CN201368929Y - LRM optical module plug and LRM optical module using the same - Google Patents

LRM optical module plug and LRM optical module using the same Download PDF

Info

Publication number
CN201368929Y
CN201368929Y CNU2009200882957U CN200920088295U CN201368929Y CN 201368929 Y CN201368929 Y CN 201368929Y CN U2009200882957 U CNU2009200882957 U CN U2009200882957U CN 200920088295 U CN200920088295 U CN 200920088295U CN 201368929 Y CN201368929 Y CN 201368929Y
Authority
CN
China
Prior art keywords
plug
insulator
contact pin
socket
lrm
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CNU2009200882957U
Other languages
Chinese (zh)
Inventor
程霁竑
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Aviation Optical Electrical Technology Co Ltd
Original Assignee
China Aviation Optical Electrical Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Aviation Optical Electrical Technology Co Ltd filed Critical China Aviation Optical Electrical Technology Co Ltd
Priority to CNU2009200882957U priority Critical patent/CN201368929Y/en
Application granted granted Critical
Publication of CN201368929Y publication Critical patent/CN201368929Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Mechanical Coupling Of Light Guides (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

The utility model relates to an LRM optical module, which comprises a plug and a socket. The plug and the socket are correspondingly plugged. The plug comprises a plug insulator, and at least one channel passing through the front end surface and the rear end surface of the plug insulator is arranged inside the plug insulator; the plug insulator comprises a front plug insulator and a rear plug insulator, which are fixedly connected together; the channel comprises a contact pin through hole passing through the front end surface and the rear end surface of the front plug insulator and contact pin mounting slot which is arranged on the side surface of the rear plug insulator and passes through the front end surface and the rear end surface of the rear plug insulator, and a clamping edge is arranged on the contact pin mounting slot at the end far away from the front plug insulator, and a spring base is clamped at the clamping edge; and an MT contact pin is plugged inside the channel in a unidirectional thrust way, a spring is arranged between the MT contact pin and the spring base, and an MT contact pin return clearance is formed inside the contact pin mounting slot at the tail part of the MT contact pin. The socket comprises a socket insulator, and a second MT contact pin is fixedly arranged inside the socket insulator in the position corresponding to the MT contact pin of the plug.

