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ADA4522-4ARUZ-R7 Datasheet(PDF) 22 Page - Analog Devices

Part # ADA4522-4ARUZ-R7
Description  55 V, EMI Enhanced, Zero Drift, Ultralow Noise, Rail-to-Rail Output Operational
PDF  33 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADA4522-4ARUZ-R7 Datasheet(HTML) 22 Page - Analog Devices

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Data Sheet
ADA4522-1/ADA4522-2/ADA4522-4
THEORY OF OPERATION
analog.com
Rev. G | 22 of 33
The ADA4522-1/ADA4522-2/ADA4522-4 are single, dual, and
quad, ultralow noise, high voltage, zero drift, rail-to-rail output op-
erational amplifiers. They feature a chopping technique that offers
an ultralow input offset voltage of 5 µV and an input offset voltage
drift of 22 nV/°C maximum for the ADA4522-1 and ADA4522-2 and
25 nV/°C maximum for the ADA4522-4. Offset voltage errors due to
common-mode voltage swings and power supply variations are also
corrected by the chopping technique, resulting in a superb typical
CMRR figure of 160 dB and a PSRR figure of 160 dB at a 30 V
supply voltage.
The ADA4522-1/ADA4522-2/ADA4522-4 have wide operating vol-
tages from ±2.25 V (or 4.5 V) to ±27.5 V (or 55 V). The devices are
single supply amplifiers, where their input voltage range includes
the lower supply rail. They also offer low voltage noise density
of 5.8 nV/√Hz (at f = 1 kHz, AV = 100) and reduced 1/f noise
component. These features are ideal for the amplification of low
level signals in high precision applications. A few examples of such
applications are weigh scales, high precision current sensing, high
voltage buffers, and signal conditioning for temperature sensors,
among others.
Figure 71 shows the ADA4522-1/ADA4522-2/ADA4522-4 architec-
ture block diagram. The architecture consists of an input EMI
filter and clamp circuitry, three gain stages (Gm1, Gm2, and Gm3),
input and output chopping networks (CHOPIN and CHOPOUT), a
clock generator, offset and ripple correction loop circuitry, frequency
compensation capacitors (C1, C2, and C3), and thermal shutdown
circuitry.
An EMI filter and clamp circuit is implemented at the input front end
to protect the internal circuitry against electrostatic discharge (ESD)
stresses and high voltage transients. The ability of the amplifier to
reject EMI is explained in detail in the EMI Rejection Ratio section.
CHOPIN and CHOPOUT are controlled by a clock generator and
operate at 4.8 MHz. The input baseband signal is initially modulated
by CHOPIN. Next, CHOPOUT demodulates the input signal and
modulates the millivolt level input offset voltage and 1/f noise of the
input transconductance amplifier, Gm1, to the chopping frequency
at 4.8 MHz. The chopping networks remove the low frequency
errors, but, in return, the networks introduce chopping artifacts at
the chopping frequency. Therefore, a offset and ripple correction
loop, operating at 800 kHz, is used. This frequency is the switching
frequency of the amplifier. This circuitry reduces chopping artifacts,
allowing the ADA4522-1/ADA4522-2/ADA4522-4 to have a high
chopping frequency with minimal artifacts.
The thermal shutdown circuit shuts down the circuit when the die
is overheated (see the Thermal Shutdown section for more informa-
tion).
Figure 71. ADA4522-1/ADA4522-2/ADA4522-4 Architecture Block Diagram
ON-CHIP INPUT EMI FILTER AND CLAMP
CIRCUIT
Figure 72 shows the input EMI filter and clamp circuit. TheA-
DA4522-1/ADA4522-2/ADA4522-4 have internal ESD protection
diodes (D1, D2, D3, and D4) that are connected between the inputs
and each supply rail. These diodes protect the input transistors in
the event of electrostatic discharge and are reverse biased during
normal operation. This protection scheme allows voltages as high
as approximately 300 mV beyond the rails to be applied at the input
of either terminal without causing permanent damage. See Table 5
in the Absolute Maximum Ratings section for more information.
The EMI filter is composed of two 200 Ω input series resistors (RS1
and RS2), two common-mode capacitors (CCM1 and CCM2), and
a differential capacitor (CDM). These RC networks set the −3 dB
low-pass cutoff frequencies at 50 MHz for common-mode signals,
and at 33 MHz for differential signals. After the EMI filter, back
to back diodes (D5 and D6) are added to protect internal circuit
devices from high voltage input transients. Each diode has about
1 V of forward turn on voltage. See the Large Signal Transient
Response section for more information on the effect of high voltage
input transient on the ADA4522-1/ADA4522-2/ADA4522-4.
As specified in the Absolute Maximum Ratings section (see Table
5), the maximum input differential voltage is limited to ±5 V. If more
than ±5 V is applied, a continuous current larger than ±10 mA
flows through one of the back to back diodes. This current compro-
mises long-term reliability and can cause permanent damage to the
device.
Figure 72. Input EMI Filter and Clamp Circuit
THERMAL SHUTDOWN
The ADA4522-1/ADA4522-2/ADA4522-4 have internal thermal
shutdown circuitry for each channel of the amplifier. The thermal
shutdown circuitry prevents internal devices from being damaged
by an overheat condition in the die. Overheating can occur due to a



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