CN209281317U - A kind of big data processor with high-efficiency operation - Google Patents
A kind of big data processor with high-efficiency operation Download PDFInfo
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- CN209281317U CN209281317U CN201920235346.8U CN201920235346U CN209281317U CN 209281317 U CN209281317 U CN 209281317U CN 201920235346 U CN201920235346 U CN 201920235346U CN 209281317 U CN209281317 U CN 209281317U
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Abstract
The utility model discloses a kind of big data processor with high-efficiency operation, more particularly to processor technical field, including cabinet, the box house is equipped with fiber-optic signal amplifier, optical transmitter and receiver is equipped at the top of the fiber-optic signal amplifier, isolating device is equipped at the top of the optical transmitter and receiver, the isolating device includes incubator, heat-conducting plate is equipped with inside the incubator, processor main body is equipped at the top of the heat-conducting plate, the processor body side is equipped with limited block, the limited block side is equipped with isolating door, the isolating door bottom is equipped with card slot, the card slot matches with limited block.The utility model passes through setting isolating device, incubator completely cuts off processor main body with outside, movable plate is pulled when needing to open, processor main body is carried out independently installed, avoiding the heat by other equipment is influenced, and processor main body heating rate is advantageously reduced, and promotes service efficiency, increase and use the time, guarantees that processor main body can carry out long-play.
Description
Technical field
The utility model relates to processor technical fields, and more specifically, this practical one kind that is related to has high-efficiency operation
Big data processor.
Background technique
Server, also referred to as servomechanism are to provide the equipment of the service of calculating, since server needs to respond service request, and
It is handled, therefore in general server should have the service of undertaking and ensure the ability of service, the composition of server includes
Processor, hard disk, memory, system bus etc. are similar with general computer architecture.
Patent application publication CN208027258U utility model patent discloses a kind of big number with high-efficiency operation
According to processor, including chassis shell body, the bottom of the chassis shell body is fixed with pedestal, and the bottom four corners of the pedestal are equipped with recessed
Slot, the interior bead of the groove is equipped with orifice plate, is rotated between the front and back inner wall of the groove by shaft and be equipped with support frame, described
The outer surface bottom of support frame is equipped with movable pulley by crossbeam, is connected between support frame as described above and orifice plate by stay bolt, described
Power supply wiring hole and miniature fuse are embedded on the left of the surface crown of chassis shell body, temperature sensor connection controller makes to radiate
Fan and electrostatic generator work, radiator fan accelerate chassis shell body inside air flowing, electrostatic precipitation net reduce dust with
Air-flow enters chassis shell body inner cavity, and the device radiation is functional, has lightning protection function, while can carry out with Wireless remote control
Detection and maintenance, extend service life.
But it is in actual use, still there is more disadvantage, such as the efficiency of isolation of equipment processor when in use
It is bad, it is easy to be influenced by the heat of other equipment, to causing temperature of processor to increase, influences service efficiency.
Utility model content
In order to overcome the drawbacks described above of the prior art, the embodiments of the present invention provide a kind of with high-efficiency operation
Big data processor, by the way that isolating device is arranged, fiber-optic signal amplifier is linked into optical transmitter and receiver and place after amplifying fiber-optic signal
Reason device main body is attached, and incubator completely cuts off processor main body with outside, and movable plate, movable plate are pulled when needing to open
Third sliding block is driven to be slided inside third sliding slot by fixed link, so that the motion track to movable plate is defined,
Isolating door overturning is driven later, and heat-conducting plate drives the first sliding block in first sliding groove internal slide by the second slide bar later, in turn
The the second sliding block sliding slot inside second sliding slot of the first slide bar drive simultaneously is pushed, the overturning track of isolating door is defined, into
And expose processor main body, installation is facilitated, while the progress of processor main body is independently installed, avoided by other equipment
Heat influences, and advantageously reduces processor main body heating rate, promotes service efficiency, increases and uses the time, guarantees processor master
Body can carry out long-play, to solve the problems mentioned in the above background technology.
