TWI412813B - Zoom projection lens - Google Patents
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- TWI412813B TWI412813B TW099138029A TW99138029A TWI412813B TW I412813 B TWI412813 B TW I412813B TW 099138029 A TW099138029 A TW 099138029A TW 99138029 A TW99138029 A TW 99138029A TW I412813 B TWI412813 B TW I412813B
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- G—PHYSICS
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- G02B15/00—Optical objectives with means for varying the magnification
- G02B15/14—Optical objectives with means for varying the magnification by axial movement of one or more lenses or groups of lenses relative to the image plane for continuously varying the equivalent focal length of the objective
- G02B15/145—Optical objectives with means for varying the magnification by axial movement of one or more lenses or groups of lenses relative to the image plane for continuously varying the equivalent focal length of the objective having five groups only
- G02B15/1455—Optical objectives with means for varying the magnification by axial movement of one or more lenses or groups of lenses relative to the image plane for continuously varying the equivalent focal length of the objective having five groups only the first group being negative
- G02B15/145523—Optical objectives with means for varying the magnification by axial movement of one or more lenses or groups of lenses relative to the image plane for continuously varying the equivalent focal length of the objective having five groups only the first group being negative arranged -++-+
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Abstract
Description
本發明涉及一種變焦投影鏡頭。The present invention relates to a zoom projection lens.
現在許多投影機具備變焦功能,以適應不同的投影場所,如空曠的商業場所或狹小的家庭娛樂場所。這種具有變焦功能的投影機鏡頭通常包括複數個透鏡組,通過改變透鏡組之間的相對位置改變變焦投影鏡頭的有效焦距,從而實現變焦功能。但是,如果各透鏡組的光焦度分配不合理,可能會導致:(1)無法有效修正像差和畸變;(2)無法滿足變焦投影鏡頭縮小端(近DMD端)不滿足遠心(Telecentric)成像要求。Many projectors now have a zoom function to accommodate different projection locations, such as open commercial spaces or small family entertainment venues. Such a zoom lens projector lens generally includes a plurality of lens groups, and the zoom function is realized by changing the relative position between the lens groups to change the effective focal length of the zoom projection lens. However, if the power distribution of each lens group is unreasonable, it may result in: (1) unable to effectively correct aberrations and distortions; (2) unable to meet the zoom projection lens (near DMD end) does not satisfy telecentricity (Telecentric) Imaging requirements.
有鑒於此,有必要提供一種可在變焦過程中維持高解析度的變焦投影鏡頭。In view of this, it is necessary to provide a zoom projection lens that can maintain high resolution during zooming.
一種變焦投影鏡頭,其從放大端到縮小端依次包括:一個具有負光焦度的第一透鏡組、一個具有正光焦度的第二透鏡組、一個具有正光焦度的第三透鏡組、一個具有負光焦度的第四透鏡組及一個具有正光焦度的第五透鏡組。所述第五透鏡組固定設置,所述第一透鏡組、所述第二透鏡組、所述第三透鏡組及所述第四透鏡組移動設置。所述變焦投影鏡頭滿足以下條件式﹕1.0<|F1/Fw|<1.3;2.5<|F3/Fw|<2.7;2.81<|F5/Fw|<2.83;0.21<|F2/F4|<0.24;其中,F1、F2、F3、F4、F5分別為第一透鏡組、第二透鏡組、第三透鏡組、第四透鏡組、第五透鏡組的有效焦距,Fw為變焦投影鏡頭在廣角端的有效焦距。A zoom projection lens includes, in order from the amplification end to the reduction end, a first lens group having a negative power, a second lens group having a positive power, a third lens group having a positive power, and a A fourth lens group having a negative power and a fifth lens group having a positive power. The fifth lens group is fixedly disposed, and the first lens group, the second lens group, the third lens group, and the fourth lens group are moved and disposed. The zoom projection lens satisfies the following conditional expression: 1.0<|F1/Fw|<1.3; 2.5<|F3/Fw|<2.7; 2.81<|F5/Fw|<2.83; 0.21<|F2/F4|<0.24; Wherein, F1, F2, F3, F4, and F5 are effective focal lengths of the first lens group, the second lens group, the third lens group, the fourth lens group, and the fifth lens group, respectively, and Fw is effective for the zoom projection lens at the wide-angle end. focal length.
