CN105656559A - Single-port optical transmitter-receiver - Google Patents

Single-port optical transmitter-receiver Download PDF

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Publication number
CN105656559A
CN105656559A CN201610062877.2A CN201610062877A CN105656559A CN 105656559 A CN105656559 A CN 105656559A CN 201610062877 A CN201610062877 A CN 201610062877A CN 105656559 A CN105656559 A CN 105656559A
Authority
CN
China
Prior art keywords
optical transmitter
receiver
single port
port optical
connector
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.)
Pending
Application number
CN201610062877.2A
Other languages
Chinese (zh)
Inventor
唐志辉
高声品
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.)
Foxconn Kunshan Computer Connector Co Ltd
Foxconn Interconnect Technology Ltd
Original Assignee
Foxconn Kunshan Computer Connector Co Ltd
Foxconn Interconnect Technology 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 Foxconn Kunshan Computer Connector Co Ltd, Foxconn Interconnect Technology Ltd filed Critical Foxconn Kunshan Computer Connector Co Ltd
Priority to CN201610062877.2A priority Critical patent/CN105656559A/en
Publication of CN105656559A publication Critical patent/CN105656559A/en
Priority to TW106101325A priority patent/TW201800788A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/27Arrangements for networking

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  • Engineering & Computer Science (AREA)
  • Computing Systems (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Optical Couplings Of Light Guides (AREA)
  • Light Guides In General And Applications Therefor (AREA)

Abstract

The invention discloses a single-port optical transmitter-receiver, comprising a shell and a circuit board module, wherein the shell comprises a plurality of side walls and an accommodating slot encircled by the plurality of side walls, and one side wall is provided with a plurality of ports communicating the accommodating slot; and the circuit board module comprises a circuit board and a plurality of connectors installed on the circuit board, the plurality of connectors are respectively provided with a butt-joint slot positioned right behind the corresponding port, the plurality of connectors comprise a photovoltaic conversion connector, an Ethernet connector and a power supply connector, and the power supply connector is a USB electric connector.

