CN106054510A - Wavelength conversion device and light-emitting device - Google Patents
Wavelength conversion device and light-emitting device Download PDFInfo
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- CN106054510A CN106054510A CN201610496706.0A CN201610496706A CN106054510A CN 106054510 A CN106054510 A CN 106054510A CN 201610496706 A CN201610496706 A CN 201610496706A CN 106054510 A CN106054510 A CN 106054510A
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- fin
- rotating disk
- air
- flow
- wavelength
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- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
- G03B—APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
- G03B21/00—Projectors or projection-type viewers; Accessories therefor
- G03B21/14—Details
- G03B21/20—Lamp housings
- G03B21/2006—Lamp housings characterised by the light source
- G03B21/2033—LED or laser light sources
- G03B21/204—LED or laser light sources using secondary light emission, e.g. luminescence or fluorescence
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V9/00—Elements for modifying spectral properties, polarisation or intensity of the light emitted, e.g. filters
- F21V9/40—Elements for modifying spectral properties, polarisation or intensity of the light emitted, e.g. filters with provision for controlling spectral properties, e.g. colour, or intensity
-
- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
- G03B—APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
- G03B21/00—Projectors or projection-type viewers; Accessories therefor
- G03B21/14—Details
- G03B21/16—Cooling; Preventing overheating
-
- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
- G03B—APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
- G03B21/00—Projectors or projection-type viewers; Accessories therefor
- G03B21/14—Details
- G03B21/20—Lamp housings
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Spectroscopy & Molecular Physics (AREA)
- Projection Apparatus (AREA)
- Multimedia (AREA)
- Optics & Photonics (AREA)
- General Engineering & Computer Science (AREA)
- Optical Filters (AREA)
Abstract
The embodiment of the invention provides a wavelength conversion device and a light-emitting device. The wavelength conversion device comprises a wavelength conversion turn plate and a motor, wherein the motor is used for driving the wavelength conversion turn plate to rotate; the wavelength conversion turn plate comprises a series of first fins which are arranged along the circumferential direction of the wavelength conversion turn plate; at least partial first fins move towards the radial direction of the wavelength conversion turn plate and are used for generating airflow flowing outwards along the radial direction when the wavelength conversion turn plate rotates; and the wavelength conversion turn plate also comprises a housing which is used for sealing the wavelength conversion turn plate therein and guiding at least partial airflow flowing outwards along the radial direction from the wavelength conversion turn plate to return to one end, close to the circle center, of each first fin to form an airflow loop. By the wavelength conversion device, heat of the wavelength conversion turn plate can be transferred to the housing when the wavelength conversion turn plate is sealed.
Description
The application is that applicant applied on February 10th, 2015, and Application No. 201510071022.1 is invention entitled
The divisional application of " Wavelength converter and light-emitting device ".
Technical field
The present invention relates to Display Technique field, particularly relate to a kind of Wavelength converter and use this wavelength convert dress
The light-emitting device put.
Background technology
Utilize LASER Excited Fluorescence colour wheel to produce the sequential light of high brightness, be the height of future generation that projection industry is generally acknowledged at present
Brightness light source solution.The program compares tradition mercury lamp or xenon lamp, has high brightness, long-life advantage.In this scheme
In, high intensity laser beam is incident in the fluorescence colour wheel of uniform rotation, such is advantageous in that everywhere in a rotation period
Fluorescent material, all only by one moment of laser excitation, effectively avoids fluorescence overheated and lost efficacy.
In this system, fluorescence colour wheel is a core optical component, and its reliability determines whole light source module
Performance.Owing to fluorescence colour wheel is high-speed rotation, and itself sends again substantial amounts of heat, iridescent in the most current scheme
Wheel be all open exposure in air, the most at least a bit of light path before and after fluorescence colour wheel is exposed in air.
Having substantial amounts of steam and dust in air, the lower meeting that works long hours forms hidden danger to the reliability of this section of light path.And directly use
This section of light path is closed by one shell, then the air themperature of the closing around fluorescence colour wheel can be caused to be ramping up, not only
Affect the efficiency of fluorescence colour wheel, the also service life of the motor that impact driving colour wheel rotates.
