CN2357398Y - Equipment for storing optical correlative storage medium - Google Patents

Equipment for storing optical correlative storage medium Download PDF

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Publication number
CN2357398Y
CN2357398Y CN 98219702 CN98219702U CN2357398Y CN 2357398 Y CN2357398 Y CN 2357398Y CN 98219702 CN98219702 CN 98219702 CN 98219702 U CN98219702 U CN 98219702U CN 2357398 Y CN2357398 Y CN 2357398Y
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CN
China
Prior art keywords
axle housing
post
hole
jack
shell fragment
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 98219702
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Chinese (zh)
Inventor
王志铭
施崇晖
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Institute for Information Industry
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Institute for Information Industry
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Publication date
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Priority to CN 98219702 priority Critical patent/CN2357398Y/en
Application granted granted Critical
Publication of CN2357398Y publication Critical patent/CN2357398Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model mainly provides a storing device capable of storing a large quantity of optical correlative storage media, such as optical discs. Particular optical correlative storage media, such as optical discs, can be searched by utilizing the correlation of a shaft column arranged in the storage device and a shaft casing. The rapid search can be implemented firstly. Then, the search of each piece can be implemented until required optical discs are obtained.

Description

The equipment that stores of optical correlation Storage Media
The utility model refers in particular to the required rough position of optical correlation Storage Media such as CD of energy fast searching about a kind of structure of storing of optical correlation Storage Media, and the equipment that stores of the optical correlation Storage Media that can choose one by one.
When storing CD at present, normally utilize a kind of traditional optical disk storage box to store, and the structure of this optical disk storage box is by two loam cakes that can articulate mutually and lower cover, when covering, the space that its inside is defined is used for storing CD.Yet this kind optical disk storage box is when storing CD, because the restriction of the space size that defines when being subjected to being covered by loam cake and lower cover, its inside only can store individual CD, so when storing many optical disk storage boxes, usually can take too much space.Because these misgivings, thus a kind of storage box that can store many CDs simultaneously appears on the market, this kind storage box be with two loam cakes that can articulate mutually and lower cover when covering each other, increase the space that its inside is defined, thereby increase the quantity of storing CD.Or between loam cake and lower cover, additionally be provided with one mid-, and several protrusions that CD is fixing additionally are set in these relative both sides of mid-, and reach the purpose that increases optical disk storage quantity.In addition, also have a kind of can deposit many CDs simultaneously a kind of to deposit thinly on the market, a plurality of garment bags are arranged, and each can deposit a CD.Yet, no matter be above-mentioned first kind of storage box or second kind of storage box of mentioning, all suffer from identical problem therebetween, that is exactly equal huge CD of stored number simultaneously, the third above-mentioned optic disc storage is thin then to be after the user has deposited a large amount of CDs, when user's desire is searched a certain specific CD, must thumb required CD page by page.Therefore, approached as can be known by above-mentioned various optical disk storage boxes or optical disk storage, these traditional storing modes are not to do a large amount of storages, can't search its needed CD fast for the user exactly.
Therefore the main purpose of the utility model is providing a kind of equipment that stores of optical correlation Storage Media, utilize the optical correlation Storage Media of its volume inside storage such as CD, simultaneously, when searching specific optical correlation Storage Media (hereinafter with CD representative explanation), then utilize its inner set searched structure to retrieve, to satisfy a large amount of demands of retrieval fast that reach that store.
Another purpose of the utility model is providing a kind of stage search equipment, and the work of can mode piecemeal retrieving all can be reached its purpose when a large amount of screening CDs of user or a small amount of screening CD fast.
