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Patent

Power saving mode for receiver circuit blocks based on transmitter activity

TLDR
In this article, the bias currents of other receiver circuit blocks are also adjusted based on transmitter activity, detected jammer, and/or received signal level, if phase noise performance is less stringent.
Abstract
To reduce power consumption, receiver circuit blocks within a wireless device are biased with less current whenever possible while still achieving the desired performance. The receiver circuit blocks may include a voltage controlled oscillator (VCO) that generates an oscillator signal used for frequency downconversion of a received signal from the forward link, a low noise amplifier (LNA) that amplifies the received signal, and a mixer that frequency downconverts the received signal. The VCO may be biased with less current if phase noise performance is less stringent, e.g., when (1) the wireless device is not transmitting on the reverse link, (2) a large amplitude jammer is not detected, and/or (3) the received signal level is sufficiently high. The bias currents of other receiver circuit blocks may also be adjusted based on transmitter activity, detected jammer, and/or received signal level.

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Citations
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Reduced jamming between receivers and wireless power transmitters

TL;DR: In this article, the authors propose to reduce jamming caused by radiated fields generated by wireless power transmitters by synchronizing the wireless power coupling with communication of a wireless power receiving device.
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TL;DR: In this paper, a transceiver front-end for a communication device comprises a transmit frequency blocking and a receive frequency blocking arrangement, which is configured to block passage of transmit frequency signals between the signal transmission and reception arrangement and the receiver.
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TL;DR: In this paper, a low-power diversity receiver includes at least two receive paths, each of which is designated as a primary or secondary receive path, and the two paths may be used to simultaneously process two received signals from two antennas.
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TL;DR: In this article, the first and second amplifiers of a carrier aggregation LNAs are described. But the first amplifier stage receives and amplifies an input radio frequency (RF) signal and provides a first output RF signal to a first load circuit when the first stage is enabled.
References
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Patent

Method and apparatus for supervising transmit power in a high data rate system

TL;DR: In this article, a method of supervising on the forward link in a high data rate system is disclosed, where a base station transmits to an access terminal on a forward traffic channel only when the base station has data to send to the access terminal.
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TDMA mobile unit frequency synthesizer having power saving mode during transmit and receive slots

Jun Jokura
TL;DR: In this article, the frequency synthesizer of a TDMA cellular communication mobile unit is used to generate a submultiple of the VCO frequency and supplies its output to the phase comparator.
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Intelligent control of receiver linearity based on interferences

TL;DR: In this paper, a method and system for intelligently controlling the linearity of an RF receiver by selectively increasing the effective third-order intercept point (IP3) value of a low-noise amplifier (LNA)/mixer channel (108, 110) only when needed is presented.
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Method for reducing the power consumption of a wireless terminal, a communication system and a wireless terminal

TL;DR: In this article, the authors proposed a method for reducing the power consumption of a wireless terminal (MT1-MT4) communicating with an access point (AP1, AP2).
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Method and a device for conserving power in a battery powered transceiver

TL;DR: In this article, a method and a device for conserving power in a battery powered transceiver, the transceiver comprising a transmitter and a receiver, having receiving circuits including an input high frequency stage (12), a first mixer (13), and a first local oscillator (14).