Description

A kind of LRM optical module plug and use the LRM optical module of this plug
Technical field
The utility model relates to a kind of joints of optical fibre, particularly a kind of LRM optical module.
Background technology
The present generation aircraft function strengthens day by day, and it is complicated more that avionics system becomes, and impels the avionics system structure to continue to optimize.Though traditional centralized control is handled the Integrated Avionics System of formula structure respectively at present also being extensive use of,, will be distributed control distribution process formula structure gradually and replace because of its inherent shortcoming.The optimization of Integrated Avionics System structure directly causes the development of LRM (external replaceable module) modular structure technology.But, also there be not at present the LRM optical module of appearance based on the MT contact pin, following a kind of MT contact pin type of attachment is disclosed based on United States Patent (USP) US7090408 in the optical fiber connection of MT contact pin, two MT contact pins as shown in Figure 1, one is positive MT contact pin 10L, another is cloudy MT contact pin 10R, two MT contact pins extend as shown in Figure 2 along a straight line to after inserting, afterwards, MT contact pin correspondence after two pairs inserted is assembled in the housing, as shown in Figure 3, this housing comprises a lower house 100 and a lid 200, link together by screw retention between lower house 100 and a lid 200, the left end of lid 200 medial surfaces is installed with one and crosses line end platform 300, crosses between line end platform 300 and the positive MT contact pin 10L in the lower house 100 and is folded with a spring 400.Adopt this mode to connect two MT contact pins and can well guarantee the reliability that connects and the persistence of use, but, it is more loaded down with trivial details to connect two MT contact pin operations by this way, inefficiency, the MT contact pin needs the connection end face of optical fiber is carried out cleaning in use after a period of time, the connected mode of such scheme need be taken off the lid 200 that is connected on the lower house 100 by screw earlier and the MT contact pin could be taken out when carrying out the cleaning of MT contact pin, this operation is same more loaded down with trivial details, inefficiency.
The utility model content
The purpose of this utility model provides a kind of LRM optical module, a kind of LRM optical module plug also is provided simultaneously, with solving present employing two MT contact pins to inserting, complex operation in the cleaning that reaches in the future is installed, ineffective problem are installed in same housing.
For achieving the above object, the utility model adopts following technical scheme: a kind of LRM optical module plug, and this plug comprises plug insulator, is provided with a passage that connects the plug insulator front/rear end in the plug insulator at least; Described plug insulator comprises before the plug that is fixed together insulator behind the insulator and plug; Described passage comprises the contact pin mounting groove of insulator front/rear end behind the perforation plug that is provided with on the insulator side behind the contact pin through hole that connects insulator front/rear end before the plug and the plug, the contact pin mounting groove away from plug before the insulator end be provided with the card edge, Ka Yanchu is installed with spring base; Unidirectional thrust is inserted with the MT contact pin in the described passage, presses between MT contact pin and the spring base to be provided with spring, is provided with MT contact pin rollback gap in the contact pin mounting groove of MT contact pin afterbody.
Described spring base is I-shaped, and spring base is installed in same passage afterbody two relatively between the card edge by I-shaped middle part.
Described MT contact pin cooperates with the unidirectional thrust of the rear end face of procapsid by the cascaded surface that is arranged on the MT contact pin.
Before the described plug front end face of insulator be provided with pilot hole and or guide finger.
A kind of LRM optical module, this optical module comprises plug and socket, and corresponding the pegging graft of plug and socket cooperates, and described plug comprises plug insulator, is provided with a passage that connects the plug insulator front/rear end in the plug insulator at least; Described plug insulator comprises before the plug that is fixed together insulator behind the insulator and plug; Described passage comprises the contact pin mounting groove of insulator front/rear end behind the perforation plug that is provided with on the insulator side behind the contact pin through hole that connects insulator front/rear end before the plug and the plug, the contact pin mounting groove away from plug before the insulator end be provided with the card edge, Ka Yanchu is installed with spring base; Unidirectional thrust is inserted with the MT contact pin in the described passage, presses between MT contact pin and the spring base to be provided with spring, is provided with MT contact pin rollback gap in the contact pin mounting groove of MT contact pin afterbody; Described socket comprises the socket insulator, and the MT contact pin position corresponding to plug in the socket insulator is installed with the 2nd MT contact pin.
Described socket insulator comprises before the socket that is fixed together insulator behind the insulator and socket, and the 2nd MT contact pin passes before the socket insulator geometrical clamp and is located at before the socket behind the insulator and socket between the insulator.
Described spring base is I-shaped, and spring base is installed in same passage afterbody two relatively between the card edge by I-shaped middle part.
Described MT contact pin cooperates with the unidirectional thrust of the rear end face of procapsid by the cascaded surface that is arranged on the MT contact pin.
Insulator is provided with optical-fibre channel behind the described socket, is provided with incoming line between the side of insulator behind optical-fibre channel and the socket.
Before the described plug front end face of insulator be provided with pilot hole and or guide finger, described socket insulator be provided with plug before on the front end face of insulator pilot hole and or the guide finger of guide finger corresponding matching and or pilot hole.
The LRM optical module of such scheme, comprise plug and socket, when needs optical fiber conducting transmission signals, only need plug and socket can be finished the connection task to inserting, easy and simple to handle, the efficient height, in addition, when needing the contact end of cleaning optical fiber, only need unplug plug and socket can carry out cleaning to the optical fiber of MT contact pin end face, operate easy equally, high efficiency.
