CN204196986U - There is the rotary bracket of multiple translation interface - Google Patents

There is the rotary bracket of multiple translation interface Download PDF

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Publication number
CN204196986U
CN204196986U CN201420568160.1U CN201420568160U CN204196986U CN 204196986 U CN204196986 U CN 204196986U CN 201420568160 U CN201420568160 U CN 201420568160U CN 204196986 U CN204196986 U CN 204196986U
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CN
China
Prior art keywords
locking
link span
abase frame
lockout mechanism
axle
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.)
Withdrawn - After Issue
Application number
CN201420568160.1U
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Chinese (zh)
Inventor
胡杰
杨尊坤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Goodbaby Child Products Co Ltd
Original Assignee
Goodbaby Child Products Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Goodbaby Child Products Co Ltd filed Critical Goodbaby Child Products Co Ltd
Priority to CN201420568160.1U priority Critical patent/CN204196986U/en
Application granted granted Critical
Publication of CN204196986U publication Critical patent/CN204196986U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of rotary bracket with multiple translation interface, comprise the abase frame with fixed interface, the link span be connected with described abase frame, described link span have at least two different each other translation interfaces, described link span can relatively described abase frame be connected with described abase frame rotatably, the lockout mechanism for both being locked is provided with between described abase frame and described link span, described lockout mechanism has multiple latched position, user is connected on corresponding juvenile product by the fixed interface in abase frame in use, the translation interface on link span is selected again according to the version of interface on juvenile product to be connected, and the translation interface selected is adjusted to control position, so just, the different juvenile product graftings of distinct interface can will be had on another juvenile product, as will the automobile seat for child of distinct interface be had, baby seat pocket grafting is on the vehicle frame of same children trolley, greatly increase the commonality of juvenile product like this.

