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PDF LME49740 Data sheet ( Hoja de datos )

Número de pieza LME49740
Descripción High Fidelity Audio Operational Amplifier
Fabricantes National Semiconductor 
Logotipo National Semiconductor Logotipo



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No Preview Available ! LME49740 Hoja de datos, Descripción, Manual

February 2007
www.DataSheet4U.com
LME49740
Quad High Performance, High Fidelity Audio Operational
Amplifier
General Description
The LME49740 is part of the ultra-low distortion, low noise,
high slew rate operational amplifier series optimized and fully
specified for high performance, high fidelity applications.
Combining advanced leading-edge process technology with
state-of-the-art circuit design, the LME49740 audio opera-
tional amplifiers deliver superior audio signal amplification for
outstanding audio performance. The LME49740 combines
extremely low voltage noise density (2.7nV/HZ) with van-
ishingly low THD+N (0.00003%) to easily satisfy the most
demanding audio applications. To ensure that the most chal-
lenging loads are driven without compromise, the LME49740
has a high slew rate of ±20V/μs and an output current capa-
bility of ±26mA. Further, dynamic range is maximized by an
output stage that drives 2kloads to within 1V of either power
supply voltage and to within 1.4V when driving 600loads.
The LME49740's outstanding CMRR(120dB), PSRR(120dB),
and VOS(0.1mV) give the amplifier excellent operational am-
plifier DC performance.
The LME49740 has a wide supply range of ±2.5V to ±17V.
Over this supply range the LME49740’s input circuitry main-
tains excellent common-mode and power supply rejection, as
well as maintaining its low input bias current. The LME49740
is unity gain stable. The Audio Operational Amplifier achieves
outstanding AC performance while driving complex loads with
values as high as 100pF.
The LME49740 is available in 14–lead narrow body SOIC and
14–lead plastic DIP. Demonstration boards are available for
each package.
Key Specifications
■ Power Supply Voltage Range
■ THD+N (AV = 1, VOUT = 3VRMS,
  fIN = 1kHz)
RL = 2k
RL = 600Ω
■ Input Noise Density
■ Slew Rate
■ Gain Bandwidth Product
■ Open Loop Gain (RL = 600Ω)
■ Input Bias Current
■ Input Offset Voltage
■ DC Gain Linearity Error
±2.5V to ±17V
0.00003% (typ)
0.00003% (typ)
2.7nV/Hz (typ)
±20V/μs (typ)
55MHz (typ)
140dB (typ)
10nA (typ)
0.1mV (typ)
0.000009%
Features
Easily drives 600loads
Optimized for superior audio signal fidelity
Output short circuit protection
PSRR and CMRR exceed 120dB (typ)
SOIC and DIP packages
Applications
Ultra high quality audio amplification
High fidelity preamplifiers
High fidelity multimedia
State of the art phono pre amps
High performance professional audio
High fidelity equalization and crossover networks
High performance line drivers
High performance line receivers
High fidelity active filters
© 2007 National Semiconductor Corporation 202105
www.national.com

1 page




LME49740 pdf
Typical Performance Characteristics
THD+N vs Output Voltage
VCC = 15V, VEE = –15V, RL = 2k
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THD+N vs Output Voltage
VCC = 17V, VEE = –17V, RL = 2k
20210515
THD+N vs Frequency
VCC = 15V, VEE = –15V, RL = 2k, VOUT = 3VRMS
20210516
THD+N vs Frequency
VCC = 17V, VEE = –17V, RL = 2k, VOUT = 3VRMS
20210511
THD+N vs Frequency
VCC = 15V, VEE = –15V, RL = 600Ω, VOUT = 3VRMS
20210513
THD+N vs Frequency
VCC = 17V, VEE = –17V, RL = 600Ω, VOUT = 3VRMS
20210512
5
20210514
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LME49740 arduino
Typical Applications
NAB Preamp
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NAB Preamp Voltage Gain vs Frequency
VIN = 10mV, AV = 34.5dB, f = 1kHz
AV = 34.5
F = 1 kHz
En = 0.38 μV
A Weighted
20210530
Balanced to Single Ended Converter
20210531
Adder/Subtracter
VO = V1–V2
20210532
VO = V1 + V2 − V3 − V4
Sine Wave Oscillator
20210533
20210534
11
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