We propose a simple topology for the realization of ultra low noise differential-input, differential-output preamplifiers. The input devices can be either low noise JFET pairs (for high impedance sources) or low noise BJT pairs (for minimum low frequency voltage noise). Besides the input devices, the circuit requires only two matched low noise BJT transistor pairs (either PNP or NPN, depending on the input device type) and a few excess noise free resistors for consistently obtaining differential gains of 100 (40 dB) with a bandwidth in excess of 100 kHz and an equivalent input noise floor comparable to (or better than) those reported in the literature for similar devices. The preamplifier is to be regarded as an off-the-shelf component that can be employed as a building block for a number of applications in the field of low frequency noise measurements.
A differential-input, differential-output preamplifier topology for the design of ultra-low noise voltage amplifiers
SCANDURRA, GraziellaPrimo
;CANNATA', GIANLUCASecondo
;GIUSI, GinoPenultimo
;CIOFI, CarmineUltimo
2017-01-01
Abstract
We propose a simple topology for the realization of ultra low noise differential-input, differential-output preamplifiers. The input devices can be either low noise JFET pairs (for high impedance sources) or low noise BJT pairs (for minimum low frequency voltage noise). Besides the input devices, the circuit requires only two matched low noise BJT transistor pairs (either PNP or NPN, depending on the input device type) and a few excess noise free resistors for consistently obtaining differential gains of 100 (40 dB) with a bandwidth in excess of 100 kHz and an equivalent input noise floor comparable to (or better than) those reported in the literature for similar devices. The preamplifier is to be regarded as an off-the-shelf component that can be employed as a building block for a number of applications in the field of low frequency noise measurements.File | Dimensione | Formato | |
---|---|---|---|
icnf2017_3.pdf
solo utenti autorizzati
Tipologia:
Versione Editoriale (PDF)
Licenza:
Tutti i diritti riservati (All rights reserved)
Dimensione
313.14 kB
Formato
Adobe PDF
|
313.14 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
Pubblicazioni consigliate
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.