CN215421214U - Multi-path distribution interface box - Google Patents
Multi-path distribution interface box Download PDFInfo
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- CN215421214U CN215421214U CN202122090217.4U CN202122090217U CN215421214U CN 215421214 U CN215421214 U CN 215421214U CN 202122090217 U CN202122090217 U CN 202122090217U CN 215421214 U CN215421214 U CN 215421214U
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Abstract
The utility model belongs to the technical field of interface box and specifically relates to a multichannel distribution interface box is related to, and it includes the box, the box is provided with a plurality of interfaces, the box is the echelonment structure, the box includes first box and by first box integrated into one piece's second box, the second box is located first box top, just the width of second box is less than the width of first box, first box is provided with a plurality of handles, the handle is located the ladder portion of box, handle one end is connected in first box, the handle other end is buckled towards the second box and is connected in the second box. This application has the effect that the interface box of being convenient for is placed in rack inside.
Description
Technical Field
The present application relates to the field of interface boxes, and more particularly, to a multiple distribution interface box.
Background
Nowadays, in order to facilitate the connection of the device line, an interface box is often adopted to transfer the line to be connected with the device, and the interface box usually has various interfaces, so that the interface box is convenient to connect various connectors when in use.
Interface case includes the box, and the box is provided with a plurality of interfaces, for the convenience of the transport or the removal of interface case, often is fixed with the handle on the box, and the handle extends towards the direction of keeping away from the box. The interface box can be carried or moved by holding the handle, so that the possibility that the interface box falls off from the hand when the interface box is carried is reduced.
To the correlation technique among the above-mentioned, often place the interface box inside the rack when using, the handle on the interface box easily produces with rack inner wall or the inside other equipment of rack and interferes this moment for the interface box is comparatively inconvenient when placing inside the rack.
SUMMERY OF THE UTILITY MODEL
In order to facilitate the interface box to be placed inside the cabinet, the application provides a multi-channel distribution interface box.
The application provides a multichannel distribution interface case adopts following technical scheme:
the utility model provides a multichannel distribution interface box, includes the box, the box is provided with a plurality of interfaces, the box is the echelonment structure, the box includes first box and the second box by first box integrated into one piece, the second box is located first box top, just the width of second box is less than the width of first box, first box is provided with a plurality of handles, the handle is located the ladder portion of box, handle one end is connected in first box, the handle other end is buckled and is connected in the second box towards the second box.
Through adopting above-mentioned technical scheme, the handle sets up in the step portion of box for the interface box can reduce the handle and the rack inner wall or the rack in when placing inside the rack and take place the possibility of interfering between other equipment, thereby make the interface box place comparatively convenient when the rack is inside.
Optionally, handle one end is worn to establish and is slided towards first box and connect in first box, first box is provided with a plurality of locking subassemblies that are used for making a plurality of handles lock that slides, and is a plurality of the locking subassembly one-to-one sets up in a plurality of handles respectively.
By adopting the technical scheme, after the interface box is placed in the cabinet, the lifting handle can be slid to accommodate the lifting handle, so that the possibility of interference between the lifting handle and a circuit inserted in the box body is further reduced; when the interface box needs to be carried, only the handle needs to be pulled, so that the handle slides and stretches out of the first box body, the interface box can be carried by the handle in a handheld mode, the carrying of the interface box is relatively convenient, meanwhile, the locking assembly can fix the handle, and the possibility of swinging between the handle and the first box body when the interface box is used is reduced.
Optionally, the locking subassembly includes control lever and a plurality of joint round pin, a plurality of being used for respectively the one-to-one with a plurality of joint round pin first joint holes of complex are seted up to the handle, it is a plurality of joint round pin while fixed connection in control lever, the opening direction that the control lever is on a parallel with first joint hole slides and connects in first box.
Through adopting above-mentioned technical scheme, when needs remove the interface box, only need stimulate the handle for the handle slides, wears to locate first joint hole with the joint round pin afterwards, thereby fixes the handle, reduces the in-process of interface box transport, and wobbling possibility takes place for the handle, and then stability when increasing the interface box transport.