Description

Single port optical transmitter and receiver and module thereof
[technical field]
The present invention relates to a kind of single port optical transmitter and receiver, particularly relate to the structural design of a kind of single port optical transmitter and receiver.
[background technology]
Along with the lifting of network speed, light entering and copper back, FTTH (FiberToTheHome, fiber to the home) is more and more universal. FTTH refers to and optical network unit (ONU) is arranged on household user or enterprise customer place, the notable technical characterstic of FTTH is not only to provide bigger bandwidth, and enhance the network transparency to data form, speed, wavelength and agreement, relax the requirement such as environmental condition and power supply, simplify maintenance and install. Intelligent acess refers between local side and user completely using optical fiber as transmitting media. After fiber to the home, it is necessary to the optical signal in optical fiber is converted to the signal of telecommunication of cable network, this is accomplished by optical modem (light Modem (light cat), or single port optical transmitter and receiver) and realizes. This single port optical transceiver device is in the field of business can also be called SFU (SingleFamilyUnit).
Existing common single port optical transmitter and receiver is provided with a multiple network cable jack of row and causes the sufficiently bulky of single port optical transmitter and receiver, additionally existing single port optical transmitter and receiver utilizes the power connector of circular hole to connect power supply, it has not been convenient to the programming of single port optical transmitter and receiver and the upgrading of software iteration.
Existing single port optical transmitter and receiver cannot wall hanging, the first-class position of indoor floor can only be placed on, cause user use inconvenience. Existing single port optical transmitter and receiver is without bottom support device, and optical fiber cable, power cable and netting twine cable are staggered mixed and disorderly.
In view of drawbacks described above, it is necessary to design that a function is many, the convenient single port optical transmitter and receiver module of compact, reason line in fact.
[summary of the invention]
The technical problem to be solved is in that: provide a kind of single port optical transmitter and receiver module, and it is compatible by force, function is many.
For solving above-mentioned technical problem, the technical scheme is that a kind of single port optical transmitter and receiver module, comprising: shell, described shell includes some sidewalls and the storage tank surrounded by some sidewalls, and wherein a sidewall is provided with some through ports to storage tank; Circuit board module, described circuit board module includes circuit board and the some adapters being installed on circuit board, described some adapters each have the docking slot being positioned at dead astern, corresponding port, described some adapters include photoelectric conversion connector, ethernet connector and power connector, and wherein said power connector is USB electric connector.
The technical problem to be solved is in that: provide a kind of single port optical transmitter and receiver module, and its reason line is convenient.
For solving above-mentioned technical problem, the technical scheme is that a kind of single port optical transmitter and receiver module, comprising: single port optical transmitter and receiver and the collet for the installation of single port optical transmitter and receiver, described single port optical transmitter and receiver includes shell and the circuit board module being contained in shell, described shell includes with plate in housing the storage tank of circuit board module and through some ports to host cavity, described circuit module includes circuit board and the some adapters being installed on circuit board, described some adapters each have the docking slot being positioned at dead astern, corresponding port, described some adapters include photoelectric conversion connector and power connector, wherein said collet is provided with the clamping structure fixing single port optical transmitter and receiver, described collet is additionally provided with the trunking for making cable in order.
Compared with prior art, there is advantages that
(1) present invention is USB electric connector by arranging power connector in single port optical transmitter and receiver, not only can provide power supply even, and also by USB socket adapter to the burning chip program on circuit board assemblies, thus highly versatile, and have several functions concurrently;
(2) collet of the present invention is provided with the clamping structure fixing single port optical transmitter and receiver, it is ensured that single port optical transmitter and receiver is stable fixing with collet, and simple in construction, facilitates installation personnel sharp work;
(3) collet of the present invention is provided with the trunking for making cable in order, and user friendly reason line operates.
[accompanying drawing explanation]
Fig. 1 is consistent with the axonometric chart of single port optical transmitter and receiver module of the present invention.
Fig. 2 is the decomposed figure of the module of single port optical transmitter and receiver shown in Fig. 1.
Fig. 3 is the further exploded view of the module of single port optical transmitter and receiver shown in Fig. 2.
Fig. 4 is another visual angle figure of the module of single port optical transmitter and receiver shown in Fig. 3.
Fig. 5 is single port optical transmitter and receiver shown in Fig. 3 and the exploded view of three connector-cables.
Fig. 6 is another visual angle figure of single port optical transmitter and receiver shown in Fig. 4 and three connector-cables.
Fig. 7 is the exploded view of single port optical transmitter and receiver shown in Fig. 5.
Fig. 8 is another visual angle figure of single port optical transmitter and receiver shown in Fig. 7.
Fig. 9 is the exploded view of photoelectric conversion connector shown in Fig. 7.