In addition, another one of the present utility model is improved, the contact pin mounting groove of insulator rear and front end face after being provided with the perforation plug on the side of insulator behind the plug, the contact pin mounting groove away from contact pin before the insulator end be provided with the card edge, card is installed with I-shaped spring base along the place, presses between MT contact pin and the I-shaped spring base to be provided with spring.Adopt this structure, in assembling during plug earlier in the contact pin through hole with MT contact pin inserting insulator before plug, afterwards insulator before insulator behind the plug and the plug is fixed together, promote I-shaped spring base along the direction of compression spring more subsequently, and the card that I-shaped spring base is snapped fitted to the contact pin mounting groove is along last, spring base adopt I-shaped both can be easily with card along clamping, when assembling, be convenient to staff's assembling that pinches and lead again.Adopt said structure not only easy to assembly, but also can satisfy the flexibility contact of MT contact pin, effectively reduced the light signal loss of contact position.
Also have, be respectively equipped with on the grafting surface of contact of plug and socket the guide finger that cooperatively interacts and or pilot hole, when pegging graft, guide finger and pilot hole play the guiding role, the convenient operation of pegging graft, behind the access node bundle to be inserted, guide finger that is combined together and pilot hole have played pinpoint effect.
Description of drawings
Fig. 1 is the structural representation that prior art two MT contact pins are pegged graft;
Fig. 2 is the structural representation after prior art two MT contact pins are pegged graft;
Fig. 3 is the blast structural representation that is loaded on after prior art two MT contact pins are pegged graft in the housing;
Fig. 4 is the structural representation of the utility model LRM optical module plug;
Fig. 5 is the perspective view of the utility model LRM optical module plug;
Fig. 6 is the perspective view of insulator behind the utility model plug;
Fig. 7 is the structural representation of the utility model LRM optical module socket;
Fig. 8 is the solid blast structural representation of the utility model LRM optical module socket;
Fig. 9 is the structural representation after the plug and socket of the utility model LRM optical module is pegged graft.
Embodiment
Fig. 4, Fig. 5, LRM optical module plug of the present utility model shown in Figure 6, comprise the preceding insulator 1 of plug, the grafting mating surface of insulator 1 is provided with two pilot holes 9 before the plug, two pilot holes 9 are the diagonal angle setting on the insulator 1 before plug, evenly be laid with six contact pin through holes 20 on the insulator 1 before the plug, contact pin through hole 20 is two row, three row and arranges on the insulator 1 before plug, be plugged with MT contact pin 5 in the contact pin through hole 20, card on the thimble 7 of MT contact pin 5 along with plug before the unidirectional thrust of insulator 1 rear end face be fastened, the rear end of insulator 1 is connected with insulator 2 behind the plug by screw retention before the plug, 2 liang of relative sides of insulator are respectively equipped with the contact pin mounting groove that connects insulator 2 rear and front end faces behind the plug behind the plug, the contact pin mounting groove away from plug before insulator 1 end be provided with card along 8, card is installed with I-shaped spring base 3 along 8 places, MT contact pin 5 is slidingly matched with the contact pin mounting groove, presses between the thimble 7 of MT contact pin 5 and the spring base 3 to be provided with spring 6; Be provided with MT contact pin rollback gap 50 between the afterbody of MT contact pin 5 and the contact pin mounting groove.In addition, dust cover 4 is installed on the insulator 1 before plug.
Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8, LRM optical module of the present utility model shown in Figure 9, comprise the plug 22 and socket 23 that are plugged on together, wherein, plug comprises the preceding insulator 1 of plug, the grafting mating surface of insulator 1 is provided with two pilot holes 9 before the plug, two pilot holes 9 are the diagonal angle setting on the insulator 1 before plug, evenly be laid with six contact pin through holes 20 on the insulator 1 before the plug, contact pin through hole 20 is two row, three row and arranges on the insulator 1 before plug, be plugged with MT contact pin 5 in the contact pin through hole 20, card on the thimble 7 of MT contact pin 5 along with plug before the unidirectional thrust of insulator 1 rear end face be fastened, the rear end of insulator 1 is connected with insulator 2 behind the plug by screw retention before the plug, 2 liang of relative sides of insulator are respectively equipped with the contact pin mounting groove that connects insulator 2 rear and front end faces behind the plug behind the plug, the contact pin mounting groove away from plug before insulator 1 end be provided with card along 8, card is installed with I-shaped spring base 3 along 8 places, MT contact pin 5 is slidingly matched with the contact pin mounting groove, presses between the thimble 7 of MT contact pin 5 and the I-shaped spring base 3 to be provided with spring 6; Be provided with MT contact pin rollback gap 50 between the afterbody of MT contact pin 5 and the contact pin mounting groove.In addition, dust cover 4 is installed on the insulator 1 before plug; Socket comprises the preceding insulator 14 of socket, diagonal angle, insulator 14 upper edge is provided with two guide finger mounting holes before the socket, be fitted with guide finger 11 in the guide finger mounting hole, evenly be laid with six contact pin jacks 15 on the insulator 14 before the socket, contact pin jack 15 is two row, three row on the insulator 14 before socket arranges, and is plugged with the 2nd MT contact pin 13 in the contact pin jack 15; There is insulator 10 behind the socket rear end of insulator 14 by screw retention before the socket, insulator 10 is fixed together insulator 14 before guide finger 11 and the 2nd MT contact pin 13 and the socket behind the socket, in addition, insulator is provided with optical-fibre channel behind the socket, is provided with incoming line 51 behind optical-fibre channel and the socket between the side of insulator 10.Pilot hole 9 on the plug and guide finger 11 corresponding matching on the socket.

