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MAX4249ESD Просмотр технического описания (PDF) - Maxim Integrated

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MAX4249ESD Datasheet PDF : 16 Pages
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SOT23, Single-Supply, Low-Noise,
Low-Distortion, Rail-to-Rail Op Amps
MAX4250
MAX4255
5 SOT23
PIN
MAX4251 MAX4252
MAX4256 MAX4257
MAX4249/MAX4253
8 µMAX/SO
10 µMAX 14 SO
1
6
1, 7
1, 9
1, 13
MAX4254
14 SO
1, 7, 8, 14
NAME
OUT, OUTA,
OUTB, OUTC,
OUTD
2
4
4
4
4
11
VSS
3
3
3, 5
3, 7
3, 11
3, 5, 10, 12
IN+, INA+, INB+,
INC+, IND+
4
2
2, 6
2, 8
2, 12
2, 6, 9, 13
IN-, INA-, INB-,
INC-, IND-
5
7
8
10
14
4
VDD
SHDN,
8
5, 6
6, 9
SHDNA,
SHDNB
1, 5
5, 7, 8, 10
N.C.
Pin Description
FUNCTION
Amplifier Output
Negative Supply. Connect
to ground for single-supply
operation.
Noninverting Amplifier Input
Inverting Amplifier Input
Positive Supply
Shutdown Input. Connect to
VDD or leave unconnected for
normal operation (amplifier(s)
enabled).
No Connection. Not internally
connected.
_______________Detailed Description
The MAX4249–MAX4257 single-supply operational
amplifiers feature ultra-low noise and distortion while
consuming very little power. Their low distortion and
low noise make them ideal for use as preamplifiers in
wide dynamic-range applications, such as 16-bit ana-
log-to-digital converters (see Typical Operating Circuit).
Their high input impedance and low noise are also use-
ful for signal conditioning of high-impedance sources,
such as piezoelectric transducers.
These devices have true rail-to-rail output operation,
drive loads as low as 1kwhile maintaining DC accura-
cy, and can drive capacitive loads up to 400pF without
oscillation. The input common-mode voltage range
extends from VDD - 1.1V to 200mV beyond the negative
rail. The push/pull output stage maintains excellent DC
characteristics, while delivering up to ±5mA of current.
The MAX4250–MAX4254 are unity-gain stable, whereas
the MAX4249/MAX4255/MAX4256/MAX4257 have a
higher slew rate and are stable for gains 10V/V. The
MAX4249/ MAX4251/MAX4253/MAX4256 feature a low-
power shutdown mode, which reduces the supply cur-
rent to 0.5µA and disables the outputs.
Low Distortion
Many factors can affect the noise and distortion that the
device contributes to the input signal. The following
guidelines offer valuable information on the impact of
design choices on Total Harmonic Distortion (THD).
Choosing proper feedback and gain resistor values for
a particular application can be a very important factor
in reducing THD. In general, the smaller the closed-
loop gain, the smaller the THD generated, especially
when driving heavy resistive loads. Large-value feed-
back resistors can significantly improve distortion. The
THD of the part normally increases at approximately
20dB per decade, as a function of frequency.
Operating the device near or above the full-power
bandwidth significantly degrades distortion.
Referencing the load to either supply also improves the
part’s distortion performance, because only one of the
MOSFETs of the push/pull output stage drives the out-
put. Referencing the load to mid-supply increases the
part’s distortion for a given load and feedback setting.
(See the Total Harmonic Distortion vs. Frequency graph
in the Typical Operating Characteristics.)
8 _______________________________________________________________________________________

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