[main element symbol description]
Single port optical transmitter and receiver 1 Single port optical transmitter and receiver module 100
Top shell body 11 Antetheca 111
First port 1111 Second port 1112
3rd port 1113 First buckle 1114
Rear wall 112 Second buckle 1124
Roof 113 Heat radiation fin 1131
Gap 1132 Heat radiation groove 1133
Indicating pass through hole 1134 Sidewall 114
Storage tank 115 Locating dowel 116
First post portion 1161 Second post portion 1162
Buckle projection 117 Bottom shell body 12
Diapire 121 Fixed arm 122
Holder post 123 Block button hole 124
Circuit board assemblies 13 Hole, location 130
Circuit board 131 Photoelectric conversion connector 132
Pin 1321 BOSA module 1322
Left shell half 1323 Right half-shell 1324
Hole, location 1325 Ethernet connector 133
Power connector 134 Chip 135
LED 139 Collet 2
Base end wall 21 Louvre 210
Hanging hole 211 Through wires hole 213
4th buckle 214 5th buckle 215
Aft bulkhead 22 3rd buckle 223
Side wall 23 Shim 24
Card convex 241 Trunking 242
Reason line shell 3 First line outlet 31
Second line outlet 32 3rd line outlet 33
Arc groove 34 Rear fixture block 35
Front fixture block 36 Micro USB connector cable 4
First plug 41 First Line cable 42
RJ45 connector-cable 5 Second plug 51
Second cable 52 Joints of optical fibre cable 6
3rd plug 61 3rd cable 62
Following detailed description of the invention will further illustrate the present invention in conjunction with above-mentioned accompanying drawing.
[detailed description of the invention]
As shown in Figures 1 to 8, for meeting a kind of single port optical transmitter and receiver module 100 of the present invention, it includes single port optical transmitter and receiver 1, collet 2 and reason line shell 3.Collet is provided with the clamping structure fixing single port optical transmitter and receiver.
As shown in Fig. 7 to Fig. 8, single port optical transmitter and receiver 1 includes bottom shell body 12 and the circuit board assemblies 13 that top shell body 11 matches with top shell body 11. Top shell body 11 includes antetheca 111, rear wall 112, roof 113, two side 114 and is surrounded downwardly open storage tank 115 by these walls, after described circuit board assemblies 13 is mounted to storage tank 115 along vertical direction, described bottom shell body 12 is mounted to the bottom of storage tank 115 along vertical direction. Top shell body 11 is provided with and downwardly extends three locating dowels 116 in storage tank 115 from roof 113, and described circuit board assemblies 13 is provided with the hole 130, three location inserted for three locating dowels 116. Each locating dowel 116 includes the first post portion 1161 near roof and the second post portion 1162 away from roof, and the diameter in described second post portion 1162, less than the diameter in the first post portion 1161, just terminates continuing into so that circuit board assemblies 13 is inserted into certain depth. The connecting line triangular shape of three locating dowels 116, two of which locating dowel 116 is near a sidewall 114.
Bottom shell body 12 includes diapire 121, upwardly extends some fixed arms 122 of formation from diapire 121 and upwardly extend three holder posts 123 of formation from diapire 121, and three holder posts 123 are separately positioned on the underface in hole 130, three location. The antetheca 111 of top shell body 11, rear wall 112, roof 113, two side 114 are equipped with buckle projection 117, and the fixed arm 122 of bottom shell body 12 is provided with the block button hole 124 for being clasped with buckle projection 117.
Top shell body 11 is provided with some heat radiation fins 1131 downwardly projecting inside roof 113, it is connected between two ends and roof 113 medial wall of heat radiation fin 1131, it is provided with gap 1132 between centre and the roof 113 of heat radiation fin 1131, and outside roof 113, is provided with the heat radiation groove 1133 corresponding with each heat radiation fin 1131. Each heat radiation fin 1131 is positioned at the underface of each corresponding heat radiation groove 1133, so arrange and by groove 1133 and heat radiation the coordinating so that the heat of single port optical transmitter and receiver 1 sheds of gap 1132 of dispelling the heat, dust can be turn avoid and directly fall into circuit board assemblies 13 from the groove 1133 that dispels the heat. Some heat radiation fins 1131 are between three locating dowels 116. Roof 113 is additionally provided with some indicating pass through hole 1134, and these indicating pass through hole 1134 are for some LED 139 one_to_one corresponding on circuit board assemblies 13, thus indicating the information such as instruction power supply connected state and communication state of single port optical transmitter and receiver 1.
Circuit board assemblies 13 includes circuit board 131, be installed on circuit board 131 some programmable chips 135 and the some adapters being installed on circuit board 131, described some adapters include photoelectric conversion connector 132, ethernet connector 133 and power connector 134. Described power connector 134 is MicroUSB socket connector, and described ethernet connector 133 is RJ45 socket connector, and described photoelectric conversion connector 132 is the BOSA socket module inserted for network fiber. Compare the circular hole power connector of traditional design, single port optical transmitter and receiver 1 adopts MicroUSB socket connector, not only can provide power supply, and also by MicroUSB socket connector to chip 135 burning program on circuit board assemblies 13, thus highly versatile, and have several functions concurrently. Certainly, along with technical development, power connector 134 can certainly be USBTypeC socket connector etc. other can transmit the USB socket adapter of programming signal.Described photoelectric conversion connector 132 includes the some pins 1321 being installed on circuit board 131, and described some equal piercing welding of pin 1321 are on circuit board 131.