Summary of the invention
It is an object of the invention to be realized closing and the heat radiation of Wavelength converter by rational heat dissipation design simultaneously.
The present invention proposes a kind of Wavelength converter, and including wavelength convert rotating disk and motor, motor is used for driving wavelength to turn
Change rotating disk to rotate;A series of first fins along the arrangement of wavelength convert disk peripheral direction are included, wherein on wavelength convert rotating disk
The trend of at least part of first fin is the radial direction along wavelength convert rotating disk, for when wavelength convert rotating disk rotates
Produce the air-flow radially flowed outwardly.Also include shell, for being closed therein by wavelength convert rotating disk.This shell
Including the first optical transmission window for receiving exciting light, exciting light is transmissive to can play again by this first optical transmission window simultaneously
Close the effect of wavelength convert rotating disk.
The present invention also proposes a kind of light-emitting device, and including excitation source and above-mentioned Wavelength converter, excitation source is sent out
The exciting light gone out is incident in wavelength convert rotating disk through the first optical transmission window of the shell of Wavelength converter and makes it be excited to produce
Raw Stimulated Light.
Utilize wavelength convert rotating disk rotates the air-flow formed with the first fin, and utilizes the first fin, shell institute
The air channel formed guides formation gas flow loop to this air-flow, it is possible to make this air-flow effectively by the heat of wavelength convert rotating disk
Amount is delivered on shell.
Accompanying drawing explanation
Figure 1A is the structural representation of the first embodiment of the Wavelength converter of the present invention;
Figure 1B is the arrangement front view of the first fin in Figure 1A illustrated embodiment;
Fig. 1 C is the arrangement front view of the second fin in Figure 1A illustrated embodiment;
Fig. 1 D is the front view of Figure 1A illustrated embodiment medium wavelength conversion layer;
Fig. 1 E and Fig. 1 F is other two kinds of possible arrangement front views of the first fin in Figure 1A illustrated embodiment;
Fig. 2 A is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 2 B is the arrangement front view of the second fin in Fig. 2 A illustrated embodiment;
Fig. 3 is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 4 A is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 4 B is the arrangement front view of the first fin in Fig. 4 A illustrated embodiment;
Fig. 4 C is the arrangement front view of the second fin in Fig. 4 A illustrated embodiment;
Fig. 5 A is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 5 B is the arrangement front view of the second fin in Fig. 5 A illustrated embodiment;
Fig. 6 A is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 6 B is the arrangement front view of the second fin in Fig. 6 A illustrated embodiment;
Fig. 7 is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 8 is the structural representation of another embodiment of the Wavelength converter of the present invention;
Fig. 9 is the structural representation of another embodiment of the Wavelength converter of the present invention.
Detailed description of the invention
The structural representation of the first embodiment of the Wavelength converter of the present invention is as shown in Figure 1A.This Wavelength converter
Including wavelength convert rotating disk 101 and motor 105, motor 105 is used for driving wavelength convert rotating disk 101 to rotate.Wavelength convert rotating disk
A series of first fins 103 along the arrangement of wavelength convert disk peripheral direction, the front view of the first fin such as Figure 1B is included on 101
Shown in, the trend of at least a part of which part the first fin 103 is the radial direction along wavelength convert rotating disk, for turning at wavelength
Change when rotating disk rotates and produce the air-flow (representing with arrow 141a in figs. 1 a and 1b) radially flowed outwardly.When wavelength turns
Changing rotating disk 101 when being driven rotation by motor 105, the adjacent air between the first fin 103 can be due to centrifugal force along
The trend of one fin is to the peripheral outflow of wavelength convert rotating disk, simultaneously because negative pressure has the first fin near wavelength convert rotating disk
The air of the one end at center flows between the first fin.This part flows the air-flow between the first fin can be by wavelength convert
Heat produced by device is taken away along air current flow direction, and the air-flow simultaneously flowed out from wavelength convert turntable periphery can be by wavelength
Heat added by conversion rotating disk and the first fin.
