CN101754633B - Clamping device suitable for embedded tracks - Google Patents

Clamping device suitable for embedded tracks Download PDF

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Publication number
CN101754633B
CN101754633B CN2008101826070A CN200810182607A CN101754633B CN 101754633 B CN101754633 B CN 101754633B CN 2008101826070 A CN2008101826070 A CN 2008101826070A CN 200810182607 A CN200810182607 A CN 200810182607A CN 101754633 B CN101754633 B CN 101754633B
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China
Prior art keywords
pedestal
clamping device
location division
location
embedded tracks
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CN2008101826070A
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Chinese (zh)
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CN101754633A (en
Inventor
刘志雄
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404 SCI-TECH Co Ltd
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404 SCI-TECH Co Ltd
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Abstract

The present invention relates to a clamping device suitable for embedded tracks. A location shrapnel is fixed on a base seat, and a first location part and a second location part are arranged on a sliding element; and the sliding element moves corresponding to the base seat to enable the location shrapnel to move to the first location part from the second location part to fix and locate. Thus, problems that the clamping device is not easy to disassemble from the embedded tracks and the clamping device is easy to damage can be solved. By this, the technical efficiencies that a process that the clamping device is disassembled from the embedded tracks is simplified and the clamping device is convenient to disassemble can be reached.

