CN202435745U - Rodlike flywheel-type TV remote controller - Google Patents

Rodlike flywheel-type TV remote controller Download PDF

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Publication number
CN202435745U
CN202435745U CN2011205540313U CN201120554031U CN202435745U CN 202435745 U CN202435745 U CN 202435745U CN 2011205540313 U CN2011205540313 U CN 2011205540313U CN 201120554031 U CN201120554031 U CN 201120554031U CN 202435745 U CN202435745 U CN 202435745U
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CN
China
Prior art keywords
remote controller
main body
controller main
type
thumb wheel
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Expired - Lifetime
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CN2011205540313U
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Chinese (zh)
Inventor
李海林
肖斌
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TCL Corp
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TCL Corp
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Publication date
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Priority to CN2011205540313U priority Critical patent/CN202435745U/en
Application granted granted Critical
Publication of CN202435745U publication Critical patent/CN202435745U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a rodlike flywheel-type TV remote controller, which comprises a cylindrical remote controller main body and an annular poking wheel; the remote controller main body is provided with a section of neck the outer diameter of which is smaller than the inner diameter of the poking wheel; the poking wheel is relatively and movably sleeved on the neck of the remote controller main body; the poking wheel moves along the axial direction of the remote controller main body so as to switch frequency channels and adjust and control volume; and the poking wheel rotates around the axis line of the remote controller main body so as to transform frequency channels or adjust volume. Because the movable and rotatable poking wheel is sleeved on the remote controller main body, movement in the traditional two-dimensional plane is expanded into movement in a three-dimensional space, the linear distance of operation is shortened, and therefore single-handed thumb operation becomes easier and more accords with a human engineering principle; in addition, the rodlike flywheel-type TV remote controller can correspond to the sight line of human eyes in the movement mode, makes man-computer interaction more natural and reasonable and is clear in directivity, more beneficial for operation of people and very suitable for development tendency of intelligent TVs in the future.