In the present embodiment, the first fin is centripetal direction, but actual application is not likely to be the most centripetal (such as
Shown in Fig. 1 E), or may be bending (shown in such as Fig. 1 F) or other shape, this is can be according to existing method
It is designed.What deserves to be explained is, in the present invention, the trend of the first fin is the radial direction along wavelength convert rotating disk
, refer to one end of the first fin distance to wavelength convert center of turntable less than its other end to wavelength convert center of turntable
Distance, thus can be implemented in when wavelength convert rotating disk rotates and produce the purpose of air-flow radially flowed outwardly.
Air-flow radially flows outwardly and is also not limited to flow out along centrifugal direction herein, such as the air-flow 141a in Fig. 1 E and 1F,
Just can achieve the goal as long as flowing outwardly from wavelength convert turntable periphery.Therefore, as long as meeting the first fin of above-mentioned requirements
Just belong to protection scope of the present invention.
The Wavelength converter of the present embodiment also includes shell 121, for being closed within it by wavelength convert rotating disk 101
Portion.The inwall of this shell 121 includes that a series of second fin 123, the second the most adjacent fin form air channel, this air channel
For guiding the air-flow 141a radially outward flowed out from wavelength convert rotating disk 101 at least partially return to the first fin near the center of circle
One end, formed air-flow 141b, to form gas flow loop, again flow between the first fin.In the present embodiment, the second fin
Top view is as shown in Figure 1 C.With reference to Figure 1A and Fig. 1 C it can be seen that heated air-flow 141a enters into the second fin institute
Behind the air channel formed, first (the lower direction in Figure 1A) can be guided downwards to flow by this air channel, curved to direction, the center of circle the most again
Folding, the air channel formed finally along second fin (as shown in Figure 1 C) of arranged radially flows to direction, the center of circle, end form
Gas flow loop is become to flow again between the first fin.In this process, air-flow 141b can transfer heat to the second fin
123 and shell 121, the temperature of air-flow can reduce due to spreading out of of heat simultaneously.Therefore again enter as this air-flow 141b
When entering next circulation of air flow (when entering between the first fin), it has had changed into cold air, thus can be in shape
Absorbing wavelength conversion rotating disk and the heat of the first fin is continued when becoming air-flow 141a.
In sum, utilize wavelength convert rotating disk rotates the air-flow formed with the first fin, and utilizes first rib
The air channel that sheet, the second fin are formed guides formation gas flow loop to this air-flow, it is possible to make this air-flow effectively by ripple
The heat of long conversion rotating disk is delivered on shell.So while achieving use shell seal wavelength convert colour wheel, again can
Enough heat is effectively dispersed on shell, it is ensured that wavelength conversion efficiency and the service life of motor.
As shown in Figure 1A, wavelength convert rotating disk 101 includes wavelength conversion layer 102.Wherein, shell 121 include for
Receiving the first optical transmission window 125 of exciting light 161, exciting light is transmissive to play again envelope by this first optical transmission window simultaneously
Close the effect of wavelength convert rotating disk.The most in the present embodiment, the first optical transmission window is a convex lens 125, and it is transmissive to
And focused activating light 161 is on wavelength conversion layer 102, it also is able to play the effect closing wavelength convert rotating disk 101 simultaneously.In reality
In the application of border, the first optical transmission window can also be transparent glass sheet, or other printing opacity components and parts, does not the most limit.
The top view of wavelength conversion layer 102 is as shown in figure ip, it is seen that wavelength conversion layer 102 depends on wavelength convert exactly and turns
One annular coating of dish.With reference to Figure 1A, when exciting light 161 is incident in wavelength conversion layer through the first optical transmission window 125, with
Wavelength convert rotating disk to rotate, each of wavelength conversion layer is excited a little only can turn to the light path of exciting light 161
Moment is excited and generates heat, and begins to cooling after turning round, until next cycle is sent out after passing again to exciting light light path again
Light, the mode of excitation of this pulsed makes the temperature of wavelength conversion layer will not be too high, it is ensured that luminous efficiency.As can be seen here,
The ingenious part of the present invention also resides in, and motor 105 drives wavelength convert rotating disk 101 to rotate can reach two effects simultaneously: make
Wavelength conversion layer works in pulse mode to ensure its luminous efficiency, also creates simultaneously and flows in the first fin and the second fin
On air-flow to realize heat exchange.