Description

Be applicable to the clamping device of embedded tracks
Technical field
A kind of clamping device refers in particular to and a kind ofly has Location resilient piece and sliding members can be positioned clamping device between two location divisions.
Background technology
Generally speaking, embedded tracks (DIN rail) is to be widely used in system equipment or the various cabinet, in order to make various electronic installation, power supply unit etc. for example, can removably be fixed on the embedded tracks, the body of these detachable electronic devices is provided with clamping device more, is fixed on the embedded tracks so that utilize the auxiliary of clamping device.
Except the body at detachable electronic device is provided with the clamping device, more can design the clamping device that is held on embedded tracks separately, and can cooperate different detachable electronic device to use, more can be widely with electronic device applications on embedded tracks.
The clamping device of existing embedded tracks is reciprocating structure mostly, be the elastic restoring force (being the chucking power that is clamped and fastened on embedded tracks) that sees through flexible member, the clamping device of embedded tracks can be clamped and fastened on the embedded tracks, what this kind design can be firm is clamped and fastened on clamping device on the embedded tracks.
Yet, the reciprocating type clamping device of existing embedded tracks but lacks effective dismounting positioning design, be that the user can't know whether and can will dismantle in the reciprocating type clamping device self-embedding formula track, and when the user need dismantle the reciprocating type clamping device self-embedding formula track of embedded tracks, because reciprocating type clamping device is to see through the formed chucking power of flexible member to be held on the embedded tracks, the user can need to use the proficiency application of force to overcome the chucking power of flexible member when dismounting, the action that the another hand is dismantled clamping device again, the user is in unloading process, can't see obviously whether reciprocating type clamping device can be dismantled in the self-embedding formula track with visual manner, be very unfavorable to user's operation in unloading process.
In addition, when the application of force overcomes the chucking power deficiency of flexible member, the user can't learn whether can will dismantle in the clamping device self-embedding formula track also, and by force when dismantling in the clamping device self-embedding formula track, it or not the damage that can cause clamping device, cause the damage of embedded tracks exactly, these all are the existing existing problems of clamping device.
In sum, prior art has existed the inconvenience of self-embedding formula track dismounting clamping device to reach the problem that causes the clamping device damage easily always since the midium or long term as can be known, therefore is necessary to propose improved technological means, solves this problem.
Summary of the invention
Because the problem that there is self-embedding formula track dismounting clamping device inconvenience in prior art and causes clamping device to damage easily, the present invention provides a kind of clamping device that is applicable to embedded tracks then, wherein:
The clamping device that is applicable to embedded tracks provided by the present invention is in order to being fixed on the embedded tracks (DIN rail) with first slide rail and second slide rail, and clamping device comprises: pedestal, flexible member, Location resilient piece and sliding members.
Pedestal is provided with at least one first clamping part, storage tank, at least one pedestal location division, and first clamping part is in order to be buckled on first slide rail; Flexible member is disposed in the storage tank; Location resilient piece has the shell fragment location division and is fixed on the pedestal; And sliding members has the depressed part that caves inward, the bottom surface of depressed part is provided with withstanding part, and location hole is set, and be provided with first location division and second location division in the location hole place, the outside of depressed part is provided with at least one second clamping part and at least one auxiliary section, the auxiliary section has chute, and second clamping part is in order to be stuck on second slide rail.
Wherein, when being positioned sliding members on the pedestal, auxiliary section and corresponding location, pedestal location division, shell fragment location division and corresponding location, second location division, flexible member is held in withstanding part to form chucking power, and sliding members sees through the corresponding pedestal that slides on of chute, and when sliding members slided with respect to pedestal, the shell fragment location division moved to location, first location division from second location division.
System and method for provided by the present invention as above, and the difference between the prior art is that the present invention sees through stationary positioned shell fragment on pedestal, and first location division and second location division be set on sliding members, and with sliding members with respect to moving on the pedestal, make Location resilient piece to move to first location division from second location division, see through above-mentioned running fix, the user can know that promptly clamping device separates with embedded tracks fully, promptly can will dismantle in the clamping device self-embedding formula track, can simplify the process of dismounting whereby, and make things convenient on user's self-embedding formula track and dismantle clamping device.
See through above-mentioned technological means, the present invention can reach the technology effect that clamping device is simplified and be convenient to dismantle to self-embedding formula track dismounting clamping device process.
Description of drawings
Fig. 1 illustrates the clamping device three-dimensional exploded view that is applicable to embedded tracks for the present invention.
Fig. 2 A illustrates the clamping device pedestal three-dimensional structure diagram that is applicable to embedded tracks for the present invention.
Fig. 2 B illustrates the clamping device sliding members three-dimensional structure diagram that is applicable to embedded tracks for the present invention.
Fig. 3 illustrates the clamping device three-dimensional combination figure that is applicable to embedded tracks for the present invention.
Fig. 4 A illustrates the clamping device clamping embedded tracks generalized section that is applicable to embedded tracks for the present invention.
Fig. 4 B illustrates to the present invention is applicable to the clamping device of embedded tracks and removes clamping embedded tracks generalized section
Fig. 5 illustrates the clamping device clamping embedded tracks three-dimensional combination figure that is applicable to embedded tracks for the present invention.
[main element symbol description]
10 pedestals
11 surfaces
12 first clamping parts
121 buckle places
13 storage tanks
14 pedestal location divisions
141 anchor points
142 slide rail support portions
15 pedestal fixed parts
16 protuberances
17 limiting sections
20 flexible members
30 Location resilient pieces
31 shell fragment location divisions
311 shell fragment depressed parts
40 sliding memberss
41 depressed parts
42 bottom surfaces
43 withstanding parts
44 location holes
45 first location divisions
46 second location divisions
47 second clamping parts
48 auxiliary sections
481 chutes
50 embedded tracks
51 first slide rails
52 second slide rails
Embodiment
Below describe conjunction with figs. and embodiment in detail embodiments of the present invention, whereby to the present invention how the application technology means implementation procedure that solves technical problem and reach the technology effect can fully understand and implement according to this.
To illustrate that below the present invention is applicable to the clamping device of embedded tracks, and please refer to shown in Figure 1ly that Fig. 1 illustrates the clamping device three-dimensional exploded view that is applicable to embedded tracks for the present invention.