Description

A kind of bar-shaped flywheel-type TV remote controller
Technical field
The utility model relates to the TV remote controller field, and in particular, what improvement related to is a kind of bar-shaped flywheel-type TV remote controller.
Background technology
Nowadays, along with the abundant of TV programme with increase, the user uses maximum buttons when watching TV be exactly conversion " channel " and " sound " these two groups of buttons.It is block that traditional TV remote controller is usually, and all buttons all are positioned at the same plane of controlling, and produces pulse signal through the circuit on the conducting printed substrate that pushes button, and sent by the Infrared Projector on the remote controller then and control instruction.And existing block flying shuttle type remote controller also is planar to do clockwise or counterclockwise rotation, and then sends with the infrared signal receiver of form on television set or STB of stirring button and to control instruction.
But; Button in the two dimensional surface distributes is but made troubles with singlehanded thumb manipulation, because video screen is perpendicular with the sight line of human eye basically, and picture moving about relative to human eye being; The steer mode of button is single; Be not suitable for the development trend of intelligent television from now on, and the rotating manner that flies shuttle also is irrational on the angle of natural human-machine interaction, equally also is not suitable for operating with singlehanded thumb.
Therefore, prior art still haves much room for improvement and develops.
The utility model content
The purpose of the utility model is, a kind of bar-shaped flywheel-type TV remote controller is provided, and is convenient to operate with singlehanded thumb.
The technical scheme of the utility model is following: a kind of bar-shaped flywheel-type TV remote controller wherein, comprises the remote controller main body of cylindricality and the thumb wheel of ring-type; Said remote controller main body is provided with the neck of one section external diameter less than said thumb wheel internal diameter, and said thumb wheel is mobilizable relatively to be set on the neck of said remote controller main body; Said thumb wheel is through the regulation and control model with switching channels and sound that moves axially along said remote controller main body; Said thumb wheel rotates to stir channel or to adjust volume around the axial line through said remote controller main body.
Described bar-shaped flywheel-type TV remote controller, wherein: said thumb wheel comprises outer ring, displacement sensor, inner ring and collar; Said displacement sensor is arranged on the inwall of said outer ring; Said collar is arranged on an end of said inner ring, forms the I-shaped draw-in groove that adaptive said displacement sensor rotates with the other end of said inner ring.
Described bar-shaped flywheel-type TV remote controller, wherein: between said outer ring and inner ring, be provided with first shell fragment that is used to increase frictional resistance between the rotating part.
Described bar-shaped flywheel-type TV remote controller, wherein: be provided with first groove of adaptive said collar at an end of said inner ring, be provided with chimb at the other end of said inner ring; Said collar is stuck in said first groove, forms said I-shaped draw-in groove with said chimb.
Described bar-shaped flywheel-type TV remote controller, wherein: said remote controller main body comprises the first magnet sheet and the second magnet sheet that is provided with at interval; When said thumb wheel moves axially along said remote controller main body, the induction zone through triggering the said first magnet sheet or the second magnet sheet and then the regulation and control model of switching channels and sound.
Described bar-shaped flywheel-type TV remote controller, wherein: said remote controller main body comprises second shell fragment and first spring; Said remote controller main body is provided with the spacing bayonet socket littler than said second shell fragment, and said second shell fragment exposes a part from said spacing bayonet socket under the effect of said first spring; When said thumb wheel moves axially along said remote controller main body, change the state of said first spring and then the regulation and control model of switching channels and sound through said second shell fragment.
Described bar-shaped flywheel-type TV remote controller, wherein: said second shell fragment is crescent.
Described bar-shaped flywheel-type TV remote controller, wherein: said thumb wheel comprises the sphere stuck point and second spring; Said remote controller main body is provided with second groove on the adaptive sphere stuck point of two rows top; Said sphere stuck point is stuck under the effect of said second spring in said second groove; When said thumb wheel moves axially along said remote controller main body, withstand on second groove and then the regulation and control model of switching channels and sound on the diverse location through said sphere stuck point.
A kind of bar-shaped flywheel-type TV remote controller that the utility model provided is sleeved on removable and rotating thumb wheel on the remote controller main body owing to adopted, and expands to the motion in the three dimensions to the motion in the traditional two-dimensional plane; Dwindled the air line distance of operation; Let singlehanded thumb manipulation become and be more prone to, ergonomic principle more, and can be corresponding with people's an eye line on motion mode; Make man-machine interaction become natural more with rationally; Directive property is also more clear and definite, is more conducive to people's operation, is fit to very much the development trend of intelligent television from now on.
Description of drawings
Fig. 1 is that the bar-shaped flywheel-type TV remote controller of the utility model is in the front view under the sound regulation state.
Fig. 2 is that the bar-shaped flywheel-type TV remote controller of the utility model is in the front view under the channel regulation and control state.
Fig. 3 is the thumb wheel cutaway view in the bar-shaped flywheel-type TV remote controller of the utility model.
Fig. 4 is the thumb wheel exploded view in the bar-shaped flywheel-type TV remote controller of the utility model.
Fig. 5 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 1.
Fig. 6 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 2.
Fig. 7 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 3.
Embodiment
Below will combine accompanying drawing, the embodiment and the embodiment of the utility model specified, described specific embodiment in order to explain the utility model, is not the embodiment that is used to limit the utility model only.
As shown in Figure 1, Fig. 1 is that the bar-shaped flywheel-type TV remote controller of the utility model is in the front view under the sound regulation state, and the bar-shaped flywheel-type TV remote controller of the utility model comprises the remote controller body 110 of cylindricality and the thumb wheel 120 of ring-type; Said remote controller main body is provided with the neck 112 of one section external diameter less than said thumb wheel internal diameter, and said thumb wheel 120 is set on the neck 112 of said remote controller body 110, and is removable and rotate relative to said remote controller body 110.
In conjunction with shown in Figure 2, Fig. 2 is that the bar-shaped flywheel-type TV remote controller of the utility model is in the front view under the channel regulation and control state, and said thumb wheel 120 is used between " channel " and " sound ", regulating and control along moving axially of said remote controller body 110; Said thumb wheel 120 is used for channel change or adjusts volume around the rotation of said remote controller body 110 axial lines.
Adopt bar-shaped formula roller remote controller at the regulation and control volume, it is more efficient, more convenient also faster to stir aspect such as channel.When the user holds remote controller, can use thumb to stir the runner of remote controller very easily, control.When at " sound " gear, stir about thumb and can carry out sound control; When at " channel " gear, stir about thumb and can carry out channel control.In addition, this thumb wheel also can carry out User Defined, is set to direction control and waits other functions.
