CN219678616U - Computer lab data switch - Google Patents

Computer lab data switch Download PDF

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Publication number
CN219678616U
CN219678616U CN202320671423.0U CN202320671423U CN219678616U CN 219678616 U CN219678616 U CN 219678616U CN 202320671423 U CN202320671423 U CN 202320671423U CN 219678616 U CN219678616 U CN 219678616U
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CN
China
Prior art keywords
spherical
crystal head
switch
power supply
machine room
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Active
Application number
CN202320671423.0U
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Chinese (zh)
Inventor
王绪军
袁璋
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Yantai Qingfang Electronic Technology Co ltd
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Yantai Qingfang Electronic Technology Co ltd
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Priority to CN202320671423.0U priority Critical patent/CN219678616U/en
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Abstract

The utility model provides a machine room data exchanger, which relates to the technical field of data exchange and comprises: the main body of the support base is of a frame cylinder type structure, a connecting table is integrally arranged in the middle of the top of the support base, and a power supply positioning penetrating rod is fixedly arranged at the top of the connecting table; the spherical exchanger is provided with a plug wire port on the outer cambered surface; a slip ring is fixedly arranged in the middle of the spherical exchanger; set up spherical switch, provide the transfer switching function of different directions, spherical switch installs outside the pole is worn in the power supply location, with the inside circular telegram of two sets of circular telegram inslot for the slip electrode power supply, make spherical switch work, then insert the plug wire mouth with the quartzy head and can carry out data interaction, spherical switch's outside shape conveniently connects the circuit in different positions, and can utilize circuit lug connection threading with upper and lower spherical switch, facilitate the use, solved the problem that current switch is unfavorable for connecting the circuit from different positions fast.

