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[0001] The present invention pertains to an optical displacement sensor capable of detecting displacement of a target to which distance is measured by projecting light and receiving such light after reflection thereof.
[0002] Triangulation-type displacement sensors capable of detecting displacement of a target to which distance is measured by projecting light and receiving such light after reflection thereof have been proposed conventionally (e.g., see Japanese Patent Application Publication Kokai No. H4-174923 (1992) and Japanese Patent Application Publication Kokai No. H5-87526 (1993).
[0003]
[0004] This displacement sensor consists of light-emitting element
[0005] Furthermore,
[0006] This displacement sensor consists of light-emitting element
[0007] The displacement sensor described at the aforementioned Japanese Patent Application Publication Kokai No. H4-174923 (1992) is such that light-collecting Fresnel lens
[0008] Where light-collecting Fresnel lens
[0009] Furthermore, in the case of the displacement sensor described at Japanese Patent Application Publication Kokai No. H4-174923 (1992), light-collecting Fresnel lens
[0010] Furthermore, in the case of the displacement sensor described at Japanese Patent Application Publication Kokai No. H5-87526 (1993), pinhole
[0011] The present invention was conceived in order to solve such problems, it being an object thereof to provide an optical displacement sensor which is both thin and small. It is moreover an object thereof to provide an optical displacement sensor whose detection capability is not impaired by dust or the like.
[0012] To solve the above problems, the present invention is concerned with a triangulation-type optical displacement sensor having one or more light-emitting elements for projecting light onto one or more targets to which one or more distances is or are to be measured, and one or more light-receiving elements, at least one of the light-receiving element or elements receiving at least a portion of the light reflected from at least one of the distance measurement target or targets and such that at least one light-receiving surface thereof is substantially perpendicular to at least one optical axis of at least a portion of the projected light, comprising: one or more slits narrowing one or more light beams projected toward at least one of the distance measurement target or targets, and one or more slits narrowing at least a portion of the light reflected from at least one of the distance measurement target or targets. That is, such the present invention may employ constitution(s) wherein projected light and reflected light are both narrowed by slit(s). In particular, position(s) of slit(s) narrowing light reflected from distance measurement target(s) may be set based on triangulation principles. This being the case, since distance(s) between light-emitting element(s) and slit(s) narrowing light beam(s) projected onto distance measurement target(s) may to a certain extent be chosen freely, it will be possible to construct a displacement sensor which is thin; and moreover, since such slit(s) is or are small itself or themselves, it will be possible to construct a displacement sensor which is small.
[0013] Here, one or more filters may be arranged at the exit side of at least one of the slit or slits narrowing one or more light beams projected toward at least one of the distance measurement target or targets, and one or more filters may be arranged at the incident side of at least one of the slit or slits narrowing at least a portion of the light reflected from at least one of the distance measurement target or targets. As a result of such provision of filter(s), in the event that dust accumulates in the vicinity of slit(s), it will be possible to easily remove such dust and it will be possible to prevent such dust from invading the sensor interior from slit(s). This being the case, it will be possible to prevent dust from impairing the detection capability of the displacement sensor.
[0014] Furthermore, the present invention is concerned with a triangulation-type optical displacement sensor having one or more light-emitting elements for projecting light onto one or more targets to which one or more distances is or are to be measured, and one or more light-receiving elements, at least one of the light-receiving element or elements receiving at least a portion of the light reflected from at least one of the distance measurement target or targets and disposed such that at least one light-receiving surface thereof is substantially perpendicular to at least one optical axis of at least a portion of the projected light, comprising: one or more slits narrowing one or more light beams projected toward at least one of the distance measurement target or targets, and one or more light collecting elements collecting at least a portion of the light reflected from at least one of the distance measurement target or targets; and at least one of the light collecting element or elements may be a cylindrical lens. That is, such the present invention may employ constitution(s) wherein reflected light is narrowed by slit(s). Position(s) of slit(s) narrowing light reflected from distance measurement target(s) may be set based on triangulation principles. This being the case, since distance(s) between light-emitting element(s) and such light-collecting element(s) may to a certain extent be chosen freely, it will be possible to construct a displacement sensor which is thin; and moreover, since such slit(s) is or are small itself or themselves, it will be possible to construct a displacement sensor which is small.
[0015] Here, one or more filters may be arranged at the exit side of at least one of the slit or slits narrowing one or more light beams projected toward at least one of the distance measurement target or targets. As a result of such provision of filter(s), in the event that dust accumulates in the vicinity of slit(s), it will be possible to easily remove such dust and it will be possible to prevent such dust from invading the sensor interior from slit(s). This being the case, it will be possible to prevent dust from impairing the detection capability of the displacement sensor.
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022] Below, embodiments of the present invention are described with reference to the drawings.
[0023] Embodiment 1
[0024]
[0025] This displacement sensor
[0026] Light-emitting element
[0027] Light-receiving element
[0028] Light beam R
[0029] The location at which this incident light is incident on light-receiving surface
[0030] The location of slit
[0031] Furthermore, the location of slit
[0032] where x=amount of movement of spot of light at light-receiving surface
[0033] Since the distance between slit
[0034] Furthermore, because slit
[0035] Embodiment 2
[0036]
[0037] This displacement sensor
[0038] Light-emitting element
[0039] Light-receiving element
[0040] Operation of displacement sensor
[0041] The location of light collecting element
[0042] Light collecting element
[0043] Embodiment 3
[0044]
[0045] This displacement sensor
[0046] Light-emitting element
[0047] Light-receiving element
[0048] Operation of displacement sensor
[0049] As a result of such respective attachment of filters
[0050] Embodiment 4
[0051]
[0052] This displacement sensor
[0053] Light-emitting element
[0054] Light-receiving element
[0055] Operation of displacement sensor
[0056] The location of light collecting element
[0057] Light collecting element
[0058] As a result of such attachment of filter
[0059] As described above, the optical displacement sensor of the present invention is such as to permit attainment of a displacement sensor which is both thin and small, permitting reduction in the space occupied thereby when installed in equipment.
[0060] Moreover, the present application claims right of benefit of prior filing date of Japanese Patent Application No. 2002-280877, the content of which is incorporated herein by reference in its entirety. Furthermore, all references cited in the present specification are specifically incorporated herein by reference in their entirety.