A kind of optical correlation Storage Media that provides according to the utility model stores equipment, and it comprises: the cylindrical shell of a hollow, and the one end has an opening, other end sealing; One lid is with the opening of separable mode cover at described cylindrical shell; One columniform axle housing, bottom surface with separable mode and described cylindrical shell engages, and second hole of first hole of a pair of opposition, a pair of opposition, a pair of one end thereof are being set at interval on the inwall of described axle housing are being retracted within describedly to first shell fragment in first hole, and a pair of one end thereof protrudes out described second shell fragment in second hole; A jack-post is contained in the inside of described axle housing and can be free to slide, and the one end has one first bulge loop, but described first shell fragment of contact, and have one second bulge loop, described second bulge loop be arranged to described first bulge loop at a distance of a segment distance, but and described second shell fragment of contact; A turn is enclosed within on the described jack-post, and one end and described jack-post are mutually permanently connected, and its other end then is resisted against a diaphragm plate that is arranged on described axle housing inside; One is arranged on the described jack-post in order to push the button of described jack-post, on the fixedly connected and described button of an end of described turn.
Fig. 1 is stereoscopic figure of the present utility model;
Fig. 2 is a cut-away view of the present utility model;
Fig. 3 is a jack-post micromotion synoptic diagram of the present utility model;
Fig. 4 be the utility model jack-post with synoptic diagram after cylindrical shell separates;
Fig. 5 is the longitudinal diagram of jack-post inner structure of the present utility model;
Fig. 5 A figure is the schematic appearance corresponding to Fig. 5;
Fig. 6 is a jack-post action synoptic diagram of the present utility model;
Fig. 7 is a jack-post action synoptic diagram of the present utility model;
Fig. 7 A is the schematic appearance corresponding to Fig. 7;
Fig. 8-1 is not for to be subjected to the synoptic diagram that any external force is done the time spent corresponding to jack-post among Fig. 5;
Action synoptic diagram when the action that Fig. 8-2 is subjected to button for jack-post in the corresponding diagram 6 down moves;
Fig. 8-3 is the synoptic diagram when jack-post is not subjected to any acting force among Fig. 5;
Fig. 8-4 is corresponding to situation same among Fig. 8-2; And
Fig. 8-5 is for corresponding to the situation among Fig. 8-1.
Please referring to Fig. 1 in the accompanying drawing, 2 and 3, wherein be depicted as the cylindrical optical disk storage equipment that is essentially a hollow of the present utility model, it comprises: the cylindrical shell 10 that can store many CDs, one in separable mode the lid 100 of cover opening (indicate) above this cylindrical shell 10, and jack-post 20 (see figure 5)s that are connected with this cylindrical shell in separable mode.
One end of this jack-post 20 has a reciprocating button 21 of an end that can make this jack-post 20, then there is a cover the axle housing 22 of this jack-post 20 in the outside of this jack-post 20, then is provided with a joint portion 23 (as shown in Figure 4) at axle housing 22 and these cylindrical shell 10 contacted bottoms.
Please referring to Fig. 3 and Fig. 4, make this axle housing 22 and this jack-post 20 break away from the operational circumstances of this cylindrical shell 10 shown in it, after soon axle housing 22 will rotate an angle simultaneously together with jack-post 20, again axle housing 22 is upwards mentioned from this cylindrical shell 10 together with jack-post 20 simultaneously, just it can be extracted from this cylindrical shell 10, thereby expose the joint portion 23 that is arranged on axle housing 22 bottoms and be arranged on cylindrical shell 10 bottom surfaces and corresponding to the combined hole 11 of these joint portion 23 shapes.By the shape shown in the figure as can be known, when this joint portion 23 of this axle housing 22 penetrates the combined hole 11 of this cylindrical shell 103 and when mutually combining, can make the bottom surface of this cylindrical shell 10 still present a plane, so, this cylindrical shell 10 can stably stand on the surface level.
See also Fig. 5, be depicted as a turn 24 round these jack-post 20 outsides, one end of turn 24 is fixedly connected on the jack-post 20, its other end then is resisted against the diaphragm plate 221 that is arranged on these axle housing 22 inside, so, when forcing this jack-post 20 to move down at pressing button 21, turn 24 can provide a screen resilience on this jack-post 20, so that keep this jack-post 20 in a fixing position by the bulge loop and the spring leaf of description.Then be provided with first bulge loop 201 and second bulge loop 202 that is separated from each other in the other end of this jack-post 20, and on the inwall of this axle housing 22, be close to first bulge loop, 201 places and be provided with first shell fragment 222 that a pair of opposition is provided with, and a pair of second shell fragment 223 that is being close to second bulge loop 202 and opposition setting.First shell fragment 222 and first bulge loop 201 are Elastic Contact, and an end of this spring leaf 222 can pass via being arranged on formed one first hole 224 on these axle housing 22 walls, second shell fragment 223 then is Elastic Contact with second bulge loop 202, and an end of this second shell fragment 223 can pass via being arranged on formed one second hole 225 on axle housing 22 walls.So, when jack-post 20 moves down because of pushing of button 21, end of this of this first shell fragment 222 can be subjected to the contact of first bulge loop 201 and be passed by first hole 224, simultaneously, end of this of this second shell fragment 223 convexedly stretches in outside second hole 225 because being subjected to the contact of second bulge loop 202,223 inside that can be retracted into this axle housing 22 because of second the moving down again of bulge loop 202 of second shell fragment.
