If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage
Storage Temperature
Input Voltage
Power Dissipation (Note 3)
ESD Susceptibility (Note 4)
PIn 5
Junction Temperature
Soldering Information
Small Outline Package
Vapor Phase (60 seconds)
Infrared (15 seconds)
215˚C
220˚C
6.0 V
−65˚C to +150˚C
−0.3V to V
DD
+ 0.3V
Internally limited
2000V
1500V
150˚C
See AN-450 "Surface Mounting and their Effects on
Product Reliability" for other methods of soldering surface
mount devices.
Thermal Resistance
θ
JC
(MSOP)
θ
JA
(MSOP)
θ
JC
(SOP)
θ
JA
(SOP)
56˚C/W
210˚C/W
35˚C/W
170˚C/W
Operating Ratings
Temperature Range
T
MIN
≤
T
A
≤
T
MAX
Supply Voltage
−40˚C
≤
T
A
≤
85˚C
2.4V
≤
V
DD
≤
5.5V
Electrical Characteristics
(Notes 1, 2)
The following specifications apply for V
DD
= 5V unless otherwise specified. Limits apply for T
A
= 25˚C.
LM4882
Symbol
I
DD
I
SD
V
OS
P
O
Parameter
Quiescent Current
Shutdown Current
Offset Voltage
Output Power
Conditions
V
IN
= 0V, I
O
= 0A
V
pin1
= V
DD
V
IN
= 0V
THD + N = 1% (max); f = 1 kHz;
R
L
= 4Ω
R
L
= 8Ω
R
L
= 32Ω
THD + N = 10%; f = 1 kHz
R
L
= 4Ω
R
L
= 8Ω
R
L
= 32Ω
THD + N
Total Harmonic Distortion + Noise
R
L
= 8Ω, P
f = 1 kHz
PSRR
Power Supply Rejection Ratio
V
pin3
= 2.5V, V
f = 120 Hz
ripple
O
Typical
(Note 5)
2
0.5
5
380
270
95
480
325
125
Limit
(Note 6)
4.0
5
50
Units
(Limits)
mA (max)
µA (max)
mV (max)
mW
250
mW (min)
mW
mW
mW
mW
%
%
= 250 mWrms;
0.5
0.1
R
L
= 32Ω, P
O
= 85 mWrms;
= 200 mVrms,
50
dB
Electrical Characteristics
(Notes 1, 2)
The following specifications apply for V
DD
= 3V unless otherwise specified. Limits apply for T
A
= 25˚C.
LM4882
Symbol
I
DD
I
SD
V
OS
P
O
Parameter
Quiescent Current
Shutdown Current
Offset Voltage
Output Power
Conditions
V
IN
= 0V, I
O
= 0A
V
pin1
= V
DD
V
IN
= 0V
THD + N = 1% (max); f = 1 kHz
R
L
= 8Ω
R
L
= 32Ω
THD + N = 10%; f = 1 kHz
R
L
= 8Ω
R
L
= 32Ω
105
40
mW
mW
80
30
mW
mW
Typical
(Note 5)
1.2
0.3
5
Limit
(Note 6)
Units
(Limits)
mA
µA
mV
3
www.national.com
LM4882
Electrical Characteristics
(Notes 1, 2)
The following specifications apply for V
DD
Symbol
THD + N
Parameter
Total Harmonic Distortion + Noise
(Continued)
= 3V unless otherwise specified. Limits apply for T
A
= 25˚C.
LM4882
Conditions
R
L
= 8Ω, P
f = 1 kHz
= 70 mWrms;
Typical
(Note 5)
0.25
0.3
Limit
(Note 6)
Units
(Limits)
%
%
O
R
L
= 32Ω, P
O
= 30 mWrms;
PSRR
Power Supply Rejection Ratio
V
pin3
= 2.5V, V
f = 120 Hz
= 200 mVrms,
ripple
50
dB
Note 1:
All voltages are measured with respect to the ground pin, unless otherwise specified.
Note 2:
Absolute Maximum Ratings
indicate limits beyond which damage to the device may occur.
Operating Ratings
indicate conditions for which the device is
functional, but do not guarantee specific performance limits.
Electrical Characteristicsstate
DC and AC electrical specifications under particular test conditions which
guarantee specific performance limits. This assumes that the device is within the Operating Ratings. Specifications are not guaranteed for parameters where no limit
is given, however, the typical value is a good indication of device performance.
Note 3:
The maximum power dissipation must be derated at elevated temperatures and is dictated by T
JMAX
,
θ
JA
, and the ambient temperature T
A
. The maximum
allowable power dissipation is P
DMAX
= (T
JMAX
− T
A
)/θ
JA
. For the LM4882, T
JMAX
= 150˚C, and the typical junction-to-ambient thermal resistance, when board
mounted, is 210˚C/W for the MUA08A Package and 170˚C/W for the M08A Package.
Note 4:
Human body model, 100 pF discharged through a 1.5 kΩ resistor.
Note 5:
Typicals are measured at 25˚C and represent the parametric norm.
Note 6:
Limits are guaranteed to National’s AOQL (Average Outgoing Quality Level).
External Components Description
(Refer to Figure 1)
Components
1. R
i
2. C
i
Functional Description
Inverting input resistance which sets the closed-loop gain in conjunction with R
f
. This resistor also forms a high
pass filter with C
i
at f
c
= 1 / (2πR
i
C
i
).
Input coupling capacitor which blocks the DC voltage at the amplifier’s input terminals. Also creates a highpass
filter with R
i
at f
c
= 1 / (2πR
i
C
i
). Refer to the section,
Proper Selection of External Components,
for an
explanation of how to determine the values of C
i
.
Feedback resistance which sets closed-loop gain in conjunction with R
i
.
Supply bypass capacitor which provides power supply filtering. Refer to the
Application Information
section
for proper placement and selection of the supply bypass capacitor.
Bypass pin capacitor which provides half-supply filtering. Refer to the section,
Proper Selection of External
Components,
for information concerning proper placement and selection of C
B
.
Output coupling capacitor which blocks the DC voltage at the amplifier’s output. Forms a high pass filter wth R
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