a connecting joint
A technology for connecting joints and connecting bodies, applied in the coupling of optical waveguides, etc., can solve the problems of poor waterproof and dustproof effects, and achieve the effect of improving the safety of use and avoiding short-circuit conditions.
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Embodiment 1
[0033] figure 1 A structural detail diagram of a connecting joint provided in Embodiment 1 of the present invention, such as figure 1 as shown,
[0034] The connecting joint is composed of two parts, namely a first connecting body (not shown in the figure) and a second connecting body (not shown in the figure), wherein the first connecting body includes a first support body 111, and the second connecting body The body includes a second support body 121, wherein the first support body 111 is used as the main frame part of the first connecting body, and its shape constitutes the shape of the first connecting body, and the second supporting body 121 is used as the main frame part of the second connecting body, Its shape constitutes the shape of the second connecting body. For the shape of the first support body 111 and the second support body 121, without affecting the data transmission between the first connection body and the second connection body, it can be set to any shape...
Embodiment 2
[0041] figure 2 It is a schematic structural diagram of a first optical signal transceiving device and a second optical signal transceiving device provided in Embodiment 2 of the present invention. Transceivers have been improved. On the basis of the structure described in the first embodiment above, as figure 2as shown,
[0042] The first optical signal transceiving device 210 includes a first light emitting control circuit 211 and a first light emitting source 212, the first light emitting control circuit 211 is used to convert data to be transmitted into optical signals and control the first light emitting source 212 to emit optical signals;
[0043] The second optical signal transceiving device 220 includes a first optical receiver 221 and a first analysis circuit 222. The first analysis circuit 222 is used to identify the optical signal received by the first optical receiver 221 and convert the optical signal into received data.
[0044] Specifically, when the first ...
Embodiment 3
[0054] image 3 It is a schematic structural diagram of another first optical signal transceiving device and a second optical signal transceiving device provided in Embodiment 3 of the present invention. The present invention further improves the first optical signal transceiving device and the second optical Improvements have been made to optical signal transceivers. On the basis of the structures described in the above-mentioned embodiments, as image 3 as shown,
[0055] The first optical signal transceiving device 310, in addition to the first light emitting control circuit 311 and the first light source 312, also includes a second light receiver 313 and a second analysis circuit 314, the second analysis circuit 314 is used to identify the second light receiver 313 receives the optical signal, and converts the optical signal into received data;
[0056] The second optical signal transceiving device 320, in addition to the first optical receiver 321 and the first analysi...
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