在上述條件式內對該變焦投影鏡頭的光焦度進行合理分配,以保證該變焦投影鏡頭在變焦過程中維持高解析度的要求。The power of the zoom projection lens is reasonably distributed in the above conditional expression to ensure that the zoom projection lens maintains a high resolution requirement during zooming.
下面將結合附圖,對本發明作進一步的詳細說明。The invention will be further described in detail below with reference to the accompanying drawings.
請參閱圖1及圖2,其為本發明實施方式所提供的變焦投影鏡頭100的示意圖,所述變焦投影鏡頭100的廣角端半視場角ω大於等於29度。本實施方式中,該變焦投影鏡頭100從放大端至縮小端(近DMD端)依次包括:一個具有負光焦度的第一透鏡組10、一個具有正光焦度的第二透鏡組20、一個具有正光焦度的第三透鏡組30、一個具有負光焦度的第四透鏡組40及一個具有正光焦度的第五透鏡組50。其中,第一透鏡組10、第二透鏡組20、第三透鏡組30及第四透鏡組40沿光軸移動設置,用於改變變焦投影鏡頭100的有效焦距,實現變焦功能。所述第五透鏡組50固定設置,用於防止變焦過程中DMD受到碰撞。另外,通過第一透鏡組10、第二透鏡組20、第三透鏡組30及第四透鏡組40四個透鏡組的移動可以保證整個焦距範圍內成像品質的一致性。其中第一透鏡組10係調焦透鏡組。Please refer to FIG. 1 and FIG. 2 , which are schematic diagrams of a zoom projection lens 100 according to an embodiment of the present invention. The wide angle end angle ω of the zoom projection lens 100 is greater than or equal to 29 degrees. In this embodiment, the zoom projection lens 100 includes, in order from the amplification end to the reduction end (near DMD end), a first lens group 10 having a negative refractive power, a second lens group 20 having a positive power, and a A third lens group 30 having positive power, a fourth lens group 40 having negative power, and a fifth lens group 50 having positive power. The first lens group 10, the second lens group 20, the third lens group 30, and the fourth lens group 40 are disposed along the optical axis for changing the effective focal length of the zoom projection lens 100 to realize the zoom function. The fifth lens group 50 is fixedly disposed to prevent the DMD from being collided during zooming. In addition, the movement of the four lens groups by the first lens group 10, the second lens group 20, the third lens group 30, and the fourth lens group 40 can ensure the uniformity of the image quality over the entire focal length range. The first lens group 10 is a focus lens group.
本實施方式中,所述變焦投影鏡頭100應用於DMD投影儀,投影時,DMD調製的投影信號光自成像面99依次經第五透鏡組50、第四透鏡組40、第三透鏡組30、第二透鏡組20及第一透鏡組10,投射於螢幕(圖未示)上便可得到投影畫面。具體地,DMD投影儀投影時,成像面99投射出的投影信號光依次經過保護玻璃98、第五平板玻璃97、第四平板玻璃96、第三平板玻璃95、第二平板玻璃94及第一平板玻璃93後進入變焦投影鏡頭100。所述第五平板玻璃97、第四平板玻璃96、第三平板玻璃95、第二平板玻璃94及第一平板玻璃93可以根據使用需要鍍不同功能的膜層,例如濾光膜。In the embodiment, the zoom projection lens 100 is applied to a DMD projector. During projection, the DMD modulated projection signal light passes through the fifth lens group 50, the fourth lens group 40, and the third lens group 30 from the imaging surface 99. The second lens group 20 and the first lens group 10 are projected on a screen (not shown) to obtain a projected image. Specifically, when the DMD projector is projected, the projection signal light projected by the imaging surface 99 sequentially passes through the protective glass 98, the fifth flat glass 97, the fourth flat glass 96, the third flat glass 95, the second flat glass 94, and the first The flat glass 93 enters the zoom projection lens 100. The fifth flat glass 97, the fourth flat glass 96, the third flat glass 95, the second flat glass 94, and the first flat glass 93 may be plated with different functions, such as a filter film, depending on the use.
具體地,變焦投影鏡頭100滿足條件式:Specifically, the zoom projection lens 100 satisfies the conditional expression:
(1) 1.0<|F1/Fw|<1.2;(1) 1.0<|F1/Fw|<1.2;
(2) 2.5<|F3/Fw|<2.7;(2) 2.5<|F3/Fw|<2.7;
(3) 2.81<|F5/Fw|<2.83;(3) 2.81<|F5/Fw|<2.83;
(4) 0.21<|F2/F4|<0.24。(4) 0.21<|F2/F4|<0.24.
