WO2022236982A1 - 一种光口组件及光模块 - Google Patents

一种光口组件及光模块 Download PDF

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Publication number
WO2022236982A1
WO2022236982A1 PCT/CN2021/111167 CN2021111167W WO2022236982A1 WO 2022236982 A1 WO2022236982 A1 WO 2022236982A1 CN 2021111167 W CN2021111167 W CN 2021111167W WO 2022236982 A1 WO2022236982 A1 WO 2022236982A1
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WO
WIPO (PCT)
Prior art keywords
shielding cover
shielding
port assembly
optical port
optical
Prior art date
Application number
PCT/CN2021/111167
Other languages
English (en)
French (fr)
Inventor
全本庆
宋蓓莉
盛于邦
宋梦洋
张德玲
Original Assignee
武汉光迅科技股份有限公司
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 武汉光迅科技股份有限公司 filed Critical 武汉光迅科技股份有限公司
Priority to EP21941551.0A priority Critical patent/EP4339671A1/en
Publication of WO2022236982A1 publication Critical patent/WO2022236982A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/42Coupling light guides with opto-electronic elements
    • G02B6/4201Packages, e.g. shape, construction, internal or external details
    • G02B6/4274Electrical aspects
    • G02B6/4277Protection against electromagnetic interference [EMI], e.g. shielding means
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/42Coupling light guides with opto-electronic elements
    • G02B6/4292Coupling light guides with opto-electronic elements the light guide being disconnectable from the opto-electronic element, e.g. mutually self aligning arrangements

Definitions

  • the present application relates to the technical field of optical communication, in particular to an optical port component and an optical module.
  • Electromagnetic interference refers to the phenomenon of electromagnetic interference caused by the interaction between electromagnetic waves and electronic components.
  • electromagnetic leakage is likely to occur at the connection of each component.
  • the physical interface optical port used to connect the optical fiber is generally exposed outside the device, which is more likely to generate electromagnetic leakage and enhance the intensity of electromagnetic interference.
  • the related optical module adopts the design scheme that the metal casing surrounds the optical fiber to avoid reducing electromagnetic leakage, but the gap between the metal casing and the optical fiber is large, and the electromagnetic leakage is still large, resulting in poor electromagnetic shielding effect.
  • the present application aims to provide an optical port assembly and an optical module to solve the technical problem of how to reduce electromagnetic leakage.
  • an optical port assembly including: a connector, an optical fiber is connected to one end of the connector along the first direction; An extended accommodating cavity, one end of the connector away from the optical fiber protrudes into the accommodating cavity along the first direction; a shielding member has a hollow matching cavity, and the opposite end of the shielding member along the first direction Openings communicated with the matching cavity are provided at both ends, and the adapter is inserted into the matching cavity through one opening to be fixed, and the other opening is used for inserting the optical fiber; wherein, the other The size of the opening is substantially the same as the cross-sectional size of the optical fiber along the second direction; the first direction is substantially perpendicular to the second direction.
  • the shielding member includes a first shielding cover and a second shielding cover that are detachably connected, and the first shielding cover is connected with the second shielding cover to form the matching cavity.
  • the first shielding cover is provided with a first limiting member
  • the second shielding cover is provided with a second limiting member
  • the first limiting member abuts against the second limiting member. connected to limit the displacement of the first shielding cover relative to the second shielding cover in the first direction.
  • At least one of the first shielding cover and the second shielding cover is provided with a positioning member to limit the movement of the first shielding cover in the second direction relative to the second shielding cover. on the displacement.
  • the first shielding cover is provided with a first notch
  • the second shielding cover is provided with a second notch
  • the connection between the first shielding cover and the second shielding cover In a state, the first notch communicates with the second notch to form another opening.
  • the first shielding cover includes a first body and a first flange, the first flange is disposed at a position of the first body close to the first notch, and the first flange The edge protrudes from the first body along the first direction;
  • the second shielding cover includes a second body and a second flange, and the second flange is disposed on a side of the second body close to the second notch position, the second flange protrudes from the second body along the first direction.
  • the first shielding cover is provided with a first protrusion
  • the second shielding cover is provided with a first groove
  • the first protrusion extends into the first groove to Connect the first shielding cover and the second shielding cover; or, the first shielding cover is provided with a first groove, the second shielding cover is provided with a first protrusion, and the first protrusion and extending into the first groove to connect the first shielding cover and the second shielding cover.
  • a reed extending along the first direction is provided at one end of the shielding member close to the one opening, and the reed has a curvature protruding away from the matching cavity.
  • the shielding part is provided with a first engaging part
  • the adapter part is provided with a second engaging part
  • the first engaging part and the second engaging part are engaged with each other. combined to fix the shielding part and the adapter part.
  • the adapter is provided with a first stopper
  • the connecting part is provided with a second stopper
  • the first stopper and the second stopper are in the butt up in the first direction.
  • the present application also provides an optical module, including the optical port assembly described in any one of the above; and a housing with a hollow installation groove, in which the optical port assembly is installed.
  • the housing is provided with a first fixing part
  • the optical port assembly is provided with a second fixing part
  • the first fixing part is connected with the second fixing part to fix the optical port assembly in the mounting slot.
  • the present application aims to provide an optical port assembly and an optical module, including a connecting piece, an adapter and a shielding piece.
  • An optical fiber is connected to the connector, and the adapter has a cavity, and the connector extends into the cavity and is fixed so that the relative position between the connector and the adapter is fixed.
  • the shielding element has a hollow matching cavity, and the adapter extends into The matching cavity is fixedly connected to the fitting and the shielding part, so that the relative positions of the shielding part and the fitting are fixed, so that the positions of the shielding part and the optical fiber are also relatively fixed.
  • the shielding piece is completely wrapped on the adapter, which increases the wrapping range of the shielding piece, and also limits the relative position of the shielding piece and the adapter piece, thereby further limiting the relative position of the shielding piece and the optical fiber, and then determines the The position of the opening for the optical fiber to pass through on the shielding member, and because the relative position of the opening and the optical fiber is fixed, the size of the opening can be approximately the same as the size of the optical fiber perpendicular to the length of the optical fiber, so as to minimize the opening, and then The electromagnetic leakage at the opening is reduced, and the effect of electromagnetic shielding is enhanced.
  • FIG. 1 is a schematic structural diagram of an optical fiber docking provided in an embodiment of the present application
  • FIG. 2 is a schematic diagram of an assembly of an optical port assembly provided by an embodiment of the present application.
  • FIG. 3 is a schematic structural diagram of a second shielding cover provided in an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of a first shielding cover provided by an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a shield provided in an embodiment of the present application.
  • Fig. 6 is an assembly schematic diagram of another optical port assembly provided by the embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of another shield provided in the embodiment of the present application.
  • Fig. 8 is a schematic diagram of the assembly of an adapter and a connector provided in the embodiment of the present application.
  • FIG. 9 is a cross-sectional view of an optical module provided by an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of an optical module provided by an embodiment of the present application.
