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ADA4817-1ACP-EBZ 查看數據表(PDF) - Analog Devices

零件编号
产品描述 (功能)
生产厂家
ADA4817-1ACP-EBZ
ADI
Analog Devices ADI
ADA4817-1ACP-EBZ Datasheet PDF : 28 Pages
First Prev 11 12 13 14 15 16 17 18 19 20 Next Last
ADA4817-1/ADA4817-2
45
40
35
30
25
20
15
10
5
G = 63V/V
0
RL = 100Ω
VS = 10V
VOUT = 6V p-p
–5
0.1
1
10
100
FREQUENCY (MHz)
1000
Figure 52. Photodiode Preamp Frequency Response
The pole in the loop transmission translates to a zero in the
noise gain of the amplifier, leading to an amplification of the
input voltage noise over frequency.
Table 9. RMS Noise Contributions of Photodiode Preamp
Contributor
Expression
RF
4kT × RF × f2 × 1.57
VEN Amp
IEN Amp
VEN × C S + C M + C D + C F ×
CF
f3 × 1.57
IEN × RF × f2 × 1.57
Data Sheet
The loop transmission zero introduced by CF limits the
amplification. The noise gain bandwidth extends past the pre-
amp signal bandwidth and is eventually rolled off by the decreasing
loop gain of the amplifier. The current equivalent noise from the
inverting terminal is typically negligible for most applications.
The innovative architecture used in the ADA4817-1/ADA4817-2
makes balancing both inputs unnecessary, as opposed to traditional
FET input amplifiers. Therefore, minimizing the impedance
seen from the noninverting terminal to ground at all frequencies
is critical for optimal noise performance.
Integrating the square of the output voltage noise spectral density
over frequency and then taking the square root allows users
to obtain the total rms output noise of the preamp. Table 9
summarizes approximations for the amplifier and feedback
and source resistances. Noise components for an example
preamp with RF = 50 kΩ, CS = 30 pF, and CF = 0.5 pF
(bandwidth of about 6.4 MHz) are also listed.
RMS Noise with RF = 50 kΩ, CS = 30 pF, CF = 0.5 pF
94 µV
777.5 µV
0.4 µV
783 µV (total)
Rev. B | Page 20 of 28

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