To achieve the above object, the utility model provides the following technical solutions: a kind of big data with high-efficiency operation
Processor, including cabinet, the box house are equipped with fiber-optic signal amplifier, are equipped with light end at the top of the fiber-optic signal amplifier
Machine, the optical transmitter and receiver top are equipped with isolating device, and the isolating device includes incubator, is equipped with inside the incubator thermally conductive
Plate, the heat-conducting plate top are equipped with processor main body, and the processor body side is equipped with limited block, and the limited block side is set
There is isolating door, the isolating door bottom is equipped with card slot, and the card slot matches with limited block, described isolating door one end and incubator
One end is hinged, and the isolating door surface is equipped with first sliding groove, and incubator inside top surface is equipped with second sliding slot, and described the
The first sliding block is equipped with inside one sliding slot, first sliding block is slidably connected with first sliding groove, and first sliding block one end is equipped with the
One slide bar, first slide bar bottom are equipped with the second slide bar, and first slide bar and the second slide bar are hinged with the first sliding block, institute
The first slide bar other end is stated equipped with the second sliding block, second sliding block is slidably connected with second sliding slot, and first slide bar is another
End is hinged with the second shoe surface, and second slide bar bottom end and heat-conducting plate are hinged.
In a preferred embodiment, the thermally conductive plate surface is equipped with cooling device, and the cooling device includes leading
Heat block, the heat-conducting block surface are equipped with engaging groove, are equipped with thermally conductive item inside the engaging groove.
In a preferred embodiment, the thermally conductive side is equipped with shell, and the interior of shell is equipped with condenser pipe,
The thermally conductive item is through shell and extends to inside.
In a preferred embodiment, described condenser pipe one end is equipped with cooling cylinder, is equipped with and follows at the top of the cooling cylinder
Ring pump, the circulation pump output terminal and the perforation of the condenser pipe other end connect.
In a preferred embodiment, the heat-conducting plate side is equipped with movable plate, is equipped with inside the movable plate solid
Fixed pole.
In a preferred embodiment, the fixed link front and back is equipped with third sliding block, in the cabinet
Wall is equipped with third sliding slot, and the third sliding block is slidably connected with third sliding slot.
The technical effect and advantage of the utility model:
1, by setting isolating device, fiber-optic signal amplifier is linked into optical transmitter and receiver and processor after amplifying fiber-optic signal
Main body is attached, and incubator completely cuts off processor main body with outside, and movable plate is pulled when needing to open, and movable plate passes through
Fixed link drives third sliding block to be slided inside third sliding slot, so that the motion track to movable plate is defined, later
Isolating door overturning is driven, heat-conducting plate drives the first sliding block in first sliding groove internal slide by the second slide bar later, and then pushes
The first slide bar drives the second sliding block sliding slot inside second sliding slot simultaneously, is defined to the overturning track of isolating door, and then will
Processor main body is exposed, and facilitates installation, while the progress of processor main body is independently installed, avoids the heat by other equipment
It influences, advantageously reduces processor main body heating rate, promote service efficiency, increase and use the time, guarantee that processor main body can
To carry out long-play;
2, by setting cooling device, while heat-conducting plate drives heat-conducting block to move horizontally, so that the engaging groove on heat-conducting block
Engage with thermally conductive item, opens circulating pump, so that condensate liquid recycles inside condenser pipe, heat-conducting plate passes through processor body temperature
Heat-conducting block and thermally conductive item are conducted to condenser pipe, and condenser pipe shifts heat absorption, and then cools down to processor, are conducive to
Cooling effect is further promoted, guarantees the airtightness of incubator.
Detailed description of the invention
Fig. 1 is the overall structure diagram of the utility model.
Fig. 2 is the portion A partial structural diagram in Fig. 1 of the utility model.