In the present embodiment, wavelength conversion layer 102 is a uniform annular, and in actual applications, it is also possible to edge
The ring segment of the multistage of circumferencial direction distribution, each ring segment comprises different wavelength convert attributes, the most different wavelength
Transition material or different formula, in some instances it may even be possible to do not include material for transformation of wave length and exciting light is directly reflected or transmission and shape
Become a part for emergent light.So, along with the rotation of wavelength convert rotating disk, different ring segments is excited light the most successively
Exciting and produce different colours light, this has specific application in Projection Display.
Another of the Wavelength converter of the present invention implements such as Fig. 2 A.Unlike the embodiment shown in Figure 1A,
The second fin 223 on shell 221 inwall of the Wavelength converter of the present embodiment more simplifies, and Fig. 2 B is the row of the second fin
Cloth front view.Specifically, with reference to Fig. 2 A and 2B, the second fin 223 includes the first boot segment 223, and this first boot segment is close
First fin 203 is away from the one end in the center of circle, for receiving the air-flow produced when wavelength convert rotating disk rotates.The second adjacent fin
First boot segment of 223 forms the first air channel, and this first air channel guides the air-flow flowed into towards the first fin near the one of the center of circle
End turns to, and forms air-flow 241a.After this air-flow flows out the second fin, meeting is shape due to the first fin rotation produced negative pressure
Become air-flow 241b, thus be inhaled between the first fin, form gas flow loop.
The present embodiment, compared with the embodiment shown in Figure 1A, has got rid of the second fin near air-flow 241b, such
Being advantageous in that weight saving, but problem is air-flow 241 and the heat exchange degree of shell reduces, air-flow 241b blows into first rib
The temperature of the sheet situation than Figure 1A is more slightly higher.
Another embodiment of the Wavelength converter of the present invention is as shown in Figure 3.Unlike Figure 1A illustrated embodiment,
Second fin 323 of shell 321 inwall includes the second boot segment 323, and one end of the second boot segment is near the close circle of the first fin
One end of the heart, for effluent stream 341b to first fin 303 to form gas flow loop.Second guiding of the second adjacent fin
Section forms the second air channel, and the air-flow 341a produced when wavelength convert rotating disk is rotated by this second air channel is along wavelength convert rotating disk
Radial direction guides to one end close to the center of circle of the first fin 303 thus forms air-flow 341b.
In the present embodiment, shell 321 includes the 321a that caves in, for preferably guiding air-flow 341a to flow into the second boot segment
323.Even if the 321a it practice, do not cave in, owing to the existence air-flow 341a of negative pressure also can most inflow the second boot segment
323, and the 231a that caves in improves the throughput flowing into the second boot segment.
In conjunction with Figure 1A, Fig. 2 A and Fig. 3 it can be seen that the second fin in actually Figure 1A is equivalent to second in Fig. 2 A
The combination of the second fin in fin and Fig. 3, i.e. what the second boot segment 323 in Fig. 3 may be used for receiving in Fig. 2 A first draws
The air-flow flowed out in the section of leading 223, the most just constitutes the gas flow loop as Figure 1A and heat exchange method.
Preferably, in the present embodiment shown in Fig. 3, the second air channel includes the second boot segment and being positioned at the second fin
Demarcation strip 323a between one fin, for being separated by the contrary air-flow that flows in the first fin and the second fin, it is good
Place is preferably to have guided the flow direction of air-flow, so that heat exchange is highly efficient.