其中,F1,F2,F3,F4及F5分別為第一透鏡組10、第二透鏡組20、第三透鏡組30、第四透鏡組40及第五透鏡組50的有效焦距,Fw為變焦投影鏡頭100廣角端的有效焦距。Wherein F1, F2, F3, F4 and F5 are the effective focal lengths of the first lens group 10, the second lens group 20, the third lens group 30, the fourth lens group 40 and the fifth lens group 50, respectively, and Fw is a zoom projection. The effective focal length of the wide angle end of the lens 100.
在條件式(1)~(4)內對變焦投影鏡頭100的光焦度進行合理分配(限定各透鏡組光焦度與變焦投影鏡頭100光焦度的關係)。一方面,保證變焦投影鏡頭100在變焦範圍內具有較高解析度(可在變焦過程中維持高解析度);另一方面,保證變焦投影鏡頭100的縮小端滿足遠心成像的要求。The refractive power of the zoom projection lens 100 is appropriately distributed in the conditional expressions (1) to (4) (the relationship between the power of each lens group and the power of the zoom projection lens 100 is limited). On the one hand, it is ensured that the zoom projection lens 100 has a higher resolution in the zoom range (high resolution can be maintained during zooming); on the other hand, it is ensured that the reduced end of the zoom projection lens 100 satisfies the requirements of telecentric imaging.
優選地,為控制變焦投影鏡頭100產生的色差,變焦投影鏡頭100還滿足條件式:Preferably, in order to control the chromatic aberration generated by the zoom projection lens 100, the zoom projection lens 100 also satisfies the conditional expression:
(5) 1.6<(Nd4+Nd5)/2;(5) 1.6 < (Nd4 + Nd5) / 2;
(6) 40<(Vd4-Vd5)<46,(6) 40<(Vd4-Vd5)<46,
其中,Nd4為第四透鏡對d光(波長為587.6奈米,下同)的折射率,Vd4為第四透鏡對d光的阿貝數(Abbe number),Nd5為所述第五透鏡對d光的折射率,Vd5為所述第五透鏡對d光的阿貝數。Wherein Nd4 is the refractive index of the fourth lens pair d light (wavelength is 587.6 nm, the same below), Vd4 is the Abbe number of the fourth lens pair d light, and Nd5 is the fifth lens pair d The refractive index of light, Vd5, is the Abbe number of the fifth lens pair d light.
具體地,所述第一透鏡組10從放大端到縮小端依次包括具有負光焦度的第一透鏡11、具有負光焦度的第二透鏡12,以合理分配所述第一透鏡組10的光焦度。所述第一透鏡11為一個非球面塑膠鏡片。因為所述第一透鏡11遠離投影機熱源,與空氣直接接觸,溫度較變焦投影鏡頭100的其他鏡片低,受熱變形小,所以考慮採用塑膠鏡片。Specifically, the first lens group 10 includes, in order from the enlarged end to the reduced end, a first lens 11 having a negative refractive power and a second lens 12 having a negative refractive power to properly distribute the first lens group 10 The power of the light. The first lens 11 is an aspherical plastic lens. Since the first lens 11 is away from the heat source of the projector, and is in direct contact with the air, the temperature is lower than other lenses of the zoom projection lens 100, and the heat deformation is small, so that a plastic lens is considered.
所述第二透鏡組20從放大端到縮小端依次包括具有正光焦度的第三透鏡21、具有正光焦度的第四透鏡22及具有負光焦度的第五透鏡23,以合理分配第二透鏡組20的光焦度。所述第四透鏡22與第五透鏡23膠合成膠合透鏡。The second lens group 20 includes, in order from the amplification end to the reduction end, a third lens 21 having a positive power, a fourth lens 22 having a positive power, and a fifth lens 23 having a negative power for a reasonable distribution. The power of the two lens group 20. The fourth lens 22 and the fifth lens 23 are glued into a cemented lens.
所述第三透鏡組30包括具有正光焦度的第六透鏡。The third lens group 30 includes a sixth lens having positive power.
