CN100382992C - Magnetic boot module - Google Patents

Magnetic boot module Download PDF

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Publication number
CN100382992C
CN100382992C CNB2004100461396A CN200410046139A CN100382992C CN 100382992 C CN100382992 C CN 100382992C CN B2004100461396 A CNB2004100461396 A CN B2004100461396A CN 200410046139 A CN200410046139 A CN 200410046139A CN 100382992 C CN100382992 C CN 100382992C
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China
Prior art keywords
magnetic
boots
boot module
sense
path
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Expired - Fee Related
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CNB2004100461396A
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Chinese (zh)
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CN1704285A (en
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陈福礽
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Individual
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Individual
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Abstract

The present invention relates to a magnetic shoe module. The present invention comprises a pair of magnetic shoes, a pair of movable devices and a magnetic induction path, wherein the movable devices are respectively coupled with the magnetic shoes in a one to one mode, the magnetic shoes have a capacity for transversal movement, and the magnetic shoes move in turns on the magnetic induction path. Each of the paths of the magnetic shoes is composed of a magnetic induction pad or a magnetic induction track. The magnetic shoe module can use a position sensing device for determining the current position of a magnetic shoe device.

Description

Magnetic boot module
Technical field
The present invention is about a kind of Magnetic boot module, particularly about a kind of magnetic boots formula back mirror.
Background technology
Auto-industry are constantly progressive over 100 years, and along with making rapid progress of production technology and material, the production technology of automobile is constantly innovation also.Auto-industry flourish also drives the progress of related industry, and then whole industrial technology is upwards promoted.Yet no matter be the car of high price or the national car of Recreational Vehicle or par, the development of automobile is safe and comfortable with the most important key of design.Therefore, developing of automobile industry not only depends on the technological advance of auto trade itself, and depends on the progress of related industry.
The wherein safety of the vehicle most important consideration of automobile design, manufacturing and steerman especially.In the vehicle that travels, steerman is observed road conditions for environment all around except the Windshield actv. that sees through the place ahead, more need be dependent on back mirror to observe the situation of vehicle-surroundings.Therefore, automobile rearview mirror provides crucial help for the safety of driving.
The eyeglass that traditional driven rearview mirrors utilizes mechanisms such as motor and gear to drive back mirror turns to required angle, observes the situation of vehicle-surroundings so that steerman to be provided.Yet traditional driven rearview mirrors is not appropriate to use in more and more digitized auto-industry.Therefore, how to provide a kind of driven rearview mirrors, can be effectively and control the angle of rear view mirror lens easily, not only can make things convenient for steerman to adjust back mirror, to improve traveling security, more can combine, to promote the digitized step of auto-industry with digitalisation science and technology.
Summary of the invention
In above-mentioned background of invention, traditional driven rearview mirrors structure is not appropriate to use at digitized day by day auto-industry.How a kind of convenience is provided and effectively controls the device of back mirror, not only can make things convenient for motorist to adjust back mirror, and effectively improve running safety, more can make best operating angle and the position of back mirror performance further in conjunction with digitized control technology.
One of purpose of the present invention is to utilize angle and the position of Magnetic boot module with effective adjustment back mirror, makes the steerman of vehicle can have better view to avoid the generation of contingency.
Another object of the present invention is the Magnetic boot module that utilizes adjustable angle, further reduces and adjusts the required magnetic boots quantity of back mirror.
Another purpose of the present invention, be to utilize induction installation and the location of feeling on the magnetic-path to indicate, to confirm the angle of back mirror, and then the ability of raising back mirror Digital Control, and utilize anchor fitting, with the effect of the fixing and shock-absorbing of strengthening back mirror, the stability when back mirror is used more improves.
A further object of the present invention is to utilize Magnetic boot module with the moving of accurate control convenience, and then improves the accuracy rate that it moves.
According to above-described purpose, the invention provides a kind of Magnetic boot module, this Magnetic boot module has one first magnetic boots, one second magnetic boots, one first mobile device, one second mobile device and a sense magnetic-path.In the installation that is parallel to each other of the first magnetic boots and the second magnetic boots, and first mobile device is coupled in the first magnetic boots, and second mobile device is coupled in the second magnetic boots, makes the first magnetic boots and the second magnetic boots can be in the staggered walking of sense magnetic-path.
The staggered sense magnetic-path that is adsorbed in of the first magnetic boots and the second magnetic boots wherein, and when first magnetic boots absorption sense magnetic-path, first mobile device promotes the first magnetic boots, make the sense magnetic-path and the first magnetic boots move one first predetermined distance, when second magnetic boots absorption sense magnetic-path, second mobile device promotes the second magnetic boots, makes the sense magnetic-path and the second magnetic boots move one second predetermined distance.
