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ADL5308ACCZ-R7 Folha de dados(PDF) 15 Page - Analog Devices

Nome de Peças ADL5308ACCZ-R7
Descrição Electrónicos  Fast Response 188 dB Range (10 pA to 25 mA) Logarithmic Converter
PDF  22 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
Logo AD - Analog Devices

ADL5308ACCZ-R7 Folha de dados(HTML) 15 Page - Analog Devices

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Data Sheet
ADL5308
APPLICATIONS INFORMATION
analog.com
Rev. 0 | 15 of 22
INTERFACES DESCRIPTION
INP and IREF Interface
The photocurrent input flows into the INP pin connected to the
anode of the PD, which can operate at a maximum current of 25
mA. An internal reference current input sets the IREF through an
I2C. An external reference current is also an option to connect to
the IREF pin, which requires disabling the internal IREF. The IREF
can operate at a maximum current of 5 mA.
Figure 31. Simplified INP and IREF Interface
SUM Interface
A large voltage difference between nodes can cause a significant
leakage current, even if the impedance between the nodes is
relatively high. Guarding reduces the errors due to leakages. The
concept of guarding is to surround the high-impedance conductor
with another conductor (guard) driven to the same voltage potential.
If there is no voltage across the insulation resistance (between the
high-impedance conductor and guard), there cannot be any current
flowing through it.
Reducing errors from external sources in a current-sensing circuit
requires a different approach than the voltage sensing input of the
typical high-impedance op amp circuit. Leakage can be a significant
source of error for highly sensitive log amps, especially at the low
end of their range. For example, a 1 GΩ leakage path to the ground
from the current lines INP and IREF with a VSUM set to the default
1.53 V generates a 1.53 nA offset.
The ADL5308 uses SUM node as guard pins, which shield the
input current lines INP and IREF. It has an internal 1 kΩ resistor
connected from a voltage reference buffer (VREF) to the SUM node.
Figure 32. Simplified SUM Interface
VLOG and FB Interface
The Logarithmic voltage-output (VLOG) changes logarithmically
with the current applied to INP and IREF. The output can be
buffered using the log output amplifier as the VLOG pin shorted
to the feedback (FB) pin. The nominal slope is 200 mV/dec in the
range of 1 nA to 10 mA of the current input over the entire operating
temperature with an internal trimmed IREF value as shown in
Figure 4.
The logarithmic slope can be changed by connecting external gain
resistors RA and RB as shown in Figure 33. For example, for equal
resistors between FB and VLOG and FB to ground, the gain is 2.
Figure 33. Simplified Schematic of VLOG and FB Interface
Figure 35 shows the logarithmic output response for a 220 µA to
10 nA input current transition (an 87 dB step in magnitude). Two
curves are shown: one without any low-pass filter at the VLOG
output and one with a 220 Ω/1.2 nF low-pass filter network at the
VLOG output. As can be seen, the variation due to noise is lower
with the low-pass filter network but its response is slightly slower.
Figure 34. Simplified Schematic of the Low-Pass Filter Network at the VLOG



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