CN203930626U - The network storage equipment and casing - Google Patents

The network storage equipment and casing Download PDF

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Publication number
CN203930626U
CN203930626U CN201420282379.5U CN201420282379U CN203930626U CN 203930626 U CN203930626 U CN 203930626U CN 201420282379 U CN201420282379 U CN 201420282379U CN 203930626 U CN203930626 U CN 203930626U
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CN
China
Prior art keywords
covering
section
annular protrusion
assembled portion
installing port
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CN201420282379.5U
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Chinese (zh)
Inventor
毛忠辉
陈庆豪
谢德雄
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Wistron Infocomm Zhongshan Co Ltd
Wistron Corp
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Wistron Infocomm Zhongshan Co Ltd
Wistron Corp
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Filing date
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Application filed by Wistron Infocomm Zhongshan Co Ltd, Wistron Corp filed Critical Wistron Infocomm Zhongshan Co Ltd
Priority to CN201420282379.5U priority Critical patent/CN203930626U/en
Priority to TW103210719U priority patent/TWM490595U/en
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Publication of CN203930626U publication Critical patent/CN203930626U/en
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Abstract

The network storage equipment and casing.The network storage equipment comprises: putting part part; Network storage assembly, is positioned at putting part part and comprises expansion card; Backboard part, is located at putting part part, comprises body and annular protrusion, and body has surface and installing port, annular protrusion have be connected in body linkage section, protrude from surperficial convex section and perforation; Covering members, has pivoted hole and articulated section, and pivoted hole is hubbed at annular protrusion and has the position of covering and open site; And conjunction, comprise first, second limiting section and convergence part, first, second limiting section is connected in respectively the relative both sides of convergence part and has first, second confined planes, convergence part is through perforation, first, second confined planes is resisted against respectively convex section and linkage section, annular protrusion protrudes the thickness that surperficial height is more than or equal to articulated section, makes spacing between the first confined planes and surface be more than or equal to the thickness of articulated section.The utility model can promote the riveted quality between covering members and backboard part.