The several embodiment of summary is it can be seen that there is multiple possibility in the particular location of the second fin, if at least portion
Adjacent the second fin of split-phase forms air channel, and this air channel is for guiding the air-flow radially outward flowed out from wavelength convert rotating disk at least
It is partially returned to the first fin one end near the center of circle to form gas flow loop, just meets the requirement of the present invention, it becomes possible to produce
The beneficial effect of heat exchange.
In previous embodiment, it is symmetrical that the first fin or the second fin are all substantially circumference, i.e. heat exchange
It is to occur on whole circumference.In practice, heat exchange can also occur on part-circular periphery, as shown in Figure 4 A.Fig. 4 A institute
In the Wavelength converter shown, shell 421 also includes the second optical transmission window 427, for through from wavelength convert rotating disk transmission
Light 463.Wherein, the front view of the second fin of wavelength convert rotating disk 401 and shell is the most as shown in Figure 4 B and 4C.With Figure 1B and
Embodiment shown in Fig. 1 C is compared, and the first fin 403 on the wavelength convert rotating disk 401 shown in Fig. 4 B serves formation gas equally
The effect of stream, but except for the difference that also include an annular transparent area 401a on wavelength convert colour wheel;Corresponding, shell
The second fin 423 on 421 inwalls serves guiding gas equally and flows to the effect near the center of circle, but the most also includes second
Optical transmission window 427.So, when wavelength convert rotating disk rotates, transparent area 401a is periodically through the light of exciting light 461 for annular
Second optical transmission window 427 outgoing of road, this annular transparent area of now exciting light transmission transmitting case.In this present embodiment, the
One fin 403 and the second fin 423 are not the most that circumference is symmetrical, but cover only part-circular periphery, namely only in portion
Circumferential area is divided effectively to carry out heat exchange;Experiment proves that this situation can also realize heat exchange efficiently, can't be to dissipating
Thermal effect has much impact.
In the above-described embodiments, the air-flow that air channel that the first fin is formed is flowed out, is all through twice bendings of 90 degree
Flow to first fin one end near the center of circle after turning to, and actually this is not unique mode.At Fig. 5 A below to figure
Embodiment shown in 6B will illustrate other gas flow loop mode.
The structure of an alternative embodiment of the invention is as shown in Figure 5A.Wherein, the second fin 523 of the inwall of shell 521,
Its front view is as shown in Figure 5 B.Air-flow trend between the first fin is identical with previous embodiment, and the air-flow between the second fin is walked
To being divided into air-flow 541a and 541b two sections.As shown in Figure 5 B, the air-flow flowed out is guided first to flow into the second fin from the first fin
523, and the air channel formed via the second fin 523 guides formation of circumferentially flowing in the periphery of wavelength convert rotating disk
Air-flow 541a, the most for another example shown in Fig. 5 A and 5B, flows downward out from the second fin 523 and flows into formation air-flow to the center of circle
541b。
The structure of an alternative embodiment of the invention is as shown in Figure 6A.Wherein, the second fin 623 of shell 621 inwall it
Between air channel be also circumferentially extending.Air-flow trend between the first fin is identical with previous embodiment, and the second fin
Between air-flow trend be divided into air-flow 641a and 641b two sections.As shown in Figure 6B, the air-flow flowed out is guided first to flow from the first fin
Enter the second fin 623, and the air channel formed via the second fin 623 guides circumferentially square in the periphery of wavelength convert rotating disk
Form air-flow 641a to flowing, the most for another example shown in Fig. 6 A and 6B, flow downward out from the second fin 623 and flow into shape to the center of circle
Become air-flow 641b.
In sum, the arrangement mode of the second fin and the type of flow of air-flow of housing inwall of the present invention all has
Multiple choices, those skilled in the art can carry out oneself design according to the spirit of the present invention, therefore given by the present invention completely
Embodiment simply citing and be not construed as limiting the invention.