Optionally, the locking subassembly is still including being used for ordering about the driving spring that the joint round pin slided towards the handle, driving spring one end fixed connection is in first box, driving spring other end fixed connection is in control lever or joint round pin, the control lever is provided with and is used for controlling its control block that slides towards keeping away from the handle direction.
By adopting the technical scheme, the control rod and the clamping pin are under the action of the driving spring, and when the first clamping hole corresponds to the clamping pin, the clamping pin can automatically penetrate through the first clamping hole, so that the lifting handle is fixed; after the interface box is placed inside the cabinet, only the sliding control block is needed to slide in order to order about the direction of the control rod away from the handle, so that the limitation of the clamping pin on the handle is removed, and then the handle is accommodated inside the first box body.
Optionally, the hole that slides has been seted up to first box, the hole that slides is rectangular hole and extends along the glide direction of control lever, the control block card is established and is slided and connect in the downthehole portion that slides, just the control block is worn out to first box outside from the hole that slides, the control block is located one side of control lever towards the handle, and control block and control lever along both projections that distribute the side and have the coincidence, the control block is provided with and is used for ordering about the promotion spring that the control block slided towards the handle.
Through adopting above-mentioned technical scheme, the promotion spring can keep being located the one end of sliding hole orientation handle with the control block to when the joint round pin is worn to locate first joint hole in automation, can reduce the control block and receive the striking of control lever and the possibility of taking place the shake, and then reduce the control block and be located the part of first box outside and cause the possibility of unexpected damage to the user.
Optionally, the handle is provided with a plurality of second joint holes which are used for respectively corresponding to the joint pins in a one-to-one manner, and the second joint holes are located at one end, far away from the first box body, of the handle.
Through adopting above-mentioned technical scheme, after the handle slided towards first box is inside, the joint round pin received drive spring's drive, and the second joint hole can be worn to locate by the joint round pin voluntarily to lock the handle in first box inside, and then reduce the interface box when using, take place to swing because of the handle and cause the possibility of influence to the use of interface box.
Optionally, the handle is towards the one end fixedly connected with cardboard that the second box was buckled, the draw-in groove has been seted up to the second box, the draw-in groove extends along the direction that parallel handle slided, the cardboard card is established and is slided and connect inside the draw-in groove.
Through adopting above-mentioned technical scheme, when carrying the interface box, the draw-in groove can be through the cardboard to do further restriction to the swing of handle to further reduce the handle and take place wobbling possibility.
Optionally, the first box is provided with a plurality of cushion blocks used for reducing the degree of impact between the handle and the first box, and the cushion blocks are fixedly connected to the outer wall of one side of the first box, which faces the handle.
Through adopting above-mentioned technical scheme, the cushion can reduce the harm that receives when handle and first box outer wall striking.
In summary, the present application includes at least one of the following beneficial technical effects:
the lifting handle is arranged on the step part of the box body, so that when the interface box is placed in the cabinet, the possibility of interference between the lifting handle and the inner wall of the cabinet or other equipment in the cabinet can be reduced, and the interface box is relatively convenient to place in the cabinet;
after the interface box is placed in the cabinet, the lifting handle can slide to store the lifting handle, so that the possibility of interference between the lifting handle and a circuit inserted in the box body is further reduced; when the interface box needs to be carried, only the lifting handle needs to be pulled, so that the lifting handle slides and stretches out of the first box body, the lifting handle is fixed through the locking assembly, the interface box can be carried by the aid of the lifting handle in a handheld mode, and the interface box is relatively convenient to carry.
Drawings
FIG. 1 is a schematic structural diagram of embodiment 1 of the present application;
FIG. 2 is a schematic structural diagram of embodiment 2 of the present application;
FIG. 3 is a first schematic sectional view showing the structure of embodiment 2 of the present application;
FIG. 4 is an enlarged schematic view of portion A of FIG. 3;
FIG. 5 is an enlarged schematic view of portion B of FIG. 2;
FIG. 6 is a schematic sectional view of embodiment 2 of the present application;
fig. 7 is an enlarged structural view of a portion C in fig. 6.