Description

The network storage equipment and casing
Technical field
The utility model relates to a kind of computer equipment and casing, particularly a kind of network storage equipment and casing.
Background technology
Along with scientific-technical progress, the function of electronic equipment grows with each passing day.Take network storage server as example, and network storage server consists predominantly of a casing and is positioned at a power supply of casing inside, a mainboard and a hard disk.Yet, for the function of extended network storage server further, on mainboard, conventionally have many interface card slots, for the interface card with various expanded function, peg graft, and interface card is generally assembled on casing by screw.Because the assembling convenience of screw is comparatively not enough, part customer requirement is installed rotary cover plate on casing, when rotary cover plate covers the fixed mount of interface card, interface card can be fixed on casing, when rotary cover plate departs from the fixed mount of interface card, detachable interface card.
For promoting the packaging efficiency between rotary cover plate and casing, rotary cover plate is combined by the mode of blind rivet or pot nail with between casing.Yet, with mode combinations such as blind rivet or pot nails, also cannot effectively control the elasticity between rotary cover plate and casing, if making rotary cover plate crosses while being incorporated into tightly on casing, rotary cover plate just cannot rotate smoothly, and if rotary cover plate is when crossing loose ground and being incorporated on casing, rotary cover plate with regard to easily relatively casing rock and cause assembling quality to decline.Therefore, how effectively controlling the elasticity between rotary cover plate and casing, to promote the riveting quality between rotary cover plate and casing, is one of research staff's problem that should solve.
Therefore, need to provide a kind of network storage equipment and casing to solve the problems referred to above.
Utility model content
The utility model relates to a kind of network storage equipment and casing thereof, uses to control the elasticity between rotary cover plate and casing and promote the pivot joint quality between rotary cover plate and casing.
The network storage equipment disclosed in the utility model comprises a putting part part, a network storage assembly, a backboard part, a covering members and a conjunction.Network storage assembly is positioned at putting part part.Network storage assembly comprises at least one expansion card.Backboard part is removably located at putting part part.Backboard part comprises a body and an annular protrusion.Body has surface and an installing port.Installing port is positioned at surface, and corresponding expansion card.Annular protrusion has a relative linkage section and a convex section.Linkage section is connected in body.And convex section protrudes from surface.Annular protrusion has a perforation.Covering members has a pivoted hole and around an articulated section of pivoted hole.Pivoted hole is hubbed at annular protrusion and has and cover that one of installing port covers position and installing port is revealed in an outer open site.Conjunction comprises one first limiting section, a convergence part and one second limiting section.The first limiting section and the second limiting section are connected in respectively the relative both sides of convergence part.The first limiting section and the second limiting section have respectively one first confined planes and one second confined planes.Convergence part is through perforation, and the first confined planes and the second confined planes are resisted against respectively convex section and the linkage section of annular protrusion.Annular protrusion protrudes the thickness that surperficial height is more than or equal to articulated section, so that the spacing between the first confined planes and surface is more than or equal to the thickness of articulated section.
The utility model also discloses a kind of network storage equipment, and this network storage equipment comprises: a putting part part, one network storage assembly, this network storage assembly is positioned at this putting part part, and this network storage assembly comprises at least one expansion card, one backboard part, this backboard part is removably located at this putting part part, this backboard part comprises a body and an annular protrusion, this body has surface and an installing port, and this installing port is positioned at this surface, and to should expansion card, this annular protrusion has a relative linkage section and a convex section, this linkage section is connected in this body, and this convex section protrudes from this surface, and this annular protrusion has a perforation, one covering members, this covering members has a pivoted hole and around an articulated section of this pivoted hole, this pivoted hole is hubbed at this annular protrusion and has an open site that covers position and open this installing port of closing this installing port, an and conjunction, this conjunction comprises one first limiting section, one convergence part and one second limiting section, this first limiting section and this second limiting section are connected in respectively the relative both sides of this convergence part, this first limiting section and this second limiting section have respectively one first confined planes and one second confined planes, this convergence part is through this perforation, and this first confined planes and this second confined planes are resisted against respectively this convex section and this linkage section of this annular protrusion, this annular protrusion protrudes the thickness that this surperficial height is more than or equal to this articulated section, so that the spacing between this first confined planes and this surface is more than or equal to the thickness of this articulated section.