The clamping device that is applicable to embedded tracks provided by the present invention, be in order to being fixed on the embedded tracks (not illustrating among Fig. 1) with first slide rail and second slide rail, clamping device comprises: pedestal 10, flexible member 20, Location resilient piece 30 and sliding members 40.
Then, will illustrate that respectively the present invention is applicable to the main element of the clamping device of embedded tracks earlier, and please refer to shown in Fig. 2 A that Fig. 2 A illustrates the clamping device pedestal three-dimensional structure diagram that is applicable to embedded tracks for the present invention.
On the surface 11 of pedestal 10, be provided with at least one first clamping part 12, storage tank 13, at least one pedestal location division 14, the first set clamping part 12 is to fasten mutually in order to first slide rail with embedded tracks on the surface 11 of pedestal 10, will be elaborated in follow-up as for the mutual manner of first slide rail of first clamping part 12 with embedded tracks.
On pedestal 10, more include pedestal fixed part 15, be in order to clamping device is fixed on the external electronic (not illustrating among the figure), can see through and screw togather fixing, mode such as be fixed, be fastened clamping device is fixed on the external electronic, only enumerate general common fixed form at this, but do not limit to application of the present invention with this, existing can reach fixing technological means and all can be applied to one of fixing means of the present invention, whereby, promptly external electronic can be seen through clamping device of the present invention, be fixed on the embedded tracks.
The width of embedded tracks and thickness have had a standard industrial, therefore, first clamping part 12, storage tank 13 and pedestal location division 14 set on the surface 11 of pedestal 10 need be provided with according to the width of embedded tracks, be first clamping part 12 and need be arranged at corresponding two places respectively with pedestal location division 14, set distance is the width of embedded tracks; And the thickness at the buckle place 121 of first clamping part 12 is the thickness of first slide rail of embedded tracks.
But, the thickness of embedded tracks mainly has two kinds of thickness at industrial specification, at this only for illustrating, do not limit to application category of the present invention with this, the thickness of embedded tracks is respectively 1.5mm and 1.0mm, therefore, the thickness at the buckle place 121 of first clamping part 12 need design with the thickness of bigger embedded tracks, but thickness for less embedded tracks, it is the same with the thicker situation of the thickness of embedded tracks that the tightness that the embedded tracks and first clamping part 12 fasten can't reach, therefore have the doubt that gets loose, to this, can be buckled on the surface 11 of first slide rail of embedded tracks in first clamping part 12, be provided with at least one protuberance 16, see through the embedded tracks that set protuberance 16 can be less with track thickness and can be fastened on first clamping part 12 closely, can reach identical with the tightness of the bigger embedded tracks of thickness.And above-mentioned protuberance 16 is no longer given unnecessary details at this applicable to the pedestal 10 of second slide rail of embedded tracks.
Then, set storage tank 13 is to be arranged between the pedestal location division 14 on the surface 11 of pedestal 10, in order to place the usefulness of flexible member 20 (please refer to shown in Figure 1), promptly flexible member 20 can be limited to the single direction start.
More can be provided with at least one anchor point 141 on the pedestal location division 14, anchor point 141 is the usefulness that positions when being assemblied on the pedestal 10 to sliding members 40 (please refer to shown in Figure 1), and pedestal location division 14 more can comprise slide rail support portion 142, when clamping device of the present invention is held on embedded tracks, seeing through slide rail support portion 142 promptly can be to embedded tracks in the function that supports, but, slide rail support portion 142 also has the effectiveness of the external electronic of being horizontally disposed with except in order to the support embedded tracks.
Then, please refer to shown in Fig. 2 B, Fig. 2 B illustrates the clamping device sliding members three-dimensional structure diagram that is applicable to embedded tracks for the present invention.
Sliding members 40 has the depressed part 41 that caves inward, the bottom surface 42 of depressed part 41 is provided with withstanding part 43, withstanding part 43 can by solid or have location notch depressed body one of them constituted, when withstanding part 43 is constituted by solid, then can directly contact to form and hold with flexible member 20, when withstanding part 43 is constituted by the depressed body of location notch, then flexible member 20 is to be held in the location notch of withstanding part, in order to cooperate with the flexible member 20 that is disposed at pedestal 10 (please refer to shown in Figure 1), withstanding part 43 will describe in follow-up with the start and the fit system of flexible member 20.
Sliding members 40 more can be provided with location hole 44 in the bottom surface 42 of depressed part 41, be provided with first location division 45 and second location division 46 in location hole 44 places, first location division 45 and second location division 46 are to match with the profile of Location resilient piece 30 (please refer to shown in Figure 1), make the shell fragment location division 31 (please refer to shown in Figure 1) of Location resilient piece 30 to position with first location division 45 and second location division 46 respectively, the location fit system of the Location resilient piece 30 and first location division 45 and second location division 46 will describe in follow-up.
And be provided with at least one second clamping part 47 and at least one auxiliary section 48 in the outside of sliding members 40, second clamping part 47 is located at and auxiliary section 48 homonymy not, the outside second set clamping parts 47 of sliding members 40 are in order to engaging mutually with second slide rail of embedded tracks, and engaging mode mutually as for second clamping part 47 and second slide rail of embedded tracks will be elaborated in follow-up.
Please cooperate shown in Fig. 2 A, and set auxiliary section 48, sliding members 40 outsides, be in order to pedestal location division 14 on set anchor point 141 work in coordination, make sliding members 40 can be assemblied on the pedestal 10, and can have positioning function, in addition, auxiliary section 48 has chute 481, and when sliding members 40 was assemblied in anchor point 141 on the pedestal location division 14, the chute 481 that can see through auxiliary section 48 make sliding members 40 can correspond to pedestal 10 and slide.
Will illustrate that below the present invention is applicable to the assembling process of the clamping device of embedded tracks, and please refer again to shown in Figure 1ly, and please cooperate Fig. 2 B to describe simultaneously.
At first, earlier flexible member 20 is disposed in the storage tank 13 of pedestal 10, and the Location resilient piece 30 that will have shell fragment location division 31 is fixed on the pedestal 10, as shown in the figure, Location resilient piece 30 is to be fixed in storage tank 13 belows, only for implementing the explanation of aspect, do not limit to the present invention at this with this configuration relation.
Then, because the thickness of sliding members 40 is identical with the thickness of pedestal location division 14, and the thickness of the depressed part 41 of sliding members 40 is identical with the thickness of storage tank 13, therefore, when being covered in sliding members 40 on the pedestal 10, storage tank 13 can fit in the bottom surface 42 of the depressed part 41 of sliding members 40, and this moment, Location resilient piece 30 also can be capped within the depressed part 41 of sliding members 40, and the outside set auxiliary section 48 of sliding members 40 promptly with pedestal location division 14 on set anchor point 141 corresponding mutually, make that sliding members 40 is configurable between pedestal 10 pedestal location divisions 14, and outside set second clamping part, the 47 mutual corresponding configurations of set first clamping part 12 of pedestal 10 and sliding members 40.