Some adapters only include an ethernet connector 133, so arrange, and compare one of traditional design row's ethernet connector 133, it is possible to make single port optical transmitter and receiver 1 size accomplish sufficiently small. The antetheca 111 of top shell body 11 is provided with through the first port the 1111, second port 1112 and the 3rd port 1113 to host cavity. Power connector 134 is positioned at the rear end of the first port 1111, and ethernet connector 133 is positioned at the rear end of the second port 1112, and photoelectric conversion connector 132 is positioned at the rear end of the 3rd port 1113. Power connector 134, ethernet connector 133, photoelectric conversion connector 132 each have the docking slot (non-label) being positioned at dead astern, corresponding port. First port the 1111, second port the 1112, the 3rd port 1113 is arranged in a row along horizontal direction, the size degree being smaller in size than the 3rd port 1113 of described first port 1111, the size being smaller in size than the second port 1112 of described 3rd port 1113.
Collet 2 and top shell body 11 fasten mutually, and the antetheca 111 of top shell body 11 is provided with some first buckles 1114 for being clasped with collet 2, and described rear wall 112 is provided with some second buckles 1124 for being clasped with collet 2. Described antetheca 111 is provided with two the first buckles 1114 respectively close to sidewall 114, and described rear wall 112 is provided with two the second buckles 1124 respectively close to sidewall 114. Collet 2 and top shell body 11 are clasped by four and ensure that single port optical transmitter and receiver 1 is fixed with the stable of collet 2, and simple in construction, facilitate installation personnel sharp work.
As shown in Figure 3 and Figure 4, collet 2 includes base end wall 21, upwardly extends the aft bulkhead 22 of formation from base end wall 21 rear end, upwardly extends the both sides end wall 23 of formation from both sides of the edge, base end wall 21 front end and upwardly extend four shims 24 of formation from base end wall 21 near leading edge. Single port optical transmitter and receiver 1 is contained in the space limited by aft bulkhead 22 and both sides end wall 23. Adjacent two shims 24 form the trunking 242 for making cable in order. Described aft bulkhead 22 is provided with the 3rd buckle 223 that the second buckle 1124 with rear wall 112 coordinates, and described base end wall 21 also includes the 4th buckle 214 upwardly extending formation from base end wall 21, and described 4th buckle 214 matches with the first buckle 1114.
Described base end wall 21 is provided with four hanging holes 211 for wall hanging, and described base end wall 21 is rectangle shape, and four hanging holes 211 lay respectively at four of base end wall 21 to corner point. Described base end wall 21 is provided with some louvres 210 being positioned at immediately below single port optical transmitter and receiver 1 and the through wires hole 213 near four shims. Louvre 210 is in long and narrow elongate in shape, and through wires hole 213 is in hole shape, and hanging hole 211 is in gourd shape. Through wires hole 213 is positioned at the dead ahead of the 3rd port 1113.
As shown in Figures 1 to 6, reason line shell 3 is arranged between the both sides end wall 23 of collet 2 and is positioned at the dead ahead of top shell body 11, and described reason line shell 3 is provided with and first port the 1111, second port the 1112, the 3rd port 1,113 first line outlet the 31, second line outlet the 32, the 3rd line outlet 33 one to one. First port 1111 is for the insertion of the first plug 41 of MicroUSB connector-cable 4, and the second port 1112 is for the insertion of the second plug 51 of RJ45 connector-cable 5, and the 3rd port 1113 is for the insertion of the 3rd plug 61 of joints of optical fibre cable 6.
As shown in Figure 1 to Figure 3, three trunkings 242 and first line outlet the 31, second line outlet the 32, the 3rd line outlet 33 of four shim 24 formation are correspondingly arranged respectively, the First Line cable 42 of MicroUSB connector-cable 4 passes from the first line outlet 31, second cable 52 of RJ45 connector-cable 5 passes from the second line outlet 32, and the 3rd cable 62 of joints of optical fibre cable 6 passes from the 3rd line outlet 33. Certainly, the 3rd cable 62 of joints of optical fibre cable 6 can also penetrate from through wires hole 213, in order to optical fiber is incoming from wall. First line outlet the 31, second line outlet the 32, the 3rd line outlet 33 coordinates for being made in order by the cable of the wire and cable connector being inserted into port with three trunkings 242, it is to avoid disorderly unordered cable affects visual experience.
As shown in Figure 3 and Figure 4, the antetheca of reason line shell 3 is provided with front fixture block 36 and rear fixture block 35, and front fixture block 36 is clasped with the card convex 241 on shim 24, and the 5th buckle 215 of rear fixture block 35 and collet 2 is clasped. 5th buckle 215 and the 4th buckle 214 Parallel Symmetric are arranged. Reason line shell 3 realizes buckle by card convex 241 and the 5th buckle 215 of front fixture block 36 and rear fixture block 35 and collet 2. As it is shown in figure 1, reason line shell 3 is additionally provided with arc groove 34, reason line shell 3 is taken out from unfreezing collet 2 easily by described arc groove 34 for user.
As it is shown in figure 9, photoelectric conversion connector 132 includes BOSA module 1322, left shell half 1323 and right half-shell 1324. Left shell half 1323 and right half-shell 1324 fasten to form receiving space housing BOSA module 1322 mutually, wherein left shell half 1323 is provided with some holes, location 1325 for some pin 1321 stationary positioned, thus facilitating some pins 1321 to be all vertically arranged so that piercing welding is to circuit board 131 simultaneously.
The foregoing is only one embodiment of the present invention, it is not all of or unique embodiment, the change of any equivalence that technical solution of the present invention is taked by those of ordinary skill in the art by reading description of the present invention, the claim being the present invention is contained.