Fig. 3 is the cooling device structural schematic diagram of the utility model.
Fig. 4 is the heat-conducting block stereoscopic schematic diagram of the utility model.
Appended drawing reference are as follows: 1 cabinet, 2 fiber-optic signal amplifiers, 3 optical transmitter and receivers, 4 isolating devices, 5 incubators, 6 heat-conducting plates, 7
Processor main body, 8 limited blocks, 9 isolating doors, 10 card slots, 11 first sliding grooves, 12 second sliding slots, 13 first sliding blocks, 14 first are slided
Bar, 15 second slide bars, 16 second sliding blocks, 17 cooling devices, 18 heat-conducting blocks, 19 engaging grooves, 20 thermally conductive items, 21 shells, 22 condensations
Pipe, 23 cooling cylinders, 24 circulating pumps, 25 movable plates, 26 fixed links, 27 third sliding blocks, 28 third sliding slots.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
The utility model provides a kind of big data processor with high-efficiency operation as shown in Figs 1-4, including case
Body 1 is equipped with fiber-optic signal amplifier 2 inside the cabinet 1, and optical transmitter and receiver 3 is equipped at the top of the fiber-optic signal amplifier 2, described
Isolating device 4 is equipped at the top of optical transmitter and receiver 3, the isolating device 4 includes incubator 5, it is equipped with heat-conducting plate 6 inside the incubator 5,
Processor main body 7 is equipped at the top of the heat-conducting plate 6,7 side of processor main body is equipped with limited block 8,8 side of limited block
Equipped with isolating door 9,9 bottom of isolating door is equipped with card slot 10, and the card slot 10 matches with limited block 8, the isolating door 9 one
End is hinged with 5 one end of incubator, and 9 surface of isolating door is equipped with first sliding groove 11, and the 5 inside top surface of incubator is equipped with
Second sliding slot 12, the first sliding block 13 is equipped with inside the first sliding groove 11, and first sliding block 13 connects with the sliding of first sliding groove 11
Connect, described first sliding block, 13 one end be equipped with the first slide bar 14,14 bottom of the first slide bar be equipped with the second slide bar 15, described first
Slide bar 14 and the second slide bar 15 are hinged with the first sliding block 13, and 14 other end of the first slide bar is equipped with the second sliding block 16, described
Second sliding block 16 is slidably connected with second sliding slot 12, and 14 other end of the first slide bar and 16 surface of the second sliding block are hinged, described
Second slide bar, 15 bottom end and heat-conducting plate 6 are hinged, by the way that isolating device 4 is arranged, after fiber-optic signal amplifier 2 amplifies fiber-optic signal
It is linked into optical transmitter and receiver 3 to be attached with processor main body 7, incubator 5 completely cuts off processor main body 7 with outside, needs to beat
Movable plate 25 is pulled when opening, movable plate 25 drives third sliding block 27 to be slided inside third sliding slot 28 by fixed link 26,
To be defined to the motion track of movable plate 25, isolating door 9 is driven to overturn later, heat-conducting plate 6 passes through the second slide bar later
15 drive the first sliding blocks 13 in 11 internal slide of first sliding groove, so push simultaneously the first slide bar 14 drive the second sliding block 16 the
Two sliding slots, 12 inside sliding slot, is defined the overturning track of isolating door 9, and then processor main body 7 is exposed, facilitates peace
Dress, while processor main body 7 being carried out independently installed, it avoids the heat by other equipment from being influenced, advantageously reduces processor
7 heating rate of main body promotes service efficiency, increases and uses the time, guarantees that processor main body 7 can carry out long-play.
Further, 6 surface of heat-conducting plate is equipped with cooling device 17, and the cooling device 17 includes heat-conducting block 18, institute
It states 18 surface of heat-conducting block and is equipped with engaging groove 19, be equipped with thermally conductive item 20 inside the engaging groove 19.