Casing disclosed in the utility model comprises a putting part part, a backboard part, a covering members and a conjunction.Backboard part is removably located at putting part part.Backboard part comprises a body and an annular protrusion.Body has surface and an installing port.Installing port is positioned at surface, and in order to a corresponding expansion card.Annular protrusion has a relative linkage section and a convex section.Linkage section is connected in body, and convex section protrudes from surface.Annular protrusion has a perforation.Covering members has a pivoted hole and around an articulated section of pivoted hole.Pivoted hole is hubbed at annular protrusion and has and cover that one of expansion clamping port covers position and expansion clamping port is revealed in an outer open site.Conjunction comprises one first limiting section, a convergence part and one second limiting section.The first limiting section and the second limiting section are connected in respectively the relative both sides of convergence part.The first limiting section and the second limiting section have respectively one first confined planes and one second confined planes.Convergence part is through perforation, and the first confined planes and the second confined planes are resisted against respectively convex section and the linkage section of annular protrusion.Annular protrusion protrudes the thickness that surperficial height is more than or equal to articulated section, so that the spacing between the first confined planes and surface is more than or equal to the thickness of articulated section.
The utility model also discloses a kind of casing, and this casing comprises: a putting part part, one backboard part, this backboard part is removably located at this putting part part, this backboard part comprises a body and an annular protrusion, this body has surface and an installing port, and this installing port is positioned at this surface, and in order to a corresponding expansion card, this annular protrusion has a relative linkage section and a convex section, this linkage section is connected in this body, and this convex section protrudes from this surface, and this annular protrusion has a perforation, one covering members, this covering members has a pivoted hole and around an articulated section of this pivoted hole, this pivoted hole is hubbed at this annular protrusion and has an open site that covers position and open this installing port of closing this installing port, an and conjunction, this conjunction comprises one first limiting section, one convergence part and one second limiting section, this first limiting section and this second limiting section are connected in respectively the relative both sides of this convergence part, this first limiting section and this second limiting section have respectively one first confined planes and one second confined planes, this convergence part is through this perforation, and this first confined planes and this second confined planes are resisted against respectively this convex section and this linkage section of this annular protrusion, this annular protrusion protrudes the thickness that this surperficial height is more than or equal to this articulated section, so that the spacing between this first confined planes and this surface is more than or equal to the thickness of this articulated section.
According to the disclosed network storage equipment of above-described embodiment and casing thereof, because the protrusion height of annular protrusion is greater than the thickness of articulated section, therefore can guarantee that the first confined planes and surperficial spacing are greater than the thickness of articulated section and avoid producing and interfering between covering members and the first limiting section or body, and then can promote the riveted quality between covering members and backboard part.
The explanation of the above explanation about the utility model content and following embodiment is in order to demonstration and explain principle of the present utility model, and provides the scope of claims of the present utility model further to explain.
Accompanying drawing explanation
Fig. 1 is the schematic perspective view of the disclosed network storage equipment of the first embodiment.
Fig. 2 is the cut-away section schematic diagram of Fig. 1.
Fig. 3 A is the schematic perspective view of the casing of Fig. 1.
Fig. 3 B is the schematic perspective view of the covering members of Fig. 1.
Fig. 4 is that the expansion card holder of Fig. 1 is installed in before backboard part, and covering members is positioned at the action schematic diagram of open site.
Fig. 5 is that the expansion card holder of Fig. 1 is installed in after backboard part, and covering members is positioned at the action schematic diagram of open site.
Fig. 6 is that the expansion card holder of Fig. 1 is installed in after backboard part, and covering members is positioned at the action schematic diagram that covers position.
Fig. 7 is the cut-away section schematic diagram of the casing of the disclosed network storage equipment of the second embodiment.
Primary clustering symbol description:
10 network storage equipment 230 first assembled portion
50 casing 231 first screws
60 network storage assembly 240 second assembled portion
62 mainboard 300 covering members
64 expansion card 310 first covering parts
64a expansion card holder 311 pivoted holes
64b expander board 312 articulated sections
100 putting part part 320 second covering parts
200 backboard part 321 second screws
210 body 400 conjunctions
211 surface 410 first limiting sections
212 installing port 411 first confined planes
213 opening 420 convergence parts