One embodiment of the present invention are a kind of magnetic boots formula back mirror, and this magnetic boots formula back mirror includes a backsight eyeglass, a linkage, a sense magnetic pad and a Magnetic boot module.Linkage is coupled in the rear of backsight eyeglass, through the change of Magnetic boot module with sense magnetic pad relative position, drives sense magnetic pad and linkage, adjusts the angle of backsight eyeglass.Magnetic boot module comprises at least two magnetic boots, and utilizes staggered mode of advancing, and moves sense magnetic pad.
Wherein this Magnetic boot module also can be coupled in a sense magnetic orbital, and utilizes Magnetic boot module to move in the sense magnetic orbital, with the drive linkage, and then the angle of adjustment backsight eyeglass.
Wherein above-mentioned sense magnetic pad is made of a soft magnetic material, for example is that iron, nickel, cobalt metal, alperm (permalloy), super-permalloy (Supermalloy) selection one and combination thereof constitute.And Magnetic boot module more comprises a position sensing apparatus, and to judge the present angle of backsight eyeglass, it more can indicate in conjunction with several location, judges the present angle of backsight eyeglass to make things convenient for sensing device.
More include a fixed bolster between sense magnetic pad and the Magnetic boot module, when the backsight eyeglass arrives predetermined angle, depress fixed bolster, it is contacted with sense magnetic pad, with effective fixedly backsight eyeglass, above-mentioned magnetic boots also can be adsorbed on the sense magnetic pad, with further fixedly backsight eyeglass simultaneously simultaneously.
Sense magnetic pad or sense magnetic orbital also can be made of non-magnet material, and are inlaid with several sense magnetic regions thereon.Wherein feeling the magnetic region and be made of a soft magnetic material, for example is that iron, nickel, cobalt metal, alperm, super-permalloy selection one and combination thereof constitute.Wherein each magnetic boots more comprises a mobile device, makes it have the ability of side travel.
Another embodiment of the present invention is a kind of magnetic boots formula two-dimensional bar reading device.This magnetic boots formula two-dimensional bar reading device has, and a control setup, a monitoring camera lens, scan a camera lens and a Magnetic boot module.The best that this magnetic boots formula two-dimensional bar reading device utilization monitoring camera lens reads two-dimensional bar reads the position, and utilize control setup and Magnetic boot module, make and scan camera lens and be moved into above-mentioned the best and read the position, probability is read in success with effective raising two-dimensional bar, and then improves the efficient of producing.
Magnetic boot module of the present invention, utilize Magnetic boot module on sense magnetic pad or sense magnetic orbital, to move alternately, to drive linkage, make the angle of adjusting back mirror, not only make things convenient for steerman to carry out the adjustment of back mirror angle, more utilize sensing device to judge the present angle of backsight eyeglass, effectively improve the numerically controlled ability of back mirror.The absorption of cooperation magnetic boots can effectively improve the stability of back mirror, utilizes fixed bolster more can effectively absorb the shaking force of driving again, and traveling security is more improved.Magnetic boot module of the present invention more can improve the reading efficiency of two-dimensional bar reading device, and moving of any mechanism that needs precision positions adjustment or correction perhaps is provided, and can also be used in the walking of toy slot cars.
In order further to understand feature of the present invention and technology contents, see also following about detailed description of the present invention and accompanying drawing, yet appended graphic only provide with reference to and the explanation usefulness, be not to be used for the present invention is limited.
Description of drawings
Below in conjunction with accompanying drawing,, will make technical scheme of the present invention and other beneficial effects apparent by the specific embodiment of the present invention is described in detail.
In the accompanying drawing,
Fig. 1 is the schematic diagram of Magnetic boot module of the present invention;
Fig. 2 is a preferred embodiment scheme drawing of the sense magnetic pad of Magnetic boot module of the present invention;
Fig. 3 is the scheme drawing of first preferred embodiment of Magnetic boot module of the present invention;
Fig. 4 is the scheme drawing of second preferred embodiment of Magnetic boot module of the present invention;
Fig. 5 is the Magnetic boot module and the scheme drawing of feeling the magnetic pad of second preferred embodiment of Fig. 4; And
Fig. 6 is the 3rd preferred embodiment of Magnetic boot module of the present invention.
The specific embodiment
The present invention not only makes things convenient for steerman to adjust the angle and the position of back mirror, more improves the numerically controlled ability of back mirror, and the safety when increasing automobile and advancing, and more can be applicable to the two-dimensional bar reading device simultaneously, or toy slot cars.Below will and describe in detail and clearly demonstrate design of the present invention with diagram, as the person skilled in the art after understanding preferred embodiment of the present invention, when can be by the technology of teachings of the present invention, change and modification, it does not break away from design of the present invention and scope.
Fig. 1 is the schematic diagram of Magnetic boot module of the present invention.As shown in FIG., Magnetic boot module of the present invention includes the first magnetic boots 112 and the second magnetic boots 114, and it is respectively at rear be coupled first mobile device 116 and second mobile device 118, and is installed among the shell 110.The first magnetic boots 112 and the second magnetic boots 114 more utilize electromagnetic attraction and sense magnetic-path 130 to intercouple, control signal via controller 120 can move the first magnetic boots 112 and the second magnetic boots 114 respectively on sense magnetic-path 130, comparatively speaking, via the change of the first magnetic boots 112 and the second magnetic boots 114, make sense magnetic-path 130 can carry out moving of predetermined direction at the relative position of sense magnetic-path 130.