In the above-described embodiments, the second the most adjacent fin forms air channel, and this air channel turns from wavelength for guiding
Change the air-flow that rotating disk radially outward flows out and at least partially return to the first fin one end near the center of circle to form gas flow loop, then
Between secondary inflow the first fin.Even and if it practice, there is no the guiding of the second fin, owing to the first fin is near the one end in the center of circle
The negative pressure at place and the existence of the malleation of wavelength convert turntable periphery, air-flow can return to first rib from wavelength convert turntable periphery naturally
Sheet is near the one end in the center of circle, and the guiding of the second fin can preferably occur with shell during being so that this airflow reflux
Heat exchange.
The most in another embodiment of the present invention (its structure is as shown in Figure 9), relative to the embodiment shown in Figure 1A
Except for the difference that, the second fin on the inwall of shell 921 is deleted;Now, due to the rotation and of wavelength convert rotating disk 901
Air-flow 941a produced by the existence of one fin 903, can form air-flow 941b and be back to first due to the reason of draught head
Fin near the one end in the center of circle to form gas flow loop.Also one can be occurred with the inwall of shell in the flow process of air-flow 941b
Fixed heat exchange.Therefore while the present embodiment also is able to reach to use shell seal wavelength convert colour wheel, again can be by heat
Effectively it is dispersed on shell, it is ensured that the effect in the service life of wavelength conversion efficiency and motor.Certainly, owing to there is no second
Fin, the heat exchange between air-flow 941b and shell wants much less, the therefore the present embodiment cooling-down effect to wavelength convert colour wheel
Can be poorer than the embodiment shown in Figure 1A, but the present embodiment has the advantage of low cost, and this in actual applications can be according to reality
Situation is accepted or rejected.
In order to improve air-flow 941a and the heat exchanger effectiveness of shell 921 inwall in the present embodiment, it is preferred that in shell 921
Wall includes that the shape risen and fallen to increase its surface area, such as, can process some salient point, lines etc. on shell 921 inwall.This
A little fluctuating not necessarily can guide air-flow 941a to form gas flow loop as the embodiment shown in Figure 1A, but still can
Enough improve the heat exchanger effectiveness of air-flow 941a and shell 921 inwall.
In actual applications, the heat that wavelength convert rotating disk sends, also can pass to connected motor.And horse
The safe working temperature reached is usually no more than 85 degree, therefore also must be considered that into the service life of motor.Preferably, wavelength turns
Change and between rotating disk and motor, use heat-barrier material to be attached, so can effectively reduce the temperature of motor.
In the above-described embodiments, wavelength convert rotating disk includes wavelength conversion layer, and this wavelength conversion layer and the first fin are relative
The both sides being positioned at wavelength convert rotating disk.This is conducive to the arrangement of the first fin not limited by wavelength conversion layer, is therefore excellent
The scheme of choosing.And in actual applications, the relative position of wavelength conversion layer, the first fin and motor is all can be according to reality
Need design and optimize, therefore the citing of the present invention is not intended that the restriction to this.
The structure of an alternative embodiment of the invention is as shown in Figure 7.Unlike Figure 1A illustrated embodiment, the present embodiment
The outer wall of Wavelength converter shell 721 include a series of 3rd fin 724, so can effectively reduce the temperature of shell,
Thus indirectly reduce the temperature of wavelength convert rotating disk.Or, the outer wall of shell and heat abstractor thermally coupled, even with refrigeration dress
Put (such as semiconductor cooler) to be connected, thus play the effect reducing skin temperature.
Another difference of the present embodiment is, wavelength convert rotating disk includes mark 709, and shell 721 includes
Three optical transmission windows 729, by the 3rd optical transmission window 729 it is observed that the rotation of mark 709 on wavelength convert rotating disk, thus
Can be by the velocity of rotation of detector detection wavelength convert rotating disk.This will be applied in Projection Display.
