Radar/Infrared Dual Band Frequency Selective Surface
A frequency-selective surface and dual-band technology, applied in waveguide devices, electrical components, circuits, etc., can solve the unfavorable high-precision detection and observation imaging applications, concentrated stray light distribution, and square metal grid FSS cannot be further improved Optical transmittance and other issues to achieve uniform distribution of diffracted light intensity, high optical transmittance, and the effect of suppressing stray light
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[0026] The preparation process of the radar / infrared dual-band FSS of the present invention is basically the same as the preparation process of the existing square metal grid FSS, only need to add the corresponding part of the cross hole on the round hole type or hexagonal metal grid film plate. Can.
[0027] Apply Kohin research conclusion to radar / infrared dual-band FSS of the present invention, then the optical transmittance Ta of radar / infrared dual-band FSS is:
[0028] T a = ( 1 - πag - a 2 π g 2 ) 2 ( 1 - 2 km - ...
Embodiment 1
[0031] like Figure 4 As shown, according to the Fraunhofer diffraction theory, the scalar diffraction model of the circular hole metal grid FSS under oblique illumination is established, Figure 4 , the parallel light illuminates E along z(z 1 ) axis propagation, the coordinate before FSS tilt is x 1 o 1 the y 1 , the coordinate after FSS tilt is x 1 'o 1 the y 1 ’, the distance between any point Q on the FSS and the point P on the observation surface xoy is represented by r, and the observation point P and the origin of the FSS coordinates o 1 r o It means that through the Fourier transformation of the pupil, the distribution of diffracted light intensity on the image surface under different incident angles is obtained, such as Figure 5 shown by Figure 4 and Figure 5 Calculate the high-order diffraction energy distribution of the circular hole metal grid FSS;
[0032] MgF with a thickness of 3.82mm, a relative permittivity of 4.803, and a tangent loss value of ...
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