Description

Computer lab data switch
Technical Field
The utility model relates to the technical field of data exchange, in particular to a machine room data exchange.
Background
A switch (also known as a switching hub), which is a network device for forwarding electrical (optical) signals, and which can provide an exclusive electrical signal path for any two network nodes accessing the switch; the role of a switch is understood to be to connect machines together to form a local area network.
The switches currently in use suffer from the following drawbacks:
1. the existing switch is mainly installed in a single direction, which is not beneficial to the quick connection of circuits from different directions and provides transfer switching functions in different directions;
2. the function of locking the circuit rapidly is lacking, which is not beneficial to rapid installation and locking;
3. the synchronous power-on function convenient to control is lacking.
Disclosure of Invention
In view of the above, the present utility model provides a machine room data switch, which has a power supply positioning penetrating rod, provides a multiple positioning installation function and a power supply function.
The utility model provides a machine room data exchanger, which specifically comprises: the main body of the support base is of a frame cylinder type structure, a connecting table is integrally arranged in the middle of the top of the support base, and a power supply positioning penetrating rod is fixedly arranged at the top of the connecting table; the spherical exchanger is provided with a plug wire port on the outer cambered surface; the middle of the spherical switch is fixedly provided with a slip ring which can be arranged outside the power supply positioning penetrating rod in a sliding manner; the spacer bush is arranged outside the power supply positioning penetrating rod in a sliding manner, and the spacer bush and the spherical exchanger are arranged in a staggered manner; the crystal head can be anastomosed and arranged in the plug wire opening.
Optionally, the support base further includes: two groups of energizing grooves are formed outside the power supply positioning penetrating rod; the air pump is fixedly arranged in the middle of the supporting base, and the top of the air pump is connected with the bottom of the connecting table.
Optionally, the spherical switch includes: the sliding electrodes are arranged in the slip ring and slide in the energizing grooves; and a vent hole is formed between the upper side and the lower side of the spherical switch.
Optionally, a through hole aligned with the vent hole is formed in the middle of the connecting table and the spacer bush; when the connecting table, the spherical exchanger and the spacer bush are attached, all the groups of vent holes are communicated, and the air pump can supply air for the vent holes.
Optionally, the crystal head includes: the wire-filling rotating plate is rotatably arranged at the outer side of the bottom of the crystal head; the butt electrode is fixedly arranged outside the crystal head; the hollow casing is fixedly arranged outside the crystal head, a piston bin is integrally arranged at the top of the hollow casing, and a positioning pressing sheet is integrally arranged at the top of the piston bin; a piston rod is arranged at one end of the piston bin in a sliding manner; a spring is arranged in the piston bin.
Optionally, the crystal head further comprises: the piston column is arranged at the inner wall of the corner of the hollow casing in a telescopic manner, the telescopic end of the piston column is fixedly provided with a U-shaped fastener, and the U-shaped fastener can be buckled outside the butt electrode in an anastomotic manner.
Optionally, the crystal head further comprises: the spring rod is fixedly arranged outside the U-shaped fastener, the buckling piece is arranged outside the spring rod in a sliding mode, and the spring rod penetrates through the buckling piece to be sleeved with the spring and is fixedly provided with the baffle plate.
Optionally, the cramp is laminated with the hollow shell, and the both ends of one side of cramp laminating hollow shell are hypotenuse structure.
The beneficial effects are as follows:
1. set up spherical switch, provide the transfer switching function of different directions, spherical switch installs outside the pole is worn in the power supply location, with the inside circular telegram of two sets of circular telegram inslot for the slip electrode power supply, make spherical switch work, then insert the plug wire mouth with the quartzy head and can carry out data interaction, spherical switch's outside shape is convenient to connect the circuit in different positions to can utilize circuit lug connection threading with upper and lower spherical switch, facilitate the use.
2. The setting crystal head provides the wiring function of quick installation locking, lifts up U-shaped fastener outside removal, then in inserting the clearance of butt joint electrode and U-shaped fastener with net twine head directness, then unclamp the cramp, utilize location preforming auto-lock fixed after inserting the crystal head in the plug wire mouth, the piston rod receives the extrusion simultaneously, and the air input cavity shell in the piston rod struts the piston post, forces butt joint electrode and U-shaped fastener tightly, can consolidate the circuit and prevent the pine and take off.
3. Set up the power supply location and wear the pole, provide synchronous circular telegram function, spherical switch that can the longitudinal connection is different to the air pump is for connecting the platform air feed, and the inside that the air passed connection platform, spherical switch and spacer is upwards moved, dispels the heat simultaneously, can continuously guarantee to cool down spherical switch, can dispel the heat at the in-process of continuous operation.
Drawings
Fig. 1 shows a schematic perspective view of an embodiment according to the present utility model;
FIG. 2 shows a schematic diagram of a pitch-back structure according to an embodiment of the utility model;
FIG. 3 shows a schematic side view of an embodiment of the utility model;
fig. 4 shows a schematic perspective view of a crystal head according to an embodiment of the utility model;
fig. 5 shows a schematic diagram of a side elevation structure of a crystal head according to an embodiment of the utility model;
fig. 6 shows a schematic perspective view of a hollow casing according to an embodiment of the present utility model;
FIG. 7 is a schematic perspective view showing a buckle plate according to an embodiment of the present utility model;
fig. 8 shows an a partial enlarged structural schematic diagram according to an embodiment of the present utility model.
List of reference numerals