  • Optical port assembly 100, connector; 110, optical fiber; 120, second stopper; 200, adapter; 210, accommodating cavity; 220, housing; 230, second engaging member; 240, second 1 stop piece; 250, second fixing piece; 300, shielding piece; 310, matching cavity; 320, first opening; 330, second opening; 340, first shielding cover; 3401, first body; 341, second opening One side wall; 3411, the first protrusion; 342, the second side wall; 343, the third side wall; 344, the first bottom wall; 345, the first stopper; 3451, the first notch; 3452, the first A flanging; 350, the second shielding cover; 3501, the second body; 351, the fourth side wall; 3511, the first groove; 352, the fifth side wall; 353, the sixth side wall; 354, the second bottom Wall; 355, second limit piece; 3551, second notch; 3552, second flange; 356, positioning piece; 360, reed; 370, first engaging piece; 400, shell
  • connection includes both direct connection and indirect connection unless otherwise specified.
  • the present application provides an optical port assembly and an optical module, wherein the optical port assembly 1 is used to provide a physical interface for connecting optical fibers, so that two sections of optical fibers can be connected to implement optical fiber communication.
  • the basic composition and working principle of the optical port assembly 1 are roughly as follows:
  • the optical port assembly 1 includes a connector 100 and an adapter 200 , wherein one of the two opposite ends of the connector 100 is connected to an optical fiber 110 , and the other end is used to connect with the other connector 100 .
  • one of the connectors 100 can be provided with pins, and the other connector 100 can be provided with jacks, and the pins can be inserted into the jacks to achieve accurate connection of the optical fibers connected in the connectors 100.
  • the adapter 200 in the optical port assembly 1 has a hollow accommodating cavity 210, the accommodating cavity 210 runs through the adapter 200, and the two connectors 100 extend into the accommodating cavity 210 from opposite ends of the adapter 200 for connection. , so as to realize the connection of the optical fibers 110 connected by the two connectors 100 , and at the same time, the connector 100 and the adapter 200 are fixed, so that the connectors 100 can be connected stably.
  • the optical port assembly 1 includes a connector 100 , an adapter 200 , and a shield 300 , wherein an optical fiber 110 is connected to one end of the connector 100 along the first direction.
  • the connector 100 has two opposite ends in a first direction, wherein the first direction is the extending direction of the optical fiber 110, that is, the left-right direction as shown in FIG. connect.
  • the number of optical fibers 110 may be one or multiple, and the specific number may be selected according to actual usage conditions.
  • the connector 100 is connected to the adapter 200, wherein the adapter 200 has an accommodating cavity 210 extending along a first direction (the left-right direction as shown in FIG.
  • the adapter 200 is surrounded by a housing 220, and a hollow housing 210 is formed inside the housing 220.
  • the housing 210 penetrates the adapter 200 along the extending direction of the optical fiber 110, and is used as a space for accommodating the connector 100.
  • the receiving cavity 210 communicates with the outside world.
  • the two connectors 100 protrude into the receiving cavity 210 to communicate and fix with the adapter 200, so as to realize the stable communication of the optical fiber 110.
  • the adapter 200 may be a plastic product or a metal product.
  • the shielding member 300 in the optical port assembly 1 has a hollow matching cavity 310, and the opposite ends of the shielding member 300 along the first direction (the left and right direction shown in FIG. 3 ) are provided with a matching cavity 310 , the adapter 200 is inserted into the matching cavity 310 through one opening to be fixed, and the other opening is used for inserting the optical fiber 110 .
  • the shield 300 surrounds the outer surface of the housing 220 of the adapter 200 to wrap the adapter 200, and the shield 300 is made of metal, such as copper, iron, etc.; wherein, the shield 300 can completely wrap
  • the adapter 200 may also partially wrap the adapter 200 .
  • the shielding member 300 may be integrally formed, or may be formed by splicing a plurality of wall panels, and the splicing method of the wall panels may be welding, bonding, and the like.
  • two opposite ends of the shielding member 300 are provided with openings, and the two openings communicate with the matching cavity 310, one of which is used to install the adapter 200 into the matching cavity 310, and the other opening is used to allow the optical fiber 110 to protrude Shield 300 .
  • one of the openings is called the first opening 320
  • the other opening is called the second opening 330 .
  • the installation steps of the optical port assembly 1 are: firstly, the end of the connector 100 with the optical fiber 110 away from the optical fiber 110 is inserted into the accommodation cavity 210 of the adapter 200, and the connector 100 The connection with the optical fiber 110 extends into the accommodation cavity 210 , and the optical fiber 110 extends out of the accommodation cavity 210 and out of the adapter 200 , and the shielding member 300 is installed in the housing 220 of the adapter 200 through the first opening 320 On the outer surface, the connection of the optical fiber 110 of the connector 100 is wrapped in the shielding member 300 , and the optical fiber 110 protrudes from the shielding member 300 through the second opening 330 .
  • the size of the matching cavity 310 in the shielding part 300 is slightly larger than the outer dimension of the adapter part 200, so that the shielding part 300 can be smoothly installed on the adapter part 200 and also be in close contact with the housing 220 of the adapter part 200 .
  • the size of the second opening 330 is substantially the same as the cross-sectional size of the optical fiber 110 along the second direction; the first direction (the left-right direction shown in FIG. 3 ) is substantially perpendicular to the second direction.
  • the second direction is substantially perpendicular to the extending direction of the length of the optical fiber 110 , that is, the up-down direction as shown in FIG. 3 .
  • the cross-section of the optical fiber 110 along the second direction (the up-and-down direction shown in FIG.
  • the size of its cross-section is basically the same as the size of the second opening 330 through which the optical fiber 110 protrudes from the shielding member 300, so-called substantially the same
  • the connection between the connector 100 and the optical fiber 110 The position relative to the adapter 200 is relatively fixed, and the shield 300 is relatively fixed with the adapter 200, so that the relative position between the shield 300 and the connector 100 is also fixed, that is, the optical fiber 110 connected to the connector 100 is also fixed with the connector 100.
  • the position of the shielding member 300 is relatively fixed, so that the second opening 330 on the shielding member 300 for passing the optical fiber 110 can be opened in advance, and the second opening 330 on the shielding member 300 can be minimized on the basis of not worrying about damaging the optical fiber 110 .
  • the optical port assembly provided in the embodiment of the present application includes a connecting part, an adapter part and a shielding part.
  • An optical fiber is connected to the connector, and the adapter has a cavity, and the connector extends into the cavity and is fixed so that the relative position between the connector and the adapter is fixed.
  • the shielding element has a hollow matching cavity, and the adapter extends into The matching cavity is fixedly connected to the fitting and the shielding part, so that the relative positions of the shielding part and the fitting are fixed, so that the positions of the shielding part and the optical fiber are also relatively fixed.
  • the shielding piece is completely wrapped on the adapter, which increases the wrapping range of the shielding piece, and also limits the relative position of the shielding piece and the adapter piece, thereby further limiting the relative position of the shielding piece and the optical fiber, and then determines the The position of the second opening for the optical fiber to pass through on the shielding member, and because the relative position of the second opening and the optical fiber is fixed, the size of the second opening can be approximately the same as the size of the optical fiber perpendicular to the length direction of the optical fiber, to achieve The second opening is minimized, thereby reducing electromagnetic leakage at the second opening, and enhancing the effect of electromagnetic shielding.
  • the shield 300 includes a first shield cover 340 and a second shield cover 350 that are detachably connected, and the first shield cover 340 and the second shield cover 350 are connected to form a matching cavity 310 .
  • the detachable connection may be a sliding connection or a buckle connection.