When desire will be felt magnetic-path 130 left side during side travel in figure, controller 120 at first sends signal, makes on the magnetic boots 112 absorption sense magnetic-path 130 of winning and utilizes first mobile device 116 that the first magnetic boots 112 and sense magnetic-path 130 are moved a predetermined distance simultaneously to the left.Then, again with on the second magnetic boots 114 absorption sense magnetic-path 130 and utilize second mobile device 118 that the second magnetic boots 114 and sense magnetic-path 130 are moved above-mentioned predetermined distance simultaneously more to the left.When the second magnetic boots 114 are adsorbed in sense magnetic-path 130, controller 120 sends signal simultaneously and makes magnetic boots 112 demagnetizations of winning, and then it is separated with sense magnetic-path 130, and utilize first mobile device 116 that it is moved right, get back to the preceding reference position of action.
Next, controller 120 according to sense magnetic-path 130 required mobile distances, repeats above-mentioned step again, via the first magnetic boots 112 and 114 mutual the moving of the second magnetic boots, makes sense magnetic-path 130 be movable to the desired position.According to above-mentioned shifting principle, the also exportable corresponding signal of controller 120 is so that sense magnetic-path 130 laterally moves to the desired position to the right.Wherein, first mobile device 116 and second mobile device 118 can be the mobile device of electromagnetic type, can also be the mobile device of mechanism's linkage type, and it does not all break away from design of the present invention and scope.
Fig. 2 is a preferred embodiment scheme drawing of the sense magnetic pad of Magnetic boot module of the present invention.As shown in FIG., sense magnetic pad 230 is made of a base plate 232.Wherein base plate 232 can be constituted by a permeability magnetic material (Magnetic conductive material), it can adopt any soft magnetic material (Soft magneticmaterial) to make, for example be iron, cobalt, nickel metal, alperm (permalloy), super-permalloy (Supermalloy) or any material, the absorption of the magnetic boots among Fig. 1 is provided with the sense magnetic base plate (Magnetic inductive plate) that is made with temporary magnetism (temporary magnetism).
Wherein, base plate 232 is made of non-magnetic material (Non-magnetic conductivematerial), for example is plastics or aluminum metal etc., to reduce the required weight of base plate 232, reaches the weight-saving purpose.And for the absorption of magnetic boots is provided, then in the middle of base plate 232, be inlaid with several sense magnetic regions 234, these sense magnetic regions 234 are in order effectively to provide the absorption of magnetic boots, so adopt magnetic conductive material to make, for example be ferrous metal, alperm, super-permalloy or any material with temporary magnetism.Wherein, the base plate 232 of magnetic conductive material or sense magnetic region 234 have constituted the sense magnetic-path that the magnetic boots are advanced.
Base plate 232 more can be manufactured with the location and indicate 236, the usefulness of the location when providing back mirror to change angle, and detailed embodiment will be illustrated in follow-up embodiment.
Fig. 3 is the scheme drawing of the first preferred embodiment magnetic boots formula back mirror of Magnetic boot module of the present invention.As shown in FIG., back mirror 300 includes eyeglass 310, the first sense magnetic orbital 320, the second sense magnetic orbital 330, first linkage 340, second linkage 350, the first magnetic boots 360 and the second magnetic boots 370.
When desire is rotated the eyeglass 310 of back mirror 300, the ability that the first magnetic boots 360, first linkage 340 and the first sense magnetic orbital 320 provide eyeglass 310 to rotate up and down, the second sense magnetic orbital 330, second linkage 350 and the second magnetic boots 370 then provide the ability of eyeglass 310 left-right rotation.Therefore, but back mirror 300 actvies of first preferred embodiment of the present invention provide steerman to adjust the ability of backsight eyeglass 310 angles.Wherein the first sense magnetic orbital 320 and second is felt the sense magnetic-path that magnetic orbital 330 provides the first magnetic boots 360 and the second magnetic boots 370 to advance respectively.And in the sense magnetic-path of the first sense magnetic orbital 320 and the second sense magnetic orbital 330, also can include the location to indicate, for the angle of judging backsight eyeglass 310.Wherein, the first sense magnetic orbital 320 and the second sense magnetic orbital 330 can be constituted by a permeability magnetic material, it can adopt any soft magnetic material to make, and for example is iron, cobalt, nickel metal, alperm, super-permalloy or any material with temporary magnetism.It is made of the non-magnetic material, for example is plastics or aluminum metal etc., to reduce the weight of track, to reach the weight-saving purpose.And, then in track, be inlaid with several sense magnetic regions that magnetic conductive material constitutes for the absorption of magnetic boots is provided.
Fig. 4 is the scheme drawing of the second preferred embodiment magnetic boots formula back mirror of Magnetic boot module of the present invention.As shown in FIG., back mirror 400 includes eyeglass 410, sense magnetic pad 420, linkage 440, wheel word 450, Magnetic boot module 460 and permanent seat 470.
Wherein Magnetic boot module 460 can make sense magnetic pad 420 moving up and down, and an end of linkage 440 and 420 couplings of sense magnetic pad, the other end then is coupled with eyeglass 410, via moving of sense magnetic pad 420, linkage 440 is sent to eyeglass 410 with corresponding displacement, to change the angle of eyeglass 410.And an end of wheel word 450 is coupled on the permanent seat 470, to provide linkage 440 required turning power.After Magnetic boot module 460 utilized the magnetic boots to move sense magnetic pad 420, eyeglass 410 can turn to required angle according to the demand of steerman.
