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ADA4620-2ARZ-R7 Folha de dados(PDF) 36 Page - Analog Devices

Nome de Peças ADA4620-2ARZ-R7
Descrição Electrónicos  36 V, Precision, Low Noise, 16.5 MHz JFET Op Amp with Rail-to-Rail Output
PDF  49 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
Logo AD - Analog Devices

ADA4620-2ARZ-R7 Folha de dados(HTML) 36 Page - Analog Devices

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Data Sheet
ADA4620-1, ADA4620-2
analog.com
Rev. 0
36 of 49
Figure 116. Gain and Phase Plot of the Transimpedance Amplifier Design, Without Compensation
Adding CF creates a zero in the loop transmission that compensates for the effect of the input pole, which stabilizes
the photodiode preamplifier design because of the increased phase margin. Adding CF also sets the signal
bandwidth (see Figure 117). The signal bandwidth and the zero frequency are determined by:
������
������ =
1
2������������������������������
(4)
where, fZ is the zero frequency. Setting the zero at the fX frequency maximizes the signal bandwidth with a 45°
phase margin. Because fX is the geometric mean of fP and fGBP, it can be calculated by:
������
������ = √������������ × ������������������������
(5)
Combining these equations, the CF value that produces fX is:
������������ = √
������������
2������ × ������������ × ������
������������������
(6)
The frequency response in this case shows approximately 2 dB of peaking and 15% overshoot. Doubling CF and
halving the bandwidth results in a flat frequency response with approximately 5% transient overshoot. The
dominant sources of output noise in the wideband photodiode preamp design are the input voltage noise of the
amplifier, VNOISE, and the resistor noise due to RF.
OPEN-LOOP GAIN
G = 1
G = RFCSs
fX
fGBP
fP
log f
log f
0
–45
–90
–135
–180



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