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Time division duplex radio communication system receivel/send linear switch circuit and its realizing method

A wireless communication system, time-division duplex technology, applied in the field of communication, can solve problems such as not considering the influence of power amplifiers, adjacent channel power leakage cannot meet the requirements, out-of-band spectrum regeneration, etc., to prevent self-excited oscillation, improve linearity, The effect of avoiding interference

Inactive Publication Date: 2008-04-16
DATANG MOBILE COMM EQUIP CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this circuit is used for diversity receivers, and does not consider the influence of the possible instability of the power amplifier in the same-frequency time-division duplex system on the low-noise amplifier
[0004] The RF front-end of a general TDD (Time Division Duplex) system uses RF switches to control the receiving and transmitting signals. When it is high (that is, when the requirement for adjacent channel power leakage is high), it will cause the power amplifier output RF signal to pass through the RF switch. Due to the linearity of the RF switch, the out-of-band spectrum will be regenerated, so that the adjacent channel power leakage cannot meet the requirements.

Method used

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  • Time division duplex radio communication system receivel/send linear switch circuit and its realizing method
  • Time division duplex radio communication system receivel/send linear switch circuit and its realizing method
  • Time division duplex radio communication system receivel/send linear switch circuit and its realizing method

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Embodiment Construction

[0031] The invention utilizes the directional characteristics of the circulator to realize the flow direction control of the wireless transceiver signal, and at the same time, a single-pole double-throw radio frequency switch is added between an output port of the circulator and a low-noise amplifier at the receiving end, and one end of the radio frequency switch outputs a receiving The low-noise amplifier is connected to one end, and the other input is connected to a matching load of 50 or 75 ohms. When the antenna impedance of the communication system is 50 or 75 ohms, the terminating load is 50 or 75 ohms. The steering of the single pole double throw radio frequency switch is controlled by the system controlled transmit and receive slot time. In the receiving time slot, the single-pole double-throw RF switch connects the output of the circulator to the low-noise amplifier at the receiving end to receive the uplink signal transmitted by the terminal, and the power amplifier i...

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Abstract

The circuit includes power amplifier to amplify emission signal up to emission power, circulator to couple its first port with the amplifier for exporting amplifier output power to the second port of the circulator in order to let antenna emit it, low noise amplifier to couple with circulator third port to receive signal inputted from the second port of the circulator through receiving antenna and to amplify the received signal, control unit consisting of actuating circuits for the power amplifier and the low noise amplifier to cut off the power amplifier at the time of receiving signal and to cut off the low noise amplifier at the time of emitting signal.

Description

technical field [0001] The invention belongs to the communication field, and in particular relates to a time-division duplex wireless communication system sending and receiving high-power linear switch circuit and its realization method. Background technique [0002] In recent years, mobile communication systems have begun to adopt multi-carrier technology, and the linearity required for devices used in the transmission chain is getting higher and higher. [0003] Chinese patent application 96110399.X "antenna conversion circuit and wireless communication system" discloses that an antenna conversion circuit is composed of a circulator component with 3 terminals. Among the 3 terminals, the first terminal (CTX) is connected to the transmitting circuit, the second The end (CANT) is connected to the first antenna, and the third end (CRX) can be connected to the terminal resistance through the first switch part; the second switch part can connect the third end of the circulator p...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04J3/00H04Q7/20H01P1/38
Inventor 段滔
Owner DATANG MOBILE COMM EQUIP CO LTD
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