所述第四透鏡組40從放大端到縮小端依次包括具有負光焦度的第七透鏡41、具有負光焦度的第八透鏡42、具有正光焦度的第九透鏡43及具有正光焦度的第十透鏡44,以合理分配所述第四透鏡組40的光焦度。The fourth lens group 40 includes, in order from the amplification end to the reduction end, a seventh lens 41 having a negative refractive power, an eighth lens 42 having a negative refractive power, a ninth lens 43 having a positive refractive power, and having a positive optical focus. The tenth lens 44 of the degree is used to reasonably distribute the power of the fourth lens group 40.
第五透鏡組50包括具有正光焦度的第十一透鏡。The fifth lens group 50 includes an eleventh lens having positive power.
更加具體地,所述變焦投影鏡頭100還包括一個設置於第五透鏡23與第三透鏡組30之間(即第二透鏡組20與第三透鏡組30之間)的固定孔徑的光闌91(Aperture stop),以限制軸外光線由第三透鏡組30進入第五透鏡23而產生較嚴重的畸變及場曲。另外,光闌91使得經過第三透鏡組30的光線更加對稱,利於修正彗差(coma)。More specifically, the zoom projection lens 100 further includes a fixed aperture aperture 91 disposed between the fifth lens 23 and the third lens group 30 (ie, between the second lens group 20 and the third lens group 30). (Aperture stop), to limit the off-axis light from the third lens group 30 into the fifth lens 23 to produce more severe distortion and curvature of field. In addition, the aperture 91 makes the light passing through the third lens group 30 more symmetrical, which is advantageous for correcting the coma.
為減小溫度變化對後焦的影響,除第一透鏡11之外的其他透鏡都採用玻璃材料製成。In order to reduce the influence of the temperature change on the back focus, other lenses than the first lens 11 are made of a glass material.
為了具有較寬鬆的公差,除第一透鏡11之外的其他透鏡均為球面玻璃鏡片。In order to have a loose tolerance, the lenses other than the first lens 11 are spherical glass lenses.
以透鏡表面中心為原點,光軸為x軸,透鏡表面的非球面面型運算式為:Taking the center of the lens surface as the origin and the optical axis as the x-axis, the aspherical surface of the lens surface is:
其中,c為鏡面表面中心的曲率,為從光軸到透鏡表面的高度,k係二次曲面係數,為第i階的非球面面型係數。Where c is the curvature of the center of the mirror surface, For the height from the optical axis to the lens surface, the k-type quadric coefficient, Is the aspherical surface coefficient of the i-th order.
該變焦投影鏡頭100各光學元件滿足表1、表2及表3的條件。The optical elements of the zoom projection lens 100 satisfy the conditions of Table 1, Table 2, and Table 3.
以下結合圖3至圖10,以具體實施方式進一步說明變焦投影鏡頭100。表1至表3中各參數的含義如下:The zoom projection lens 100 will be further described in detail with reference to FIGS. 3 through 10 in conjunction with FIGS. The meanings of the parameters in Tables 1 to 3 are as follows:
F:變焦投影鏡頭100的有效焦距;F: an effective focal length of the zoom projection lens 100;
D4:第一透鏡組10與第二透鏡組20的表面間距,即第二透鏡12像側表面與第三透鏡21物側表面之間的距離;D4: a surface distance between the first lens group 10 and the second lens group 20, that is, a distance between the image side surface of the second lens 12 and the object side surface of the third lens 21;
D10:第二透鏡組20與第三透鏡組30的表面間距,即第五透鏡23像側表面與第三透鏡組30物側表面之間的距離;D10: a surface distance between the second lens group 20 and the third lens group 30, that is, a distance between the image side surface of the fifth lens 23 and the object side surface of the third lens group 30;
D12:第三透鏡組30與第四透鏡組40的表面間距,即第三透鏡組30像側表面與第七透鏡41物側表面之間的距離;D12: a surface distance between the third lens group 30 and the fourth lens group 40, that is, a distance between the image side surface of the third lens group 30 and the object side surface of the seventh lens 41;
D19:第四透鏡組40與第五透鏡組50的表面間距,即第十透鏡44像側表面與所述第五透鏡組50物側表面之間的距離;D19: a surface distance between the fourth lens group 40 and the fifth lens group 50, that is, a distance between the image side surface of the tenth lens 44 and the object side surface of the fifth lens group 50;
FNo :F number 數;F No : F number number;
Nd:對應透鏡對d光的折射率;Nd: the refractive index of the corresponding lens to d light;
vd:對應透鏡對d光的阿貝數。Vd: corresponds to the Abbe number of the lens to d light.