Further, 20 side of thermally conductive item is equipped with shell 21, and condenser pipe 22 is equipped with inside the shell 21, described to lead
Hot item 20 is through shell 21 and extends to inside.
Further, described 22 one end of condenser pipe is equipped with cooling cylinder 23, is equipped with circulating pump 24, institute at the top of the cooling cylinder 23
It states 24 output end of circulating pump and the perforation of 22 other end of condenser pipe connects, by the way that cooling device 17 is arranged, while the drive of heat-conducting plate 6 is led
Heat block 18 moves horizontally, so that the engaging groove 19 on heat-conducting block 18 engages with thermally conductive item 20, circulating pump 24 is opened, so that condensate liquid
It is recycled inside condenser pipe 22, heat-conducting plate 6 conducts 7 temperature of processor main body to condenser pipe by heat-conducting block 18 and thermally conductive item 20
At 22, condenser pipe 22 shifts heat absorption, and then cools down to processor, is conducive to further promote cooling effect, protects
Demonstrate,prove the airtightness of incubator 5.
Further, 6 side of heat-conducting plate is equipped with movable plate 25, is equipped with fixed link 26 inside the movable plate 25.
Further, 26 front and back of fixed link is equipped with third sliding block 27, and 1 inner wall of cabinet is equipped with third
Sliding slot 28, the third sliding block 27 are slidably connected with third sliding slot 28.
Utility model works principle:
Referring to Figure of description 1-4, fiber-optic signal amplifier 2 is linked into optical transmitter and receiver 3 and processing after amplifying fiber-optic signal
Device main body 7 is attached, and incubator 5 completely cuts off processor main body 7 with outside, and movable plate 25 is pulled when needing to open, and is moved
Movable plate 25 drives third sliding block 27 to be slided inside third sliding slot 28 by fixed link 26, thus the movement to movable plate 25
Track is defined, and drives isolating door 9 to overturn later, and heat-conducting plate 6 drives the first sliding block 13 the by the second slide bar 15 later
One sliding slot, 11 internal slide, so push simultaneously the first slide bar 14 drive the second sliding block 16 in 12 inside sliding slot of second sliding slot, it is right
The overturning track of isolating door 9 is defined, and then processor main body 7 is exposed, and facilitates installation, while by processor main body 7
It carries out independently installed, the heat by other equipment is avoided to be influenced, reduce by 7 heating rate of processor main body, promote service efficiency,
Increase and use the time, guarantees that processor main body 7 can carry out long-play;
Referring to Figure of description 3, while heat-conducting plate 6 drives heat-conducting block 18 to move horizontally, so that the engagement on heat-conducting block 18
Slot 19 engages with thermally conductive item 20, opens circulating pump 24, so that condensate liquid recycles inside condenser pipe 22, heat-conducting plate 6 is by processor
7 temperature of main body is conducted by heat-conducting block 18 and thermally conductive item 20 to condenser pipe 22, and condenser pipe 22 shifts heat absorption, and then right
Processor cools down, and further promotes cooling effect, guarantees the airtightness of incubator 5.
The several points that should finally illustrate are: firstly, in the description of the present application, it should be noted that unless otherwise prescribed and
It limits, term " installation ", " connected ", " connection " shall be understood in a broad sense, can be mechanical connection or electrical connection, be also possible to two
Connection inside element, can be directly connected, and "upper", "lower", "left", "right" etc. are only used for indicating relative positional relationship, when
The absolute position for being described object changes, then relative positional relationship may change;
Secondly: the utility model discloses in embodiment attached drawing, relates only to the structure being related to the embodiment of the present disclosure,
His structure, which can refer to, to be commonly designed, and under not conflict situations, the utility model the same embodiment and different embodiments can be mutual
Combination;
Last: the above descriptions are merely preferred embodiments of the present invention, is not intended to limit the utility model, all
Within the spirit and principles of the present invention, any modification, equivalent replacement, improvement and so on should be included in practical
Within novel protection scope.