  • the first shielding cover 340 includes a first side wall 341, a second side wall 342, a third side wall 343 and a first bottom wall 344, wherein the first side wall 341 and the second side wall 342 are respectively connected to the third Two opposite ends of the sidewall 343 form a substantially U-shaped structure, and the first sidewall 341 , the second sidewall 342 , and the third sidewall 343 are all connected to the first bottom wall 344 .
  • the second shielding cover 350 includes a fourth side wall 351, a fifth side wall 352, a sixth side wall 353, and a second bottom wall 354; wherein, the fourth side wall 351 is connected to the first side wall 341, and the fifth side wall 352 It is connected with the second side wall 342 , and the sixth side wall 353 is connected with the third side wall 343 .
  • the second opening 330 may be separately provided on the third side wall 343 or the sixth side wall 353 , or may be provided on the third side wall 343 and the sixth side wall 353 at the same time.
  • At least one of the first side wall 341 and the second side wall 342 is provided with a protrusion, and correspondingly at least one of the fourth side wall 351 and the fifth side wall 352 is provided with a groove.
  • the protrusion extends into the groove to fix the first shielding cover 340 and the second shielding cover 350 .
  • the first shielding cover 340 may also be flat, and the second shielding cover 350 includes a fourth side wall 351 , a fifth side wall 352 , a sixth side wall 353 and a second bottom wall 354 , wherein, the fourth side wall 351 and the fifth side wall 352 are arranged in parallel and are respectively connected to one end of the second bottom wall 354, and the sixth side wall 353 is connected to the fourth side wall 351, the fifth side wall 352, the second bottom wall 354 connection, the sixth side wall 353 is provided with a second opening 330 for the optical fiber 110 to pass through, the fourth side wall 351 and the fifth side wall 352 are provided with slideways, and the first shielding cover 340 passes through the slideways and the second shielding cover 340
  • the four sidewalls 351 are connected with the fifth sidewall 352 to form a matching cavity 310 with openings at opposite ends.
  • the shielding part includes a first shielding cover and a second shielding cover, and the detachable connection between the first shielding cover and the second shielding cover facilitates disassembly and assembly of the shielding part from the adapter and improves assembly efficiency.
  • the first shielding cover 340 is provided with a first limiting member 345
  • the second shielding cover 350 is provided with a second limiting member 355
  • the first limiting member 345 is connected to the second limiting member 355.
  • the position member 355 abuts to limit the displacement of the first shielding cover 340 relative to the second shielding cover 350 in a first direction (the left-right direction as shown in FIG. 6 ).
  • the first shielding cover 340 is provided with a first side wall 341 and a second side wall 342 opposite to each other, the first side wall 341 and the second side wall 342 are connected to the first bottom wall 344 respectively, and the first stopper 345 is connected to the first bottom wall 344, wherein the first limiting member 345 is flat.
  • the second shielding cover 350 is provided with a fourth side wall 351 and a fifth side wall 352 opposite to each other, the fourth side wall 351 and the fifth side wall 352 are respectively connected to the second bottom wall 354, and the second stopper 355 and The second bottom wall 354 is connected, wherein, the second limiting member 355 is also flat, and there is a certain gap between the second limiting member 355 and the fourth side wall 351 and the fifth side wall 352, the first limiting member The member 345 can be inserted into the gap to abut against the second limiting member 355, that is, the first limiting member 345 and the second limiting member 355 are in contact with each other to prevent the first shielding cover 340 from moving relative to the second shielding cover 350 at the second position. Displacement in one direction (left and right direction as shown in FIG. 6 ).
  • the first stopper on the first shielding cover extends into the gap formed by the second stopper on the second shielding cover, so that the first stopper can only move within the range of the gap, thereby limiting the first
  • the displacement of the shielding cover relative to the second shielding cover in the first direction facilitates the assembly of the first shielding cover and the second shielding cover.
  • the positioning member 356 may be an L-shaped structure, one end of which is connected to the second bottom wall 354 , and the other end is used to support the first bottom wall 344 of the first shielding cover 340 .
  • the positioning pieces 356, which are respectively connected to the fourth side wall 351 and the sixth side wall 353, wherein, the end of the positioning piece 356 away from the second bottom wall 354 is bent, and when installing, the first shielding cover 340 Installed with the second shielding cover 350, the first bottom wall 344 abuts against the positioning member 356 to limit the first shielding cover 340 to continue along the second direction (up and down direction as shown in FIG. 6 ), and the positioning member 356 and the first positioning member There is a gap between the two limiting parts 355 , and the first limiting part 345 is inserted into the gap between the second limiting part 355 and the positioning part 356 to limit the displacement of the first shielding cover 340 in the first direction.
  • the positioning piece can be arranged on the first shielding cover or on the second shielding cover, and the positioning piece is used to limit the first shielding cover and the second shielding cover in the second direction (up and down as shown in Figure 6) during installation. Direction) relative position, so as to realize the installation positioning.
  • the first shielding cover 340 is provided with a first notch 3451
  • the second shielding cover 350 is provided with a second notch 3551 , between the first shielding cover 340 and the second shielding
  • the first notch 3451 communicates with the second notch 3551 to form another opening.
  • the other opening is the second opening 330 .
  • the first notch 3451 and the second notch 3551 may be U-shaped notches, and the two U-shaped notches are arranged opposite to each other so as to form the second opening 330 for the optical fiber 110 by splicing.
  • the first notch 3451 is arranged on the first limiting member 345
  • the second notch 3551 is arranged on the second limiting member 355, the notch of the first notch 3451 and the notch of the second notch 3551
  • the first notch 3451 is connected to the second notch 3551 to form a complete second opening 330 .
  • the second opening through which the optical fiber passes is formed by connecting the first notch with the second notch, which facilitates the direct assembly of the first shielding cover and the second shielding cover without The first shielding cover and the second shielding cover are installed after the light passes through the second opening.
  • the first shielding cover 340 includes a first body 3401 and a first flange 3452.
  • the first flange 3452 is disposed at a position of the first body 3401 close to the first notch 3451.
  • a flange 3452 protrudes from the first body 3401 along a first direction (a left-right direction as shown in the figure). Close can be understood as two parts bordering each other, that is, the distance between the two parts is basically zero.
  • the first flange 3452 can be in the shape of a strip, and is arranged at the bottom of the first notch 3451.
  • the first flange 3452 can also be arranged on the edge of the first notch 3451, and along the optical fiber
  • the extending direction of 110 protrudes from the first body 3401 to increase the contact area between the optical fiber 110 and the groove wall of the first notch 3451 .
  • the second shielding cover 350 includes a second body 3501 and a second flange 3552, the second flange 3552 is arranged on the second body 3501 close to the second notch 3551, and the second flange 3552 is along the first direction (as shown in Figure 7 The left-right direction shown) protrudes from the second body 3501. Close can be understood as two parts bordering each other, that is, the distance between the two parts is basically zero.
  • the second flange 3552 can be in the shape of a strip, and is arranged at the bottom of the second notch 3551.
  • the second flange 3552 can also be arranged on the edge of the second notch 3551, and along the optical fiber The extending direction of 110 protrudes from the second body 3501 to increase the contact area between the optical fiber 110 and the groove wall of the second notch 3551 .
  • the first flange is arranged close to the first notch, and the second flange is arranged close to the second notch.
