C-Band 6 Bit Compact MMIC Phase Shifter with Reduced Loss
Manu Raj, Sandeep Chaturvedi
Abstract
Manu Raj, Sandeep Chaturvedi
Abstract
A C-band highly compact 6 bit digital phase phase shifter (DPS) on GaAs Monolithic Microwave integrated Circuit (MMIC) is discussed in this paper. The circuit is realized using 0.7μm G7S technology at GAETEC foundry. Switching of the High pass/Low pass network is achieved by 0.7 μm MESFET device which offers reduced insertion loss if compensated with shunt resonating inductors. A measured insertion loss of 6.5 dB with ±0.4 dB loss variation is achieved within 18% bandwidth. The circuit being small in size (4.5mm x 2mm) and having phase shift errors within desirable limits is suitable for integration into a T/R core chip.
OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A C-band highly compact 6 bit digital phase phase shifter (DPS) on GaAs Monolithic Microwave integrated Circuit (MMIC) is discussed in this paper. The circuit is realized using 0.7μm G7S technology at GAETEC foundry. Switching of the High pass/Low pass network is achieved by 0.7 μm MESFET device which offers reduced insertion loss if compensated with shunt resonating inductors. A measured insertion loss of 6.5 dB with ±0.4 dB loss variation is achieved within 18% bandwidth. The circuit being small in size (4.5mm x 2mm) and having phase shift errors within desirable limits is suitable for integration into a T/R core chip.
Key concepts: Monolithic microwave integrated circuit, Insertion loss, Phase shift module, MESFET, Materials science, Inductor, Electrical engineering, Optoelectronics