Description

There is the rotary bracket of multiple translation interface
Technical field
the utility model relates to a kind of rotary bracket with multiple translation interface.
Background technology
some juvenile products need by bracket grafting to other the enterprising enforcement use of juvenile product in the market, as baby seat pocket, its can grafting in stroller frame, on the product such as hand basket, automobile seat for child needs grafting to be used to the seat of automobile.
but, in prior art, for product to be grafted, on it, the interface of graft block has number of different types usually, if the interface on juvenile product is too single, then can only be applicable to have on the product of the special interface corresponding with this interface, the many occasions so then limiting juvenile product use.
Summary of the invention
the purpose of this utility model is the shortcoming overcoming prior art, provides a kind of rotary bracket with multiple translation interface.
for achieving the above object, the technical solution adopted in the utility model is: a kind of rotary bracket with multiple translation interface, described rotary bracket comprises the abase frame with fixed interface, the link span be connected with described abase frame, described link span have at least two different each other translation interfaces, described link span can relatively described abase frame be connected with described abase frame rotatably, the lockout mechanism for both being locked is provided with between described abase frame and described link span, described lockout mechanism has multiple latched position, when described lockout mechanism is in the lock state, described link span and described abase frame interfix, described in one of them on described link span, translation interface is for docking connection, when described lockout mechanism is in released state, described link span can rotate to adjust latched position relative to described abase frame and is used for docking connection by other described translation interface.
preferably, rotated by the first axle between described abase frame with described link span and be connected, described lockout mechanism comprises lock pin on parts being located in described abase frame and these two parts of described link span, is opened on another parts around multiple locked grooves circumferentially spaced apart that described first axle is centre of gration, when described lockout mechanism locking, described lock pin inserts in locked groove described in one of them and described abase frame and described link span is interfixed; When described lockout mechanism unlocks, described lock pin departs from described locked groove, and described link span rotates around described first axle relative to described abase frame.
further, described lock pin can along self being located on described link span with axial motion, and multiple described locked groove is opened in described abase frame.
further, described lock pin comprises axle portion, is positioned at described axle portion one end for matching the locking termination making described lockout mechanism lock with described locked groove, the diameter of described locking termination is greater than the diameter of described axle portion, described link span offers can for described axle portion along the through hole self passed axially slidably, also be provided with the elastic component for providing described lock pin movement flexible restoring force vertically between described link span and described locking termination, the end that described axle portion passes described through hole has been permanently connected unlock button.
as a kind of concrete embodiment, described elastic component is be set in the spring in described axle portion, and the two ends of described spring are kept out on described link span respectively with on described locking termination.
as a kind of concrete embodiment, the axial line of described lock pin and the axial line of described first axle arranged in parallel.
preferably, rotated by the second axle between described abase frame with described link span and be connected, described lockout mechanism comprises the first locking wheel be fixedly arranged in described abase frame, set firmly and the second locking wheel on described link span, described first locking wheel, side axle head on parts in these two parts of described second locking wheel is provided with the locking teeth of multiple protrusion, the side axle head of another parts offers multiple lock slots inserted accordingly for described locking teeth, when described lockout mechanism locking, described first locking wheel is meshed with described second locking wheel, multiple described locking teeth inserts in multiple described lock slots accordingly, when described lockout mechanism unlocks, the relatively described abase frame of described link span is along the axial motion of described second axle, and all described locking teeths depart from all described lock slots and described first locking wheel departed from described second locking wheel engage.
further, the side axle head of described first locking wheel is provided with multiple first locking teeth, the along the circumferential direction uniform intervals distribution of multiple described first locking teeth, the first lock slots is formed between adjacent two described first locking teeths, axle head adjacent with described first locking wheel on described second locking wheel is provided with multiple second lock slots, the along the circumferential direction uniform intervals distribution of multiple described second lock slots, the second locking teeth is formed between adjacent two described second lock slots, when described lockout mechanism locking, all described first locking teeths insert in multiple described second lock slots accordingly, all described second locking teeths insert in multiple described first lock slots accordingly.
