Gm-boosted differential transimpedance amplifier architecture
Mohsen Jalali, Mohammad Kazem Moravvej‐Farshi, Abdolreza Nabavi, Ali Fotowat‐Ahmady
Abstract
Open-access reader
Mohsen Jalali, Mohammad Kazem Moravvej‐Farshi, Abdolreza Nabavi, Ali Fotowat‐Ahmady
Abstract
Open-access reader
A modified floating biased common-gate transimpedance amplifier with improved low corner frequency is introduced. It is also shown that gm-boosting technique can be utilized for differential implementation of this transimpedance amplifier, without degrading the circuit sensitivity or using any off-chip components. HSPICE simulations for differential implementation illustrate more than two orders of magnitudes improvement of low corner frequency, about 80% increase in gain, and 20% reduction in input referred noise, compared to those of conventional single-ended floating biased common gate transimpedance amplifier.
OpenAlex reports 8 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 modified floating biased common-gate transimpedance amplifier with improved low corner frequency is introduced. It is also shown that gm-boosting technique can be utilized for differential implementation of this transimpedance amplifier, without degrading the circuit sensitivity or using any off-chip components. HSPICE simulations for differential implementation illustrate more than two orders of magnitudes improvement of low corner frequency, about 80% increase in gain, and 20% reduction in input referred noise, compared to those of conventional single-ended floating biased common gate transimpedance amplifier.
Key concepts: Transimpedance amplifier, Differential amplifier, Direct-coupled amplifier, Common gate, Electronic engineering, Amplifier, Operational amplifier, Computer science