The structure of an alternative embodiment of the invention is as shown in Figure 8.Unlike the embodiment shown in Fig. 7, shell 821
On include printed circuit board (PCB) 891, first of this printed circuit board (PCB) 891 and second respectively in enclosure and shell
Portion.First face of printed circuit board (PCB) 891 includes the first arrangements of electric connection, this first arrangements of electric connection and the electronics device of enclosure
Part electrically connects.Such as first arrangements of electric connection is powered for motor 805 by circuit 892.Second bread of this printed circuit board (PCB) 891
Include the second arrangements of electric connection, the first arrangements of electric connection and the second arrangements of electric connection and electrically connected by printed circuit board (PCB) 891, so outside
Portion's power supply just can be by electronics that the second arrangements of electric connection is enclosure or driving.In figure, circuit 893 is illustrated
With the second connected circuit of arrangements of electric connection.By printed circuit board (PCB) 891, solving the electronics for enclosure
While, also maintain the closure integrity of shell.
Obviously the setting of the printed circuit board (PCB) in the present embodiment and effect are mentioned with preceding embodiment gas flow loop and heat
Exchange is independent action, say, that as long as employing shell to close wavelength convert rotating disk, it is possible to use printed circuit
The mode of plate ensures the closure of shell for motor power supplying simultaneously, forms air-flow with whether using the first fin, the second fin
It doesn't matter in return road.
In the above-described embodiments, the shell of Wavelength converter is all an entirety.In actual applications, shell is probably
It is made up of multiple parts.A kind of common situation is, wavelength convert rotating disk is installed on an optical texture, re-uses one
Wavelength convert rotating disk is covered by housing.Now housing and optical texture are combined the work that wavelength convert rotating disk plays closing
With, therefore both together constitute shell;Within obvious this situation falls within protection scope of the present invention.
The present invention also proposes a kind of light-emitting device, and including excitation source and above-mentioned Wavelength converter, excitation source is sent out
The exciting light gone out is incident in wavelength convert rotating disk through the first optical transmission window of the shell of Wavelength converter and makes it be excited to produce
Raw Stimulated Light.
The foregoing is only embodiments of the invention, not thereby limit the scope of the claims of the present invention, every utilize this
Equivalent structure or equivalence flow process that bright description and accompanying drawing content are made convert, or are directly or indirectly used in other relevant skills
Art field, is the most in like manner included in the scope of patent protection of the present invention.
Claims (10)
1. a Wavelength converter, it is characterised in that:
Including wavelength convert rotating disk and motor, described motor is used for driving wavelength convert rotating disk to rotate;Described wavelength convert rotating disk
On include along this wavelength convert disk peripheral direction arrangement a series of first fins, the trend of at least a part of which part the first fin
It is the radial direction along described wavelength convert rotating disk, for producing radially when described wavelength convert rotating disk rotates
The air-flow flowed outwardly;
Also include shell, for described wavelength convert rotating disk is closed therein, and turn from described wavelength convert for guiding
The air-flow that dish radially outward flows out at least partially returns to the first fin one end near the center of circle, to form gas flow loop.
Wavelength converter the most according to claim 1, it is characterised in that: the inwall of described shell includes a series of second
Fin, the second the most adjacent fin forms air channel, and this air channel is radially outward flowed out from wavelength convert rotating disk for guiding
Air-flow at least partially return to the first fin one end near the center of circle, to form gas flow loop.
Wavelength converter the most according to claim 1, it is characterised in that: the inwall of described shell includes the shape risen and fallen
Shape.
Wavelength converter the most according to claim 2, it is characterised in that described second fin includes the first boot segment,
This first boot segment, is used for receiving the air-flow produced when wavelength convert rotating disk rotates away from the one end in the center of circle near the first fin;
First boot segment of the second adjacent fin forms the first air channel, and this first air channel guides the air-flow flowed into lean on towards the first fin
The one end in the nearly center of circle turns to.
5. according to the Wavelength converter described in claim 2 or 4, it is characterised in that described second fin includes the second guiding
Section, one end of the second boot segment near the first fin close to the one end in the center of circle, for effluent stream to the first fin to form gas
Flow back to road;Second boot segment of the second adjacent fin forms the second air channel, when wavelength convert rotating disk is rotated by this second air channel
The air-flow produced guides along the radial direction of wavelength convert rotating disk to one end close to the center of circle of the first fin.
Wavelength converter the most according to claim 5, it is characterised in that described second air channel includes being positioned at the second fin
The second boot segment and the first fin between demarcation strip.