Claims (10)

1. LRM optical module plug, it is characterized in that: this plug comprises plug insulator, is provided with a passage that connects the plug insulator front/rear end in the plug insulator at least; Described plug insulator comprises before the plug that is fixed together insulator behind the insulator and plug; Described passage comprises the contact pin mounting groove of insulator front/rear end behind the perforation plug that is provided with on the insulator side behind the contact pin through hole that connects insulator front/rear end before the plug and the plug, the contact pin mounting groove away from plug before the insulator end be provided with the card edge, Ka Yanchu is installed with spring base; Unidirectional thrust is inserted with the MT contact pin in the described passage, presses between MT contact pin and the spring base to be provided with spring, is provided with MT contact pin rollback gap in the contact pin mounting groove of MT contact pin afterbody.
2. LRM optical module plug according to claim 1 is characterized in that: described spring base is I-shaped, and spring base is installed in same passage afterbody two relatively between the card edge by I-shaped middle part.
3. LRM optical module plug according to claim 1 and 2 is characterized in that: described MT contact pin cooperates with the unidirectional thrust of the rear end face of procapsid by the cascaded surface that is arranged on the MT contact pin.
4. LRM optical module plug according to claim 3 is characterized in that: before the described plug front end face of insulator be provided with pilot hole and or guide finger.
5. LRM optical module, it is characterized in that: this optical module comprises plug and socket, and corresponding the pegging graft of plug and socket cooperates, and described plug comprises plug insulator, is provided with a passage that connects the plug insulator front/rear end in the plug insulator at least; Described plug insulator comprises before the plug that is fixed together insulator behind the insulator and plug; Described passage comprises the contact pin mounting groove of insulator front/rear end behind the perforation plug that is provided with on the insulator side behind the contact pin through hole that connects insulator front/rear end before the plug and the plug, the contact pin mounting groove away from plug before the insulator end be provided with the card edge, Ka Yanchu is installed with spring base; Unidirectional thrust is inserted with the MT contact pin in the described passage, presses between MT contact pin and the spring base to be provided with spring, is provided with MT contact pin rollback gap in the contact pin mounting groove of MT contact pin afterbody; Described socket comprises the socket insulator, and the MT contact pin position corresponding to plug in the socket insulator is installed with the 2nd MT contact pin.
6. LRM optical module according to claim 5, it is characterized in that: described socket insulator comprises before the socket that is fixed together insulator behind the insulator and socket, and the 2nd MT contact pin passes before the socket insulator geometrical clamp and is located at before the socket behind the insulator and socket between the insulator.
7. according to claim 5 or 6 described LRM optical module plugs, it is characterized in that: described spring base is I-shaped, and spring base is installed in same passage afterbody two relatively between the card edge by I-shaped middle part.
8. LRM optical module plug according to claim 7 is characterized in that: described MT contact pin cooperates with the unidirectional thrust of the rear end face of procapsid by the cascaded surface that is arranged on the MT contact pin.
9. LRM optical module according to claim 8 is characterized in that: insulator is provided with optical-fibre channel behind the described socket, is provided with incoming line between the side of insulator behind optical-fibre channel and the socket.
10. LRM optical module according to claim 9, it is characterized in that: before the described plug front end face of insulator be provided with pilot hole and or guide finger, described socket insulator be provided with plug before on the front end face of insulator pilot hole and or the guide finger of guide finger corresponding matching and or pilot hole.
CNU2009200882957U 2009-01-15 2009-01-15 LRM optical module plug and LRM optical module using the same Expired - Fee Related CN201368929Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2009200882957U CN201368929Y (en) 2009-01-15 2009-01-15 LRM optical module plug and LRM optical module using the same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2009200882957U CN201368929Y (en) 2009-01-15 2009-01-15 LRM optical module plug and LRM optical module using the same

