LMP7732MM/NOPB National Semiconductor, LMP7732MM/NOPB Datasheet - Page 14

IC AMP PREC RRIO DUAL MINI 8MSOP

LMP7732MM/NOPB

Manufacturer Part Number
LMP7732MM/NOPB
Description
IC AMP PREC RRIO DUAL MINI 8MSOP
Manufacturer
National Semiconductor
Series
LMP®, PowerWise®r
Datasheet

Specifications of LMP7732MM/NOPB

Amplifier Type
General Purpose
Number Of Circuits
2
Output Type
Rail-to-Rail
Slew Rate
2.4 V/µs
Gain Bandwidth Product
22MHz
Current - Input Bias
14nA
Voltage - Input Offset
6µV
Current - Supply
5mA
Current - Output / Channel
49mA
Voltage - Supply, Single/dual (±)
1.8 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-MSOP, Micro8™, 8-uMAX, 8-uSOP,
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
-3db Bandwidth
-
Other names
LMO7732MM/NOPB
LMP7732MM
Q4015696
www.national.com
Application Notes
LMP7732
The LMP7732 is a dual low noise, rail-to-rail input and output,
low voltage amplifier.
The low input voltage noise of only 2.9 nV/
ner at 3 Hz makes the LMP7732 ideal for sensor applications
where DC accuracy is of importance.
The LMP7732 has high gain bandwidth of 22 MHz. This wide
bandwidth enables the use of the amplifier at higher gain set-
tings while retaining ample usable bandwidth for the applica-
tion. This is particularly beneficial when system designers
need to use sensors with very limited output voltage range as
it allows larger gains in one stage which in turn increases sig-
nal to noise ratio.
The LMP7732 has a proprietary input bias cancellation cir-
cuitry on the input stages. This allows the LMP7732 to have
only about 1.5 nA bias current with a bipolar input stage. This
low input bias current, paired with the inherent lower input
voltage noise of bipolar input stages makes the LMP7732 an
excellent choice for precision applications. The combination
of low input bias current, low input offset voltage, and low input
voltage noise enables the user to achieve unprecedented ac-
curacy and higher signal integrity.
National Semiconductor is heavily committed to precision
amplifiers and the market segment they serve. Technical sup-
port and extensive characterization data is available for sen-
sitive applications or applications with a constrained error
budget.
The LMP7732 comes in the 8-Pin SOIC and MSOP pack-
ages. These small packages are ideal solutions for area
constrained PC boards and portable electronics.
INPUT BIAS CURRENT CANCELLATION
The LMP7732 has proprietary input bias current cancellation
circuitry on its input stage.
The LMP7732 has rail-to-rail input. This is achieved by having
a p-input and n-input stage in parallel. Figure 1 only shows
one of the input stages as the circuitry is symmetrical for both
stages.
The frequency response of this noise test circuit at the 0.1 Hz
corner is defined by only one zero. The test time for the
0.1 Hz to 10 Hz noise measurement using this configuration
should not exceed 10 seconds, as this time limit acts as an
FIGURE 2. 0.1 Hz to 10 Hz Noise Test Circuit
with a 1/f cor-
14
Figure 1 shows that as the common mode voltage gets closer
to one of the extreme ends, current I
This increased current shows as an increase in voltage drop
across resistor R
voltage contributes to the offset voltage of the amplifier. When
common mode voltage is in the mid-range, the transistors are
operating in the linear region and I
voltage drop due to I
of magnitude smaller than the amplifier's input offset voltage.
As the common mode voltage gets closer to one of the rails,
the offset voltage generated due to I
comparable to the amplifiers offset voltage.
INPUT VOLTAGE NOISE MEASUREMENT
The LMP7732 has very low input voltage noise. The peak-to-
peak input voltage noise of the LMP7732 can be measured
using the test circuit shown in Figure 2
additional zero to reduce or eliminate the contributions of
noise from frequencies below 0.1 Hz.
Figure 3 shows typical peak-to-peak noise for the LMP7732
measured with the circuit in Figure 2.
FIGURE 1. Input Bias Current Cancellation
1
equal to I
1
across R
1
*R
1
1
can be ignored as it is orders
on IN+ of the amplifier. This
1
30015079
1
is significantly small. The
1
increases and becomes
significantly increases.
30015006

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