Concrete, as shown in Figure 3, Fig. 3 is the thumb wheel cutaway view in the bar-shaped flywheel-type TV remote controller of the utility model, said thumb wheel 120 comprises outer ring 123, displacement sensor 122, inner ring 121 and collar 124; Said displacement sensor 122 is fixed on the inwall of said outer ring 123; Said collar 124 is arranged on an end of said inner ring 121, forms the I-shaped draw-in groove structure that adaptive said displacement sensor 122 rotates with the other end of said inner ring 121; Said displacement sensor 122 is installed on the outer wall of said inner ring 121.
When said outer ring 123 drives said displacement sensor 122 when said inner ring 121 rotates; The components and parts that are arranged on the said remote controller body interior printed substrate can be sensed direction and the speed that said displacement sensor 122 rotates; And then under " channel " regulation and control model, stir a supreme channel program or succeeding channel program, and under " sound " regulation and control model, increase or reduce volume.
Be preferably, between said outer ring 123 and inner ring 121, also be provided with first shell fragment 125, be used between rotating part, increasing suitable frictional resistance.Said displacement sensor 122 can carry out perception according to the speed that the user rotates said outer ring 123, thus the speed rhythm that control is chosen.
In conjunction with shown in Figure 4, Fig. 4 is the thumb wheel exploded view in the bar-shaped flywheel-type TV remote controller of the utility model, and the outer surface in said outer ring 123 is provided with convex-concave structure, moves and rotates to make things convenient for thumb to stir outer ring 123; The lower end of said inner ring 121 is provided with a circle chimb; The upper end of said inner ring 121 is provided with a circle first groove 121a; Said collar 124 cards fit in the first groove 121a of said inner ring 121 upper ends, form the I-shaped draw-in groove structure on said inner ring 121 outer walls with the chimb of said inner ring 121 lower ends.
In the embodiment of the bar-shaped flywheel-type TV remote controller of the utility model, switch " channel " and can realize through the structure among following three kinds of embodiment with " sound " regulation and control model:
As shown in Figure 5, Fig. 5 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 1, and said remote controller main body comprises main body top 211, main body middle part 212 and lower body part 213; The external diameter at said main body middle part 212 (necks that are equivalent to said remote controller body) is less than the internal diameter of said thumb wheel 120, and the external diameter of said main body top 211 and lower body part 213 is all greater than the internal diameter of said thumb wheel 120; Said thumb wheel 120 is enclosed within on the said main body middle part 212 and moves around; Be embedded with the first magnet sheet 510 in the bottom on said main body top 211 and form first induction zone, be embedded with the second magnet sheet 520 on the top of said lower body part 213 and form second induction zone; In the 212 axially movable processes of said main body middle part, said thumb wheel 120 edges; When the top of said thumb wheel 120 during near the said first magnet sheet 510; Trigger said first induction zone, the regulation and control model that said thumb wheel 120 is rotated switches to " sound " (or " channel ") regulation and control model; And, triggering said second induction zone when the bottom of said thumb wheel 120 during near the said second magnet sheet 520, the regulation and control model that said thumb wheel 120 is rotated switches to " channel " (or " sound ") regulation and control model.
As shown in Figure 6, Fig. 6 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 2, and said remote controller main body comprises main body top 311, main body middle part 312 and lower body part 313; The external diameter at said main body middle part 312 (necks that are equivalent to said remote controller body) is less than the internal diameter of said thumb wheel 120, and the external diameter of said main body top 311 and lower body part 313 is all greater than the internal diameter of said thumb wheel 120; Said thumb wheel 120 is enclosed within on the said main body middle part 312 and moves around; Be symmetrically arranged with two spacing bayonet socket 312a at said main body middle part 312, be provided with one second shell fragment 610 and one first spring 620 in each spacing bayonet socket 312a; The aperture of said spacing bayonet socket 312a is slightly less than the size of said second shell fragment 610, makes said second shell fragment 610 under the effect of said first spring 620, from said spacing bayonet socket 312a, only exposes a part; When said thumb wheel 120 moves axially along said main body middle part 312, change the state of said first spring 620 and then the regulation and control model of switching channels and sound thus through said second shell fragment 610.
Be preferably, said second shell fragment 610 is the crescent setting, is difficult for thus in the process that said thumb wheel 120 moves, being stuck, thereby makes that the switching of regulation and control model is more smooth and easy.
As shown in Figure 7, Fig. 7 is the exploded view of the bar-shaped flywheel-type TV remote controller of the utility model embodiment 3, and said remote controller main body comprises main body top 411, main body middle part 412 and lower body part 413; The external diameter at said main body middle part 412 (necks that are equivalent to said remote controller body) is less than the internal diameter of said thumb wheel 120, and the external diameter of said main body top 411 and lower body part 413 is all greater than the internal diameter of said thumb wheel 120; Said thumb wheel 120 is enclosed within on the said main body middle part 412 and moves around; Inboard at said thumb wheel 120 is provided with four inwardly protruded sphere stuck points 710 along its circumference; The top globulate of said sphere stuck point 710; The corresponding second groove 412a that is provided with the adaptive said spherical stuck point of two rows 710 tops on the outer wall at said main body middle part 412, the rear end of each said sphere stuck point 710 all is provided with one second spring 720; Said sphere stuck point 710 is stuck under the effect of said second spring 720 among the corresponding second groove 412a; When said thumb wheel 120 moves axially along said main body middle part 412, withstand on the second groove 412a and then the regulation and control model of switching channels and sound on the diverse location through said sphere stuck point 710.
Compare with TV remote controller of the prior art, a kind of bar-shaped flywheel-type TV remote controller that the utility model provided is sleeved on removable and rotating thumb wheel on the remote controller main body owing to adopted; Expand to the motion in the three dimensions to the motion in the traditional two-dimensional plane, dwindled the air line distance of operation, let singlehanded thumb manipulation become and be more prone to; Ergonomic principle more; And can be corresponding with people's an eye line on motion mode, man-machine interaction is become, and nature is with rationally more, and directive property is also more clear and definite; Be more conducive to people's operation, be fit to very much the development trend of intelligent television from now on.
Should be understood that; The preferred embodiment that the above is merely the utility model is not sufficient to limit the technical scheme of the utility model, concerning those of ordinary skills; Within the spirit and principle of the utility model; Can increase and decrease according to above-mentioned explanation, replacement, conversion or improvement, for example, the described TV remote controller of the utility model also can be the remote controller of TV set-top box; And all these increases and decreases, replacement, conversion or improve after technical scheme, all should belong to the protection range of the utility model accompanying claims.