220 annular protrusion 430 second limiting sections
220a linkage section 431 second confined planes
220b convex section 500 locking parts
221 perforation
Embodiment
Refer to Fig. 1.Fig. 1 is the schematic perspective view of the disclosed network storage equipment of the first embodiment.
As shown in Figure 1, the network storage equipment 10 of the present embodiment comprises a casing 50 and a network storage assembly 60.Network storage assembly 60 is positioned at casing 50.For ease of explanation, it is example that the network storage assembly 60 of the present embodiment only be take a mainboard 62 and an expansion card 64, but not as limit.Expansion card 64 comprises an expansion card holder 64a and an expander board 64b, and expansion card holder 64a is installed in casing 50, and expander board 64b is electrically connected at mainboard 62.But not as limit, in other embodiments, network storage assembly 60 also can additionally comprise the expanding units such as a plurality of data storage devices (not illustrating).
Casing 50 comprises a putting part part 100, a backboard part 200, a covering members 300, a conjunction 400 and a locking part 500.
Network storage assembly 60 is located in putting part part 100.Backboard part 200 is removably located at putting part part 100, and hides network memory module 60.
Refer to Fig. 2 to Fig. 3 B.Fig. 2 is the cut-away section schematic diagram of Fig. 1.Fig. 3 A is the schematic perspective view of the casing of Fig. 1.Fig. 3 B is the schematic perspective view of the covering members of Fig. 1.Backboard part 200 is for example sheet metal, and comprises a body 210, an annular protrusion 220, one first assembled portion 230 and one second assembled portion 240 (as shown in Figure 3A).Body 210 has a surface 211.Surface 211 is network storage assembly 60 dorsad.
As shown in Figure 2, annular protrusion 220 has a relative linkage section 220a and a convex section 220b.Linkage section 220a is connected in body 210, and convex section 220b be connected in linkage section 220a and protrude from surface 211, annular protrusion 220 has a perforation 221.Above-mentioned annular protrusion 220 and perforation 221 thereof are for example drawn mould punching backboard part 200 and are formed by taking out.
As shown in Figure 3A, the first assembled portion 230 and the second assembled portion 240 are connected in body 210.Body 210 also has an installing port 212 and an opening 213.Installing port 212 and opening 213 are positioned at surface 211.The first assembled portion 230 is between installing port 212 and the second assembled portion 240, and opening 213 is between the first assembled portion 230 and the second assembled portion 240.In the present embodiment, the first assembled portion 230 is such as but not limited to assembled plate.The first assembled portion 230 is erected in body 210 and has one first screw 231.The second assembled portion 240 is such as but not limited to slot.One end of expansion card holder 64a is inserted in the second assembled portion 240, and the other end of expansion card holder 64a is installed in the first assembled portion 230 through installing port 212.In addition, opening 213 can manifest expansion card holder 64a and be positioned at the external connection slot (not illustrating) on expansion card holder 64a.The detailed installation procedure of expansion card 64, describes after please holding in the lump.
As shown in Figure 3 B, covering members 300 comprises one first connected covering part 310 and one second covering part 320.The first covering part 310 is parallel to body 210.The first covering part 310 has a pivoted hole 311 and around an articulated section 312 of pivoted hole 311.The second covering part 320 is erected in the first covering part 310, and has one second screw 321.The pivoted hole 311 of the first covering part 310 is hubbed at annular protrusion 220 and makes covering members 300 have a covering position (as shown in Figure 6) and an open site (as shown in Figure 4).The height D1 that the annular protrusion 220 of the present embodiment protrudes surface 211 is more than or equal to the thickness D2 of articulated section 312, and its effect is described after holding in the lump.In addition, the aperture D3 of the pivoted hole 311 of the present embodiment is more than or equal to the outer diameter D 4 of annular protrusion 220, to avoid covering members 300 to affect the pivotable effect of covering members 300 with 200 interferences of backboard part.
First covering part 310 of the present embodiment is perpendicular to the second covering part 320, but not as limit, in other embodiments, 320 of the first covering part 310 and the second covering parts also can keep an obtuse angle or an acute angle.
As shown in Figure 2, conjunction 400 is for example umbrella head blind rivet.Conjunction 400 can be riveting in covering members 300 on backboard part 200 by rivet gun.Specifically, a side of the conjunction after rivet gun effect 400 can extend out distortion and comprise one first limiting section 410, a convergence part 420 and one second limiting section 430.The first limiting section 410 and the second limiting section 430 are connected to the relative both sides of convergence part 420.The first limiting section 410 and the second limiting section 430 have respectively one first confined planes 411 and one second confined planes 431.Convergence part 420 is through perforation 221, and the first confined planes 411 and the second confined planes 431 are resisted against respectively convex section 220b and the linkage section 220a (as shown in Figure 2) of annular protrusion 220.In addition, the height D1 that protrudes surface 211 due to annular protrusion 220 is more than or equal to the thickness D2 of articulated section 312, therefore can make the first confined planes 411 and the spacing of surperficial 211 be more than or equal to the thickness D2 of articulated section 312.Thus, can control the elasticity of covering members 300 and 200 pivot joints of backboard part by the size design of the protrusion height D1 of annular protrusion 220 and the thickness D2 of articulated section 312, and then maintain the riveted quality of 200 of covering members 300 and backboard parts.