Publications (1)

Publication Number Publication Date
CN201368929Y true CN201368929Y (en) 2009-12-23

Family

ID=41487821

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2009200882957U Expired - Fee Related CN201368929Y (en) 2009-01-15 2009-01-15 LRM optical module plug and LRM optical module using the same

Country Status (1)

Country Link
CN (1) CN201368929Y (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102782546A (en) * 2010-03-19 2012-11-14 康宁公司 Optical receptacles and systems and devices including optical receptacles
CN103616148A (en) * 2013-10-18 2014-03-05 中国电子科技集团公司第十研究所 Method of decomposing and obtaining LRM (Line Replaceable Module) vibration test condition in electronic module integration rack
CN104516056A (en) * 2014-12-23 2015-04-15 四川华丰企业集团有限公司 Detachable integrated structure of MT optical fiber assembly

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102782546A (en) * 2010-03-19 2012-11-14 康宁公司 Optical receptacles and systems and devices including optical receptacles
CN103616148A (en) * 2013-10-18 2014-03-05 中国电子科技集团公司第十研究所 Method of decomposing and obtaining LRM (Line Replaceable Module) vibration test condition in electronic module integration rack
CN103616148B (en) * 2013-10-18 2015-11-18 中国电子科技集团公司第十研究所 Decompose the method obtaining LRM vibration test condition in electronic module integrated installation frame
CN104516056A (en) * 2014-12-23 2015-04-15 四川华丰企业集团有限公司 Detachable integrated structure of MT optical fiber assembly

Similar Documents

Publication Publication Date Title
CN101964470B (en) Electrical connector
CN101989696B (en) Connector
CN202141831U (en) Cable connector assembly
CN204556892U (en) Drawing type LC double-core optical fiber connector
CN102097689B (en) Cable assembly
CN201368929Y (en) LRM optical module plug and LRM optical module using the same
CN104216060A (en) MT (mechanical transfer) contact and optical connector with same
CN202305887U (en) Cable connector assembly
CN101587213B (en) Optical fiber connector integrated with a plurality of rectangular multi-core optical fiber contact pins and integrated connector
CN102456969B (en) Connector assembly
CN102147510A (en) Cable assembly having floatable optical module
CN207336837U (en) Fiber optic adapter panel and fiber organizer
CN103208684A (en) Signal terminal and electric connector using same
CN211505959U (en) Wire-to-board connector with optical fiber fixer
CN105044852A (en) Contact module housing, contact module and optical fiber connector
CN201413413Y (en) Active optical fiber connector system as well as plug and socket thereof
CN207938888U (en) Hot swap type interface connector
CN212991361U (en) Wisdom building integrated control system signal acquisition box
CN201464673U (en) Optical fiber connector and integrated connector
CN209544768U (en) RJ45 band lamp connector with firm inserting function
CN214957485U (en) Connector with guide structure
CN204349102U (en) Socket connector
CN204009143U (en) Connector multiloop optic module
CN205264954U (en) Positive reverse plug USB plug
CN216413418U (en) Make things convenient for photovoltaic connector of dismouting

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee
CP02 Change in the address of a patent holder

Address after: 471003 Luoyang high tech Development Zone, Henan, Zhou Shan Road, No. 10

Patentee after: Zhonghang Photoelectric Science & Technology Co., Ltd.

Address before: 471003 Zhou Shan Road, Jianxi District, Henan, Luoyang

Patentee before: Zhonghang Photoelectric Science & Technology Co., Ltd.

C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20091223

Termination date: 20140115