A Photoelectric Separation System Applied to Composite Phase Lines of Fully Insulated Optical Units
A composite phase line, photoelectric separation technology, applied in the direction of optical fiber/cable installation, etc., can solve problems such as affecting communication function and easy to break
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Embodiment 1
[0033] refer to Figure 1~2 , the present embodiment provides a photoelectric separation system applied to a fully insulated optical unit composite phase conductor, wherein the fully insulated optical unit composite phase conductor (Insulated Optical-unit Phase Conductor, IOPPC) is a subset of the optical fiber composite phase conductor OPPC, By replacing the stainless steel tube that originally coated the optical fiber bundle with an insulating material, the photoelectric separation becomes simple and easy, and can be connected on the ground and led down at any position, expanding the application range of the optical fiber composite phase line; the present invention is for the IOPPC lead The lower part provides a photoelectric separation device.
[0034] Specifically, it includes a pressing plate 100. There are two pressing plates 100 and the structure is completely symmetrical. When in use, two pressing plates 100 need to be installed in combination, wherein the pressing pla...
Embodiment 2
[0038] refer to Figure 1~6 , is the second embodiment of the present invention, this embodiment is based on the previous embodiment, and differs from the previous embodiment in that in order to allow the light unit to be drawn out smoothly, the guide groove 102 includes sequentially connected first transition grooves 102a , the second transition groove 102b and the third transition groove 102c, and the direction of the guide groove 102 is smooth transition.
[0039] Preferably, the centerline of the first transition groove 102a is tangent to the axis of the groove 101, one end of the second transition groove 102b is connected tangentially to the first transition groove 102a, and the other end of the second transition groove 102b is connected to the third transition groove 102b. The grooves 102c are connected tangentially, so that when the optical unit is led out from the guide groove 102, no bending will occur, and the optical fiber in the optical unit will not be broken.
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Embodiment 3
[0045] refer to Figure 1-10 , is the third embodiment of the present invention, this embodiment is based on the previous embodiment, and differs from the previous embodiment in that:
[0046] The connecting bolt 105 adopts the following structure: the connecting bolt 105 includes a limit cap 501, a connecting cylinder 502 connected with the limiting cap 501, the diameter of the limiting cap 501 is greater than the diameter of the connecting cylinder 502, the connecting cylinder 502 is a hollow cylinder, and the connecting cylinder 502 The end is connected with a cover 503, and the connection method can be welding or threaded connection.
[0047] Further, the connecting cylinder 502 is provided with a long slot 502a along the axial direction, and two long slots are arranged symmetrically, passing through the connecting cylinder 502, wherein the connecting cylinder 502 is provided with a first baffle 504, a block 505, and a second baffle Plate 506, the diameter of the first ba...
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