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A Large Dynamic Range Reconfigurable Interpolation Digital Transmitter for NB-IoT Applications
Journal article   Peer reviewed

A Large Dynamic Range Reconfigurable Interpolation Digital Transmitter for NB-IoT Applications

Nagarajan Mahalingam, Hang Liu, Yisheng Wang, Kiat Seng Yeo, Chien-I Chou, Hung-Yu Tsai, Kun-Hsun Liao, Wen-Shan Wang, Ka-Un Chan and Ying-Hsi Lin
IEEE microwave and wireless components letters, Vol.32(6), pp.744-747
01/06/2022

Abstract

2-D digital predistortion (DPD) cartesian RF-DAC digital transmitter Dual band Dynamic range interpolater Interpolation Microwave imaging narrowband-Internetof-Things (NB-IoT) Power generation Radio transmitters reconfigurable SAW-less Switches
In this letter, we present a digital transmitter for dual-band narrowband-Internet-of-Things (NB-IoT) applications achieving a large dynamic range with high-speed cartesian RF-DACs requiring less area and consuming low power consumption. The proposed transmitter incorporates integrated output baluns, a reconfigurable digital interpolater-based oversampling for DAC image suppression, or avoidance of coexistence channel. A true SAW-less design is realized by external low-cost low-pass filtering of the spurious emission satisfying NB-IoT requirements. Implemented in standard 40-nm CMOS technology with a core area of <inline-formula> <tex-math notation="LaTeX">2.1\times1.5 </tex-math></inline-formula> mm 2 and packaged with QFN-68, the transmitter achieves a dynamic range from −47.5 to 24.8 dBm with error vector magnitude (EVM) <−25 dB. The peak efficiency is 44.1% at 28.7-dBm output power, with a 2.4-V power supply.

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