In this paper, we report a high-performance balun with characteristics suitable for future broadband sub-THz differential circuits. The idea of the balun is based on three asymmetric coupled lines, which enhance the odd mode capacitances to equalize the even/odd mode phase velocities. The inner line of the three asymmetric coupled lines is configured to form the open stub ( λ /2), while the outer lines form short stubs ( λ /4). To further reduce the phase imbalance, the short stubs in one of the arms of the balun are connected with vias and a lower metal layer. The balun is developed using the standard 130-nm SiGe BiCMOSback-end process and EM simulated with ADS momentum and Sonnet. The −10-dB reflection coefficient (S 11 ) bandwidth of the...
This paper presents a compact on-chip balun with a turn ratio of 1:2, and its application for sub-6 ...
Innovative circuit architectures and techniques to enhance the performance of several key BiCMOS RFI...
Project (M.S., Electrical and Electronic Engineering) -- California State University, Sacramento, 20...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
This paper presents a 1:2 wideband CMOS balun, and its application for sub-6 GHz wideband front-end....
We present the development of a low-loss, high-power, and ferriteless balun that operates over 0.1-1...
This paper presents a compact on-chip balun with a turn ratio of 1:2, and its application for sub-6 ...
Innovative circuit architectures and techniques to enhance the performance of several key BiCMOS RFI...
Project (M.S., Electrical and Electronic Engineering) -- California State University, Sacramento, 20...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report a high-performance balun with characteristics suitable for future broadband...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
In this paper, we report the design of a D-band modified Marchand balun using IHP's 130-nm SiGe BiCM...
This paper presents a 1:2 wideband CMOS balun, and its application for sub-6 GHz wideband front-end....
We present the development of a low-loss, high-power, and ferriteless balun that operates over 0.1-1...
This paper presents a compact on-chip balun with a turn ratio of 1:2, and its application for sub-6 ...
Innovative circuit architectures and techniques to enhance the performance of several key BiCMOS RFI...
Project (M.S., Electrical and Electronic Engineering) -- California State University, Sacramento, 20...