Claims (6)
1. a kind of big data processor with high-efficiency operation, including cabinet (1), it is characterised in that: the cabinet (1) is internal
Equipped with fiber-optic signal amplifier (2), optical transmitter and receiver (3) are equipped at the top of the fiber-optic signal amplifier (2), optical transmitter and receiver (3) top
Portion is equipped with isolating device (4), and the isolating device (4) includes incubator (5), and heat-conducting plate is equipped with inside the incubator (5)
(6), processor main body (7) are equipped at the top of the heat-conducting plate (6), processor main body (7) side is equipped with limited block (8), institute
Limited block (8) side is stated equipped with isolating door (9), isolating door (9) bottom is equipped with card slot (10), the card slot (10) and limit
Block (8) matches, and described isolating door (9) one end and incubator (5) one end are hinged, and it is sliding that isolating door (9) surface is equipped with first
Slot (11), incubator (5) the inside top surface are equipped with second sliding slot (12), and first is equipped with inside the first sliding groove (11)
Sliding block (13), first sliding block (13) are slidably connected with first sliding groove (11), and described first sliding block (13) one end is equipped with first
Slide bar (14), the first slide bar (14) bottom are equipped with the second slide bar (15), first slide bar (14) and the second slide bar (15)
Hingedly with the first sliding block (13), the first slide bar (14) other end is equipped with the second sliding block (16), second sliding block (16)
It being slidably connected with second sliding slot (12), the first slide bar (14) other end and the second sliding block (16) surface are hinged, and described second
Slide bar (15) bottom end and heat-conducting plate (6) are hinged.
2. a kind of big data processor with high-efficiency operation according to claim 1, it is characterised in that: described thermally conductive
Plate (6) surface is equipped with cooling device (17), and the cooling device (17) includes heat-conducting block (18), and heat-conducting block (18) surface is set
Have engaging groove (19), is equipped with thermally conductive item (20) inside the engaging groove (19).
3. a kind of big data processor with high-efficiency operation according to claim 2, it is characterised in that: described thermally conductive
Item (20) side is equipped with shell (21), is equipped with condenser pipe (22) inside the shell (21), and the thermally conductive item (20) runs through shell
(21) and inside is extended to.
4. a kind of big data processor with high-efficiency operation according to claim 3, it is characterised in that: the condensation
It manages (22) one end and is equipped with cooling cylinder (23), be equipped with circulating pump (24) at the top of the cooling cylinder (23), circulating pump (24) output
End is connected with the perforation of condenser pipe (22) other end.
5. a kind of big data processor with high-efficiency operation according to claim 1, it is characterised in that: described thermally conductive
Plate (6) side is equipped with movable plate (25), is equipped with fixed link (26) inside the movable plate (25).
6. a kind of big data processor with high-efficiency operation according to claim 5, it is characterised in that: the fixation
Bar (26) front and back is equipped with third sliding block (27), and cabinet (1) inner wall is equipped with third sliding slot (28), and the third is sliding
Block (27) is slidably connected with third sliding slot (28).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920235346.8U CN209281317U (en) | 2019-02-25 | 2019-02-25 | A kind of big data processor with high-efficiency operation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920235346.8U CN209281317U (en) | 2019-02-25 | 2019-02-25 | A kind of big data processor with high-efficiency operation |
Publications (1)
Publication Number | Publication Date |
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CN209281317U true CN209281317U (en) | 2019-08-20 |
Family
ID=67606312
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920235346.8U Expired - Fee Related CN209281317U (en) | 2019-02-25 | 2019-02-25 | A kind of big data processor with high-efficiency operation |
Country Status (1)
Country | Link |
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CN (1) | CN209281317U (en) |
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2019
- 2019-02-25 CN CN201920235346.8U patent/CN209281317U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190820 |
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CF01 | Termination of patent right due to non-payment of annual fee |