Fig. 5 is the Magnetic boot module and the scheme drawing of feeling the magnetic pad of second preferred embodiment of Fig. 4.Wherein Magnetic boot module 540 is Magnetic boot module 460 mode of operation that are used for describing in detail second preferred embodiment among Fig. 4.Magnetic boot module 540 includes magnetic boots 542 and rotational fixation axle 544, and rotational fixation axle 544 provides magnetic boots 542 to rotate and fixing ability.When desiring when direction 550 is adjusted the angle of back mirrors, magnetic boots 542 rotate and are adjusted to parallel with direction 550 along rotational fixation axle 544, and utilize magnetic boots 542 that sense magnetic pad 530 is moved along the direction parallel with direction 550.When desiring when direction 560 is adjusted the angle of back mirrors, magnetic boots 542 rotate and are adjusted to parallel with direction 560 along rotational fixation axle 544, and utilize magnetic boots 542 that sense magnetic pad 530 is moved along the direction parallel with direction 560.Therefore, this Magnetic boot module 540 only needs one group of magnetic boots 542 to rotate sense magnetic pad 530 by actv., and then adjusts the backsight eyeglass to required angle.
Wherein rotational fixation axle 544 more includes a position sensing apparatus in wherein, its location that can read on the base plate 532 of feeling magnetic pad 530 indicates 536, utilize location sign 536 can clearly differentiate the angle of present back mirror, more can utilize this location to indicate 536 and adjust back mirror to required angle.And utilize sense magnetic 534 more can effectively reduce the required weight of associative perception magnetic pad 530.
Wherein this Magnetic boot module 540 more can utilize magnetic boots 542 when back mirror turns to required angle, makes magnetic boots 542 absorption sense magnetic pads 530 to increase the ability of back mirror location simultaneously.The below of Magnetic boot module 540 more can include a fixed bolster with sense magnetic pad 530 position contacting simultaneously, when back mirror turns to required angle, rotational fixation axle 544 is depressed downwards, fixed bolster is contacted with sense magnetic pad 530, further improving the ability of back mirror location, and effectively absorb the shaking force that is produced when vehicle is advanced.
Magnetic boot module of the present invention more can actv. in conjunction with the device of automatic compensation back mirror angle, make back mirror when vehicle body is turned, the back mirror angle that the automatic compensation vehicle body is outer, and the adjustment record when steerman is got on the bus, more can make Magnetic boot module of the present invention, can be according to the difference of steerman, and required back mirror angle is provided automatically.
Magnetic boot module of the present invention not only makes things convenient for steerman to adjust the angle of back mirror, to increase traveling security, more can provide digitized adjustment mode, makes the ability of automobile Digital Control more promote.Simultaneously again in conjunction with between advancing according to vehicle body turning automatic compensation back mirror angle, or according to different steermans, the back mirror angle that automatic compensation is required, its safety that will significantly improve vehicle drive is with convenient.
Fig. 6 is the scheme drawing of the 3rd preferred embodiment two-dimensional bar reading device of Magnetic boot module of the present invention, and as shown in FIG., Magnetic boot module 640 of the present invention is installed on control setup 650 and scans between the camera lens 630.This preferred embodiment utilization monitoring camera lens 620 reads the relevant position of the two-dimensional bar (2DBarcode) 612 of substrate 610, adjusts the position of reading that scans camera lens 630 via control setup 650 again, to read the two-dimensional bar 612 on the substrate 610 accurately.Because in the panel processing procedure, very little of the area of two-dimensional bar 612, generally speaking about 0.8 micron (mm) is to 2.5 microns, therefore during the data on reading two-dimensional bar 612, the scope that scans 632 that scans camera lens 630 needs can actv. to be encompassed in the top of two-dimensional bar 612, with the correct information that reads two-dimensional bar 612.Yet, because the area of two-dimensional bar is very little, and runs the mode of reading and carry out data read in the two-dimensional bar 612, in the probability that reads failure thereby the raising of two-dimensional bar 612 in such cases for the manufacturing line that increases the production efficiency part more adopts.And this kind reads failure generally by the conveying mechanism error, so that cause the inaccurate institute in bar code position to cause.
In order actv. to improve the reduction that this kind two-dimensional bar reads the production efficiency that failure causes, utilize monitoring camera lens 620 effective monitoring substrates 610 among this embodiment, to form bigger monitoring range 622, and then provide the accurate location that scans camera lens 630, scan the success ratio that camera lens 630 reads with raising, further increase production efficiency.
The above only is the preferred embodiment of Magnetic boot module of the present invention, the present invention does not limit above-mentioned back mirror or two-dimensional bar reading device, Magnetic boot module of the present invention more can use in office what is the need for to want the mechanism of precision positions adjustment or correction, also can use moving in toy slot cars simultaneously.Utilize Magnetic boot module of the present invention when desiring to carry out the control of magnetic boots miles of relative movement, only need adjust time and number of times that the magnetic boots add magnetic, get final product the miles of relative movement and the accuracy rate of actv. control magnetic boots.Along with the situation that the time that adds magnetic shortens, the magnetic boots can carry out moving more accurately, then can make the miles of relative movement thereby the increase of magnetic boots along with the number of times increase that adds magnetic.
The above for the person of ordinary skill of the art, can make other various corresponding changes and distortion according to technical scheme of the present invention and technical conceive, and all these changes and distortion all should belong to the protection domain of claim of the present invention.