Description of reference numerals: 1. a first case; 11. a receiving groove; 2. a second case; 21. a card slot; 3. a handle; 31. a first clamping hole; 32. a second clamping hole; 4. a locking assembly; 41. a control lever; 411. a control block; 412. a push spring; 413. a sliding hole; 414. a dustproof baffle plate; 42. a latch pin; 43. a drive spring; 5. clamping a plate; 6. and a cushion block.
Detailed Description
The present application is described in further detail below with reference to figures 1-7.
The embodiment of the application discloses a multi-channel distribution interface box.
Example 1:
referring to fig. 1, a multichannel distribution interface case includes the box, and the box is the echelonment structure, and the box is provided with a plurality of interfaces, and the box includes first box 1 and second box 2, and second box 2 fixed connection is in the top of first box 1, and the width of second box 2 is less than the width of first box 1. The interface sets up in first box 1 or second box 2, and the partial terminal surface of first box 1 and second box 2 is network structure to increase the heat dissipation degree of interface case when using.
The first box body 1 is provided with a handle 3, in this embodiment, one handle 3 is arranged, the handle 3 is arranged on the step portion of the box body, one end of the handle 3 is fixedly connected to the first box body 1, and the other end of the handle 3 is bent towards the second box body 2 and is fixedly connected to the second box body 2.
The implementation principle of the embodiment 1 is as follows: handle 3 sets up in the step portion of box for the interface box can reduce handle 3 and rack inner wall or rack in when placing inside the rack and take place the possibility of interfering between other equipment, thereby make the interface box place comparatively convenient when the rack is inside.
Example 2:
referring to fig. 2, the present embodiment is different from embodiment 1 in that two handles 3 are provided, but in other embodiments, three or other numbers of handles 3 may be provided.
The handle 3 wears to establish and slides towards the one end of first box 1 and connects in first box 1, and the direction of sliding of handle 3 is vertical. The upper end shaping of first box 1 has two to accomodate groove 11, and two are accomodate groove 11 and set up in two handles 3 respectively one-to-one. Place in the inside back of rack when the interface box, can slide handle 3 for handle 3 can hold in accomodating groove 11, with accomodate handle 3, thereby further reduce handle 3 and peg graft and produce the possibility of interfering between the circuit on the box.
When the interface box needs to be carried, only the lifting handle 3 needs to be pulled, so that the lifting handle 3 slides upwards and extends out of the first box body 1, the interface box can be carried by holding the lifting handle 3 by hand, and the carrying of the interface box is relatively convenient.
Referring to fig. 3 and 4, in the present embodiment, the first box 1 is provided with two locking assemblies 4, and the two locking assemblies 4 are respectively disposed on the two handles 3 in a one-to-one correspondence manner.
Referring to fig. 4 and 5, the locking assembly 4 includes a control rod 41, a driving spring 43 and a plurality of latch pins 42, in this embodiment, the number of the latch pins 42 is two, but the number of the latch pins 42 may be one, three or other numbers. The handle 3 is provided with two first clamping holes 31 matched with the clamping pins 42 along the lower end of the sliding direction. And the handle 3 is provided with two second clamping holes 32 matched with the clamping pins 42 along the upper end of the sliding direction. In other embodiments, the first and second catching holes 31 and 32 may be provided in one, three, or other number corresponding to the catching pins 42.
Two joint round pins 42 of same locking subassembly 4 are fixed connection in control lever 41 simultaneously, and control lever 41 and joint round pin 42 are all worn to establish and are slided and connect in first box 1, and the direction of sliding of control lever 41 and joint round pin 42 all is on a parallel with the opening direction in first joint hole 31. The control rod 41 can control the sliding of the two snap pins 42 simultaneously.
Referring to fig. 4 and 5, in the present embodiment, both ends of the driving spring 43 are fixedly connected to the first casing 1 and the lever 41, respectively, but of course, both ends of the driving spring 43 may be fixedly connected to the first casing 1 and the catching pin 42, respectively.
