DocumentCode
2063356
Title
13.3 A 10mW Bluetooth Low-Energy transceiver with on-chip matching
Author
Prummel, Jan ; Papamichail, Michail ; Ancis, Michele ; Willms, John ; Todi, Rahul ; Aartsen, William ; Kruiskamp, Wim ; Haanstra, Johan ; Opbroek, Enno ; Rievers, Soren ; Seesink, Peter ; Woering, Harrie ; Smit, Chris
Author_Institution
Dialog Semicond., S-Hertogenbosch, Netherlands
fYear
2015
fDate
22-26 Feb. 2015
Firstpage
1
Lastpage
3
Abstract
Wireless sensor nodes present a difficult compromise at the system level between low power consumption, interference resilience and ease/size of the application. Recent low-power designs employ receiver architectures in which the LO runs at or below the received frequency (in TX at the required RF frequency). These architectures facilitate LO generation and distribution at a favorably low frequency, but cause a systematic, hard-to-circumvent susceptibility to out-of-band blockers in RX [1] and pulling in TX [1,2]. The presented Bluetooth Low-Energy (BLE) transceiver, as shown in Fig. 13.3.1, was purposely designed with a classic double-frequency VCO architecture to avoid these inherent weaknesses, but still significantly reduces the power consumption of designs of the same architecture [3,4]. In order to ease application, an on-chip DC-DC converter supports battery operation between 0.9V and 3.3V. An on-chip T/R switch, RX balun and impedance matching allow 50Ω chip antennae to be used directly on the single-ended RFIO pin, without the need for external RF filtering. This enables minimum-sized modules and a fast time-to-market.
Keywords
Bluetooth; DC-DC power convertors; antenna radiation patterns; baluns; impedance matching; low-power electronics; radio transceivers; radiofrequency filters; radiofrequency interference; radiofrequency oscillators; receiving antennas; telecommunication power management; voltage-controlled oscillators; wireless sensor networks; BLE transceiver; Bluetooth low-energy transceiver; LO distribution; LO generation; RF filtering; RX balun; battery operation; chip antennae; double-frequency VCO architecture; impedance matching; interference resilience; low power consumption reduction; onchip DC-DC converter; onchip T-R switch; power 10 mW; receiver low-power design architecture; single-ended RFIO pin; voltage 0.9 V to 3.3 V; wireless sensor node; Bluetooth; Impedance matching; Mixers; Power demand; Switches; System-on-chip; Transceivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid- State Circuits Conference - (ISSCC), 2015 IEEE International
Conference_Location
San Francisco, CA
Print_ISBN
978-1-4799-6223-5
Type
conf
DOI
10.1109/ISSCC.2015.7063014
Filename
7063014
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