One-chip type f theta lens of microcomputer electric laser scanning device
A technology of laser scanning device and micro-electromechanical mirror, which is used in optics, optical components, printing, etc.
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no. 1 example
[0101] The monolithic fθ eyeglass 13 of the present embodiment is crescent-shaped and the eyeglass of concave surface constitutes at the microelectromechanical mirror side, is aspheric surface at the first optical surface, uses formula (3) to be aspheric surface formula design; The optical surface is an aspheric surface, and formula (2) is used to design the aspheric surface formula. Its optical characteristics and aspheric parameters are shown in Table 1 and Table 2 below.
[0102] Table 1. The fθ optical characteristics of the first embodiment
[0103]
[0104] Table two, the optical surface aspherical parameters of the first embodiment
[0105]
[0106] The optical path diagram of the optical surface of the single-piece fθ lens 13 constituted by this is as follows Figure 5 Shown is the optical path diagram of the first preferred embodiment of the present invention. fX=34.432, fY=431.228 can convert the scanning light into a scanning light point whose distance and ...
no. 2 example
[0110] The monolithic fθ eyeglass 13 of the present embodiment is crescent-shaped and the eyeglass of concave surface constitutes at the microelectromechanical mirror side, is aspheric surface at the first optical surface, uses formula (3) to be aspheric surface formula design; The optical surface is an aspheric surface, and formula (2) is used to design the aspheric surface formula. Its optical characteristics and aspheric parameters are shown in Table 4 and Table 5 below.
[0111] Table 4. The fθ optical characteristics of the second embodiment
[0112]
[0113] Table five, the optical surface aspherical parameters of the second embodiment
[0114]
[0115] The optical path diagram of the optical surface of the single-piece fθ lens 13 constituted by this is as follows Figure 7 Shown is the light path diagram of the second preferred embodiment of the present invention. fX=34.406, fY=413.661 can convert the scanning light into the scanning light spots whose distance ...
no. 3 example
[0119] The monolithic fθ eyeglass 13 of the present embodiment is crescent-shaped and the eyeglass of concave surface constitutes at the microelectromechanical mirror side, is aspheric surface at the first optical surface, uses formula (3) to be aspheric surface formula design; The optical surface is an aspheric surface, and formula (2) is used to design the aspheric surface formula. Its optical properties and aspheric parameters are shown in Table 7 and Table 8 of the facet.
[0120] Table seven, fθ optical characteristics of the third embodiment
[0121]
[0122] Table eight, the optical surface aspherical parameters of the third embodiment
[0123]
[0124] The optical path diagram of the optical surface of the single-piece fθ lens 13 constituted by this is as follows Figure 9 Shown is the optical path diagram of the third preferred embodiment of the present invention. f(1)Y=4831.254, f(2)Y=-559.613 can convert the scanning light into a scanning light point whose ...
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