Referring to fig. 6 and 7, the control rod 41 is provided with a control block 411, a sliding hole 413 is formed in the top wall of the first box 1, the sliding hole 413 is a long hole and extends along the sliding direction of the control rod 41, a dust-proof blocking piece 414 is formed on the control block 411, the dust-proof blocking piece 414 is clamped and slidably connected to the inner wall of the sliding hole 413, and the control block 411 penetrates out of the sliding hole 413 to the outside of the first box 1. The dust-proof shutter 414 can reduce the possibility of dust or foreign materials entering the interior of the first casing 1 through the sliding hole 413.
The control block 411 is located on one side of the control rod 41 facing the handle 3, and projections of the control block 411 and the control rod 41 in the distribution direction of the two have an overlapping portion, preferably, when the snap-fit pin 42 is inserted into the first snap-fit hole 31 or the second snap-fit hole 32, the control rod 41 abuts against the control block 411.
Place in the inside back of rack when the interface box, only need to slide handle 3 towards first box 1 is inside, stretch into to first box 1 inside back when handle 3, joint round pin 42 receives the drive of driving spring 43, and second joint hole 32 can be worn to locate automatically to joint round pin 42 to lock handle 3 in first box 1 inside, and then reduce the interface box when using, because of handle 3 takes place to swing the possibility that causes the influence to the use of interface box.
When the interface box needs to be moved, only need slide control piece 411 to break away from second joint hole 32 with control joint round pin 42, stimulate handle 3 afterwards, make handle 3 upwards slide, because control lever 41 and joint round pin 42 receive drive spring 43's effect, when first joint hole 31 cunning to the position corresponding with joint round pin 42, first joint hole 31 can be worn to locate automatically by joint round pin 42, thereby it is fixed with handle 3, reduce the in-process at the interface box transport, swing's possibility takes place for handle 3, and then stability when increasing the interface box transport.
In other embodiments, the locking subassembly can set up to fixing bolt, and fixing bolt wears to establish and threaded connection in first box 1, when the rotatable fixing bolt of handle 3 that slides for fixing bolt wears to locate first joint hole 31 or second joint hole 32, thereby fixes handle 3.
Referring to fig. 6 and 7, the control block 411 is provided with a pushing spring 412 for driving the control block 411 to slide toward the handle 3, and two ends of the pushing spring 412 are respectively and fixedly connected to the control block 411 and the first box 1, so that the control block 411 has a tendency to slide toward the handle 3.
When the clamping pin 42 automatically penetrates through the first clamping hole 31 or the second clamping hole 32, the pushing spring 412 can keep the control block 411 at one end of the sliding hole 413 facing the handle 3, so that the possibility of shaking caused by the control block 411 being impacted by the control rod 41 is reduced, and the possibility of accidental damage to a user caused by the part of the control block 411 located outside the first box body 1 is reduced.
In this embodiment, the second box 2 is provided with two slots 21, and the slots 21 extend along the sliding direction of the parallel handle 3. Handle 3 towards the one end fixedly connected with cardboard 5 that second box 2 buckled, cardboard 5 on two handles 3 corresponds the card respectively one-to-one and establishes and slide and connect inside two draw-in grooves 21. When the interface box is carried, the clamping groove 21 can limit the swinging of the handle 3, so that the possibility of swinging of the handle 3 is further reduced.
Referring to fig. 7, in order to reduce the damage to the handle 3 when the handle 3 collides with the outer wall of the first box 1 during the sliding process of the handle 3, a plurality of pads 6 are fixedly connected to the bottom wall of the middle accommodating groove 11 of the first box 1, and the pads 6 are made of elastic material, such as rubber or silica gel.
The implementation principle of the embodiment 2 is as follows: place in the inside back of rack when the interface box, only need to slide handle 3 towards first box 1 is inside, stretch into to first box 1 inside back when handle 3, joint round pin 42 receives drive spring 43's drive, and second joint hole 32 can be worn to locate automatically to joint round pin 42 to lock handle 3 in first box 1 inside, thereby further reduce handle 3 and peg graft and produce the possibility of interfering between the circuit on the box.
