A differential amplifier is provided. Said differential amplifier comprises a first single-ended amplifying means (11) comprising at least a first terminal and a second terminal, a second single-ended amplifying means (12) comprising at least a first terminal and a second terminal, a first transmission line (13), and a second transmission line (14). In this context, the first terminal of the first single-ended amplifying means (11) is connected to the second terminal of the second single-ended amplifying means (12) via the first transmission line (13). In addition to this, the first terminal of the second single-ended amplifying means (12) is connected to the second terminal of the first single-ended amplifying means (11) via the second transmission line (14).
Park, S, Park, D-W, Wambacq, P & Craninckx, J, Differential amplifier and method for achieving maximum achievable gain of a differential amplifier, Patent No. EP4096091.
Park, S., Park, D.-W., Wambacq, P., & Craninckx, J. (2022). Differential amplifier and method for achieving maximum achievable gain of a differential amplifier. (Patent No. EP4096091).
@misc{5cd7a83fc57440d1a11d5192d402d2aa,
title = "Differential amplifier and method for achieving maximum achievable gain of a differential amplifier",
abstract = "A differential amplifier is provided. Said differential amplifier comprises a first single-ended amplifying means (11) comprising at least a first terminal and a second terminal, a second single-ended amplifying means (12) comprising at least a first terminal and a second terminal, a first transmission line (13), and a second transmission line (14). In this context, the first terminal of the first single-ended amplifying means (11) is connected to the second terminal of the second single-ended amplifying means (12) via the first transmission line (13). In addition to this, the first terminal of the second single-ended amplifying means (12) is connected to the second terminal of the first single-ended amplifying means (11) via the second transmission line (14).",
author = "Sehoon Park and Dae-Woong Park and Pierre Wambacq and Jan Craninckx",
year = "2022",
language = "English",
type = "Patent",
note = "EP4096091",
}