And flexible member 20 1 ends are held in the withstanding part 43 that is provided with on the sliding members 40 just, and under this state, flexible member 20 is a reset condition, and promptly flexible member 20 can't produce elastic restoring force; Then owing to the covering of sliding members 40, by the squeeze pressure of sliding members 40, Location resilient piece 30 promptly can produce opposite elastic restoring force with pressure direction to Location resilient piece 30.
And first location division 45 that sliding members 40 is provided with in location hole 44 places and second location division 46 are higher than the Location resilient piece 30 of this moment, then, the chute 481 that sees through auxiliary section 48 moves sliding members 40 again, when Location resilient piece 30 is relatively moved to second location division 46, elastic restoring force by Location resilient piece 30 is produced promptly can be positioned to shell fragment location division 31 second location division 46.
This moment is because mobile sliding members 40, and the flexible member 30 that is held in the withstanding part 43 of sliding members 40 promptly can be subjected to the squeeze pressure of withstanding part 43, naturally form elastic restoring force, the elastic restoring force that flexible member 30 is produced is the chucking power of fixture of the present invention.
In addition, when shell fragment location division 31 is positioned to second location division 46, because the length of sliding members 40 is greater than the length of pedestal location division 14, therefore, sliding members 40 will protrude in pedestal 10, and the part that sliding members 40 is given prominence to is the exercisable part of user; And second clamping part of sliding members 40 protrudes in the slide rail support portion 142 of pedestal location division 14.
And because shell fragment location division 31 is positioned the bed knife that second location division 46 is produced, make sliding members 40 can be assemblied on the pedestal 10, result after the clamping device assembling please refer to shown in Figure 3, and Fig. 3 illustrates the clamping device three-dimensional combination figure that is applicable to embedded tracks for the present invention.
Then, the present invention is applicable to the operation of the clamping device clamping embedded tracks of embedded tracks with explanation, and please refer to shown in Fig. 4 A, and Fig. 4 A illustrates the clamping device clamping embedded tracks generalized section that is applicable to embedded tracks for the present invention.
At first, earlier first clamping part 12 of pedestal 10 and first slide rail 51 of embedded tracks 50 are fastened mutually, and be rotating shaft with first clamping part 12 and first slide rail, 51 fastening places, rotating and clamping device and make the second slide rail 52 contact sliding memberss 40 of embedded tracks 50, and the formation contact pressure, can push sliding members 40.
At this moment, withstanding part 43 in sliding members 40 inside is subjected to the extruding of contact pressure, can push flexible member 20 once again, make the elastic restoring force increase of flexible member 20 be the chucking power increase, and when second slide rail 52 of embedded tracks 50 was sticked in second clamping part 47 of sliding members 40, can have suitable chucking power can be fixed in clamping device on the embedded tracks 50.
The result of clamping device clamping embedded tracks please refer to shown in Figure 5, and Fig. 5 illustrates the clamping device clamping embedded tracks three-dimensional combination figure that is applicable to embedded tracks for the present invention.
Then, please refer to shown in Fig. 4 B, Fig. 4 B illustrates to the present invention is applicable to the clamping device of embedded tracks and removes clamping embedded tracks generalized section.
When the user need remove clamping with clamping device self-embedding formula track 50, pulling sliding members 40 protrudes in the part of pedestal 10, at this moment, the withstanding part 43 of sliding members 40 inside can push flexible member 20 once more, and shell fragment location division 31 meetings the moving of Location resilient piece 30 by sliding members 40, begin to carry out relative moving, promptly can begin to move from first location division 45.
When the shell fragment location division 31 of Location resilient piece 30 when second location division 46 relatively moves to first location division 45, the elastic restoring force that then can see through Location resilient piece 30 self is with 31 location, shell fragment location division of Location resilient piece 30 and be fixed in first location division 45, at this moment, as shown in the figure, can significantly find out second clamping part 47 engagement release state completely, the user promptly can will remove clamp position in the clamping device self-embedding formula track.
And when needing once more shell fragment location division 31 with Location resilient piece 30 when first location division 45 returns back to the state of second location division 46, the user promptly can see through the location hole 44 of sliding members 40, Location resilient piece 30 is imposed external force, when the external force that puts on Location resilient piece 30 can make that the shell fragment location division 31 of Location resilient piece 30 can be when stationary state be removed in first location division 45, promptly can fast sliding members 40 be returned back to reset condition (please refer to shown in Figure 3) by flexible member 20 and Location resilient piece 30 elastic restoring force separately.
Owing to need impose external force to the shell fragment location division 31 of Location resilient piece 30, therefore, please referring again to shown in Figure 1, can on the shell fragment location division 31 of Location resilient piece 30, shell fragment depressed part 311 be set, the external force that acts on Location resilient piece 30 can be concentrated on shell fragment depressed part 311 places through set shell fragment depressed part 311 on the shell fragment location division 31 of Location resilient piece 30, in addition, shell fragment depressed part 311 can strengthen the structural strength of shell fragment location division 31, to avoid applying the situation that external force causes distortion in shell fragment location division 31.
And can on the pedestal 10 of the shell fragment location division 31 of corresponding Location resilient piece 30, limiting section 17 be set, promptly can limit the moving range of the shell fragment location division 31 of Location resilient piece 30, cause shell fragment location division 31 elastic fatigues of Location resilient piece 30 and follow the string to avoid applying excessive external force.
In sum, difference between the present invention and the prior art is to see through stationary positioned shell fragment on pedestal as can be known, and first location division and second location division be set on sliding members, and with sliding members with respect to moving on the pedestal, make Location resilient piece to move to first location division from second location division, see through above-mentioned running fix, the user can know that promptly clamping device separates with embedded tracks fully, promptly can will dismantle in the clamping device self-embedding formula track, can simplify the process of dismounting whereby, and make things convenient for the technology effect of dismounting clamping device on user's self-embedding formula track.
Can solve the inconvenience of the existing self-embedding formula of prior art track dismounting clamping device by this technological means and reach the problem that causes the clamping device damage easily, and then reach the technology effect that clamping device is simplified and be convenient to dismantle to self-embedding formula track dismounting clamping device process.
Though execution mode disclosed in this invention as above, only described content is not in order to direct qualification scope of patent protection of the present invention.Any the technical staff in the technical field of the invention under the prerequisite that does not break away from spirit and scope disclosed in this invention, can do a little change what implement in form and on the details.Scope of patent protection of the present invention, still must with appended claim the person of being defined be as the criterion.