Claims (10)

1. a single port optical transmitter and receiver, comprising:
Shell, described shell includes some sidewalls and the storage tank surrounded by some sidewalls, and wherein a sidewall is provided with some through ports to storage tank;
Circuit board module, described circuit board module includes circuit board and the some adapters being installed on circuit board, described some adapters each have the docking slot being positioned at dead astern, corresponding port, described some adapters include photoelectric conversion connector, ethernet connector and power connector, it is characterised in that: described power connector is USB electric connector.
2. single port optical transmitter and receiver as claimed in claim 1, it is characterised in that: described USB electric connector is MicroUSB socket connector, and described ethernet connector is RJ45 socket connector, and described photoelectric conversion connector inserts for network fiber.
3. single port optical transmitter and receiver as claimed in claim 1, it is characterised in that: described photoelectric conversion connector includes the some pins being installed on circuit board, and the described equal piercing welding of some pins is on circuit board.
4. single port optical transmitter and receiver as claimed in claim 1, it is characterised in that: described some adapters only include a network connector.
5. a single port optical transmitter and receiver module, comprising: single port optical transmitter and receiver and the collet for the installation of single port optical transmitter and receiver, described single port optical transmitter and receiver includes shell and the circuit board module being contained in shell, described shell includes with plate in housing the storage tank of circuit board module and through some ports to host cavity, described circuit module includes circuit board and the some adapters being installed on circuit board, described some adapters each have the docking slot being positioned at dead astern, corresponding port, described some adapters include photoelectric conversion connector and power connector, it is characterized in that: described collet is provided with the clamping structure fixing single port optical transmitter and receiver, described collet is additionally provided with the trunking for making cable in order.
6. single port optical transmitter and receiver module as claimed in claim 5, it is characterized in that: described shell includes the top shell body being interlocked with collet, described top shell body includes antetheca, rear wall, roof and two side, described storage tank is surrounded by these walls, described some ports are arranged on antetheca, described antetheca is provided with some first buckles for being clasped with collet, and described rear wall is provided with some second buckles for being clasped with collet.
7. single port optical transmitter and receiver module as claimed in claim 6, it is characterized in that: collet includes base end wall, upwardly extends the aft bulkhead of formation from base end wall rear end and upwardly extend the both sides end wall of formation from base end wall front end, and described single port optical transmitter and receiver is contained in the space limited by aft bulkhead and both sides end wall.
8. single port optical transmitter and receiver module as claimed in claim 7, it is characterised in that: described base end wall is provided with the hanging hole for wall hanging, and described base end wall is provided with some louvres being positioned at immediately below single port optical transmitter and receiver.
9. single port optical transmitter and receiver module as claimed in claim 7, it is characterized in that: described aft bulkhead is provided with the 3rd buckle that second with rear wall is clasped, described base end wall also includes the 4th buckle upwardly extending formation from base end wall, and described 4th buckle and the first buckle match.
10. single port optical transmitter and receiver module as claimed in claim 5, it is characterized in that: described single port optical transmitter and receiver module also includes reason line shell, described reason line shell is arranged on collet and is positioned at the dead ahead of top shell body, described off-line shell is provided with and some ports some line outlets one to one, and described line outlet is for making in order the cable of the wire and cable connector being inserted into port.
CN201610062877.2A 2016-01-30 2016-01-30 Single-port optical transmitter-receiver Pending CN105656559A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201610062877.2A CN105656559A (en) 2016-01-30 2016-01-30 Single-port optical transmitter-receiver
TW106101325A TW201800788A (en) 2016-01-30 2017-01-16 Single family unit and single-port optical module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610062877.2A CN105656559A (en) 2016-01-30 2016-01-30 Single-port optical transmitter-receiver