By above-mentioned discussion as can be known, first shell fragment 222 is under the situation that is not subjected to any external force effect, to the Nell wall direction indentation of leaving this axle housing 22, under the situation that is not subjected to any external force effect, then stretch into this second hole 225 and this second spring leaf 223 stretched out towards the inwall direction of this axle housing 22 by end of this of this second spring leaf 223 owing to be subjected to the roof pressure of this second bulge loop 202 for second bullet 223.
See also Fig. 5, Fig. 5 A, Fig. 6, Fig. 6 A and Fig. 8-1, for making the equipment that stores of the present utility model can store CD, the external diameter of this axle housing 22 must be less than the diameter of perforation in the middle of the CD, so, this axle housing 22 just can slide in the perforation of CD freely, and CD just can pass the perforation of its inside and many disk cover can be stacked it on this axle housing 22 because of this axle housing 22.Be placed on the inside of cylindrical shell 10 of the present utility model when stacked CD, and when this axle housing 22 and this jack-post 20 that is arranged on these axle housing 22 inside are arranged in the perforation of CD, the user can be with pushing downwards that button 21 is exerted oneself, the bulge loop 201 of winning is broken away from and first shell fragment, the 222 mutual positions of pulling of supporting, and also make second bulge loop 202 break away from and second shell fragment, the 223 mutual positions of pulling of supporting, therefore first shell fragment 222 can not be subjected to the external force effect of any contact because of it, and be retracted to the inside of axle housing 22, and second shell fragment 223 is because also be retracted to the inside (as shown in Figure 7) of axle housing 22, so, the user can break away under the situation of this cylindrical shell 10 at axle housing, the CD that allowing does not earlier need to inspect falls and is retained in cylindrical shell 10 inside, a certain when containing particular optical disk regional when arriving, the user can loosen button 21 and make win shell fragment 222 and second shell fragment 223 be returned to original state, and the CD in a certain zone then is lifted because convexedly stretch in this second 223 of axle housing 22 outer walls when normality.So that carry out detailed retrieval, so can save unnecessary retrieval time.
When this axle housing 22 is together mentioned together with this jack-post 20, the user can gently press this button 21, force first shell fragment 222 to convexedly stretch in the outside of axle housing 22 by 224 places, first hole, second shell fragment 223 then is retracted to the inside of this axle housing 22 by 225 places, second hole, originally the CD that is supported by second shell fragment 223 was when second shell fragment 223 was retracted to the inside of this axle housing 22, this CD can fall to the inside of this cylindrical shell 10, and because the gap that is provided with between the position in first hole 224 and second hole 225 is the thickness of a CD just, therefore can allow a CD fall to the inside of this cylindrical shell 10 just when folding and unfolding first shell fragment 222 and second shell fragment 223, the user then according to this mode retrieve needed CD one by one, this situation can show therebetween action by the synoptic diagram of Fig. 8-2 figure.
Behind first CD of retrieval, the user can decontrol button 21, so can make first shell fragment be recovered to the inside of axle housing 22, second shell fragment 223 then stretches out in the outside of this axle housing 22, action by this kind replacement, the CD that originally was raised then falls another Zhang Guangpan sustainably and retrieves for the user, as Fig. 8-3 to being the signal situation of exercises shown in Fig. 8-5.
By above-mentioned each step of discussing, the utility model device of really having overcome conventional art can't store the predicament of a large amount of CDs as can be known, thereby embodies its progressive, and it also has following every advantage simultaneously:
But 1. mass storage CD, because the space of inner barrel can store a large amount of CDs, so And the CD of similar properties can be placed on an inner barrel.
2. fast searching does not need to look through one by one CD. Because with button energetically to pressing down The time, can force the whole retraction of first shell fragment and second shell fragment to the inside of axle housing, so that Screen out unwanted CD in fast.
3. can retrieve needed CD slightly one by one because when pressing button, first shell fragment and second shell fragment alternately between, have a CD and fall to the inside of cylindrical shell, thereby reach the purpose of retrieval one by one.
The utility model is not defined as storing of CD, and any other optical correlation Storage Media all can use this kind to store equipment to store.