Claims (8)

1. a bar-shaped flywheel-type TV remote controller is characterized in that, comprises the remote controller main body of cylindricality and the thumb wheel of ring-type; Said remote controller main body is provided with the neck of one section external diameter less than said thumb wheel internal diameter, and said thumb wheel is mobilizable relatively to be set on the said remote controller main body neck; Said thumb wheel is through the regulation and control model with switching channels and sound that moves axially along said remote controller main body; Said thumb wheel is perhaps adjusted volume through the rotation around said remote controller main body axial line to stir channel.
2. bar-shaped flywheel-type TV remote controller according to claim 1, it is characterized in that: said thumb wheel comprises outer ring, displacement sensor, inner ring and collar; Said displacement sensor is arranged on the inwall of said outer ring; Said collar is arranged on an end of said inner ring, forms the I-shaped draw-in groove that adaptive said displacement sensor rotates with the other end of said inner ring.
3. bar-shaped flywheel-type TV remote controller according to claim 2 is characterized in that: between said outer ring and inner ring, be provided with first shell fragment that is used to increase frictional resistance between the rotating part.
4. bar-shaped flywheel-type TV remote controller according to claim 2 is characterized in that: be provided with first groove of adaptive said collar at an end of said inner ring, be provided with chimb at the other end of said inner ring; Said collar is stuck in said first groove, forms said I-shaped draw-in groove with said chimb.
5. bar-shaped flywheel-type TV remote controller according to claim 1 is characterized in that: said remote controller main body comprises the first magnet sheet and the second magnet sheet that is provided with at interval; When said thumb wheel moves axially along said remote controller main body, the induction zone through triggering the said first magnet sheet or the second magnet sheet and then the regulation and control model of switching channels and sound.
6. bar-shaped flywheel-type TV remote controller according to claim 1 is characterized in that: said remote controller main body comprises second shell fragment and first spring; Said remote controller main body is provided with the spacing bayonet socket littler than said second shell fragment, and said second shell fragment exposes a part from said spacing bayonet socket under the effect of said first spring; When said thumb wheel moves axially along said remote controller main body, change the state of said first spring and then the regulation and control model of switching channels and sound through said second shell fragment.
7. bar-shaped flywheel-type TV remote controller according to claim 6 is characterized in that: said second shell fragment is crescent.
8. bar-shaped flywheel-type TV remote controller according to claim 1 is characterized in that: said thumb wheel comprises the sphere stuck point and second spring; Said remote controller main body is provided with second groove on the adaptive sphere stuck point of two rows top; Said sphere stuck point is stuck under the effect of said second spring in said second groove; When said thumb wheel moves axially along said remote controller main body, withstand on second groove and then the regulation and control model of switching channels and sound on the diverse location through said sphere stuck point.
CN2011205540313U 2011-12-27 2011-12-27 Rodlike flywheel-type TV remote controller Expired - Lifetime CN202435745U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011205540313U CN202435745U (en) 2011-12-27 2011-12-27 Rodlike flywheel-type TV remote controller

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011205540313U CN202435745U (en) 2011-12-27 2011-12-27 Rodlike flywheel-type TV remote controller

Publications (1)

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CN202435745U true CN202435745U (en) 2012-09-12

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CN2011205540313U Expired - Lifetime CN202435745U (en) 2011-12-27 2011-12-27 Rodlike flywheel-type TV remote controller

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103440752A (en) * 2013-08-15 2013-12-11 深圳Tcl新技术有限公司 Electromagnetic remote controller and control method thereof
CN108288370A (en) * 2018-02-09 2018-07-17 钱娟娟 Fly to turn gyro universal remote control

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103440752A (en) * 2013-08-15 2013-12-11 深圳Tcl新技术有限公司 Electromagnetic remote controller and control method thereof
CN103440752B (en) * 2013-08-15 2017-07-25 深圳Tcl新技术有限公司 The control method of electromagnetic remote controlled device and electromagnetic remote controlled device
CN108288370A (en) * 2018-02-09 2018-07-17 钱娟娟 Fly to turn gyro universal remote control

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Granted publication date: 20120912