Publications (1)

Publication Number Publication Date
CN105656559A true CN105656559A (en) 2016-06-08

Family

ID=56489021

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610062877.2A Pending CN105656559A (en) 2016-01-30 2016-01-30 Single-port optical transmitter-receiver

Country Status (2)

Country Link
CN (1) CN105656559A (en)
TW (1) TW201800788A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106291845A (en) * 2016-08-31 2017-01-04 安徽赛福电子有限公司 A kind of optical fiber conversion mounting box
CN106992389A (en) * 2017-04-21 2017-07-28 中山市古镇宏立电线电器厂有限公司 Combined type separated time slot device for plug
CN110011686A (en) * 2018-01-03 2019-07-12 富顶精密组件(深圳)有限公司 Wirelessly communicate interconnection system and its wall-mounted external member
CN115199917A (en) * 2021-04-08 2022-10-18 南宁富联富桂精密工业有限公司 Wall hanging device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201740885U (en) * 2010-07-23 2011-02-09 捷腾光电股份有限公司 Optical fiber connector structure
CN103022758A (en) * 2011-09-23 2013-04-03 艾恩特精密工业股份有限公司 Communication connection socket and assembling method thereof
CN203273229U (en) * 2013-04-12 2013-11-06 光宝电子(广州)有限公司 Wireless transmission module wall hanging fixing device
CN203859346U (en) * 2014-05-29 2014-10-01 康博工业股份有限公司 Transmission line module and electric connector thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201740885U (en) * 2010-07-23 2011-02-09 捷腾光电股份有限公司 Optical fiber connector structure
CN103022758A (en) * 2011-09-23 2013-04-03 艾恩特精密工业股份有限公司 Communication connection socket and assembling method thereof
CN203273229U (en) * 2013-04-12 2013-11-06 光宝电子(广州)有限公司 Wireless transmission module wall hanging fixing device
CN203859346U (en) * 2014-05-29 2014-10-01 康博工业股份有限公司 Transmission line module and electric connector thereof

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106291845A (en) * 2016-08-31 2017-01-04 安徽赛福电子有限公司 A kind of optical fiber conversion mounting box
CN106992389A (en) * 2017-04-21 2017-07-28 中山市古镇宏立电线电器厂有限公司 Combined type separated time slot device for plug
CN110011686A (en) * 2018-01-03 2019-07-12 富顶精密组件(深圳)有限公司 Wirelessly communicate interconnection system and its wall-mounted external member
CN110011686B (en) * 2018-01-03 2022-02-22 富顶精密组件(深圳)有限公司 Wireless communication interconnection system and wall-mounted kit thereof
CN115199917A (en) * 2021-04-08 2022-10-18 南宁富联富桂精密工业有限公司 Wall hanging device
CN115199917B (en) * 2021-04-08 2023-08-15 南宁富联富桂精密工业有限公司 Wall hanging device

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