Resource-saving laser radio frequency integrated communication load
A resource-saving and communication-loaded technology, applied in the electrical field, can solve the problems of inability to realize two-way communication, large volume, weight and power consumption, and low system integration
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Embodiment 1
[0058] Such as figure 1 As shown, a resource-saving laser radio frequency integrated communication load, including:
[0059] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;
[0060] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and transmit the first laser beam to the radio frequency processing module 3 The laser processing module 4 is used to receive the second radio frequency beam sent by the radio frequency processing module 3, is used to receive the second laser beam sent by the ...
Embodiment 2
[0068] Such as figure 2 As shown, a resource-saving laser radio frequency integrated communication load, including:
[0069] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;
[0070] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and transmit the first laser beam to the radio frequency processing module 3 The laser processing module 4 is used to receive the second radio frequency beam sent by the radio frequency processing module 3, is used to receive the second laser beam sent by the...
Embodiment 3
[0094] Such as figure 2 As shown, a resource-saving laser radio frequency integrated communication load, including:
[0095] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;
[0096] The laser radio frequency integrated antenna 1 is a flexible surface laser radio frequency integrated antenna or a solid surface laser radio frequency integrated antenna, and the integrated antenna supports two states of folding and unfolding;
[0097] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and tr...
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