  • the first shielding cover 340 is provided with a first protrusion 3411
  • the second shielding cover 350 is provided with a first groove 3511
  • the first protrusion 3411 extends into the first recess.
  • the groove 3511 is used to connect the first shielding cover 340 and the second shielding cover 350 .
  • the first protrusion 3411 may be disposed on the first side wall 341
  • the first groove 3511 may be correspondingly disposed on the fourth side wall 351 .
  • first protrusions 3411 which are respectively provided on the first side wall 341 and the second side wall 342, and two first grooves 3511 are also correspondingly provided, which are respectively provided on the fourth side wall 351 and the fifth side wall 352.
  • the first protrusion 3411 protrudes away from the first body 3401.
  • the first shielding cover 340 and the second shielding cover 350 are installed, the first protrusion 3411 extends into the first groove 3511, thereby fixing the first shielding cover 340 and the second shielding cover 350.
  • the shielding cover 340 and the second shielding cover 350 are installed.
  • the first shield cover 340 is provided with a first groove 3511
  • the second shield cover 350 is provided with a first protrusion 3411
  • the first protrusion 3411 extends into the first groove 3511 to connect the first shield The cover 340 and the second shielding cover 350 .
  • a first protrusion is provided on the first shielding cover, and a first groove is provided on the second shielding cover, or a first groove is provided on the first shielding cover, and a first protrusion is provided on the second shielding cover, through During assembly, the first protrusion extends into the second groove, so that the first shielding cover and the second shielding cover can be stably fixed.
  • one end of the shielding member 300 close to an opening is provided with a reed 360 extending in a first direction (the left-right direction as shown in FIG. 7 ), and the reed 360 has a direction away from the matching cavity. 310 prominent arcs.
  • One of the openings is the first opening 320.
  • the reed 360 has certain elasticity, and one end of the reed 360 is connected to the shielding member 300, wherein the reed 360 is connected close to the first opening 320.
  • the reed 360 It can be set in multiples and set around the first opening 320 .
  • the reed 360 has a radian protruding toward the matching cavity 310, that is, the reed 360 is not in a straight line.
  • one end of the reed 360 is connected to the shield 300 , and the other end is in contact with the adapter 200 , so as to help the shield 300 to be tightly connected to the adapter 200 .
  • the reeds are arranged around the first opening of the shield. During assembly, the reeds provide pressure to help the shield and the adapter to be in close contact. Some reeds have a radian to make the highest point pressure of the reeds higher. The height of the shield is higher, which helps the shield to be grounded and improves the electromagnetic shielding effect of the shield.
  • the shielding part 300 is provided with a first engaging part 370
  • the adapter part 200 is provided with a second engaging part 230
  • the first engaging part 370 and the second engaging part 230 are provided.
  • the two engaging parts 230 are engaged with each other to fix the shielding part and the adapter part 200 .
  • two first engaging parts 370 can be provided, which can be arranged on the fourth side wall 351 and the fifth side wall 352 respectively.
  • the first engaging part 370 can also be arranged on the first side wall 341 and on the second side wall 342 .
  • the second engaging part 230 is arranged on the housing 220 of the adapter part 200, and the second engaging part 230 can also be provided in two correspondingly, through the first engaging part 370 and the second engaging part 230 In order to make the shielding part 300 tightly connected to the housing 220 of the adapter part 200.
  • the first engaging part 370 is a boss
  • the second engaging part 230 is a groove. When assembling, the boss is inserted into the groove and fixed, so that the shielding part 300 and the adapter part 200 are fixed.
  • the adapter 200 is provided with a first stopper 240
  • the connector 100 is provided with a second stopper 120
  • the first stopper 240 and the second stopper 120 abuts in a first direction (left-right direction as shown in FIG. 8 ).
  • the first stopper 240 is arranged in the receiving cavity 210
  • the second stopper 120 is arranged on the connection part 100, for example, the first stopper 240 is close to the inner surface of the housing 220 of the adapter 200
  • the boss is provided, and the second stopper 120 is a stepped surface.
  • the connecting piece 100 When assembling, the connecting piece 100 extends into the receiving cavity 210, and the stepped surface of the connecting piece 100 abuts against the boss of the adapter 200, so that the connecting piece 100 cannot continue to protrude along the receiving cavity 210 , so as to realize the limitation of the connection part 100 relative to the adapter part 200 .
  • the embodiment of the present application also provides an optical module, as shown in FIG. 9 , including an optical port assembly 1 and a housing 400, wherein the housing 400 has a hollow mounting groove 410, and the optical port assembly 1 is installed in the mounting groove 410.
  • the optical port assembly 1 includes a connector 100 , an adapter 200 , and a shield 300 .
  • the connector 100 , the adapter 200 , and the shield 300 are installed first before being installed with the housing 400 .
  • the housing 400 is a metal housing with a mounting groove 410 , the shape of the mounting groove 410 matches the shape of the optical port assembly 1 after assembly, so that the outer surface of the optical port assembly 1 is fully in contact with the housing 400 .
  • FIG. 9 an optical module, as shown in FIG. 9 , including an optical port assembly 1 and a housing 400, wherein the housing 400 has a hollow mounting groove 410, and the optical port assembly 1 is installed in the mounting groove 410.
  • the optical port assembly 1 includes a connector 100 , an adapter 200
  • the casing 400 may include an upper casing 420 and a lower casing 430, the upper casing 420 is provided with a second groove 421, and the lower casing 430 is provided with a third groove 431, The second groove 421 is connected with the third groove 431 to form the installation groove 410 .
  • the optical port assembly by first assembling the optical port assembly and then installing the assembled optical port assembly in the housing, the assembly error of individual components is reduced, the position of the optical fiber relative to the housing is limited, and it is convenient for the housing to reserve space for the optical fiber.
  • the optical port assembly can be better in close contact with the housing during installation, improving the electromagnetic shielding effect of the optical port assembly.
  • the housing 400 is provided with a first fixing member 440
  • the optical port assembly 1 is provided with a second fixing member 250
  • the first fixing member 440 is connected with the second fixing member 250 to connect the optical port
  • the component 1 is fixed in the installation groove 410 .
  • the second fixing part 250 is arranged on the adapter part 200, for example, the second fixing part 250 is a protrusion
  • the first fixing part 440 is a corresponding groove.