本實施方式中的變焦投影鏡頭100滿足表1、表2及表3所列的條件。The zoom projection lens 100 in the present embodiment satisfies the conditions listed in Table 1, Table 2, and Table 3.
表1Table 1
本實施方式的變焦投影鏡頭100的球差特性曲線、場曲特性曲線、畸變特性曲線及橫向色差特性曲線分別如圖3至圖10所示(圖3-6對應廣角倍率的變焦投影鏡頭100,圖7-10對應攝遠倍率的變焦投影鏡頭100)。圖3、7中,曲線F,d及C分別為F光(波長為486.1奈米,下同)、d光及C光(波長為656.3奈米,下同)經變焦投影鏡頭100的球差特性曲線(下同)。可見,實施方式的變焦投影鏡頭100對可見光(400-700nm)產生的球差被控制在-0.1mm~0.1mm間。圖4、8中,曲線T及S為子午場曲(Tangential field curvature)特性曲線及弧矢場曲(Sagittal field curvature )特性曲線(下同)。可見,子午場曲值及弧矢場曲值被控制在-0.2mm~0.2mm間。圖5、9中,曲線為畸變特性曲線(下同)。可見,畸變量被控制在-1.5%~1.5%間。圖6、10中,兩條曲線分別為波長為F光及C光經變焦投影鏡頭100的橫向色差特性曲線(下同),d光經變焦投影鏡頭100的橫向色差特性曲線與縱軸重合(下同)。可見,實施方式的變焦投影鏡頭100對可見光產生的橫向色差被控制在-10微米(Micron, um)~10um間。綜前,在保證足夠的後焦距及縮小端遠心成像的前提下,變焦投影鏡頭100在變焦範圍內,其產生的球差、場曲、畸變及橫向色差被控制(修正)在較小的範圍內。 The spherical aberration characteristic curve, the field curvature characteristic curve, the distortion characteristic curve, and the lateral chromatic aberration characteristic curve of the zoom projection lens 100 of the present embodiment are respectively shown in FIGS. 3 to 10 (FIG. 3-6 corresponds to the wide-angle magnification zoom projection lens 100, Figure 7-10 corresponds to the zoom projection lens 100). In Figures 3 and 7, the curves F, d, and C are the spherical aberration of the F-projection lens 100 (F: 486.1 nm, the same below), d-light, and C-light (wavelength is 656.3 nm, the same below). Characteristic curve (the same below). It can be seen that the spherical aberration generated by the zoom projection lens 100 of the embodiment on visible light (400-700 nm) is controlled to be between -0.1 mm and 0.1 mm. In Figs. 4 and 8, the curves T and S are the Tangential field curvature characteristic curve and the Sagittal field curvature characteristic curve (the same applies hereinafter). It can be seen that the meridional curvature value and the sagittal curvature value are controlled between -0.2 mm and 0.2 mm. In Figs. 5 and 9, the curve is a distortion characteristic curve (the same applies hereinafter). It can be seen that the distortion variable is controlled between -1.5% and 1.5%. In FIGS. 6 and 10, the two curves are the lateral chromatic aberration characteristic curves of the F-light and the C-light passing through the zoom projection lens 100 (the same applies hereinafter), and the lateral chromatic aberration characteristic curve of the d-light passing through the zoom projection lens 100 coincides with the vertical axis ( The same below). It can be seen that the lateral chromatic aberration generated by the zoom projection lens 100 of the embodiment on visible light is controlled to be between -10 micrometers (micron, um) and 10 micrometers. In advance, under the premise of ensuring sufficient back focus and reduced end telecentric imaging, the zoom projection lens 100 is within the zoom range, and the spherical aberration, curvature of field, distortion and lateral chromatic aberration generated are controlled (corrected) in a small range. Inside.
在上述條件式內對該變焦投影鏡頭的光焦度進行合理分配,以保證該變焦投影鏡頭在變焦過程中維持高解析度的要求。The power of the zoom projection lens is reasonably distributed in the above conditional expression to ensure that the zoom projection lens maintains a high resolution requirement during zooming.
另外,本領域技術人員可在本發明精神內做其他變化,但是,凡依據本發明精神實質所做的變化,都應包含在本發明所要求保護的範圍之內。In addition, those skilled in the art can make other changes in the spirit of the invention, and all changes that are made according to the spirit of the invention should be included in the scope of the invention.