further, described first locking teeth, the equal indentation of described second locking teeth.
further, described second axle comprises bar portion and limiting section, described abase frame offers the first through hole, described link span offers the second through hole, also be provided with the elastic component of the elastic-restoring force that can provide along described second axle axis between described link span and described abase frame, described bar portion is also provided with the locking wrench with cam part through on the end after described first through hole, described second through hole vertically successively.
due to the utilization of technique scheme, the utility model compared with prior art has following advantages: the rotary bracket with multiple translation interface of the present utility model, wherein the abase frame with fixed interface is coupled together with the link span with multiple translation interface different each other, user in use, be connected on corresponding juvenile product by the fixed interface in abase frame, the translation interface on link span is selected again according to the version of interface on juvenile product to be connected, and the translation interface selected is adjusted to control position, like this, just the different juvenile product graftings of distinct interface will can be had on another juvenile product, as will the automobile seat for child of distinct interface be had, baby seat pocket grafting is on the vehicle frame of same children trolley, greatly increase the commonality of juvenile product like this.
Accompanying drawing explanation
accompanying drawing 1 is the block diagram 1 of the rotary bracket of embodiment 1;
accompanying drawing 2 is the front view of the rotary bracket of embodiment 1;
accompanying drawing 3 is the STRUCTURE DECOMPOSITION schematic diagram of the rotary bracket of embodiment 1;
accompanying drawing 4 is the block diagram 2 of the rotary bracket of embodiment 1;
accompanying drawing 5 is the back view of the rotary bracket of embodiment 1;
accompanying drawing 6 is the lateral plan under the rotary bracket of embodiment 1 is in the lock state;
accompanying drawing 7 is along A-A in accompanying drawing 6 to sectional structure schematic diagram;
accompanying drawing 8 is the lateral plan 2 under the rotary bracket of embodiment 1 is in released state;
accompanying drawing 9 is along B-B in accompanying drawing 8 to sectional structure schematic diagram;
accompanying drawing 10 is the front view after the rotary bracket dislocation of embodiment 1;
accompanying drawing 11 is the lateral plan after the rotary bracket dislocation of embodiment 1;
accompanying drawing 12 is the front view of the rotary bracket of embodiment 2;
accompanying drawing 13 is the STRUCTURE DECOMPOSITION schematic diagram of the rotary bracket of embodiment 2;
accompanying drawing 14 is the back view under the rotary bracket of embodiment 2 is in the lock state;
accompanying drawing 15 is the lateral plan under the rotary bracket of embodiment 2 is in the lock state;
accompanying drawing 16 is along C-C in accompanying drawing 14 to sectional structure enlarged diagram;
accompanying drawing 17 is the back view under the rotary bracket of embodiment 2 is in released state;
accompanying drawing 18 is the lateral plan under the rotary bracket of embodiment 2 is in released state;
accompanying drawing 19 is along D-D in accompanying drawing 17 to sectional structure enlarged diagram;
accompanying drawing 20 is the front view after the rotary bracket dislocation of embodiment 2;
accompanying drawing 21 is the lateral plan after the rotary bracket dislocation of embodiment 2;
wherein:
1, abase frame; 11, fixed interface; 2, link span; 21, the first translation interface; 22, the second translation interface; 3, the first axle; 4, the first lockout mechanism; 41, lock pin; 41a, axle portion; 41b, locking termination; 42, unlock button; 43, elastic component (spring); 44, locked groove; 45, screw;
5, the second axle; 51, bar portion; 52, limiting section; 53, pin-and-hole; 6, the second lockout mechanism; 61, the first locking wheel; 62, the second locking wheel; 63, elastic component (spring); 64, rotating shaft; 65, locking wrench; 651, cam part; 66, bay cover.
Detailed description of the invention
below in conjunction with the drawings and specific embodiments, the technical solution of the utility model is further elaborated.
embodiment 1
see the rotary bracket shown in Fig. 1 to Figure 11, this rotary bracket comprises abase frame 1 and link span 2, abase frame 1 has fixed interface 11, link span 2 have two different each other translation interfaces, be respectively the first translation interface 21 and the second translation interface 22, link span 2 can be connected with abase frame 1 by opposite base frame 1 rotatably, between the two by relative rotary motion, thus switches between the first translation interface 21 and the second translation interface 22 according to the needs that conversion connects.The lockout mechanism for both being locked is provided with between abase frame 1 and link span 2, this lockout mechanism has two latched positions, these two latched positions are corresponding with the control position of two translation interfaces respectively, when lockout mechanism locks, lockout mechanism is in one of them latched position, link span 2 and abase frame 1 interfix, first translation interface 21 is for changing connection, and when lockout mechanism unlocks, link span 2 can rotate and convert latched position by opposite base frame 1, when lockout mechanism locks under another latched position, second translation interface 22 can be used for conversion and connects.