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  • General Physics & Mathematics (AREA)
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Abstract

一种光口组件(1)及光模块,属于光通讯领域。光口组件(1)包括连接件(100)、适配件(200)和屏蔽件(300)。连接件(100)上连接有光纤(110),适配件(200)具有容纳腔(210),连接件(100)伸入该容纳腔(210)中固定,屏蔽件(300)具有中空的匹配腔(310),适配件(200)伸入该匹配腔(310)以固定连接适配件(200)与屏蔽件(300)。通过屏蔽件(300)包裹在适配件(200)上,以限定屏蔽件(300)与适配件(200)的相对位置,从而限定屏蔽件(300)与光纤(110)的相对位置,进而限定屏蔽件(300)上供光纤(110)穿过的开口(330)的位置,并且由于开口(330)与光纤(110)的相对位置固定,可以将开口(330)的尺寸设置成与光纤(110)横截面的尺寸大致相同,以实现开口(330)最小化,减少开口(330)处的电磁泄漏。

Description

一种光口组件及光模块
相关申请的交叉引用
本申请基于申请号为202110529955.6、申请日为2021年05月14日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此以引入方式并入本申请。
技术领域
本申请涉及光通讯技术领域,特指一种光口组件及光模块。
背景技术
电磁干扰是指电磁波与电子元件作用后而产生的电磁干扰现象。在光模块的中,各元件连接处容易产生电磁泄漏,其中,用于连接光纤的物理接口光口,由于其一般是裸露在设备的之外,更容易产生电磁泄漏,增强电磁干扰的强度。相关的光模块采用金属壳体环绕光纤的设计方案来避免减少电磁泄漏,但其金属壳体与光纤之间的间隙较大,电磁泄漏仍较大,导致电磁屏蔽效果不佳。
申请内容
有鉴于此,本申请旨在提供一种光口组件及光模块,以解决如何减少电磁泄漏的技术问题。
为了实现上述目的,本申请采用的技术方案是:一种光口组件,包括:连接件,所述连接件沿第一方向的一端连接有光纤;适配件,具有沿所述第一方向上延伸的容纳腔,所述连接件远离所述光纤的一端沿所述第一方向伸入所述容纳腔;屏蔽件,具有中空的匹配腔,所述屏蔽件沿所述第一方向的的相对两端均开设与所述匹配腔连通的开口,所述适配件通过一个所述开口伸入所述匹配腔中固定,另一个所述开口用于插入所述光纤;其 中,另一个所述开口的尺寸与所述光纤沿第二方向的截面尺寸基本相同;所述第一方向与所述第二方向基本垂直。
在一些实施例中,所述屏蔽件包括可拆卸连接的第一屏蔽盖和第二屏蔽盖,所述第一屏蔽盖与所述第二屏蔽盖连接以形成所述匹配腔。
在一些实施例中,所述第一屏蔽盖设有第一限位件,所述第二屏蔽盖设有第二限位件,所述第一限位件与所述第二限位件抵接以限制所述第一屏蔽盖相对于所述第二屏蔽盖在所述第一方向的位移。
在一些实施例中,所述第一屏蔽盖和所述第二屏蔽盖之中至少有一个设有定位件以限制所述第一屏蔽盖相对于所述第二屏蔽盖在所述第二方向上的位移。
在一些实施例中,所述第一屏蔽盖上设有第一槽口,所述第二屏蔽盖上设有第二槽口,在所述第一屏蔽盖与所述第二屏蔽盖连接的状态下,所述第一槽口与所述第二槽口连通形成另一个所述开口。
在一些实施例中,所述第一屏蔽盖包括第一本体和第一翻边,所述第一翻边设置在所述第一本体靠近所述第一槽口的位置,所述第一翻边沿所述第一方向突出所述第一本体;所述第二屏蔽盖包括第二本体和第二翻边,所述第二翻边设置在所述第二本体靠近所述第二槽口的位置,所述第二翻边沿所述第一方向突出所述第二本体。
在一些实施例中,所述第一屏蔽盖上设有第一凸起,所述第二屏蔽盖上设有与第一凹槽,所述第一凸起伸入所述第一凹槽以连接所述第一屏蔽盖与第二屏蔽盖;或者,所述第一屏蔽盖上设有第一凹槽,所述第二屏蔽盖上设有与第一凸起,所述第一凸起与伸入所述第一凹槽以连接所述第一屏蔽盖与第二屏蔽盖。
在一些实施例中,所述屏蔽件靠近所述一个开口的一端设有沿所述第一方向延伸的簧片,所述簧片具有向远离所述匹配腔突出的弧度。
在一些实施例中,所述屏蔽件上设有第一卡合件,所述适配件上设有第二卡合件,所述第一卡合件与所述第二卡合件相互卡合以固定所述屏蔽件与所述适配件。
在一些实施例中,所述适配件设有第一止位件,所述连接件上设有第 二止位件,所述第一止位件与所述第二止位件在所述第一方向上抵接。
本申请还提供一种光模块,包括上述任一项所述的光口组件;外壳,具有中空的安装槽,光口组件安装在所述安装槽中。
在一些实施例中,所述外壳设有第一固定件,所述光口组件设有第二固定件,所述第一固定件与所述第二固定件连接以将所述光口组件固定在所述安装槽中。
本申请的有益效果体现为:本申请旨在提供一种光口组件及光模块,包括连接件、适配件和屏蔽件。连接件上连接有光纤,适配件具有容纳腔,连接件伸入该容纳腔中固定,以使连接件与适配件的相对位置固定,屏蔽件具有中空的匹配腔,适配件伸入该匹配腔以固定连接适配件与屏蔽件,以使屏蔽件与适配件的相对位置固定,从而屏蔽件与光纤的位置也相对固定。本申请通过屏蔽件全部包裹在适配件上,增加了屏蔽件的包裹范围,同时也限定屏蔽件与适配件的相对位置,从而进一步地限定了屏蔽件与光纤的相对位置,进而确定了屏蔽件上供光纤穿过的开口的位置,并且由于该开口与光纤的相对位置固定,可以将该开口的尺寸与光纤垂直光纤长度方向的尺寸的大小大致相同,以实现使开口最小化,进而减少该开口处的电磁泄漏,增强了电磁屏蔽的效果。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。
图1为本申请实施例提供的一种光纤对接的结构示意图;
图2为本申请实施例提供的一种光口组件的装配示意图;
图3为本申请实施例提供的一种第二屏蔽盖的结构示意图;
图4为本申请实施例提供的一种第一屏蔽盖的结构示意图;
图5为本申请实施例提供的一种屏蔽件的结构示意图;
图6为本申请实施例提供的另一种光口组件的装配示意图;
图7为本申请实施例提供的另一种屏蔽件的结构示意图;
图8为本申请实施例提供的一种适配件与连接件的装配示意图;
图9为本申请实施例提供的一种光模块的剖面图;
图10为本申请实施例提供的一种光模块的结构示意图。
附图标记说明:
1、光口组件;100、连接件;110、光纤;120、第二止位件;200、适配件;210、容纳腔;220、壳体;230、第二卡合件;240、第一止位件;250、第二固定件;300、屏蔽件;310、匹配腔;320、第一开口;330、第二开口;340、第一屏蔽盖;3401、第一本体;341、第一侧壁;3411、第一凸起;342、第二侧壁;343、第三侧壁;344、第一底壁;345、第一限位件;3451、第一槽口;3452、第一翻边;350、第二屏蔽盖;3501、第二本体;351、第四侧壁;3511、第一凹槽;352、第五侧壁;353、第六侧壁;354、第二底壁;355、第二限位件;3551、第二槽口;3552、第二翻边;356、定位件;360、簧片;370、第一卡合件;400、外壳;410、安装槽;420、上壳体;421、第二凹槽;430、下壳体;431、第三凹槽;440、第一固定件。
