Scinovex
articleTop 1% cited

All-digital TX frequency synthesizer and discrete-time receiver for Bluetooth radio in 130-nm CMOS

IEEE Journal of Solid-State Circuits · 2004 · Vol. 39(12) · pp. 2278–2291
Robert Bogdan StaszewskiK. MuhammadDirk LeipoldChih-Ming HungYo-Chuol HoJ. WallbergC. FernandoK. MaggioRobert Bogdan StaszewskiT. JungJinseok KohSamuel JohnI. DengV. SardaO. Moreira-TamayoValerian MayegaR. KatzOfer FriedmanOren EliezerElida de ObaldíaPoras T. Balsara

Abstract

We present a single-chip fully compliant Bluetooth radio fabricated in a digital 130-nm CMOS process. The transceiver is architectured from the ground up to be compatible with digital deep-submicron CMOS processes and be readily integrated with a digital baseband and application processor. The conventional RF frequency synthesizer architecture, based on the voltage-controlled oscillator and the phase/frequency detector and charge-pump combination, has been replaced with a digitally controlled oscillator and a time-to-digital converter, respectively. The transmitter architecture takes advantage of the wideband frequency modulation capability of the all-digital phase-locked loop with built-in automatic compensation to ensure modulation accuracy. The receiver employs a discrete-time architecture in which the RF signal is directly sampled and processed using analog and digital signal processing techniques. The complete chip also integrates power management functions and a digital baseband processor. Application of the presented ideas has resulted in significant area and power savings while producing structures that are amenable to migration to more advanced deep-submicron processes, as they become available. The entire IC occupies 10 mm/sup 2/ and consumes 28 mA during transmit and 41 mA during receive at 1.5-V supply.

Advancements in PLL and VCO TechnologiesRadio Frequency Integrated Circuit DesignSemiconductor Lasers and Optical DevicesBasebandCMOSFrequency synthesizerElectronic engineeringPhase-locked loopTransmitterElectrical engineeringTransceiverEngineeringVoltage-controlled oscillator
Citations
560
FWCI
33.02
field-weighted impact
References
25
Percentile
100%
vs. same field & year
Citations per year
Cited by
All-digital PLL and transmitter for mobile phones
IEEE Journal of Solid-State Circuits · 2005 · 620 citations
References
A high-resolution CMOS time-to-digital converter utilizing a Vernier delay line
IEEE Journal of Solid-State Circuits · 2000 · 671 citations
A general theory of phase noise in electrical oscillators
IEEE Journal of Solid-State Circuits · 1998 · 2,354 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

All-digital TX frequency synthesizer and discrete-time receiver for Bluetooth radio in 130-nm CMOS · Scinovex