Claims (8)

1. clamping device that is applicable to embedded tracks, in order to be fixed on the embedded tracks with one first slide rail and one second slide rail, this clamping device comprises:
One pedestal, this pedestal are provided with at least one first clamping part, a storage tank, at least one pedestal location division, and this at least one first clamping part is in order to be buckled on this first slide rail;
One flexible member is disposed in this storage tank;
One location shell fragment has a shell fragment location division, and is fixed on this pedestal; And
One sliding members, this sliding members has a depressed part that caves inward, the bottom surface of this depressed part is provided with a withstanding part, and a location hole is set, and be provided with one first location division and one second location division in this location hole place, the outside of this depressed part is provided with at least one second clamping part and at least one auxiliary section, and this at least one auxiliary section has a chute, and this at least one second clamping part is in order to be stuck on this second slide rail;
Wherein, when being positioned this sliding members on this pedestal, this at least one auxiliary section and this corresponding location, at least one pedestal location division, this shell fragment location division and this corresponding location, second location division, this flexible member is held in this withstanding part to form chucking power, and this sliding members sees through corresponding this pedestal that slides on of this chute, and when this sliding members slided with respect to this pedestal, this shell fragment location division moved to this location, first location division from this second location division.
2. the clamping device that is applicable to embedded tracks as claimed in claim 1, wherein this pedestal more comprises at least one pedestal fixed part, in order to this clamping device is fixed on the external electronic.
3. the clamping device that is applicable to embedded tracks as claimed in claim 1, wherein this pedestal more comprises at least one protuberance, in order to cooperate this embedded tracks of different size.
4. the clamping device that is applicable to embedded tracks as claimed in claim 3, wherein this protuberance is positioned at that this at least one first clamping part is buckled in this first slide rail and this at least one second clamping part is stuck on this pedestal of this second slide rail.
5. the clamping device that is applicable to embedded tracks as claimed in claim 1, wherein this pedestal more comprises a limiting section, in order to limit the moving range of this shell fragment location division.
6. the clamping device that is applicable to embedded tracks as claimed in claim 1, wherein this pedestal location division more comprises a slide rail support portion.
7. the clamping device that is applicable to embedded tracks as claimed in claim 6, wherein this at least one second clamping part protrudes in this slide rail support portion.
8. the clamping device that is applicable to embedded tracks as claimed in claim 1, wherein this pedestal is fixed
CN2008101826070A 2008-12-09 2008-12-09 Clamping device suitable for embedded tracks Active CN101754633B (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
CN2008101826070A CN101754633B (en) 2008-12-09 2008-12-09 Clamping device suitable for embedded tracks