100‧‧‧變焦投影鏡頭100‧‧‧ zoom projection lens
10‧‧‧第一透鏡組10‧‧‧First lens group
11‧‧‧第一透鏡11‧‧‧First lens
12‧‧‧第二透鏡12‧‧‧second lens
20‧‧‧第二透鏡組20‧‧‧second lens group
21‧‧‧第三透鏡21‧‧‧ third lens
22‧‧‧第四透鏡22‧‧‧Fourth lens
23‧‧‧第五透鏡23‧‧‧ fifth lens
30‧‧‧第三透鏡組30‧‧‧third lens group
40‧‧‧第四透鏡組40‧‧‧Fourth lens group
41‧‧‧第七透鏡41‧‧‧ seventh lens
42‧‧‧第八透鏡42‧‧‧ eighth lens
43‧‧‧第九透鏡43‧‧‧ ninth lens
44‧‧‧第十透鏡44‧‧‧11th lens
50‧‧‧第五透鏡組50‧‧‧ fifth lens group
91‧‧‧光闌91‧‧‧Light
92‧‧‧棱鏡92‧‧ ‧ Prism
93‧‧‧第一平板玻璃93‧‧‧ first flat glass
94‧‧‧第二平板玻璃94‧‧‧Second flat glass
95‧‧‧第三平板玻璃95‧‧‧ Third flat glass
96‧‧‧第四平板玻璃96‧‧‧Four flat glass
97‧‧‧第五平板玻璃97‧‧‧ Fifth flat glass
98‧‧‧保護玻璃98‧‧‧protective glass
99‧‧‧成像面99‧‧‧ imaging surface
圖1為本發明的變焦投影鏡頭採用廣角倍率時的系統構成示意圖;1 is a schematic view showing the system configuration of a zoom projection lens of the present invention when a wide-angle magnification is used;
圖2為本發明的變焦投影鏡頭採用攝遠倍率時的系統構成示意圖;2 is a schematic diagram of a system configuration when the zoom projection lens of the present invention adopts a telephoto magnification;
圖3為本圖1的變焦投影鏡頭採用廣角倍率時的球差(Spherical aberration)特性曲線圖;3 is a graph showing a spherical aberration characteristic of the zoom projection lens of FIG. 1 when a wide-angle magnification is used;
圖4為圖1的變焦投影鏡頭採用廣角倍率時的場曲(Field curvature)特性曲線圖;4 is a graph showing a field curvature characteristic when the zoom projection lens of FIG. 1 adopts a wide angle magnification;
圖5為圖1的變焦投影鏡頭採用廣角倍率時的畸變(Distortion)特性曲線圖;FIG. 5 is a distortion diagram of the zoom projection lens of FIG. 1 when a wide-angle magnification is used; FIG.
圖6為圖1的變焦投影鏡頭採用廣角倍率時的橫向色差(Lateral chromatic aberration)特性曲線圖;6 is a graph showing a lateral chromatic aberration characteristic when the zoom projection lens of FIG. 1 adopts a wide-angle magnification;
圖7為圖2的變焦投影鏡頭採用攝遠倍率時的球差特性曲線圖;7 is a graph showing spherical aberration characteristics when the zoom projection lens of FIG. 2 adopts a telephoto magnification;
圖8為圖2的變焦投影鏡頭採用攝遠倍率時的場曲特性曲線圖;8 is a graph showing a field curvature characteristic when the zoom projection lens of FIG. 2 adopts a telephoto magnification;
圖9為圖2的變焦投影鏡頭採用攝遠倍率時的畸變特性曲線圖;FIG. 9 is a graph showing a distortion characteristic when the zoom projection lens of FIG. 2 adopts a telephoto magnification; FIG.
圖10為圖2的變焦投影鏡頭採用攝遠倍率時的橫向色差特性曲線圖。FIG. 10 is a graph showing lateral chromatic aberration characteristics when the zoom projection lens of FIG. 2 adopts a telephoto magnification.
