42",
"H01R 12/00",
"H05K 1/00"
],
"assignees": [
"FCI AMERICAS TECHNOLOGY INC",
"FCI ASIA PTE LTD"
],
"inventors": [
"DE BRUIJN JEROEN"
],
"filing_date": "2014-08-07",
"publication_date": "2017-10-17",
"grant_date": "2017-10-17",
"priority_date": "2013-08-14",
"application_number": "US-201414911888-A",
"family_id": "52468591",
"citations": [
"JP2001522523A",
"US2006003608A1",
"US2008248678A1",
"US2010297857A1",
"US2011230067A1",
"US2011269330A1",
"US2015003791A1",
"US3551964A",
"US6929484B2",
"US7090507B2",
"US7871275B1"
]
}
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