The present invention relates to a support for an optical element and an image drawing apparatus, and particularly, to a support for an optical element and an image drawing apparatus suitable for supporting when the optical element such as a prism or a mirror is provided.
In the related art, optical elements are often used to optically reflect and refract light from a laser light source or the like. For example, in an image drawing apparatus as an example, in order to allow optical axes of laser beams of three colors of green, red and blue emitted from laser light source units to be aligned to be substantially the same, a wavelength-selective dichroic mirror is provided. A variation in mounting posture of an optical element such as a dichroic mirror causes color irregularity on the screen, for example, in the image drawing apparatus, and thus, mounting without an error is required.
In order to solve such a problem, as an example of a support structure for mounting an optical element with high accuracy, there is known a technique of pressing two surfaces of a predetermined surface of the optical element and a surface adjacent to the surface with respective fixed springs and abutting back surface sides corresponding to the two surfaces against the respective seating surfaces provided on a housing. Such a technique is disclosed in, for example, JP 2016-126269 A.
Patent Document 1: JP 2016-126269 A
As in the related art described above, in the support structure in which the two surfaces of the optical element are mounted to be in contact with a seating surface, if there is an error in external dimensions, the contact position between the optical element and the seating surface is not constant, and a rotational moment is generated in the optical element due to the pressing force by the spring and the reaction force received from the seating surface, so that there is a possibility that the optical element is mounted with a gap from the seating surface. For example, in the case where there is a positive rectangle error, a ridge line on a side different from the seating surface side of the optical element is more likely to be mounted with a gap from the surface. Conversely, in the case where there is a negative rectangle error, a ridge line on the seating surface side of the optical element is more likely to be mounted with a gap from the surface.
The invention is to provide a support for an optical element and an image drawing apparatus capable of suppressing a variation in mounting posture irrespective of an error in external dimensions of the optical element.
According to an aspect of the invention, a housing is provided, wherein a first holding surface contact-holding a first surface which is a predetermined surface of the optical element and a second holding surface contact-holding at least a portion of a ridge line of the second surface adjacent to the first surface of the optical element are formed in a portion of the housing, and the ridge line is separated from the first surface, wherein a first pressing member which presses the optical element toward the first holding surface and a second pressing member which presses the optical element toward the second holding surface are provided, and wherein an intersection angle between extensions of the first holding surface and the second holding surface is smaller than an angle between the first surface and the second surface.
In addition, according to an aspect of the invention, a housing formed with a first holding surface contact-holding a first surface of an optical element and a second holding surface contact-holding at least a portion of a ridge line separated from the first surface of the optical element, a first pressing member which presses the optical element toward the first holding surface, and a second pressing member which presses the optical element toward the second holding surface are provided, wherein an intersection angle of extrapolation surfaces obtained by extrapolating and extending the first and second holding surfaces is an acute angle, and wherein a first pressing position at which the first pressing member exerts a pressing force on the optical element is closer to the second holding surface than to a center of the optical element, and a second pressing position at which the second pressing member exerts a pressing force on the optical element is a position farther separated from the first holding surface than from the center of the optical element.
According to the invention, it is possible to provide a support for an optical element in which variation in mounting posture is suppressed irrespective of an error in external dimensions of the optical element. Furthermore, in an image drawing apparatus to which the invention is applied, since optical axes of laser beams of three colors can be aligned to be substantially the same, it is possible to display an image with less color irregularity.
A first embodiment will be described as an example of an image drawing apparatus to which a support structure of an optical element according to the invention is applied.
First, a configuration of the laser light source unit 10 will be described. In the laser light source unit 10, three laser light sources 11, 12 and 13 having different wavelengths are arranged.
The laser light source 11 is, for example, a laser diode that emits a green laser beam. The green laser beam emitted from the laser light source 11 passes through a collimator lens 14, is converted into a substantially parallel laser beam, and is incident on a dichroic mirror 17.
The laser light source 12 is, for example, a laser diode that emits a blue laser beam. The blue laser beam emitted from the laser light source 12 also passes through a collimator lens 15, is converted into a substantially parallel laser beam, and is incident on the dichroic mirror 17.
The dichroic mirror 17 is a wavelength-selective optical element having a function of transmitting the green laser beam emitted from the laser light source 11 and reflecting the blue laser beam emitted from the laser light source 12, and the laser beams of two colors transmitted and reflected by the dichroic mirror 17 travel on substantially the same optical path in which the angles and positions of the respective optical axes are aligned and are incident on the dichroic mirror 18.
