Dual-modulus prescaler with self-adaptive dormancy

A dual-mode prescaler and self-adaptive technology, applied in the electronic field, can solve problems such as waste of power consumption, and achieve the effect of reducing power consumption and avoiding waste of power consumption

Active Publication Date: 2010-01-20
锐立平芯微电子(广州)有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This non-contributing high-speed logic unit is still active, resulting in unnecessary waste of power consumption, which is a major disadvantage of current dual-mode prescalers

Method used

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  • Dual-modulus prescaler with self-adaptive dormancy
  • Dual-modulus prescaler with self-adaptive dormancy
  • Dual-modulus prescaler with self-adaptive dormancy

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Embodiment Construction

[0066] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be described in further detail below in conjunction with specific embodiments and with reference to the accompanying drawings.

[0067] The dual-mode prescaler with adaptive dormancy provided by the present invention is composed of a plurality of high-speed logic units, a logic control circuit and a plurality of MOS transistors as current sources, and the high-speed logic unit has a clock trigger terminal, a Signal input terminal and a signal output terminal, the clock trigger terminal of the high-speed logic unit is connected to the external clock signal CLK, the signal input terminal of the high-speed logic unit is connected to the output terminal of the logic control circuit, and the input terminal of the logic control circuit is connected to the signal output of the high-speed logic unit terminal and foreign mode control signals. The mode contr...

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Abstract

The invention discloses a dual-modulus prescaler with self-adaptive dormancy, which consists of a plurality of high-speed logic units, a logic control circuit and a plurality of MOS transistors used as current sources, wherein each high-speed logic unit has a clock triggering end, a signal input end and a signal output end; the clock triggering end of each high-speed logic unit is connected with an external clock signal CLK, and the signal input end of each high-speed logic unit is connected with the output end of the logic control end; and the input end of the logic control circuit is connected with the signal output end of the high-speed logic unit and an external mode control signal. In the dual-modulus prescaler with the self-adaptive dormancy, one high-speed trigger is in the state of dormancy due to the cutting-off of the MOS transistors which are used as the current sources according to a specific digital value of a fractional frequency value and the mode control signal, so the consumption of electric energy is reduced, unnecessary waste of power consumption is avoided, and the aim of reducing the power consumption is achieved.

Description

technical field [0001] The invention relates to the field of electronic technology, in particular to a dual-mode prescaler with adaptive dormancy, which can be applied to a phase-locked frequency synthesizer in a radio frequency transceiver. Background technique [0002] The phase-locked frequency synthesizer plays an important role in synchronization, frequency conversion and channel switching in the communication system, and is one of the indispensable components of modern communication. Such as figure 1 As shown, the phase-locked frequency synthesizer is composed of a phase-frequency detector and a charge pump (PFD / CP), a loop filter (LPF), a voltage-controlled oscillator (VCO) and a frequency divider. [0003] Among them, the frequency and phase detector and the charge pump are phase comparison devices, which are used to compare the phases of the input reference signal and the output signal of the voltage-controlled oscillator, and generate an error voltage correspondin...

Claims

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Application Information

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IPC IPC(8): H03K23/66
Inventor 曾隆月郭桂良阎跃鹏
Owner 锐立平芯微电子(广州)有限责任公司
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