具体实施方式
为了使本技术领域的人员更好地理解本申请的技术方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在以下的描述中,所涉及的术语“第一\第二\第三\第四\第五\第六……”仅是区别不同的对象,不表示各对象之间具有相同或联系之处。应该理解 的是,所涉及的方位描述“上”、“下”、“左”、“右”均为正常使用状态时的方位。
需要说明的是,术语“包括”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。术语“连接”在未特别说明的情况下,既包括直接连接也包括间接连接。
下面结合附图详细说明本申请的具体实施方式:
本申请提供一种光口组件及光模块,其中,光口组件1用于提供连接光纤的物理接口,以使两段光纤能够连接实现光纤通信。
光口组件1的基本组成及其工作原理大致如下:
如图1所示,光口组件1中包括连接件100和适配件200,其中连接件100相对的两端中有一端连接有光纤110,另一端用于与另一个连接件100连接。为方便两个连接件100连接,可以将其中一个连接件100上设置插针,另一个连接件100上设置插孔,通过插针插入插孔中以实现连接件100中连接的光纤能准确连接。光口组件1中的适配件200具有中空的容纳腔210,容纳腔210贯穿适配件200,两个连接件100分别从适配件200的相对的两端伸入容纳腔210中进行连接,以实现两个连接件100连接的光纤110连接,同时连接件100与适配件200固定,以使连接件100能稳定的连接。
在本申请实施例中,如图2所示,光口组件1包括连接件100、适配件200、屏蔽件300,其中连接件100沿第一方向的一端连接有光纤110。具体的,连接件100在第一方向上具有相对的两端,其中第一方向为光纤110的延伸方向,也即如图2所示的左右方向,光纤110与该相对的两端中的 一端连接。光纤110的数量可以是一条,也可以是多条,其具体的数量可以根据实际使用的情况来选择。连接件100与适配件200连接,其中,适配件200具有沿第一方向(如图2所示的左右方向)延伸的容纳腔210,连接件100远离光纤110的一端沿第一方向(如图2所示的左右方向)伸入容纳腔210。具体的,适配件200由壳体220环绕而成,壳体220内部形成有中空的容纳腔210,容纳腔210沿光纤110的延长方向贯通适配件200,用作容纳连接件100的空腔,容纳腔210与外界连通,在进行装配时,两个连接件100伸入容纳腔210内连通并与适配件200固定,以实现光纤110能稳定的连通。可选的,适配件200可以是塑料制品,也可以是金属制品。
结合图2和图3所示,光口组件1中的屏蔽件300具有中空的匹配腔310,屏蔽件300沿第一方向(如图3所示的左右方向)的相对两端开设与匹配腔310连通的开口,适配件200通过一个开口伸入匹配腔310中固定,另一个开口用于插入光纤110。具体的,屏蔽件300环绕在适配件200的壳体220的外表面上以包裹适配件200,屏蔽件300由金属制成,例如,铜、铁等;其中,屏蔽件300可以完全包裹该适配件200,也可以部分包裹适配件200。可选的,屏蔽件300可以是一体成型,也可以是由多个壁板拼接形成,壁板的拼接方式可以是焊接、粘接等方式。例如,屏蔽件300相对的两端开设有开口,两个开口与匹配腔310连通,其中一个开口用于与将适配件200装入匹配腔310中,另一个开口用于让光纤110伸出屏蔽件300。为了方便说明,将其中一个开口称为第一开口320,另一个开口称为第二开口330。若采用的屏蔽件300是一体成型时,光口组件1的安装步骤是,首先将带有光纤110的连接件100远离光纤110的一端伸入适配件200的容纳腔210中,连接件100与光纤110的连接处伸入该容纳腔210中,且光纤110伸出该容纳腔210并延伸出适配件200,屏蔽件300通过第一开口320安装在适配件200的壳体220的外表面上,并将连接件100的光纤110的连接处包裹在屏蔽件300内,光纤110从第二开口330伸出屏蔽件300。 屏蔽件300中的匹配腔310的尺寸稍大于适配件200的外形尺寸,以使屏蔽件300能顺利的安装在适配件200上的同时也能与适配件200的壳体220紧密接触。
如图3所示,第二开口330的尺寸与光纤110沿第二方向的截面尺寸基本相同;第一方向(如图3所示的左右方向)与第二方向基本垂直。其中,第二方向大致垂直于光纤110长度的延伸方向,也即如图3所示的上下方向。具体的,光纤110沿第二方向(如图3所示的上下方向)的截面即其横截面的尺寸与屏蔽件300用于光纤110伸出的第二开口330的尺寸基本相同,所谓基本相同是考虑到装配误差,不要求绝对相同,也即第二开口330的大小正好容纳光纤110穿过,光纤110可以与围城该第二开口330的金属板接触。光口组件在安装过程中,首先将连接件100与适配件200固定,而连接件100上连接有光纤110,连接件100与适配件200固定后,连接件100与光纤110的连接处相对于适配件200的位置就相对固定,屏蔽件300也与适配件200相对固定,从而屏蔽件300与连接件100的相对位置也固定,也即连接件100上连接的光纤110也与屏蔽件300的位置相对固定,从而方便屏蔽件300上事先开设供光纤110穿过的第二开口330,并在不担心损伤光纤110的基础上使屏蔽件300上的第二开口330最小化。
本申请实施例提供的光口组件,包括连接件、适配件和屏蔽件。连接件上连接有光纤,适配件具有容纳腔,连接件伸入该容纳腔中固定,以使连接件与适配件的相对位置固定,屏蔽件具有中空的匹配腔,适配件伸入该匹配腔以固定连接适配件与屏蔽件,以使屏蔽件与适配件的相对位置固定,从而屏蔽件与光纤的位置也相对固定。本申请通过屏蔽件全部包裹在适配件上,增加了屏蔽件的包裹范围,同时也限定屏蔽件与适配件的相对位置,从而进一步地限定了屏蔽件与光纤的相对位置,进而确定了屏蔽件上供光纤穿过的第二开口的位置,并且由于该第二开口与光纤的相对位置固定,可以将该第二开口的尺寸与光纤垂直光纤长度方向的尺寸的大小大 致相同,以实现使第二开口最小化,进而减少该第二开口处的电磁泄漏,增强了电磁屏蔽的效果。