1. A support base; 101. a connection station; 102. a power supply positioning penetrating rod; 103. a power-on groove; 104. an air pump; 2. a spherical switch; 201. a wire insertion opening; 202. a slip ring; 203. a sliding electrode; 204. a vent hole; 3. a spacer bush; 4. a crystal head; 401. a wire-laying rotating plate; 402. butt-jointing the electrodes; 403. a hollow casing; 404. a piston bin; 405. positioning and tabletting; 406. a piston rod; 407. a piston column; 408. a U-shaped fastener; 409. a spring rod; 410. a buckle piece.
Detailed Description
In order to make the objects, aspects and advantages of the technical solution of the present utility model more clear, the technical solution of the embodiment of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the specific embodiment of the present utility model.
Examples: please refer to fig. 1 to 8:
the utility model provides a machine room data exchanger, which comprises: the support base 1, the main body of the support base 1 is of a frame cylinder type structure, a connecting table 101 is integrally arranged in the middle of the top of the support base 1, and a power supply positioning penetrating rod 102 is fixedly arranged at the top of the connecting table 101; the spherical exchanger 2, the external cambered surface of the spherical exchanger 2 is provided with a plug wire port 201; the middle of the spherical switch 2 is fixedly provided with a slip ring 202, and the slip ring 202 can be arranged outside the power supply positioning penetrating rod 102 in a sliding way; the spacer bush 3 is arranged outside the power supply positioning penetrating rod 102 in a sliding manner, and the spacer bush 3 and the spherical exchanger 2 are arranged in a staggered manner; the crystal head 4 is provided in the plug wire port 201 so that the crystal head 4 can be fitted.
Wherein, support base 1 still includes: the outer part of the power supply positioning penetrating rod 102 is provided with two groups of power supply grooves 103; the air pump 104 is fixedly arranged in the middle of the supporting base 1, and the top of the air pump 104 is connected with the bottom of the connecting table 101.
Wherein, spherical switch 2 includes: two groups of sliding electrodes 203 are arranged in the sliding ring 202, and the sliding electrodes 203 slide in the energizing grooves 103; a vent hole 204 is formed between the upper side and the lower side of the spherical switch 2, and the vent hole 204 is formed.
Wherein, a through hole aligned with the vent hole 204 is arranged between the connecting table 101 and the spacer bush 3; when the connecting table 101, the spherical exchanger 2 and the spacer bush 3 are attached, each group of vent holes 204 are communicated, the air pump 104 can supply air for the vent holes 204, the air pump 104 is started to supply air for the connecting table 101, air passes through the connecting table 101, the spherical exchanger 2 and the spacer bush 3 to move upwards, heat is dissipated simultaneously, and cooling of the spherical exchanger 2 can be continuously guaranteed.
Wherein, crystal head 4 includes: the line-filling rotary plate 401 is rotatably arranged at the outer side of the bottom of the crystal head 4; the butt electrode 402 is fixedly arranged outside the crystal head 4; the outside of the crystal head 4 is fixedly provided with a hollow casing 403, the top of the hollow casing 403 is integrally provided with a piston bin 404, and the top of the piston bin 404 is integrally provided with a positioning pressing sheet 405; a piston rod 406, wherein one end of the piston bin 404 is slidably provided with the piston rod 406; a spring is disposed within the piston housing 404.
Wherein, crystal head 4 still includes: piston post 407, the flexible piston post 407 that is provided with in cavity cover 403 turning inner wall department, the flexible end of piston post 407 is fixed to be provided with U-shaped fastener 408, and U-shaped fastener 408 can coincide to detain the outside of establishing at butt joint electrode 402.
Wherein, crystal head 4 still includes: the spring lever 409, the outside of U-shaped fastener 408 is fixed and is provided with spring lever 409, and spring lever 409 is provided with cramp 410 in the outside slip of spring lever 409, and spring lever 409 passes cramp 410 cover and is fixed and is provided with the separation blade.
Wherein, the buckle piece 410 is attached to the hollow casing 403, and two ends of one side of the buckle piece 410 attached to the hollow casing 403 are both in a bevel edge structure; the crystal head 4 is suitable for temporary assembly, firstly, the buckle piece 410 is picked up, the U-shaped buckle 408 is moved outwards to be lifted, then the net wire head is directly inserted into a gap between the butt electrode 402 and the U-shaped buckle 408, then the buckle piece 410 is loosened, the crystal head 4 is inserted into the plug wire port 201 and then is self-locked and fixed by the positioning press piece 405, meanwhile, the piston rod 406 is extruded, air in the piston rod 406 is input into the hollow sleeve 403 to prop up the piston post 407, the butt electrode 402 and the U-shaped buckle 408 are tightly pressed, and a circuit is reinforced to prevent loosening.
Specific use and action of the embodiment: in the utility model, when in use, the number of the spherical switches 2 is set according to the use requirement, and each two groups of spherical switches 2 are provided with the spacer bush 3 for separation;
after the spherical switch 2 is arranged outside the power supply positioning penetrating rod 102, the interiors of the two groups of power-on grooves 103 are electrified to supply power to the sliding electrodes 203, so that the spherical switch 2 works, and then the crystal head 4 is inserted into the plug wire port 201 to perform data interaction;
the crystal head 4 is suitable for temporary assembly, firstly, the buckle piece 410 is selected, the U-shaped buckle 408 is moved outwards and lifted, then the net wire head is directly inserted into a gap between the butt electrode 402 and the U-shaped buckle 408, then the buckle piece 410 is loosened, the crystal head 4 is inserted into the plug wire port 201 and then is self-locked and fixed by the positioning press piece 405, meanwhile, the piston rod 406 is extruded, air in the piston rod 406 is input into the hollow sleeve 403 to prop up the piston post 407, the butt electrode 402 and the U-shaped buckle 408 are tightly pressed, and a circuit is reinforced to prevent loosening;
the air pump 104 is started to supply air for the connecting table 101, and air passes through the connecting table 101, the spherical exchanger 2 and the inner part of the spacer bush 3 to move upwards, and meanwhile, heat dissipation is carried out, so that the spherical exchanger 2 can be continuously guaranteed to be cooled.

