CA3089340A1

Radio frequency loopback for transceivers

Abstract

Methods and devices for radio frequency (RF) loopback for transceivers are described. A transceiver for communicating RF signals with a target device may transmit signals at a transmit frequency and receive signals at a (different) receive frequency. The transceiver may include a waveguide diplexer for separating and combining signals based on frequency. The transceiver may be configured to couple a loopback signal from a common port of the waveguide diplexer; the loopback signal may be based on a transmit signal. The transceiver may include a loopback translator to translate the loopback signal from the transmit frequency to the receive frequency and provide the translated loopback signal to a receiver used for receiving signals from the target device. The receiver may compare the translated loopback signal with a representation of the transmit signal to generate a compensation signal. A transmitter may use the compensation signal to adjust subsequent transmit signals.

CA3089340A1, drawing sheet 1
Sheet 1 of 7

Term

12.4 yearsto projected expiry

Projected expiry 1 February 2039, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

27 claims: 2 independent, 25 dependent

  1. 1
    CLAIMS What is claimed is:1. A transceiver for communicating with a target device, the transceiver comprising: a waveguide diplexer comprising a common port coupled to first and second individual ports, the first individual port associated with a transmit frequency range and the second individual port associated with a receive frequency range;a transmitter coupled with the first individual port of the waveguide diplexer and configured to output a transmit signal to the first individual port within the transmit frequency range;a bidirectional coupler having a coupled port coupled with the common port of the waveguide diplexer;a loopback translator coupled with the coupled port and configured to obtain a loopback signal associated with the transmit signal via the coupled port, and to translate the loopback signal from within the transmit frequency range to within the receive frequency range;and a receiver having in input port coupled with the second individual port of the waveguide diplexer and coupled with the loopback translator via a loopback path, wherein the receiver is configured to, in a first mode, obtain a received signal from the target device via the waveguide diplexer, and, in a second mode, obtain the translated loopback signal via the loopback path and compare the translated loopback signal to a representation of the transmit signal to generate a compensation signal, wherein the transmitter is further configured to receive the compensation signal and adjust the transmit signal based at least in part on the compensation signal.
  2. 17
    A method for compensating transmit signals transmitted to a target device, the method comprising:providing a first transmit signal to a first individual port of a waveguide diplexer, the waveguide diplexer comprising a common port coupled to the first individual port and a second individual port, the first individual port associated with a transmit frequency range and the second individual port associated with a receive frequency range;coupling a loopback signal associated with the first transmit signal from the common port of the waveguide diplexer;translating the loopback signal from within the transmit frequency range to within the receive frequency range;inputting, to a receiver while in a first mode, a receive signal from the target device via the waveguide diplexer;CA 03089340 2020-07-22 WO 2019/152793 PCT/US2019/016273 inputting, to the receiver while in a second mode, the translated loopback signal via a loopback path;comparing, in the second mode, the translated loopback signal with a representation of the first transmit signal;adjusting a second transmit signal based at least in part on the comparison;and providing the second transmit signal to the first individual port of the waveguide diplexer for transmission to the target device.