shown in accompanying drawing 1 to 11, in the present embodiment, rotated by the first axle 3 between link span 2 with abase frame 1 and be connected, locked by the first lockout mechanism 4 between link span 2 and abase frame 1.
first lockout mechanism 4 comprises is located at abase frame 1 and lock pin 41, two locked grooves 44 be opened on another parts on parts in these two parts of link span 2, these two locked groove 44 compartment of terrains are distributed in the first axle 3, and to be centre of gration circumferentially same, and two locked grooves 44 correspond respectively to two variable locking positions of the first lockout mechanism.Lock pin 41 can insert in locked groove 44, when lock pin 41 inserts in locked groove 44, under namely the first lockout mechanism 4 is locked in corresponding latched position; When lock pin 41 departs from locked groove 44, the first lockout mechanism 4 unlocks, and link span 2 can rotate by opposite base frame 1.
in the present embodiment, the axial line of lock pin 41 and the axial line of the first axle 3 are parallel to each other, and lock pin 41 can along self being located at axial motion on link span 2; Locked groove 44 has two, is all located in abase frame 1.Lock pin 41 comprises axle portion 41a, be positioned at axle portion 41a one end for matching the locking termination 41b making the first lockout mechanism 4 lock with locked groove 44, the diameter of this locking termination 41b is greater than the diameter of axle portion 41a, link span 2 offers can for axle portion 41a along the through hole self passed axially slidably, also be provided with for providing lock pin 41 along the elastic component 43 of the elastic-restoring force of self axial motion between link span 2 and locking termination 41b, what elastic component 43 adopted herein is spring, this spring housing is located on axle portion 41a, its two ends are kept out in the side of link span 2 respectively with on locking termination 41b.Lock pin 41 upper shaft lever portion 41b passes the through hole on link span 2, the end of through hole is fixedly provided with unlock button 42, and this unlock button 42 is fixedly attached on lock pin 41 by screw 45.
see shown in Fig. 4 to Fig. 7, the locking termination 41b of lock pin 41 is stably plugged in one of them locked groove 44 under the elastic acting force of spring 43, and the first lockout mechanism 4 is in the lock state, and now the first translation interface 21 is for changing connection.
when the second translation interface 22 is used for changing connection by needs, operator outwards lifts unlock button 42, lock termination 41b extrusion spring 43 and lock pin 41 is moved towards the direction away from link span 2, make lock termination 41b disengaging locked groove 44 gradually and the first lockout mechanism 4 is unlocked, as shown in Figure 8, Figure 9.Now link span 2 opposite base frame 1 can be rotated, as link span 2 rotated around the first axle 3 opposite base frame 1 according to the direction shown in arrow a in Fig. 5.When turning to the second translation interface 22 and arriving the control position preset, unclamp unlock button 42, under the elastic acting force of spring 43, lock pin 41 moves towards the direction of abase frame 1 vertically, locking termination 41b inserts in corresponding locked groove 44, and then under the first lockout mechanism 4 is locked in this latched position.Rotary bracket after conversion is see shown in Figure 10, Figure 11, and now, the second translation interface 22 can be used for conversion and connects.
embodiment 2
see the rotary bracket shown in Figure 12 to Figure 21, this rotary bracket comprises abase frame 1 and link span 2, abase frame 1 has on fixed interface 11, link span 2 and has two translation interfaces, be respectively the first translation interface 21 and the second translation interface 22.The rotary bracket of this embodiment and the different part of embodiment 1 are only the mode that is rotationally connected between link span 2 and abase frame 1 and lock the setting of connection structure.
see shown in Figure 13 to Figure 19, rotated by the second axle 5 between this link span 2 with abase frame 1 and be connected, locked by the second lockout mechanism 6 between the two.This second lockout mechanism 6 comprises the first locking wheel 61 be fixedly arranged in abase frame 1, be fixedly arranged on the second locking wheel 62 on link span 2, the side axle head of parts in the first locking wheel 61 and these two parts of the second locking wheel 62 is provided with multiple outstanding locking teeth, axle head adjacent with above-mentioned locking teeth on another parts offers multiple lock slots, when the second lockout mechanism locking 6 locking, this multiple locking teeth inserts in multiple lock slots accordingly, and the first locking wheel 61 and the second locking wheel 62 are engaged each other, and then link span 2 and abase frame 1 are interfixed, when the second lockout mechanism 6 unlocks, all locking teeths mutually depart from all lock slots and the first locking wheel 61 and the second locking wheel 62 are departed from and engage, and then link span 2 can be rotated by opposite base frame 1.
in the present embodiment, the first locking wheel 61 and the second locking wheel 62 coaxial inner conductor are arranged, both all with the second axle 5 for axle center.First locking wheel 61 is provided with multiple first locking teeth towards the end of the second locking wheel 62, and the along the circumferential direction uniform intervals distribution of this multiple first locking teeth, forms the first lock slots between two adjacent the first locking teeths; The end second locking wheel 62 closing on the first locking wheel 61 is provided with multiple second lock slots, and the along the circumferential direction uniform intervals distribution of this multiple lock slots, forms the second locking teeth between two adjacent the second lock slots; When the second lockout mechanism 6 locks, the first all locking teeths inserts in multiple second lock slots accordingly, and the second all locking teeths inserts in multiple first lock slots respectively accordingly.Here, the first locking teeth and the second locking teeth are all set to interval and the identical zig-zag of size.
second axle 5 comprises bar portion 51 and is positioned at the limiting section 52 of one end, bar portion 51, the other end in this bar portion 51 offers perforation 53.For convenience of description, end bar portion 51 being provided with perforation 53 is herein called locking end.Abase frame 1 offers the first through hole, link span 2 offers the second through hole, be also provided with the elastic component 63 of the elastic-restoring force that can provide along the second axle 5 axis between link span 2 and abase frame 1, what elastic component 63 adopted herein is also spring.This rotary bracket also comprises bay cover 66, and this bay cover 66 is also provided with through hole.
when connection is installed, by the second axle 5 from the locking end in bar portion 51 successively through the first through hole of abase frame 1, through the second through hole of link span 2, through after the through hole bay cover 66, limiting section 52 is kept out in abase frame 1, then connects locking wrench 65 rotationally in this locking end.This locking wrench 65 has cam part 651, and this cam part 651 is connected in the locking end in bar portion 51 rotationally by rotating shaft 64.This cam part 651 have the nearer near-end of distance rotating shaft 64 axial line, the far-end far away apart from rotating shaft 64 axial line.Its near-end or far-end can be made respectively to conflict on bay cover 66 by rotating cam portion 651, and then make the second lockout mechanism 6 lock or unlock.
see shown in Figure 14 to Figure 16, the far-end of cam part 651 is kept out on bay cover 66, spring 63 is extruded, spacing between abase frame 1 and link span 2 reduces, first locking wheel 61 and the second locking wheel 62 are drawn close vertically mutually, and the first locking wheel 61 and the second locking wheel 62 engage each other, and the second lockout mechanism 6 is locked, interfix between abase frame 1 and link span 2, now the first translation interface 21 is for changing connection.
when the second translation interface 22 is used for changing connection by needs, first the second lockout mechanism 6 is unlocked.During unblock, see 15, shown in Figure 17-Figure 19, first rotate according to a direction shown in Figure 15 and unlock spanner 65, the far-end unlocking spanner 65 overhead cam portion 651 is made to depart from the conflict with bay cover 66, and the near-end of cam part 651 and bay cover 66 inconsistent, under the elastic acting force of spring 63, abase frame 1 and link span 2 vertically mutual away from, to make between the first locking wheel 61 with the second locking wheel 62 vertically mutual away from and depart from and engage, now the second lockout mechanism 6 just unlocks.Then again link span 2 is rotated according to the b direction opposite base frame 1 shown in Figure 17, the second translation interface 22 is made to arrive the control position place preset, and then rotational lock spanner 65, the far-end of cam part 651 is pushed against on bay cover 66 makes abase frame 1 and link span 2 mutually draw close vertically, and then the first locking wheel 61 and the second locking wheel 62 are engaged each other, the second lockout mechanism 6 relocks.Rotary bracket after conversion is see shown in Figure 20, Figure 21, and now, the second translation interface 22 can be used for conversion and connects.
certainly, when the translation interface on link span 2 has multiple, also connection can be changed in the above-described manner.
to sum up, rotary bracket of the present utility model, link span 2 is had by rotary connection in abase frame 1, and multiple translation interface different is each other set on link span 2, during use, user is connected to corresponding juvenile product by the fixed interface 11 in abase frame 1, as in go-cart, again according to juvenile product to be connected, as in seat pocket or automotive seats, the version of interface selects translation interfaces different on link span 2, and selected translation interface is adjusted to control position, so just, the different juvenile product graftings of distinct interface can will be had on another juvenile product, improve the commonality of juvenile product.
above-described embodiment, only for technical conceive of the present utility model and feature are described, its object is to person skilled in the art can be understood content of the present utility model and implement according to this, can not limit protection domain of the present utility model with this.All equivalences done according to the utility model Spirit Essence change or modify, and all should be encompassed within protection domain of the present utility model.