100‧‧‧變焦投影鏡頭 100‧‧‧ zoom projection lens
10‧‧‧第一透鏡組 10‧‧‧First lens group
11‧‧‧第一透鏡 11‧‧‧First lens
12‧‧‧第二透鏡 12‧‧‧second lens
20‧‧‧第二透鏡組 20‧‧‧second lens group
21‧‧‧第三透鏡 21‧‧‧ third lens
22‧‧‧第四透鏡 22‧‧‧Fourth lens
23‧‧‧第五透鏡 23‧‧‧ fifth lens
30‧‧‧第三透鏡組 30‧‧‧third lens group
40‧‧‧第四透鏡組 40‧‧‧Fourth lens group
41‧‧‧第七透鏡 41‧‧‧ seventh lens
42‧‧‧第八透鏡 42‧‧‧ eighth lens
43‧‧‧第九透鏡 43‧‧‧ ninth lens
44‧‧‧第十透鏡 44‧‧‧11th lens
50‧‧‧第五透鏡組 50‧‧‧ fifth lens group
91‧‧‧光闌 91‧‧‧Light
92‧‧‧棱鏡 92‧‧ ‧ Prism
93‧‧‧第一平板玻璃 93‧‧‧ first flat glass
94‧‧‧第二平板玻璃 94‧‧‧Second flat glass
95‧‧‧第三平板玻璃 95‧‧‧ Third flat glass
96‧‧‧第四平板玻璃 96‧‧‧Four flat glass
97‧‧‧第五平板玻璃 97‧‧‧ Fifth flat glass
98‧‧‧保護玻璃 98‧‧‧protective glass
99‧‧‧成像面 99‧‧‧ imaging surface
Claims (9)
1.6<(Nd4+Nd5)/2;
40<(Vd4-Vd5)<46,
其中,Nd4為所述第四透鏡對波長587奈米光的折射率,Vd4為所述第四透鏡對波長587奈米光的阿貝數,Nd5為所述第五透鏡對波長587奈米光的折射率,Vd5為所述第五透鏡對波長587奈米光的阿貝數。The zoom projection lens of claim 2, wherein the zoom projection lens further satisfies the following conditional expression:
1.6<(Nd4+Nd5)/2;
40<(Vd4-Vd5)<46,
Wherein, Nd4 is a refractive index of the fourth lens for a wavelength of 587 nm, Vd4 is an Abbe number of the fourth lens for a wavelength of 587 nm, and Nd5 is a refractive index of the fifth lens for a wavelength of 587 nm. Vd5 is the Abbe number of the fifth lens with a wavelength of 587 nm.
Priority Applications (1)
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TW099138029A TWI412813B (en) | 2010-11-05 | 2010-11-05 | Zoom projection lens |
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TW099138029A TWI412813B (en) | 2010-11-05 | 2010-11-05 | Zoom projection lens |
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TW201219885A TW201219885A (en) | 2012-05-16 |
TWI412813B true TWI412813B (en) | 2013-10-21 |
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CN104730693B (en) * | 2015-04-17 | 2017-01-25 | 张家港中贺自动化科技有限公司 | Wide-spectrum and large-visual-field projection objective lens |
CN109581622B (en) * | 2017-09-29 | 2020-12-04 | 上海微电子装备(集团)股份有限公司 | Projection objective |
CN109799597B (en) * | 2019-03-28 | 2024-01-19 | 厦门力鼎光电股份有限公司 | Optical imaging lens |
CN114002821B (en) * | 2021-12-03 | 2023-07-04 | 江西晶超光学有限公司 | Optical lens, camera module, electronic equipment and car |
Citations (4)
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---|---|---|---|---|
US668595A (en) * | 1900-06-09 | 1901-02-19 | Isaac Wanner | Condenser. |
US6545817B2 (en) * | 2000-09-27 | 2003-04-08 | Minolta Co., Ltd. | Zoom lens system |
US7016118B2 (en) * | 2003-08-11 | 2006-03-21 | Canon Kabushiki Kaisha | Zoom lens and image projection apparatus having the same |
TW200846695A (en) * | 2007-05-18 | 2008-12-01 | Asia Optical Co Inc | Zooming projection lens |
-
2010
- 2010-11-05 TW TW099138029A patent/TWI412813B/en not_active IP Right Cessation
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US668595A (en) * | 1900-06-09 | 1901-02-19 | Isaac Wanner | Condenser. |
US6545817B2 (en) * | 2000-09-27 | 2003-04-08 | Minolta Co., Ltd. | Zoom lens system |
US7016118B2 (en) * | 2003-08-11 | 2006-03-21 | Canon Kabushiki Kaisha | Zoom lens and image projection apparatus having the same |
TW200846695A (en) * | 2007-05-18 | 2008-12-01 | Asia Optical Co Inc | Zooming projection lens |
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