When the interface box needs to be moved, only the sliding control block 411 needs to be separated from the second clamping hole 32 by controlling the clamping pin 42, and then the handle 3 is pulled, so that the handle 3 slides upwards, and because the control rod 41 and the clamping pin 42 are under the action of the driving spring 43, when the first clamping hole 31 slides to the position corresponding to the clamping pin 42, the clamping pin 42 can automatically penetrate through the first clamping hole 31, so that the handle 3 is fixed, and the interface box is convenient to carry.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a multichannel distribution interface case, includes the box, the box is provided with a plurality of interfaces, its characterized in that: the box is the echelonment structure, the box includes first box (1) and second box (2) by first box (1) integrated into one piece, second box (2) are located first box (1) top, just the width of second box (2) is less than the width of first box (1), first box (1) is provided with a plurality of handles (3), handle (3) are located the ladder portion of box, handle (3) one end is connected in first box (1), handle (3) other end is buckled and is connected in second box (2) towards second box (2).
2. A multiple distribution interface cabinet according to claim 1, wherein: handle (3) one end is worn to establish and is slided towards first box (1) and connect in first box (1), first box (1) is provided with a plurality of locking subassemblies (4) that are used for making a plurality of handles (3) the locking that slides, and is a plurality of locking subassembly (4) respectively one-to-one sets up in a plurality of handles (3).
3. A multiple distribution interface cabinet according to claim 2, wherein: locking subassembly (4) are including control lever (41) and a plurality of joint round pin (42), a plurality of being used for respectively one-to-one and a plurality of joint round pin (42) matched with first joint hole (31), a plurality of joint round pin (42) fixed connection is in control lever (41) simultaneously, opening direction that control lever (41) are on a parallel with first joint hole (31) slides and connects in first box (1) in handle (3).
4. A multiple distribution interface cabinet according to claim 3, wherein: locking subassembly (4) are still including being used for driving about driving spring (43) that joint round pin (42) slided towards handle (3), driving spring (43) one end fixed connection is in first box (1), driving spring (43) other end fixed connection is in control lever (41) or joint round pin (42), control lever (41) are provided with and are used for controlling its control block (411) that slides towards keeping away from handle (3) direction.
5. The multi-way distribution interface box of claim 4, wherein: slip hole (413) have been seted up in first box (1), slip hole (413) are rectangular hole and extend along the glide direction of control lever (41), control block (411) card is established and is slided and connect in glide hole (413) inside, just control block (411) are worn out to first box (1) outside from glide hole (413) department, control block (411) are located control lever (41) towards one side of handle (3), and control block (411) and control lever (41) have the coincidence along the projection of both distribution directions, control block (411) are provided with and are used for driving control block (411) towards push spring (412) that handle (3) slided.
6. A multiple distribution interface cabinet according to claim 3, wherein: handle (3) are seted up a plurality of be used for respectively one-to-one with a plurality of joint round pin (42) matched with second joint hole (32), second joint hole (32) are located handle (3) and keep away from the one end of first box (1).
7. A multiple distribution interface cabinet according to claim 2, wherein: handle (3) one end fixedly connected with cardboard (5) of buckling towards second box (2), draw-in groove (21) have been seted up in second box (2), draw-in groove (21) extend along the direction that parallel handle (3) slided, cardboard (5) card is established and is slided and connect inside draw-in groove (21).
8. A multiple distribution interface cabinet according to claim 2, wherein: first box (1) is provided with a plurality of cushion (6) that are used for reducing striking degree between handle (3) and first box (1), cushion (6) fixed connection is in one side outer wall of first box (1) towards handle (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122090217.4U CN215421214U (en) | 2021-08-31 | 2021-08-31 | Multi-path distribution interface box |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122090217.4U CN215421214U (en) | 2021-08-31 | 2021-08-31 | Multi-path distribution interface box |
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CN215421214U true CN215421214U (en) | 2022-01-04 |
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CN202122090217.4U Active CN215421214U (en) | 2021-08-31 | 2021-08-31 | Multi-path distribution interface box |
Country Status (1)
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CN (1) | CN215421214U (en) |
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2021
- 2021-08-31 CN CN202122090217.4U patent/CN215421214U/en active Active
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