Claims (8)

1. A machine room data switch, comprising: the support base (1), the main body of the support base (1) is of a frame cylinder type structure, a connecting table (101) is integrally arranged in the middle of the top of the support base (1), and a power supply positioning penetrating rod (102) is fixedly arranged at the top of the connecting table (101); the spherical switch (2), the external cambered surface of the spherical switch (2) is provided with a plug wire port (201); a slip ring (202) is fixedly arranged in the middle of the spherical switch (2), and the slip ring (202) can be arranged outside the power supply positioning penetrating rod (102) in a sliding manner; the spacer bush (3) is arranged outside the power supply positioning penetrating rod (102) in a sliding mode, and the spacer bush (3) and the spherical exchanger (2) are arranged in a staggered mode; and a crystal head (4), wherein the crystal head (4) can be arranged in the plug wire port (201) in an anastomotic manner.
2. A machine room data exchange according to claim 1, wherein the support base (1) further comprises:
the outer part of the power supply positioning penetrating rod (102) is provided with two groups of power supply grooves (103);
the air pump (104), fixedly provided with air pump (104) in the middle of supporting base (1), air pump (104) top is connected with the bottom of connection platform (101).
3. A machine room data exchange according to claim 1, characterized in that said sphere exchange (2) comprises:
the sliding electrode (203), the slip ring (202) is internally provided with two groups of sliding electrodes (203), and the sliding electrodes (203) slide in the energizing groove (103);
and a vent hole (204) is formed between the upper side and the lower side of the spherical switch (2), and the vent hole (204) is formed between the upper side and the lower side of the spherical switch.
4. A machine room data exchange according to claim 1, characterized in that a through hole aligned with the vent hole (204) is provided in the middle of the connection table (101) and the spacer bush (3); when the connecting table (101), the spherical exchanger (2) and the spacer bush (3) are attached, the vent holes (204) of each group are communicated, and the air pump (104) can supply air for the vent holes (204).
5. A machine room data exchange according to claim 1, characterized in that said crystal head (4) comprises:
a wire-filling rotating plate (401), wherein the wire-filling rotating plate (401) is rotatably arranged at the outer side of the bottom of the crystal head (4);
a butt electrode (402), wherein the butt electrode (402) is fixedly arranged outside the crystal head (4);
the crystal head comprises a hollow casing (403), wherein the hollow casing (403) is fixedly arranged outside the crystal head (4), a piston bin (404) is integrally arranged at the top of the hollow casing (403), and a positioning pressing sheet (405) is integrally arranged at the top of the piston bin (404);
a piston rod (406), wherein one end of the piston bin (404) is provided with the piston rod (406) in a sliding way; a spring is arranged in the piston bin (404).
6. A machine room data exchange according to claim 1, characterized in that the crystal head (4) further comprises:
piston post (407), the flexible piston post (407) that is provided with in cavity cover shell (403) turning inner wall department, the flexible end of piston post (407) is fixed to be provided with U-shaped fastener (408), and U-shaped fastener (408) can coincide to detain the outside of establishing in butt joint electrode (402).
7. A machine room data exchange according to claim 1, characterized in that the crystal head (4) further comprises:
the outside of the U-shaped fastener (408) is fixedly provided with a spring rod (409), the spring rod (409) is externally provided with a buckle piece (410) in a sliding mode, and the spring rod (409) penetrates through the buckle piece (410) to be sleeved with a spring and is fixedly provided with a baffle piece.
8. A machine room data exchange according to claim 7, wherein the buckle piece (410) is attached to the hollow casing (403), and both ends of one side of the buckle piece (410) attached to the hollow casing (403) are in a bevel structure.
CN202320671423.0U 2023-03-30 2023-03-30 Computer lab data switch Active CN219678616U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320671423.0U CN219678616U (en) 2023-03-30 2023-03-30 Computer lab data switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320671423.0U CN219678616U (en) 2023-03-30 2023-03-30 Computer lab data switch

Publications (1)

Publication Number Publication Date
CN219678616U true CN219678616U (en) 2023-09-12

Family

ID=87897929

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320671423.0U Active CN219678616U (en) 2023-03-30 2023-03-30 Computer lab data switch

Country Status (1)

Country Link
CN (1) CN219678616U (en)

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