Claims (9)

1. a Magnetic boot module is characterized in that, comprises at least:
One first magnetic boots;
One second magnetic boots are with the parallel installation of these first magnetic boots;
One first mobile device is coupled in this first magnetic boots;
One second mobile device is coupled in this second magnetic boots;
One control setup is coupled in these first magnetic boots, these second magnetic boots, this first mobile device and this second mobile device; And
One sense magnetic-path, wherein these first magnetic boots and this second magnetic boots interlock and adsorb this sense magnetic-path, and this control setup makes this first mobile device and this second mobile device promote these first magnetic boots and this second magnetic boots respectively, and then these first magnetic boots and this second magnetic boots are moved on this sense magnetic-path.
2. Magnetic boot module as claimed in claim 1 is characterized in that, above-mentioned sense magnetic-path is a sense magnetic pad.
3. Magnetic boot module as claimed in claim 2 is characterized in that, above-mentioned sense magnetic pad is made of a soft magnetic material.
4. Magnetic boot module as claimed in claim 2 is characterized in that, above-mentioned sense magnetic pad is made of a non-sense magnetic material, and comprises several by sense magnetic region that soft magnetic material constituted.
5. Magnetic boot module as claimed in claim 1 is characterized in that, above-mentioned sense magnetic-path is a sense magnetic orbital, and this sense magnetic orbital is made of a soft magnetic material.
6. Magnetic boot module as claimed in claim 1 is characterized in that above-mentioned Magnetic boot module more comprises a position sensing apparatus, to judge the position of this Magnetic boot module and this sense magnetic-path.
7. Magnetic boot module as claimed in claim 1 is characterized in that, above-mentioned Magnetic boot module is used in a magnetic boots formula back mirror.
8. Magnetic boot module as claimed in claim 1 is characterized in that, above-mentioned Magnetic boot module is used in a magnetic boots formula two-dimensional bar reading device.
9. Magnetic boot module as claimed in claim 1 is characterized in that, above-mentioned Magnetic boot module is used in a magnetic boots formula toy slot cars.
CNB2004100461396A 2004-06-02 2004-06-02 Magnetic boot module Expired - Fee Related CN100382992C (en)