In addition, the coverage of articulated section 312 at least needs to be more than or equal to the coverage of the first limiting section 410 of conjunction 400, makes to be unlikely to produce between the first covering part 310 and the first limiting section 410 to interfere and can promote the riveted quality of 200 of covering members 300 and backboard parts.
As shown in Figure 1, locking part 500 is for example screw.Locking part 500 can be screwed together in the first screw 231 and the second screw 321, so that covering members 300 is positioned at, covers position.
Refer to Fig. 4 to Fig. 6.Fig. 4 is that the expansion card holder of Fig. 1 is installed in before backboard part, and covering members is positioned at the action schematic diagram of open site.Fig. 5 is that the expansion card holder of Fig. 1 is installed in after backboard part, and covering members is positioned at the action schematic diagram of open site.Fig. 6 is that the expansion card holder of Fig. 1 is installed in after backboard part, and covering members is positioned at the action schematic diagram that covers position.
As shown in Figure 4, can first covering members 300 be opened to open site, so that the first assembled portion 230 and installing port 212 are revealed in outer and are convenient to user expansion card holder 64a is installed on backboard part 200.
As shown in Figure 5, covering members 300 is maintained at open site.One end of expansion card holder 64a is inserted in the second assembled portion 240, and the other end of expansion card holder 64a is resisted against the first assembled portion 230 through installing port 212.
As shown in Figure 6, complete when expansion card holder 64a installing, user can be switched to covering members 300 and cover position (along the indicated direction of arrow a), reaches the effect of anti-electromagnetic leakage so that the first covering part 310 covers installing port 212.And the second covering part 320 is covered in the first assembled portion 230, so that the part of expansion card holder 64a is clipped between the second covering part 320 and the first assembled portion 230.In addition, then pass the first screw 231, expansion card holder 64a and the second screw 321 by locking part 500, so that covering members 300 is fixed on, cover position, and the installation exercise that completes expansion card 64.
It is example that the conjunction 400 of above-described embodiment be take umbrella head blind rivet, but not as limit, and in other embodiments, it is example that conjunction 400 also can be take the blind rivet of other kinds.Refer to Fig. 7.Fig. 7 is the cut-away section schematic diagram of the casing of the disclosed network storage equipment of the second embodiment.The present embodiment is similar to the embodiment of above-mentioned Fig. 1, therefore only describe for deviation.
The different part of embodiment of the present embodiment and above-mentioned Fig. 1 is, the conjunction 400 of the present embodiment be take pot nail as example.Pot nail struts one end head of pot nail by mould punching, makes conjunction 400 (pot nail) comprise connected first limiting section 410, convergence part 420 and second limiting section 430 the same as blind rivet.The first limiting section 410 and the second limiting section 430 are resisted against equally respectively the convex section 220b of annular protrusion 220 and linkage section 220a and keep the spacing on the first confined planes 411 and surface 211.
Should be noted, the quantity of the first assembled portion 230, the second assembled portion 240, installing port 212 and the opening 213 of the present embodiment is respectively one, for individual expansion card 64, arrange, but not as limit, in other embodiments, the quantity of the first assembled portion 230, the second assembled portion 240, installing port 212 and opening 213 can be also respectively a plurality of, for multiple expansion cards 64, arrange, and the size of covering members 300 also can corresponding expansion card 64 quantity strengthen, so that covering members 300 is positioned at while covering position, can fix multiple expansion cards 64 simultaneously.
In addition, the casing 50 of above-described embodiment is not limited to be applied to the network storage equipment 10, and in other embodiments, the casing 50 of above-described embodiment also can be applicable to server or the main frame of covering members 300 demands.
According to the disclosed network storage equipment of above-described embodiment and casing thereof, because the protrusion height of annular protrusion is greater than the thickness of articulated section, therefore can guarantee that the first confined planes and surperficial spacing are greater than the thickness of articulated section and avoid producing and interfering between covering members and the first limiting section or body, and then can promote the riveted quality between covering members and backboard part.
Although embodiment of the present utility model openly as mentioned above; yet not in order to limit the utility model; any those skilled in the art; in the situation that not departing from spirit and scope of the present utility model; according to the shape described in the scope of the utility model claims, structure, feature and spirit, should do a little change, therefore scope of patent protection of the present utility model must be as the criterion depending on the scope person of defining of this instructions appending claims.

