A drive power system for the rotation of the curvature aperture lens of a pulsed laser
A pulsed laser and driving power technology, applied in lasers, laser parts, phonon exciters, etc., can solve the problems of paralysis of internal circuits, loose influence of driving power, and low refractive index of pulsed lasers, so as to improve the trigger probability and guarantee The effect of self-regulation of dynamism and labor saving
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Embodiment 1
[0033] see Figure 1-Figure 7 , the present invention provides a driving power system for the rotation of the curvature aperture lens of a pulsed laser, the structure of which includes: a bottom backing plate 1, a pulse plate seat 2, a latch bar 3, a buckle plate 4, a top cover plate 5, and an integrated circuit board 6. The laser lens square groove 7, the laser lens square groove 7 is close to the bottom surface of the top cover plate 5, the latch rod 3 is inserted in the front side of the laser lens square groove 7, the bottom backing plate 1 Closely attached to the bottom surface of the laser lens square groove 7, the pulse disc seat 2 is nested in the front side of the laser lens square groove 7 and the axis is collinear, and the top cover plate 5 is connected to the integrated circuit board through the buckle plate 4 6 are snapped together and are on the same horizontal plane, the pulse plate base 2 is electrically connected to the integrated circuit board 6 through wires...
Embodiment 2
[0039] see Figure 1-Figure 7 , the present invention provides a driving power system for the rotation of the curvature aperture lens of a pulsed laser, the other aspects are the same as in Embodiment 1, the difference is that:
[0040] see Image 6 The rotating mirror plate frame 7F is composed of an ellipsoidal lens 7F1, a light transmission hole 7F2, an optical fiber tube 7F3, and a shaft wheel mirror disc seat 7F4. The ellipsoid lens 7F1 is nested on the top of the optical fiber tube 7F3 and is on the same vertical plane. On the side, through the ellipsoidal lens 7F1, the aperture collection effect of turning up and down on the axle wheel mirror plate seat 7F4 is formed, so that the divergent beam forms the trajectory guiding effect of the transverse beamline.
[0041] see Figure 7 , the shaft wheel mirror plate seat 7F4 is composed of a pole plate pick 7F41, a relay seat 7F42, a mirror plate slot seat 7F43, and a safety tube 7F44. The pole plate pick 7F41 is verticall...
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