The laser light source 13 is, for example, a laser diode that emits a red laser beam. The red laser beam emitted from the laser light source 13 passes through a collimator lens 16, is converted into substantially parallel laser beam, and is incident on the dichroic mirror 18.
The dichroic mirror 18 is a wavelength-selective optical element having a function of reflecting green and blue laser beam and transmitting only red laser beam. The laser beams of three colors of green, blue, and red transmitted or reflected by the dichroic mirror 18 travel as substantially the same laser beam having the aligned angles and positions of the respective optical axes and are incident on a deflecting mirror device 20.
Next, the deflecting mirror device 20 will be described. The deflecting mirror device 20 has a reflecting mirror 21 inside the device and has a function of vibrating a reflecting surface around two axes. The deflecting mirror device 20 reflects the incident laser beam and scans in two directions on a screen 30 that is separated by a predetermined distance to draw an image.
The support structure according to the invention is applied to fix the dichroic mirrors 17 and 18 arranged in the optical path of the image drawing apparatus 1. In the following, a specific support structure and effects thereof will be described with the dichroic mirror 18 as an example.
The housing 40 has a first holding surface 41 contact-holding the reflecting surface 181 which is the first surface of the dichroic mirror 18 and a second holding surface 42 for holding a portion of the ridge line 182 separated from the reflecting surface 181 of the dichroic mirror 18. A pressing member 50 is inserted between the back surface 185 opposing to the reflecting surface 181 of the dichroic mirror 18 and the housing 40. The pressing member 50 has a first pressing portion 51 for pressing the dichroic mirror 18 toward the first holding surface 41 and a second pressing portion 52 for pressing the dichroic mirror 18 toward the second holding surface 42. Thus, in the dichroic mirror 18 according to the first embodiment, the position and posture thereof are regulated by pressing the reflecting surface 181 against the first holding surface 41 of the housing 40 and pressing the ridge line 182 against the second holding surface 42, respectively. In addition, in the embodiment, the first pressing portion 51 and the second pressing portion 52 are integrally formed on one pressing member 50, but the first pressing portion 51 and the second pressing portion 52 may be formed on separate pressing members. In addition, the angle tolerance between the reflecting surface 181 of the dichroic mirror and the back surface 185 thereof is formed with extremely high accuracy. Therefore, in the embodiment, the reflecting surface 181 as the first surface of the dichroic mirror 18 is configured to be pressed against the first holding surface 41 of the housing 40, but the back surface 185 may be configured to be pressed against the first holding surface 41.
The configuration of the embodiment has two features. The first feature will be described with reference to
The second feature will be described with reference to
Therefore, it is possible to provide a support structure for an optical element in which a variation in mounting posture is suppressed irrespective of an error in external dimensions of the optical element. Furthermore, in the image drawing apparatus to which the invention is applied, since the optical axes of the laser beams of three colors can be aligned to be substantially the same, it is possible to display an image with less color irregularity.
A second embodiment of the invention will be described with reference to
In addition to the configuration having the two features described in the first embodiment, the second embodiment further has a configuration having two features. First, the first feature will be described with reference to
Next, the second feature will be described with reference to
Therefore, in the second embodiment in which moldability of the housing is improved, it is possible to provide a support structure for an optical element in which a variation in mounting posture is suppressed irrespective of an error in outer dimensions of the optical element. Furthermore, in the image drawing apparatus to which the invention is applied, since the optical axes of the laser beams of three colors can be aligned to be substantially the same, it is possible to display an image with less color irregularity.
1: image drawing apparatus
10: laser light source unit
20: deflecting mirror device
30: screen
40, 80: housing
50, 70: pressing member
11, 12, 13: laser light source
14, 15, 16: collimator lens
17, 18: dichroic mirror
181: reflecting surface
182: ridge line separated from reflecting surface
183: ridge line on second pressing portion side of reflecting surface
184: ridge line on second holding surface side of reflecting surface
185: back surface opposing to reflecting surface
186: second surface adjacent to reflecting surface and facing second pressing portion
61: center line parallel to normal line of reflecting surface of dichroic mirror
62: center line on the central plane between reflecting surface and back surface of dichroic mirror
41, 81L, 81R: first holding surface
42, 82: second holding surface
42C, 82C, 81LC, 81RC: corner portion
51, 51L, 51R first pressing portion
52, 72: second pressing portion
51A, 71LA, 71RA: first pressing position
52A, 72A: second pressing position
θ: intersection angle of extrapolation surfaces when first holding surface and second holding surface are extrapolated and extended
φ: angle between reflecting surface and side surface near second holding surface adjacent to reflecting surface
Number | Date | Country | Kind |
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2016-201395 | Oct 2016 | JP | national |