Claims (14)

1. a network storage equipment, this network storage equipment comprises:
One putting part part;
One network storage assembly, this network storage assembly is positioned at this putting part part, and this network storage assembly comprises at least one expansion card;
One backboard part, this backboard part is removably located at this putting part part, it is characterized in that, this backboard part comprises a body and an annular protrusion, and this body has surface and an installing port, this installing port is positioned at this surface, and to should expansion card, this annular protrusion has a relative linkage section and a convex section, and this linkage section is connected in this body, and this convex section protrudes from this surface, this annular protrusion has a perforation;
One covering members, this covering members has a pivoted hole and around an articulated section of this pivoted hole, this pivoted hole is hubbed at this annular protrusion and has an open site that covers position and open this installing port of closing this installing port; And
One conjunction, this conjunction comprises one first limiting section, one convergence part and one second limiting section, this first limiting section and this second limiting section are connected in respectively the relative both sides of this convergence part, this first limiting section and this second limiting section have respectively one first confined planes and one second confined planes, this convergence part is through this perforation, and this first confined planes and this second confined planes are resisted against respectively this convex section and this linkage section of this annular protrusion, this annular protrusion protrudes the thickness that this surperficial height is more than or equal to this articulated section, so that the spacing between this first confined planes and this surface is more than or equal to the thickness of this articulated section.
2. the network storage equipment as claimed in claim 1, is characterized in that, this conjunction is blind rivet or pot nail.
3. the network storage equipment as claimed in claim 1, it is characterized in that, this backboard part also comprises one first assembled portion and one second assembled portion, this first assembled portion is between this second assembled portion and this installing port, this expansion card comprises an expansion card holder and an expander board, this expander board is located at this expansion card holder, and the opposite end of this expansion card holder is installed in respectively this first assembled portion and this second assembled portion.
4. the network storage equipment as claimed in claim 3, is characterized in that, this body also has an opening, and this opening is between this first assembled portion and this second assembled portion, and this opening exposes this expansion card holder.
5. the network storage equipment as claimed in claim 3, it is characterized in that, this covering members comprises one first connected covering part and one second covering part, this articulated section and this pivoted hole are positioned at this first covering part, when this covering members is positioned at this covering position, this first covering part covers this installing port, and this second covering part covers this first assembled portion, when this covering members is positioned at this open position, this first covering part departs from this installing port and manifests this installing port, and this second covering part departs from this first assembled portion.
6. the network storage equipment as claimed in claim 5, it is characterized in that, this network storage equipment also comprises a locking part, this first assembled portion also has one first screw, this second covering part also has one second screw, this locking part is screwed together in this first screw and this second screw, so that this covering members is positioned at this covering position.
7. the network storage equipment as claimed in claim 1, is characterized in that, the aperture of this pivoted hole is more than or equal to the external diameter of this annular protrusion.
8. a casing, this casing comprises:
One putting part part;
One backboard part, this backboard part is removably located at this putting part part, it is characterized in that, this backboard part comprises a body and an annular protrusion, and this body has surface and an installing port, this installing port is positioned at this surface, and in order to a corresponding expansion card, this annular protrusion has a relative linkage section and a convex section, and this linkage section is connected in this body, and this convex section protrudes from this surface, this annular protrusion has a perforation;
One covering members, this covering members has a pivoted hole and around an articulated section of this pivoted hole, this pivoted hole is hubbed at this annular protrusion and has an open site that covers position and open this installing port of closing this installing port; And
One conjunction, this conjunction comprises one first limiting section, one convergence part and one second limiting section, this first limiting section and this second limiting section are connected in respectively the relative both sides of this convergence part, this first limiting section and this second limiting section have respectively one first confined planes and one second confined planes, this convergence part is through this perforation, and this first confined planes and this second confined planes are resisted against respectively this convex section and this linkage section of this annular protrusion, this annular protrusion protrudes the thickness that this surperficial height is more than or equal to this articulated section, so that the spacing between this first confined planes and this surface is more than or equal to the thickness of this articulated section.
9. casing as claimed in claim 8, is characterized in that, this conjunction is blind rivet or pot nail.
10. casing as claimed in claim 8, is characterized in that, this backboard part also comprises one first assembled portion and one second assembled portion, and this first assembled portion is between this second assembled portion and this installing port.
11. casings as claimed in claim 10, is characterized in that, this body also has an opening, and this opening is between this first assembled portion and this second assembled portion.
12. casings as claimed in claim 10, it is characterized in that, this covering members comprises one first connected covering part and one second covering part, this articulated section and this pivoted hole are positioned at this first covering part, when this covering members is positioned at this covering position, this first covering part covers this installing port, and this second covering part covers this first assembled portion, when this covering members is positioned at this open position, this first covering part departs from this installing port and manifests this installing port, and this second covering part departs from this first assembled portion.
13. casings as claimed in claim 12, it is characterized in that, this casing also comprises a locking part, this first assembled portion also has one first screw, this second covering part also has one second screw, this locking part is screwed together in this first screw and this second screw, so that this covering members is positioned at this covering position.
14. casings as claimed in claim 8, is characterized in that, the aperture of this pivoted hole is more than or equal to the external diameter of this annular protrusion.
CN201420282379.5U 2014-05-29 2014-05-29 The network storage equipment and casing Active CN203930626U (en)

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Application Number Priority Date Filing Date Title
CN201420282379.5U CN203930626U (en) 2014-05-29 2014-05-29 The network storage equipment and casing
TW103210719U TWM490595U (en) 2014-05-29 2014-06-18 Network storage device and chassis thereof

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Application Number Priority Date Filing Date Title
CN201420282379.5U CN203930626U (en) 2014-05-29 2014-05-29 The network storage equipment and casing

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CN203930626U true CN203930626U (en) 2014-11-05

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TWI558298B (en) * 2014-12-09 2016-11-11 英業達股份有限公司 Sever
CN112460135A (en) * 2019-09-06 2021-03-09 英业达科技有限公司 Pivot structure

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