Claims (3)

1. an optical correlation Storage Media stores equipment, comprising:
The cylindrical shell of one hollow (10), the one end has an opening, other end sealing;
One lid (100) is with the opening of separable mode cover in described cylindrical shell (10);
One columniform axle housing (22), bottom surface with separable mode and described cylindrical shell engages, and second hole (225) of first hole (224) of a pair of opposition, a pair of opposition, a pair of one end thereof are being set at interval on the inwall of described axle housing are being retracted within describedly to first shell fragment (222) in first hole (224), and a pair of one end thereof protrudes out described second shell fragment (223) in second hole (225);
A jack-post (20), be contained in the inside of described axle housing (22) and can be free to slide, the one end has one first bulge loop (201), but described first shell fragment of contact (222), and has one second bulge loop (202), described second protruding (202) rings be arranged to described first bulge loop (201) at a distance of a segment distance, but and described second shell fragment of contact (222);
A turn (24) is enclosed within on the described jack-post (20), and one end and described jack-post (20) are mutually permanently connected, and its other end then is resisted against and is arranged on the inner diaphragm plate (221) of described axle housing (22);
Button (21) in order to push described jack-post is arranged on the described jack-post (20), on the fixedly connected and described button of an end of described turn (24) (21).
2. the optical correlation Storage Media according to claim 1 stores equipment, it is characterized in that, a combined hole (11) is set in the bottom surface of described cylindrical shell, and a joint portion (23) that can be placed in described combined hole (11) inside is set in an end of described axle housing (20).
3. optics phase and the Storage Media according to claim 1 stores equipment, it is characterized in that the distance between described first hole (224) and described second hole (225) equals the thickness of a slice CD just.
CN 98219702 1998-08-15 1998-08-15 Equipment for storing optical correlative storage medium Expired - Fee Related CN2357398Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 98219702 CN2357398Y (en) 1998-08-15 1998-08-15 Equipment for storing optical correlative storage medium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 98219702 CN2357398Y (en) 1998-08-15 1998-08-15 Equipment for storing optical correlative storage medium

Publications (1)

Publication Number Publication Date
CN2357398Y true CN2357398Y (en) 2000-01-05

Family

ID=33971687

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 98219702 Expired - Fee Related CN2357398Y (en) 1998-08-15 1998-08-15 Equipment for storing optical correlative storage medium

Country Status (1)

Country Link
CN (1) CN2357398Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101582271B (en) * 2008-05-15 2010-09-15 达信科技股份有限公司 Disc receiving device
CN107591168A (en) * 2017-07-31 2018-01-16 李露青 A kind of CD quick fetching device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101582271B (en) * 2008-05-15 2010-09-15 达信科技股份有限公司 Disc receiving device
CN107591168A (en) * 2017-07-31 2018-01-16 李露青 A kind of CD quick fetching device
CN107591168B (en) * 2017-07-31 2020-06-12 李露青 Device for quickly taking and placing optical disk

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GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee