CN202386287U - Swing control device for baby carrier, baby seat and baby bed - Google Patents

Swing control device for baby carrier, baby seat and baby bed Download PDF

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Publication number
CN202386287U
CN202386287U CN 201120378630 CN201120378630U CN202386287U CN 202386287 U CN202386287 U CN 202386287U CN 201120378630 CN201120378630 CN 201120378630 CN 201120378630 U CN201120378630 U CN 201120378630U CN 202386287 U CN202386287 U CN 202386287U
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CN
China
Prior art keywords
swing
controlling device
baby
swing component
sensitive surface
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Expired - Lifetime
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CN 201120378630
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Chinese (zh)
Inventor
戴夫·里根
赖安·米勒
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.)
China Wonderland Nurserygoods Co Ltd
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China Wonderland Nurserygoods Co Ltd
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Priority to CN 201120378630 priority Critical patent/CN202386287U/en
Application granted granted Critical
Publication of CN202386287U publication Critical patent/CN202386287U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a swing control device for a baby carrier, a baby seat with the same, and a baby bed with the same. The swing control device comprises the following components: a swing member which is connected with a baby supporting structure of the baby carrier, wherein a side surface edge of the swing member forms a surface; a driving mechanism which is used for driving the swing member; and an optical coding mechanism which is electrically connected with the driving mechanism, is fixed outside the surface of the swing member and is physically separated from the surface for sensing surface characteristic of the surface, thereby controlling swing movement of the swing member. According to the swing control device for the baby carrier, the swing member is sensed through the optical coding mechanism, and swing movement of the swing member can be controlled without physical contact with the swing member. The swing control device for the baby carrier further has the following advantages: no friction or noise in the control process, and quilt and comfortable environment created for the baby.

Description

The swing controlling device, baby seat and the infanette that are used for baby carrying vehicle
Technical field
The utility model relates to a kind of swing controlling device, relates in particular to a kind of swing controlling device that is used for baby carrying vehicle, and baby seat and infanette with this swing controlling device.
Background technology
The prior electric baby rocking chair replaces manual rocking chair in the past, can be the baby caretaker and brings great convenience, also brings comfortable environment for the baby simultaneously.Existing electronic baby rocking chair generally comprises rocking chair, is used to support the skeleton of rocking chair, is arranged at the swing controlling device between rocking chair and the skeleton, and this swing controlling device is connected with the support of rocking chair, when it operates, drives rocking chair work front and back and back and forth waves.
Traditionally, this swing controlling device is generally by CD-ROM drive motor and transmission component, and for example gear train is formed.When CD-ROM drive motor was worked, it rotated with certain direction, speed and torsion, and as the gear train of transmission component behind the state that adjustment rotatablely moves to the rocking chair transmitting power.For guaranteeing that rocking chair can carry out suitable swing, generally meeting is provided with the friction band in the outer peripheral edges of the pendular body of rocking chair, is connected with sensor outside the friction band.This friction band contacts with the rotating shaft of a code wheel, and when pendular body was swung, the friction band drove the rotating shaft of code wheel, thereby code wheel and gear train are rotated synchronously.Sensor removes to control CD-ROM drive motor thereby produce correct system signal, thereby further controls rocking action in the motion state of side detecting code wheel.
Yet this kind swing controlling device need be controlled rocking action through CONTACT WITH FRICTION, and the running noise between the machine is very big, when the baby has a rest, the baby is caused very big influence, does not therefore meet the requirement of consumer to the comfortable quiet degree of baby carrying vehicle.
Therefore, be necessary to provide a kind of nothing to rub noiseless swing controlling device, make more fit baby's demand of baby carrying vehicle, more receive liking of consumer to overcome above-mentioned defective.
The utility model content
A purpose of the utility model is to provide a kind of swing controlling device that is used for baby carrying vehicle; It is through optical encoding mechanism optical sensor swing component; Need not to contact the rocking action that to control swing component with swing component physics; Control procedure does not have the friction noiselessness, builds quiet comfortable environment to the baby.
Another purpose of the utility model is to provide a kind of baby seat with swing controlling device; It is through optical encoding mechanism optical sensor swing component; Need not to contact the rocking action that to control swing component with swing component physics; Control procedure does not have the friction noiselessness, builds quiet comfortable environment to the baby.
A purpose again of the utility model is to provide a kind of infanette with swing controlling device; It is through optical encoding mechanism optical sensor swing component; Need not to contact the rocking action that to control swing component with swing component physics; Control procedure does not have the friction noiselessness, builds quiet comfortable environment to the baby.
For realizing above-mentioned purpose, the swing controlling device that is used for baby carrying vehicle of the utility model comprises a swing component, is connected with baby's supporting construction of baby carrying vehicle, and the lateral edge of said swing component forms a surface; One driving mechanism is in order to drive said swing component; And with the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the surface characteristics on the said surface of sensing, thereby control the oscillating motion of said swing component.
Preferably, the corresponding different swing in said surface highly forms at least the first sensitive surface and second sensitive surface, and said first sensitive surface is provided with different catoptric arrangements with second sensitive surface.
Preferably, said first sensitive surface is different with the material of second sensitive surface.
Preferably, said first sensitive surface is different with the roughness of second sensitive surface.
Alternatively, one of them surface in said first sensitive surface and second sensitive surface is provided with at least one depression, and another surface is smooth shape.
Alternatively, one of them surface in said first sensitive surface and second sensitive surface is provided with at least one fin, and another surface is smooth shape.
Preferably, on said first sensitive surface and second sensitive surface various colors label is set.
Preferably, said driving mechanism comprises motor and the decelerator that is driven by said motor, and said decelerator is connected with said swing component.
Preferably, said decelerator comprises belt, driving wheel mechanism and driven pulley mechanism, and said motor drives said driving wheel mechanism through said belt, and said driven pulley mechanism is connected with said swing component and is driven by said driving wheel mechanism.
The baby seat of the utility model comprises chair framework and the seat that is connected with said chair framework, and a swing controlling device is set between said seat and the chair framework.Said swing controlling device comprises: a swing component, be connected with said seat, and the lateral edge of said swing component forms a surface; One driving mechanism is in order to drive said swing component; And with the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the surface characteristics on the said surface of sensing, thereby control the oscillating motion of said swing component.
The infanette of the utility model comprises chair framework and the seat that is connected with said chair framework, and a swing controlling device is set between said seat and the chair framework.Said swing controlling device comprises a swing component, is connected with said seat, and the lateral edge of said swing component forms a surface; One driving mechanism is in order to drive said swing component; And with the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the different surface characteristic on the said surface of sensing, thereby control the oscillating motion of said swing component.
The swing controlling device of the utility model; It carries out the optics sensing through optical encoding mechanism to the side surface of swing component; Need not to contact the swing state that can sense swing component with swing component physics; And then sending controling instruction makes the motor of driving mechanism further optimize the swing of swing component in response to current swing state to driving mechanism.The optical encoding machine of the utility model can not contact swing component; Therefore in control procedure, can not produce friction, therefore compare prior art, the machine operation noise of the utility model is very little; Can build quiet comfortable environment to the baby, be fit to current consumer demand.
Description of drawings
Fig. 1 is the stereogram that the utlity model has the baby seat of swing controlling device.
Fig. 2 is the stereogram that the utlity model has the infanette of swing controlling device.
Fig. 3 is the stereogram of the swing controlling device of the utility model.
Fig. 4 is another sketch map of swing controlling device shown in Figure 3.
Fig. 5 is another sketch map of swing controlling device shown in Figure 3.
The specific embodiment
Below in conjunction with accompanying drawing and preferred embodiment the utility model is done further to describe, but the embodiment of the utility model is not limited thereto.
Fig. 1 has showed the baby seat 1 of the utility model; It comprises chair framework 12 and the seat 14 that is connected with this chair framework 12; This chair framework 12 is provided with swing controlling device 100 (seeing also Fig. 3); This swing controlling device 100 is connected between this seat 14 and this chair framework 12, and this seat 12 can be by the reciprocal oscillating motion of these swing controlling device 100 controls.Fig. 2 has showed the swingable infanette 2 of the utility model; The bed body 24 that it comprises a body skeleton 22 and is connected with this body skeleton 22; Likewise, between bed body 24 and bed body skeleton 22, be provided with swing controlling device 100 (seeing also Fig. 3), make bed body 24 can realize electric swinging.Swing controlling device 100 below in conjunction with 1 pair of the utility model of baby seat is described in detail.
Please combine Fig. 1 and Fig. 3, the chair framework 12 of this baby seat 1 comprises the support tube 16 that is connected with seat 14, and swing controlling device 100 is covered by housing 18, and is connected with seat 14 through support tube 16.Particularly, this swing controlling device 100 comprises swing component 101, the driving mechanism 110 in order to drive this swing component 101 that is connected with support tube 16, and waves the optical encoding mechanism 120 of mode in order to control swing component 101.
In the present embodiment; Like Fig. 1, Fig. 3 to shown in Figure 5; This driving mechanism 110 is fixedly installed in the inwall of housing 18, and it comprises motor 111 and the decelerator 112 that is driven by this motor 111, and this decelerator 112 comprises belt 113, driving wheel mechanism 114 and driven pulley mechanism 115.This belt 113 is arranged between motor 111 and the driving wheel mechanism 114; Preferably; Driving wheel mechanism 114 and driven pulley mechanism 115 are gear train, and belt 113 is dentation (figure does not show) equally in the side towards driving wheel mechanism 114 and uses this driving wheel mechanism 114 of interlock.Driven pulley mechanism 115 is connected with swing component 101 by pivot 102, and is driven by driving wheel mechanism 114.Particularly; This swing component 101 is the suspension shape; The one of which end connects through pivot 102 and rotates synchronously with driven pulley mechanism 115, on this swing component 101 with pivot 102 junctions be separated by the other end of a distance then have a link slot can be ccontaining and be connected this support tube 16.
As the design of the utility model, optical encoding mechanism 120 and swing component 101 physical separation, and be fixed in a side of swing component 101, promptly this optical encoding mechanism 120 is contactless with swing component 101.And this optical encoding mechanism 120 electrically connects with the motor 111 of driving mechanism 110.Design as the utility model; The inventor is provided with the different surface characteristic swing component 101 on a surface of optical encoding mechanism 120; This different surface characteristic characterizes the parameter of the different swing states of swing component 101 respectively, for example the amplitude of oscillation, frequency, pendulum angle or speed etc.; Simultaneously, in optical encoding mechanism 120, set and this different surface characteristic corresponding parameter and corresponding instruction respectively.In swing component 101 swing process; The surface of these 120 pairs of swing components 101 of optical encoding mechanism is responded to; When swing component 101 swings to certain height; Its corresponding surface characteristics promptly can be sensed by optical encoding mechanism 120, and optical encoding mechanism 120 transfers to motor 111 through the communication device in it with sensing result (like output voltage or position coordinates) then, thereby makes motor 111 further optimize the swing of swing component 101.
Particularly; This optical encoding mechanism comprises the optical pickocff (figure does not show) that is used for sensing swing component 101, the conversion equipment (figure does not show) that is used for transmitting photo-signal to the signal of telecommunication, and the communicator (figure does not show) that is used for sensing result is transferred to driving mechanism 110.
Preferably, this optical pickocff is that a number is taken the photograph video recorder.
Particularly; Please combine Fig. 3 and Fig. 5; The edge of this swing component 101 forms a surface 103; These surface 103 corresponding different swings highly form at least two sensitive surface, for example: highly be divided into first sensitive surface 1031 and second sensitive surface 1032 corresponding to the first swing height and second swing respectively.Certainly, the number of this sensitive surface can need in response to the different sensings of optical encoding mechanism 120 and swing component 101 different level sensings and defining voluntarily, is not limited to this embodiment.Be noted that, in the utility model in one's power surface characteristics all with the catoptric arrangement that can produce different reflectivity as the form of expression.
As an embodiment, this first sensitive surface 1031 and second sensitive surface 1032 are arc surfaced.
As another embodiment, this first sensitive surface 1031 is different with the material of second sensitive surface 1032.For example, first sensitive surface 1031 is a plastic cement material, and second sensitive surface 1032 is wooden, makes that optical encoding mechanism 120 can be because of the different differences that sense signal of the reflecting effect of different surfaces.
As another embodiment, first sensitive surface 1031 is different with the roughness of second sensitive surface 1032.For example, some depressions (figure does not show) are set on first sensitive surface 1031, present roughness, second sensitive surface 1032 then is smooth shape.Alternatively, some fins (figure does not show) can be set, and second sensitive surface 1032 is smooth shape on first sensitive surface 1031, or depression is set.
As another embodiment, can on first sensitive surface 1031 and second sensitive surface 1032, the various colors label be set.For example, the label (figure does not show) with black lines is set on first sensitive surface 1031, and the label (figure does not show) of red lines is set on second sensitive surface 1032.Certainly, the utility model does not limit the color of label, and other any colors with different reflectivity all can.
Combine the above-mentioned embodiment that the different colours label is set on surface 103 that the operation principle of the swing controlling device 1 of present embodiment is described at present.As stated, the first swing height that first sensitive surface 1031 is characterized by swing component 101 is set, and second sensitive surface 1032 is characterized by the second swing height of swing component 101.Wherein, the position of the label of black lines is characterized by the highest swing height of qualification, and its reflectivity is R1, and the label position of red lines is characterized by the minimum swing height of qualification, and its reflectivity is R2.In addition, preset and this reflectivity R1, R2 corresponding parameter and instruction in optical encoding mechanism 120.This instruction can be the revolution of control swing component 101, reduce the amplitude of oscillation, add the instruction of a series of control swing component 101 states such as long arc.When swing component 101 swings to predetermined swing height; Optical pickocff in the optical encoding mechanism 120 scans the label of the black lines on first sensitive surface 1031, and at this moment, optical encoding mechanism 120 responds out reflectivity R1; The optical signalling that conversion equipment in it will carry this reflectivity R1 converts the signal of telecommunication to; The swing of this reflectivity R1 correspondence is highly thereupon by sensing, and optical encoding mechanism 120 responds out a position coordinates instruction then, and sends to the motor 111 of driving mechanism 110.This position coordinates instruction comprises the location parameter of X axial coordinate and the location parameter of Y axial coordinate.After motor 111 receives this position coordinateses instruction, with parameters such as the turning to of adjustment rotating shaft, rotating speeds.In this embodiment, this position coordinates instruction can be configured such that swing component 101 toward rotating reverse swing, thereby avoids swing component 101 highly to swing to higher swing, and the baby on the seat 14 is constituted danger.
In sum; The utility model carries out the optics sensing through the side surface of 120 pairs of swing components 101 of optical encoding mechanism; Need not to contact the swing state that can sense swing component 101 with swing component 101 physics; And then sending controling instruction to driving mechanism 110, make the motor 111 of driving mechanism further optimize the swing of swing component 101 in response to current swing state.The optical encoding mechanism 120 of the utility model can not contact swing component 101; Therefore in control procedure, can not produce friction, therefore compare prior art, the machine operation noise of the utility model is very little; Can build quiet comfortable environment to the baby, be fit to current consumer demand.
More than combine most preferred embodiment that the utility model is described, but the utility model is not limited to the embodiment of above announcement, and should contains various modification, equivalent combinations of carrying out according to the essence of the utility model.

Claims (13)

1. swing controlling device that is used for baby carrying vehicle comprises:
One swing component is connected with baby's supporting construction of baby carrying vehicle, and the lateral edge of said swing component forms a surface;
One driving mechanism is in order to drive said swing component; And
With the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the surface characteristics on the said surface of sensing, thereby control the oscillating motion of said swing component.
2. the swing controlling device that is used for baby carrying vehicle as claimed in claim 1; It is characterized in that: the corresponding different swing in said surface highly forms at least the first sensitive surface and second sensitive surface, and said first sensitive surface is provided with different catoptric arrangements with second sensitive surface.
3. the swing controlling device that is used for baby carrying vehicle as claimed in claim 2 is characterized in that: said first sensitive surface is different with the material of second sensitive surface.
4. the swing controlling device that is used for baby carrying vehicle as claimed in claim 2 is characterized in that: said first sensitive surface is different with the roughness of second sensitive surface.
5. the swing controlling device that is used for baby carrying vehicle as claimed in claim 4 is characterized in that: one of them surface in said first sensitive surface and second sensitive surface is provided with at least one depression, and another surface is smooth shape.
6. the swing controlling device that is used for baby carrying vehicle as claimed in claim 4 is characterized in that: one of them surface in said first sensitive surface and second sensitive surface is provided with at least one fin, and another surface is smooth shape.
7. the swing controlling device that is used for baby carrying vehicle as claimed in claim 2 is characterized in that: on said first sensitive surface and second sensitive surface various colors label is set.
8. the swing controlling device that is used for baby carrying vehicle as claimed in claim 2 is characterized in that: said surface is a cambered surface.
9. the swing controlling device that is used for baby carrying vehicle as claimed in claim 1 is characterized in that: said driving mechanism comprises motor and the decelerator that is driven by said motor, and said decelerator is connected with said swing component.
10. the swing controlling device that is used for baby carrying vehicle as claimed in claim 9; It is characterized in that: said decelerator comprises belt, driving wheel mechanism and driven pulley mechanism; Said motor drives said driving wheel mechanism through said belt, and said driven pulley mechanism is connected with said swing component and is driven by said driving wheel mechanism.
11. the swing controlling device that is used for baby carrying vehicle as claimed in claim 1; It is characterized in that: said optical encoding mechanism comprises the optical pickocff that is used for the said surface of sensing, the conversion equipment that is used for transmitting photo-signal to the signal of telecommunication, and the communicator that is used for sensing result is transferred to said driving mechanism.
12. a baby seat comprises chair framework and the seat that is connected with said chair framework, and a swing controlling device is set between said seat and the chair framework, it is characterized in that: said swing controlling device comprises:
One swing component is connected with said seat, and the lateral edge of said swing component forms a surface;
One driving mechanism is in order to drive said swing component; And
With the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the surface characteristics on the said surface of sensing, thereby control the oscillating motion of said swing component.
13. an infanette comprises a body skeleton and the bed body that is connected with said bed body skeleton, between said bed body and the bed body skeleton swing controlling device is set, it is characterized in that: said swing controlling device comprises:
One swing component is connected with said bed body, and the lateral edge of said swing component forms a surface;
One driving mechanism is in order to drive said swing component; And
With the optical encoding mechanism that said driving mechanism electrically connects, be fixed in said swing component the surface the outside and separate with said surface physics, in order to the surface characteristics on the said surface of sensing, thereby control the oscillating motion of said swing component.
CN 201120378630 2011-09-29 2011-09-29 Swing control device for baby carrier, baby seat and baby bed Expired - Lifetime CN202386287U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201120378630 CN202386287U (en) 2011-09-29 2011-09-29 Swing control device for baby carrier, baby seat and baby bed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201120378630 CN202386287U (en) 2011-09-29 2011-09-29 Swing control device for baby carrier, baby seat and baby bed

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CN202386287U true CN202386287U (en) 2012-08-22

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CN 201120378630 Expired - Lifetime CN202386287U (en) 2011-09-29 2011-09-29 Swing control device for baby carrier, baby seat and baby bed

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD979259S1 (en) 2020-09-17 2023-02-28 Kids2, Inc. Modular swing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD979259S1 (en) 2020-09-17 2023-02-28 Kids2, Inc. Modular swing

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Granted publication date: 20120822

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