image reading device
An image reading device and positive image technology, applied in image communication, optics, lens, etc., can solve problems such as complex composition and poor optical characteristics
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no. 1 Embodiment approach >
[0035] refer to Figure 1 to Figure 5 A first embodiment in which an image reading device according to the present invention is applied to a CIS module will be described.
[0036] figure 1 It is a perspective view showing a CIS module as a first embodiment of the image reading device according to the present invention, figure 2 A diagram showing the configuration of the lens unit, image 3 is a plan view of the lens unit. Figure 4 is a diagram for explaining the configuration of the lens array, Figure 5 It is a figure for demonstrating the structure of a lens array and an aperture member.
[0037] The CIS module 1 is a device that reads an image printed on the original OB placed on the original glass GL as a reading object, and is arranged directly below the original glass GL. The CIS module 1 has a rectangular parallelepiped frame 2 extending longer than the reading range of the original OB in the X direction, and holds and arranges an illumination member 3 and a lens...
no. 1 Embodiment
[0072] set up
[0073] n: 6 (line pair / mm)
[0074] d: 3.5mm
[0075] Δd: 0.3mm
[0076] p: 0.35mm
[0077] R: 0.8mm
[0078] ap1, ap2: 0.2mm (the length of the long axis direction of the through holes 42a, 43a is 0.5mm)
[0079] t1: 0.5mm, and arrange the lens array 41 and each aperture member 42,43 so that the distance between the incident side aperture member 42 and the first lens surface 41a is 0.5mm, and the exit side aperture member 43 and the second lens The distance of the surface 41b is 0.85mm,
[0080] Get MTF: 100%
[0081] Uneven brightness in the X direction: 6.5%
[0082] Light transmission efficiency: 0.31% of lens unit 4.
[0083] On the other hand, when the first lens surface 41a and the second lens surface 41b are formed in a circular shape with a diameter of 0.72mm,
[0084] MTF: 88%
[0085] Uneven brightness in the X direction: 6.5%
[0086] Light conversion efficiency: 0.25%.
no. 2 Embodiment
[0088] set up
[0089] n: 6 (line pair / mm)
[0090] d: 3.5mm
[0091] p: 0.35mm
[0092] R: 0.8mm
[0093] ap1, ap2: 0.2mm (the length of the long axis direction of the through holes 42a, 43a is 0.5mm)
[0094] t1, t2: 0.5mm
[0095] da1: 2.1mm
[0096]da2: 2.125mm, and arrange the lens array 41 and each aperture member 42,43 so that the distance between the incident side aperture member 42 and the first lens surface 41a is 0.5mm, and the exit side aperture member 43 and the second lens The distance of the surface 41b is 0.85mm,
[0097] Get MTF: 95.2% (Δd: 0mm)
[0098] 74.1% (Δd: 0.3mm)
[0099] 38.9% (Δd: 0.5mm)
[0100] Brightness unevenness in the X direction: 2.9%
[0101] Light transmission efficiency: 0.677% of lens unit 4.
[0102] As above, in this embodiment, by satisfying the first condition, the size of the major diameter R of the first lens surface 41a and the second lens surface 41b in the Y direction can be maintained, and the brightness of the lens ...
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