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Application Number Priority Date Filing Date Title
CNB2004100461396A CN100382992C (en) 2004-06-02 2004-06-02 Magnetic boot module

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Application Number Priority Date Filing Date Title
CNB2004100461396A CN100382992C (en) 2004-06-02 2004-06-02 Magnetic boot module

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CN1704285A CN1704285A (en) 2005-12-07
CN100382992C true CN100382992C (en) 2008-04-23

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4362362A (en) * 1979-10-17 1982-12-07 Kabushiki Kaisha Tokai Rika Denki Seisakusho Electric remote control rearview mirror
US4906089A (en) * 1988-07-28 1990-03-06 Giovanni Biondi Automotive tilt mirror
CN1286353A (en) * 1999-08-31 2001-03-07 徐君 Mutually inductive trigger
CN1323437A (en) * 1998-02-18 2001-11-21 松下电器产业株式会社 Device for driving object lens
CN2745793Y (en) * 2004-06-03 2005-12-14 陈福礽 Magnetic boot module

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4362362A (en) * 1979-10-17 1982-12-07 Kabushiki Kaisha Tokai Rika Denki Seisakusho Electric remote control rearview mirror
US4906089A (en) * 1988-07-28 1990-03-06 Giovanni Biondi Automotive tilt mirror
CN1323437A (en) * 1998-02-18 2001-11-21 松下电器产业株式会社 Device for driving object lens
CN1286353A (en) * 1999-08-31 2001-03-07 徐君 Mutually inductive trigger
CN2745793Y (en) * 2004-06-03 2005-12-14 陈福礽 Magnetic boot module

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Granted publication date: 20080423

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