Wavelength converter the most according to claim 5, it is characterised in that described shell includes depression, for preferably
Air-flow is guided to flow into the second boot segment.
Wavelength converter the most according to claim 2, it is characterised in that the air channel that the second adjacent fin is formed guides
The air-flow radially outward flowed out from wavelength convert rotating disk circumferentially flows in the periphery of wavelength convert rotating disk.
Wavelength converter the most according to claim 1, it is characterised in that include printed circuit board (PCB) on described shell, should
First of printed circuit board (PCB) and second respectively for enclosure and housing exterior;First face of this printed circuit board (PCB) includes
First arrangements of electric connection, this first arrangements of electric connection electrically connects with the electronic device of enclosure;The second of this printed circuit board (PCB)
Face includes that the second arrangements of electric connection, the first arrangements of electric connection and the second arrangements of electric connection are electrically connected by printed circuit board (PCB).
10. a light-emitting device, it is characterised in that include excitation source and ripple according to any one of claim 1 to 9
Long conversion equipment, the exciting light that described excitation source sends is incident in wavelength convert rotating disk and makes it be excited to produce Stimulated Light.
Priority Applications (1)
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CN201610496706.0A CN106054510A (en) | 2015-01-31 | 2015-02-10 | Wavelength conversion device and light-emitting device |
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CN201510055572 | 2015-01-31 | ||
CN201510071022.1A CN104676492B (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
CN201610496706.0A CN106054510A (en) | 2015-01-31 | 2015-02-10 | Wavelength conversion device and light-emitting device |
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CN201510071022.1A Division CN104676492B (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
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CN106054510A true CN106054510A (en) | 2016-10-26 |
Family
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CN201510071022.1A Active CN104676492B (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
CN201520099396.XU Withdrawn - After Issue CN204534444U (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
CN201610496706.0A Pending CN106054510A (en) | 2015-01-31 | 2015-02-10 | Wavelength conversion device and light-emitting device |
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CN201510071022.1A Active CN104676492B (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
CN201520099396.XU Withdrawn - After Issue CN204534444U (en) | 2015-01-31 | 2015-02-10 | Wavelength converter and light-emitting device |
Country Status (2)
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CN (3) | CN104676492B (en) |
WO (1) | WO2016127935A1 (en) |
Cited By (1)
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WO2020019292A1 (en) * | 2018-07-27 | 2020-01-30 | Materion Precision Optics (Shanghai) Limited | Wavelength conversion element with convective cooling |
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CN104676492B (en) * | 2015-01-31 | 2016-08-17 | 杨毅 | Wavelength converter and light-emitting device |
WO2017064866A1 (en) * | 2015-10-16 | 2017-04-20 | セイコーエプソン株式会社 | Wavelength conversion device, illumination device, and projector |
CN105319824A (en) * | 2015-11-07 | 2016-02-10 | 杨毅 | Light-emitting device and projection display device |
WO2017092669A1 (en) * | 2015-12-02 | 2017-06-08 | 深圳市光峰光电技术有限公司 | Colour wheel device |
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WO2018116689A1 (en) * | 2016-12-19 | 2018-06-28 | ソニー株式会社 | Light source device and projection display device |
JP7102849B2 (en) * | 2018-03-28 | 2022-07-20 | セイコーエプソン株式会社 | Wavelength converter, light source device and projector |
JP7070146B2 (en) * | 2018-06-25 | 2022-05-18 | 株式会社リコー | Light source module and optical device |
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CN111273508A (en) * | 2020-03-16 | 2020-06-12 | 广东联大光电有限公司 | Assembled wavelength conversion device |
CN212749383U (en) | 2020-08-24 | 2021-03-19 | 中强光电股份有限公司 | Wavelength conversion element and projector |
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Also Published As
Publication number | Publication date |
---|---|
WO2016127935A1 (en) | 2016-08-18 |
CN104676492B (en) | 2016-08-17 |
CN204534444U (en) | 2015-08-05 |
CN104676492A (en) | 2015-06-03 |
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