Claims (10)

1. one kind has the rotary bracket of multiple translation interface, it is characterized in that: described rotary bracket comprises the abase frame with fixed interface, the link span be connected with described abase frame, described link span have at least two different each other translation interfaces, described link span can relatively described abase frame be connected with described abase frame rotatably, the lockout mechanism for both being locked is provided with between described abase frame and described link span, described lockout mechanism has multiple latched position, when described lockout mechanism is in the lock state, described link span and described abase frame interfix, described in one of them on described link span, translation interface is for docking connection, when described lockout mechanism is in released state, described link span can rotate to adjust latched position relative to described abase frame and is used for docking connection by other described translation interface.
2. the rotary bracket with multiple translation interface according to claim 1, it is characterized in that: being rotated by the first axle between described abase frame with described link span is connected, described lockout mechanism comprises lock pin on parts being located in described abase frame and these two parts of described link span, is opened on another parts around multiple locked grooves circumferentially spaced apart that described first axle is centre of gration, when described lockout mechanism locking, described lock pin inserts in locked groove described in one of them and described abase frame and described link span is interfixed; When described lockout mechanism unlocks, described lock pin departs from described locked groove, and described link span rotates around described first axle relative to described abase frame.
3. the rotary bracket with multiple translation interface according to claim 2, is characterized in that: described lock pin can along self being located on described link span with axial motion, and multiple described locked groove is opened in described abase frame.
4. the rotary bracket with multiple translation interface according to claim 3, it is characterized in that: described lock pin comprises axle portion, be positioned at described axle portion one end for matching the locking termination making described lockout mechanism lock with described locked groove, the diameter of described locking termination is greater than the diameter of described axle portion, described link span offers can for described axle portion along the through hole self passed axially slidably, the elastic component for providing described lock pin movement flexible restoring force vertically is also provided with between described link span and described locking termination, the end that described axle portion passes described through hole has been permanently connected unlock button.
5. the rotary bracket with multiple translation interface according to claim 4, is characterized in that: described elastic component is be set in the spring in described axle portion, and the two ends of described spring are kept out on described link span respectively with on described locking termination.
6. the rotary bracket with multiple translation interface according to claim 3 or 4 or 5, is characterized in that: the axial line of described lock pin and the axial line of described first axle arranged in parallel.
7. the rotary bracket with multiple translation interface according to claim 1, it is characterized in that: being rotated by the second axle between described abase frame with described link span is connected, described lockout mechanism comprises the first locking wheel be fixedly arranged in described abase frame, set firmly and the second locking wheel on described link span, described first locking wheel, side axle head on parts in these two parts of described second locking wheel is provided with the locking teeth of multiple protrusion, the side axle head of another parts offers multiple lock slots inserted accordingly for described locking teeth, when described lockout mechanism locking, described first locking wheel is meshed with described second locking wheel, multiple described locking teeth inserts in multiple described lock slots accordingly, when described lockout mechanism unlocks, the relatively described abase frame of described link span is along the axial motion of described second axle, and all described locking teeths depart from all described lock slots and described first locking wheel departed from described second locking wheel engage.
8. the rotary bracket with multiple translation interface according to claim 7, it is characterized in that: the side axle head of described first locking wheel is provided with multiple first locking teeth, the along the circumferential direction uniform intervals distribution of multiple described first locking teeth, the first lock slots is formed between adjacent two described first locking teeths, axle head adjacent with described first locking wheel on described second locking wheel is provided with multiple second lock slots, the along the circumferential direction uniform intervals distribution of multiple described second lock slots, the second locking teeth is formed between adjacent two described second lock slots, when described lockout mechanism locking, all described first locking teeths insert in multiple described second lock slots accordingly, all described second locking teeths insert in multiple described first lock slots accordingly.
9. the rotary bracket with multiple translation interface according to claim 8, is characterized in that: described first locking teeth, the equal indentation of described second locking teeth.
10. according to the described rotary bracket with multiple translation interface arbitrary in claim 7 to 9, it is characterized in that: described second axle comprises bar portion and limiting section, described abase frame offers the first through hole, described link span offers the second through hole, also be provided with the elastic component of the elastic-restoring force that can provide along described second axle axis between described link span and described abase frame, described bar portion is also provided with the locking wrench with cam part through on the end after described first through hole, described second through hole vertically successively.
CN201420568160.1U 2014-09-29 2014-09-29 There is the rotary bracket of multiple translation interface Withdrawn - After Issue CN204196986U (en)

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CN201420568160.1U CN204196986U (en) 2014-09-29 2014-09-29 There is the rotary bracket of multiple translation interface

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Application Number Priority Date Filing Date Title
CN201420568160.1U CN204196986U (en) 2014-09-29 2014-09-29 There is the rotary bracket of multiple translation interface

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Publication Number Publication Date
CN204196986U true CN204196986U (en) 2015-03-11

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CN201420568160.1U Withdrawn - After Issue CN204196986U (en) 2014-09-29 2014-09-29 There is the rotary bracket of multiple translation interface

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104309677A (en) * 2014-09-29 2015-01-28 好孩子儿童用品有限公司 Rotating bracket with multiple conversion connectors

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104309677A (en) * 2014-09-29 2015-01-28 好孩子儿童用品有限公司 Rotating bracket with multiple conversion connectors
CN104309677B (en) * 2014-09-29 2016-08-17 好孩子儿童用品有限公司 There is the rotary bracket of multiple translation interface

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