在一些实施例中,如图3和图4所示,屏蔽件300包括可拆卸连接的第一屏蔽盖340和第二屏蔽盖350,第一屏蔽盖340和第二屏蔽盖350连接以形成匹配腔310。其中,可拆卸连接可以是滑动连接,也可以是卡扣连接。例如,第一屏蔽盖340包括第一侧壁341、第二侧壁342、第三侧壁343和第一底壁344,其中,第一侧壁341与第二侧壁342分别连接到第三侧壁343相对的两端,形成一个大致U型结构,且第一侧壁341、第二侧壁342、第三侧壁343均连接在第一底壁344上。第二屏蔽盖350包括第四侧壁351、第五侧壁352、第六侧壁353和第二底壁354;其中,第四侧壁351与第一侧壁341连接,第五侧壁352与第二侧壁342连接,第六侧壁353和第三侧壁343连接。可选的,第二开口330可以单独设置在第三侧壁343或者第六侧壁353上,也可以同时设置在第三侧壁343和第六侧壁353上。可选的,第一侧壁341、第二侧壁342中至少有一个设有一个凸起,第四侧壁351、第五侧壁352相对应的至少设有一个凹槽。通过该凸起伸入到该凹槽中以固定第一屏蔽盖340和第二屏蔽盖350。可选的,如图5所示,第一屏蔽盖340还可以为平板状,第二屏蔽盖350包括第四侧壁351、第五侧壁352、第六侧壁353和第二底壁354,其中,第四侧壁351和第五侧壁352平行设置并分别与第二底壁354的一端连接,第六侧壁353与第四侧壁351、第五侧壁352、第二底壁354连接,第六侧壁353设有第二开口330用于光纤110穿过,第四侧壁351和第五侧壁352上均设有滑道,第一屏蔽盖340通过该滑道与第四侧壁351和第五侧壁352连接,形成相对的两端均具有开口的匹配腔310。
屏蔽件包括第一屏蔽盖与第二屏蔽盖,通过第一屏蔽盖与第二屏蔽盖之间可以拆卸连接,便于屏蔽件从适配件上拆装,提高装配的效率。
在一些实施例中,如图6所示,第一屏蔽盖340设有第一限位件345, 第二屏蔽盖350设有第二限位件355,第一限位件345与第二限位件355抵接以限制第一屏蔽盖340相对于第二屏蔽盖350在第一方向(如图6所示的左右方向)的位移。具体的,第一屏蔽盖340设有相对设置第一侧壁341和第二侧壁342,第一侧壁341与第二侧壁342分别连接在第一底壁344上,第一限位件345与第一底壁344连接,其中,第一限位件345为平板状。第二屏蔽盖350设有相对设置的第四侧壁351和第五侧壁352,第四侧壁351和第五侧壁352分别连接在第二底壁354上,第二限位件355与第二底壁354连接,其中,第二限位件355也为平板状,且第二限位件355与第四侧壁351和第五侧壁352之间存在一定的间隙,第一限位件345可以插入该间隙中与第二限位件355抵接,也即第一限位件345与第二限位件355相互接触以阻止第一屏蔽盖340相对于第二屏蔽盖350在第一方向(如图6所示的左右方向)上位移。
第一屏蔽盖上的第一限位件伸入第二屏蔽盖上的第二限位件形成的间隙中,以使第一限位件只能在该间隙的范围内移动,从而限制第一屏蔽盖在第一方向上相对第二屏蔽盖的位移,同时方便第一屏蔽盖与第二屏蔽盖的装配。
在一些实施例中,如图6所示,第一屏蔽盖340和第二屏蔽盖350之中至少有一个设有定位件356以限制第一屏蔽盖340相对于第二屏蔽盖350在第二方向上的位移。具体的,定位件356可以为L型结构,其一端与第二底壁354连接,另一端用于支撑第一屏蔽盖340的第一底壁344。例如,定位件356设置为两个,分别与第四侧壁351、第六侧壁353连接,其中,定位件356远离第二底壁354的一端弯曲,在进行安装时,第一屏蔽盖340与第二屏蔽盖350安装,第一底壁344与定位件356抵接,以限制第一屏蔽盖340继续沿着第二方向(如图6所述的上下方向),且定位件356与第二限位件355之间存在间隙,第一限位件345插入第二限位件355与定位件356的间隙中,以限制第一屏蔽盖340在第一方向上的位移。
定位件可以设置在第一屏蔽盖上,也可以设置在第二屏蔽盖上,通过安装时用定位件来限制第一屏蔽盖与第二屏蔽盖在第二方向(如图6所示的上下方向)的相对位置,从而实现安装定位。
在一些实施例中,如图6所示,第一屏蔽盖340上设有第一槽口3451,第二屏蔽盖350上设有第二槽口3551,在第一屏蔽盖340与第二屏蔽盖350连接的状态下,第一槽口3451与第二槽口3551连通形成另一个开口。另一个开口为第二开口330。具体的,第一槽口3451、第二槽口3551可以是U型槽口,两U型槽口相对设置,以便拼接成便于光纤110的第二开口330。例如,第一槽口3451设置在第一限位件345上,第二槽口3551设置在第二限位件355上,第一槽口3451的槽口与第二槽口3551的槽口口相对,在第一限位件345与第二限位件355连接时,第一槽口3451与第二槽口3551连接形成一个完整的第二开口330。
第一屏蔽盖与第二屏蔽盖进行安装时,通过第一槽口与第二槽口连接形成供光纤穿过的第二开口,方便第一屏蔽盖和第二屏蔽盖的直接拼装,而不用先将光线穿过第二开口后再进行第一屏蔽盖和第二屏蔽盖的安装。
在一些实施例中,如图7所示,第一屏蔽盖340包括第一本体3401和第一翻边3452,第一翻边3452设置在第一本体3401靠近第一槽口3451的位置,第一翻边3452沿第一方向(如图所示的左右方向)突出第一本体3401。靠近可以理解为两部件相接壤,即两部件之间的间距基本为零。具体的,第一翻边3452可以为长条状,设置在第一槽口3451的槽底处,可选的,第一翻边3452还可以设置在第一槽口3451的边缘,并沿光纤110的延伸方向突出第一本体3401,以增大光纤110与第一槽口3451的槽壁的接触面积。第二屏蔽盖350包括第二本体3501和第二翻边3552,第二翻边3552设置在第二本体3501靠近第二槽口3551的位置,第二翻边3552沿第一方向(如图7所示的左右方向)突出第二本体3501。靠近可以理解为两部件相接壤,即两部件之间的间距基本为零。具体的,第二翻边3552可以为长 条状,设置在第二槽口3551的槽底处,可选的,第二翻边3552还可以设置在第二槽口3551的边缘,并沿光纤110的延伸方向突出第二本体3501,以增大光纤110与第二槽口3551的槽壁接触面积。
第一翻边靠近第一槽口设置,第二翻边靠近第二槽口设置,通过第一翻边和第二翻边的设置,增加了光纤与第二开口的周围的接触面积,从而避免第一槽口和第二槽口的边缘过于锋利损坏光纤。
在一些实施例中,如图7所示,第一屏蔽盖340上设有第一凸起3411,第二屏蔽盖350上设有第一凹槽3511,第一凸起3411伸入第一凹槽3511以连接第一屏蔽盖340与第二屏蔽盖350。其中,第一凸起3411可以设置在第一侧壁341上,第一凹槽3511可对应设置在第四侧壁351。可选的,第一凸起3411可以设置为两个,分别设置在第一侧壁341和第二侧壁342上,第一凹槽3511也对应的设置两个,分别设置在第四侧壁351和第五侧壁352上。具体的,第一凸起3411向远离第一本体3401的方向突出,第一屏蔽盖340与第二屏蔽盖350安装时,第一凸起3411伸入第一凹槽3511中,从而固定第一屏蔽盖340和第二屏蔽盖350。可选的,第一屏蔽盖340上设有第一凹槽3511,第二屏蔽盖350上设有第一凸起3411,第一凸起3411伸入第一凹槽3511以可连接第一屏蔽盖340与第二屏蔽盖350。
在第一屏蔽盖上设置第一凸起,第二屏蔽盖上设置第一凹槽,或者在第一屏蔽盖上设有第一凹槽,第二屏蔽盖上设有第一凸起,通过在装配时,第一凸起伸入第二凹槽中,以使第一屏蔽盖能与第二屏蔽盖能稳定的固定。
在一些实施例中,如图7所示,屏蔽件300靠近一个开口的一端设有沿第一方向(如图7所示的左右方向)延伸的簧片360,簧片360具有向远离匹配腔310突出的弧度。其中,一个开口为第一开口320,具体的,簧片360具有一定的弹性,簧片360的一端与屏蔽件300连接,其中簧片360靠近第一开口320连接,可选的,簧片360可以设置为多个,围绕第一开口320设置。簧片360具有向匹配腔310突出的弧度,也即簧片360并非是呈 直线。在进行装配时,簧片360的一端与屏蔽件300连接,另一端与适配件200接触,以帮助屏蔽件300与适配件200连接紧密。
通过簧片围绕屏蔽件的第一开口设置,在装配时,簧片提供压力,以帮助屏蔽件与适配件之间紧密接触,有簧片具有弧度,以使簧片的最高点压要高于屏蔽件的高度,从而有助于屏蔽件接地,提高屏蔽件的电磁屏蔽的效果。
在一些实施例中,如图6和图7所示,屏蔽件300上设有第一卡合件370,适配件200上设有第二卡合件230,第一卡合件370和第二卡合件230相互卡合以固定屏蔽件与适配件200。具体的,第一卡合件370可以设置为两个,可以分别设置在第四侧壁351和第五侧壁352,可选的,第一卡合件370也可以设置在第一侧壁341和第二侧壁342上。第二卡合件230设置在适配件200的壳体220上,第二卡合件230也可以是相对应的设置为两个,通过第一卡合件370和第二卡合件230卡合连接,以使屏蔽件300紧密的连接在适配件200的壳体220上。例如,第一卡合件370为凸台,第二卡合件230为凹槽,在装配时,凸台伸入凹槽中固定,以使屏蔽件300与适配件200固定。
在一些实施例中,如图8所示,适配件200设有第一止位件240,连接件100上设有第二止位件120,第一止位件240与第二止位件120在第一方向(如图8所示的左右方向)上抵接。具体的,第一止位件240设置在容纳腔210中,第二止位件120设置在连接件100上,例如,第一止位件240为紧贴适配件200壳体220的内表面设置凸台,第二止位件120为台阶面,在进行装配时,连接件100伸入容纳腔210中,连接件100的台阶面与适配件200的凸台抵接,以使连接件100不能继续沿容纳腔210伸入,从而实现连接件100相对适配件200的限位。
本申请实施例还提供一种光模块,如图9所示,包括光口组件1和外壳400,其中,外壳400具有中空的安装槽410,光口组件1安装在安装槽 410中。具体的,光口组件1包括连接件100、适配件200、屏蔽件300,在进行安装时先将连接件100与适配件200、屏蔽件300安装完成后再与外壳400安装。外壳400为具有安装槽410的金属壳体,其安装槽410的形状与组装完成后的光口组件1的外形解决相匹配,以使光口组件1的外表面与外壳400充分接触。可选的,如图10所示,外壳400可以包括上壳体420和下壳体430,上壳体420上设有第二凹槽421,下壳体430上设有第三凹槽431,第二凹槽421与第三凹槽431相连接以形成安装槽410。
本申请通过先组装光口组件后再将组装完成后的光口组件安装在外壳里,减少了各元件单独安装的装配误差,限定了光纤相对壳体的位置,方便壳体预留空间供光纤放置,同时,在安装时光口组件能更好的与外壳紧密接触,提高光口组件的电磁屏蔽效果。
在一些实施例中,如图10所示,外壳400设有第一固定件440,光口组件1设有第二固定件250,第一固定件440与第二固定件250连接以将光口组件1固定在安装槽410中。具体的,第二固定件250设置在适配件200上,例如,第二固定件250为凸起,第一固定件440为相应的凹槽,在安装时,光口组件1通过第二固定件250的凸起伸入到第一固定件440的凹槽中进行固定,从而限定光口组件1的位置,方便光模块准确的组装。
以上所述,仅为本申请的较佳实施例而已,并非用于限定本申请的保护范围。

Claims (12)

  1. 一种光口组件,包括:
    连接件,所述连接件沿第一方向的一端连接有光纤;
    适配件,具有沿所述第一方向上延伸的容纳腔,所述连接件远离所述光纤的一端沿所述第一方向伸入所述容纳腔;
    屏蔽件,具有中空的匹配腔,所述屏蔽件沿所述第一方向的相对两端均开设与所述匹配腔连通的开口,所述适配件通过一个所述开口伸入所述匹配腔中固定,另一个所述开口用于插入所述光纤;
    其中,另一个所述开口的尺寸与所述光纤沿第二方向的截面尺寸基本相同;所述第一方向与所述第二方向基本垂直。
  2. 如权利要求1所述的光口组件,其中,所述屏蔽件包括可拆卸连接的第一屏蔽盖和第二屏蔽盖,所述第一屏蔽盖与所述第二屏蔽盖连接以形成所述匹配腔。
  3. 如权利要求2所述的光口组件,其中,所述第一屏蔽盖设有第一限位件,所述第二屏蔽盖设有第二限位件,所述第一限位件与所述第二限位件抵接以限制所述第一屏蔽盖相对于所述第二屏蔽盖在所述第一方向的位移。
  4. 如权利要求2所述的光口组件,其中,所述第一屏蔽盖和所述第二屏蔽盖之中至少有一个设有定位件以限制所述第一屏蔽盖相对于所述第二屏蔽盖在所述第二方向上的位移。
  5. 如权利要求2所述的光口组件,其中,所述第一屏蔽盖上设有第一槽口,所述第二屏蔽盖上设有第二槽口,在所述第一屏蔽盖与所述第二屏蔽盖连接的状态下,所述第一槽口与所述第二槽口连通形成另一个所述开口。
  6. 如权利要求5所述的光口组件,其中,所述第一屏蔽盖包括第一本体和第一翻边,所述第一翻边设置在所述第一本体靠近所述第一槽口的位置,所述第一翻边沿所述第一方向突出所述第一本体;所述第二屏蔽盖包括第 二本体和第二翻边,所述第二翻边设置在所述第二本体靠近所述第二槽口的位置,所述第二翻边沿所述第一方向突出所述第二本体。
  7. 如权利要求2所述的光口组件,其中,所述第一屏蔽盖上设有第一凸起,所述第二屏蔽盖上设有与第一凹槽,所述第一凸起伸入所述第一凹槽以连接所述第一屏蔽盖与第二屏蔽盖;
    或者,所述第一屏蔽盖上设有第一凹槽,所述第二屏蔽盖上设有与第一凸起,所述第一凸起与伸入所述第一凹槽以连接所述第一屏蔽盖与第二屏蔽盖。
  8. 如权利要求1所述的光口组件,其中,所述屏蔽件靠近所述一个开口的一端设有沿所述第一方向延伸的簧片,所述簧片具有向远离所述匹配腔突出的弧度。
  9. 如权利要求1所述的光口组件,其中,所述屏蔽件上设有第一卡合件,所述适配件上设有第二卡合件,所述第一卡合件与所述第二卡合件相互卡合以固定所述屏蔽件与所述适配件。
  10. 如权利要求1所述的光口组件,其中,所述适配件设有第一止位件,所述连接件上设有第二止位件,所述第一止位件与所述第二止位件在所述第一方向上抵接。
  11. 一种光模块,包括:
    权利要求1-10中任意一项所述的光口组件;
    外壳,具有中空的安装槽,所述光口组件安装在所述安装槽中。
  12. 如权利要求11所述的一种光模块,其中,所述外壳设有第一固定件,所述光口组件设有第二固定件,所述第一固定件与所述第二固定件连接以将所述光口组件固定在所述安装槽中。
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