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    • 7. 发明授权
    • Optical device and projector
    • 光学设备和投影机
    • US07222976B2
    • 2007-05-29
    • US11033293
    • 2005-01-12
    • Masashi KitabayashiKazuyuki IinumaHiroshi KobayashiHidetoshi Hashizume
    • Masashi KitabayashiKazuyuki IinumaHiroshi KobayashiHidetoshi Hashizume
    • G03B21/28G03B21/22
    • H04N9/317
    • An optical device is disposed with: a swollen portion that is attached to the underside of a reflective surface of a reflective mirror, swells in an outward direction of the reflective mirror and is configured as part of a spherical surface. A mirror orientation adjustment lever that is attached to the underside of the reflective surface of the reflective mirror, extends along the underside of the reflective mirror, and protrudes from an end edge of the reflective mirror when seen planarly. The reflective mirror is disposed along a side wall of an optical parts-use casing. The side wall includes, at the position where the reflective mirror is disposed, a spherical concave portion corresponding to a spherical surface of the swollen portion, and when the reflective mirror is disposed at the disposition position, the swollen portion is supported by the spherical concave portion.
    • 光学装置设置有:附着到反射镜的反射表面的下侧的肿胀部分,在反射镜的向外方向上膨胀并且被配置为球面的一部分。 附接到反射镜的反射表面的下侧的镜子方向调节杆沿着反射镜的下侧延伸,并且从平面观察时从反射镜的端部边缘突出。 反射镜沿着光学部件用外壳的侧壁设置。 所述侧壁在所述反射镜的配置位置包括与所述溶胀部的球面相对应的球面凹部,在所述反射镜配置在所述配置位置时,所述隆起部被所述球面凹部 一部分。
    • 8. 发明授权
    • Optical device, optical device manufacturing method, and projector
    • 光学装置,光学装置制造方法和投影仪
    • US07175283B2
    • 2007-02-13
    • US11076188
    • 2005-03-10
    • Masashi KitabayashiHidetoshi Hashizume
    • Masashi KitabayashiHidetoshi Hashizume
    • G03B21/18G03B21/26
    • G02F1/133385G03B21/16H04N9/3105H04N9/3144
    • Exemplary embodiments provide an optical device, optical device manufacturing method, and projector that can easily position an optical modulation element in a predetermined position. The optical device includes an optical modulation element holder to hold an optical modulation element thereon so as to be able to transfer heat to cooling fluid within cooling chambers, a plurality of fluid circulation members connected in communication to the cooling chambers, and a cooling fluid relay section that, disposed at a predetermined position relative to the optical axis of a luminous flux emitted from a light source, relays cooling fluid transferred via the plurality of fluid circulation members. Out of the plurality of fluid circulation members, fluid circulation members whose one-side end are connected in communication to the cooling chambers of the optical modulation element holder are formed so that the another-side end thereof protrudes toward a luminous flux emergent side. Insertion holes capable of receiving therethrough the another-side end of the fluid circulation members are formed in a cooling fluid relay section.
    • 示例性实施例提供了可以容易地将光调制元件定位在预定位置的光学装置,光学装置制造方法和投影仪。 光学装置包括光调制元件保持件,用于将光调制元件保持在其上,以便能够将热传递到冷却室内的冷却流体,与冷却室连通的多个流体循环元件,以及冷却流体继电器 在相对于从光源发出的光束的光轴的预定位置配置的中继部,对经由多个流体循环部件传送的冷却流体进行继电。 在多个流体循环构件中,其一侧端部连接到光调制元件保持器的冷却室的流体循环构件被形成为使得其另一侧端部朝向光通量出射侧突出。 在冷却流体继电器部分中形成能够容纳流体循环元件的另一端的插入孔。
    • 9. 发明申请
    • Optical device, optical device manufacturing method, and projector
    • 光学装置,光学装置制造方法和投影仪
    • US20050200813A1
    • 2005-09-15
    • US11076188
    • 2005-03-10
    • Masashi KitabayashiHidetoshi Hashizume
    • Masashi KitabayashiHidetoshi Hashizume
    • G02F1/13G02F1/01G03B21/00G03B21/14G03B21/16
    • G02F1/133385G03B21/16H04N9/3105H04N9/3144
    • Exemplary embodiments provide an optical device, optical device manufacturing method, and projector that can easily position an optical modulation element in a predetermined position. The optical device includes an optical modulation element holder to hold an optical modulation element thereon so as to be able to transfer heat to cooling fluid within cooling chambers, a plurality of fluid circulation members connected in communication to the cooling chambers, and a cooling fluid relay section that, disposed at a predetermined position relative to the optical axis of a luminous flux emitted from a light source, relays cooling fluid transferred via the plurality of fluid circulation members. Out of the plurality of fluid circulation members, fluid circulation members whose one-side end are connected in communication to the cooling chambers of the optical modulation element holder are formed so that the another-side end thereof protrudes toward a luminous flux emergent side. Insertion holes capable of receiving therethrough the another-side end of the fluid circulation members are formed in a cooling fluid relay section.
    • 示例性实施例提供了可以容易地将光调制元件定位在预定位置的光学装置,光学装置制造方法和投影仪。 光学装置包括光调制元件保持件,用于将光调制元件保持在其上,以便能够将热传递到冷却室内的冷却流体,与冷却室连通的多个流体循环元件,以及冷却流体继电器 在相对于从光源发出的光束的光轴的预定位置配置的中继部,对经由多个流体循环部件传送的冷却流体进行继电。 在多个流体循环构件中,其一侧端部连接到光调制元件保持器的冷却室的流体循环构件被形成为使得其另一侧端部朝向光通量出射侧突出。 在冷却流体继电器部分中形成能够容纳流体循环元件的另一端的插入孔。
    • 10. 发明申请
    • Optical device and projector
    • 光学设备和投影机
    • US20050157276A1
    • 2005-07-21
    • US11033293
    • 2005-01-12
    • Masashi KitabayashiKazuyuki IinumaHiroshi KobayashiHidetoshi Hashizume
    • Masashi KitabayashiKazuyuki IinumaHiroshi KobayashiHidetoshi Hashizume
    • G02F1/1335G03B21/00G03B21/14G03B21/28H04N9/31
    • H04N9/317
    • An optical device is disposed with: a swollen portion that is attached to the underside of a reflective surface of a reflective mirror, swells in an outward direction of the reflective mirror and is configured as part of a spherical surface. A mirror orientation adjustment lever that is attached to the underside of the reflective surface of the reflective mirror, extends along the underside of the reflective mirror, and protrudes from an end edge of the reflective mirror when seen planarly. The reflective mirror is disposed along a side wall of an optical parts-use casing. The side wall includes, at the position where the reflective mirror is disposed, a spherical concave portion corresponding to a spherical surface of the swollen portion, and when the reflective mirror is disposed at the disposition position, the swollen portion is supported by the spherical concave portion.
    • 光学装置设置有:附着到反射镜的反射表面的下侧的肿胀部分,在反射镜的向外方向上膨胀并且被配置为球面的一部分。 附接到反射镜的反射表面的下侧的镜子方向调节杆沿着反射镜的下侧延伸,并且从平面观察时从反射镜的端部边缘突出。 反射镜沿着光学部件用外壳的侧壁设置。 所述侧壁在所述反射镜的配置位置包括与所述溶胀部的球面相对应的球面凹部,在所述反射镜配置在所述配置位置时,所述隆起部被所述球面凹部 一部分。