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CN101754633A CN101754633A (en) 2010-06-23
CN101754633B true CN101754633B (en) 2011-12-14

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CN102427693B (en) * 2011-11-29 2014-10-15 杭州华三通信技术有限公司 Slideway support and electronic equipment applying same
CN106163198B (en) * 2015-03-30 2019-04-12 台达电子工业股份有限公司 Clip and its applicable electronic device
EP3208900B1 (en) * 2016-02-16 2020-04-29 FRIWO Gerätebau GmbH Electrical device for rail mounting
CN106793658B (en) * 2017-03-02 2022-06-14 攀钢集团矿业有限公司 Electrical component fixing structure
JP2018182110A (en) * 2017-04-17 2018-11-15 アズビル株式会社 Electronic device mounting structure
CN111148383B (en) * 2018-11-05 2021-07-13 南宁富桂精密工业有限公司 Casing assembly and electrical equipment
CN112188787B (en) * 2019-07-04 2022-04-08 四零四科技股份有限公司 Clamping mechanism suitable for embedded track
CN115003087B (en) * 2022-07-22 2023-11-21 深圳市汇川技术股份有限公司 Clip assembly and electronic device

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CN2624586Y (en) * 2003-05-17 2004-07-07 鸿富锦精密工业(深圳)有限公司 Faceplate fixing device
CN2652094Y (en) * 2003-09-03 2004-10-27 鸿富锦精密工业(深圳)有限公司 Slide railing seizing-up structural assembly
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US5775955A (en) * 1996-09-17 1998-07-07 Graube; Maris Modular fieldbus terminal block
US6456495B1 (en) * 2000-03-13 2002-09-24 Eaton Corporation Logic controller having DIN rail backplane and locking means for interconnected device module
CN2624586Y (en) * 2003-05-17 2004-07-07 鸿富锦精密工业(深圳)有限公司 Faceplate fixing device
CN2652094Y (en) * 2003-09-03 2004-10-27 鸿富锦精密工业(深圳)有限公司 Slide railing seizing-up structural assembly
CN201066975Y (en) * 2007-06-07 2008-05-28 鸿富锦精密工业(深圳)有限公司 Sliding rail fixing structure

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