A 28 GHz power amplifier (PA) using CMOS 0.18 µm Silterra process technology is reported. The cascade configuration has been adopted to obtain high Power Added Efficiency (PAE). To achieve low power consumption, the input stage adopts reverse body bias technique. The simulation results show that the proposed PA consumes 32.03mW and power gain (S21) of 9.51 dB is achieved at 28 GHz. The PA achieves saturated power (Psat) of 11.10 dBm and maximum PAE of 16.55% with output 1-dB compression point (OP1dB) 8.44 dBm. These results demonstrate the proposed power amplifier architecture is suitable for 5G applications
This work presents a 28/38 GHz dual-band power amplifier (PA) for fifth-generation (5G) communicatio...
In this thesis, a 5 GHz radio frequency power amplifier for IEEE 802.11a WLAN applications is design...
International audienceThe telecommunication market examines a highly growing demand for RF mobile de...
A 28 GHz power amplifier (PA) using CMOS 0.18 μm Silterra process technology is reported. The cascad...
A 28 GHz power amplifier (PA) using CMOS 0.18 μm Silterra process technology for milimeter wave appl...
A fully integrated power amplifier (PA) for 5G communication systems is realized in a 28-nm bulk CMO...
This paper presents a highly linear 28-GHz power amplifier (PA) with an adaptive back-gate bias cont...
A 27-47-GHz differential cascode power amplifier for millimeter-wave 5G new radio applications is pr...
A four-stage cascade power amplifier (PA) in 60 GHz industrial scientific medical (ISM) band is real...
© 2017 IEEE. This paper presents a high-efficiency, linear power amplifier (PA) for 28GHz mobile com...
© 2017 IEEE. This paper presents a 29-to-57GHz (65% BW) AM-PM compensated class-AB power amplifier t...
A review is presented of key power amplifier (PA) performance requirements for millimeter-wave 5G sy...
International audienceA 60 GHz highly linear Power Amplifier (PA) is implemented in 65-nm Low Power ...
In this paper, we reported the design of single-ended power amplifier (PA) delivering an output powe...
In this thesis, a 5 GHz radio frequency power amplifier for IEEE 802.11a WLAN applications is design...
This work presents a 28/38 GHz dual-band power amplifier (PA) for fifth-generation (5G) communicatio...
In this thesis, a 5 GHz radio frequency power amplifier for IEEE 802.11a WLAN applications is design...
International audienceThe telecommunication market examines a highly growing demand for RF mobile de...
A 28 GHz power amplifier (PA) using CMOS 0.18 μm Silterra process technology is reported. The cascad...
A 28 GHz power amplifier (PA) using CMOS 0.18 μm Silterra process technology for milimeter wave appl...
A fully integrated power amplifier (PA) for 5G communication systems is realized in a 28-nm bulk CMO...
This paper presents a highly linear 28-GHz power amplifier (PA) with an adaptive back-gate bias cont...
A 27-47-GHz differential cascode power amplifier for millimeter-wave 5G new radio applications is pr...
A four-stage cascade power amplifier (PA) in 60 GHz industrial scientific medical (ISM) band is real...
© 2017 IEEE. This paper presents a high-efficiency, linear power amplifier (PA) for 28GHz mobile com...
© 2017 IEEE. This paper presents a 29-to-57GHz (65% BW) AM-PM compensated class-AB power amplifier t...
A review is presented of key power amplifier (PA) performance requirements for millimeter-wave 5G sy...
International audienceA 60 GHz highly linear Power Amplifier (PA) is implemented in 65-nm Low Power ...
In this paper, we reported the design of single-ended power amplifier (PA) delivering an output powe...
In this thesis, a 5 GHz radio frequency power amplifier for IEEE 802.11a WLAN applications is design...
This work presents a 28/38 GHz dual-band power amplifier (PA) for fifth-generation (5G) communicatio...
In this thesis, a 5 GHz radio frequency power amplifier for IEEE 802.11a WLAN applications is design...
International audienceThe telecommunication market examines a highly growing demand for RF mobile de...