학술논문

Design of a Non-Linear Sized I/Q Digital PA for 5G mm-Wave Communications in 28 nm CMOS
Document Type
Conference
Source
2020 31st Irish Signals and Systems Conference (ISSC) Signals and Systems Conference (ISSC), 2020 31st Irish. :1-4 Jun, 2020
Subject
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Computer architecture
Microprocessors
Linearity
Layout
Inductors
Transmitters
5G mobile communication
Non-linear Sizing
28 GHz
DPA
5G
TSMC 28 nm
RF-DAC
Common-Centroid Layout
Language
ISSN
2688-1454
Abstract
This paper presents the design of a DPA for 5G telecommunications applications in TSMC (Taiwan Semiconductor Manufacturing Company) 28 nm CMOS. A modified Gilbert cell is proposed to perform the function of amplification and reversing the phase within a compact layout, improving the efficiency. To overcome the linearity issue of DPAs, a non-linear sizing technique of the PA cells is employed. The effective widths of relative bit cells need to be increased to conform to non-linear sizing thus providing linearity with acceptable INL (Integral Non-Linearity)and DNL (Differential Non-Linearity) results. The simulated saturated output power is 11.7 dBm with power added efficiency at 13 percent with the device working off a carrier frequency of 28 GHz.