MAX4471ESA Maxim Integrated Products, MAX4471ESA Datasheet - Page 10

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MAX4471ESA

Manufacturer Part Number
MAX4471ESA
Description
Op Amps 1.8V/750nA Rail-Rail
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX4471ESA

Number Of Channels
2
Voltage Gain Db
120 dB
Common Mode Rejection Ratio (min)
70 dB
Input Offset Voltage
7 mV
Operating Supply Voltage
3 V or 5 V
Supply Current
0.0024 mA
Maximum Power Dissipation
471 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
SOIC-8 Narrow
Minimum Operating Temperature
- 40 C

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The common-mode input range of the MAX4470 family
extends down to ground, and offers excellent common-
mode rejection. These devices are guaranteed not to
undergo phase reversal when the input is overdriven.
The MAX4470 family operates from a single +1.8V to
+5.5V power supply. Bypass power supplies with a
0.1µF ceramic capacitor placed close to the V
Ground layout improves performance by decreasing the
amount of stray capacitance and noise at the op amp’s
inputs and outputs. To decrease stray capacitance, mini-
mize PC board lengths and resistor leads, and place
external components close to the op amps’ pins.
The MAX4470/MAX4471/MAX4472 are internally
compensated for unity-gain stability and have a typical
gain-bandwidth of 9kHz. The MAX4464/MAX4474 have
a 40kHz typical gain-bandwidth and are stable for a
gain of +5V/V or greater.
Single/Dual/Quad, +1.8V/750nA, SC70,
Rail-to-Rail Op Amps
10
MAX4470/
MAX4464
______________________________________________________________________________________
5
Applications Information
Power Supplies and Layout
MAX4471/
MAX4474
PIN
1
6
5
7
8
Ground Sensing
MAX4472
Bandwidth
10
13
12
14
1
6
5
7
9
8
4
DD
pin.
NAME
OUTA
OUTB
OUTC
OUTD
INB+
INC+
IND+
INB-
INC-
IND-
V
DD
The MAX4464/MAX4470/MAX4471/MAX4472/MAX4474
maintain stability in their minimum gain configuration
while driving capacitive loads. Although this product
family is primarily designed for low-frequency applica-
tions, good layout is extremely important because low-
power requirements demand high-impedance circuits.
The layout should also minimize stray capacitance at the
amplifier inputs. However some stray capacitance may
be unavoidable, and it may be necessary to add a 2pF
to 10pF capacitor across the feedback resistor as shown
in Figure 2. Select the smallest capacitor value that
ensures stability.
Figure 2. Compensation for Feedback Node Capacitance
Amplifier Output (Channel A)
Inverting Amplifier Input (Channel B)
Noninverting Amplifier Input (Channel B)
Amplifier Output (Channel B)
Inverting Amplifier Input (Channel C)
Noninverting Amplifier Input (Channel C)
Amplifier Output (Channel C)
Inverting Amplifier Input (Channel D)
Noninverting Amplifier Input (Channel D)
Amplifier Output (Channel D)
Positive Power-Supply Voltage
Pin Description (continued)
R2
V
IN
MAX44_ _
V
V
CC
FUNCTION
SS
2pF TO 10pF
R1
Stability

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