LM4780TABD National Semiconductor, LM4780TABD Datasheet - Page 8

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LM4780TABD

Manufacturer Part Number
LM4780TABD
Description
BOARD EVALUATION LM4780TA
Manufacturer
National Semiconductor
Series
Overture™r
Datasheet

Specifications of LM4780TABD

Amplifier Type
Class AB
Output Type
2-Channel (Stereo)
Max Output Power X Channels @ Load
60W x 2 @ 8 Ohm
Voltage - Supply
20 V ~ 84 V, ±10 V ~ 42 V
Operating Temperature
-20°C ~ 85°C
Board Type
Fully Populated
Utilized Ic / Part
LM4780
Lead Free Status / RoHS Status
Not applicable / Not applicable
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External Components Description
(Figures 1-5)
Note 17: Optional components dependent upon specific design requirements.
1
2
3
4
5
6
7
8
9
Components
R
L
(Note
(Note
(Note
(Note
(Note
(Note
(Note
(Note
(Note
(Note
(Note
(Note
R
R
R
C
R
C
R
R
C
R
C
R
C
R
R
C
R
S
R
R
C
C
OUT
INP
SN
SN
IN
IN
f2
BI
M
M
B
C
S
V
A
A
E
1
i
f
f
i
17)
17)
17)
17)
17)
17)
17)
17)
17)
17)
17)
17)
Prevents current from entering the amplifier's non-inverting input. This current may pass through to the load
during system power down, because of the amplifier's low input impedance when the undervoltage circuitry is
off. This phenomenon occurs when the V
Inverting input resistance. Along with R
Feedback resistance. Along with R
Feedback resistance. Works with Cf and Rf creating a lowpass filter that lowers AC gain at high frequencies.
The -3dB point of the pole occurs when: (R
shown in
Compensation capacitor. Works with R
Compensation capacitor. Reduces the gain at higher frequencies to avoid quasi-saturation oscillations of the
output transistor. Also suppresses external electromagnetic switching noise created from fluorescent lamps.
Feedback capacitor which ensures unity gain at DC. Along with R
(2
Provides power supply filtering and bypassing. Refer to the Supply Bypassing application section for proper
placement and selection of bypass capacitors.
Acts as a volume control by setting the input voltage level.
Sets the amplifier's input terminals DC bias point when C
a highpass filter at f
when the inputs are floating. Recommended values are 10kΩ to 47kΩ. Refer to
Input capacitor. Prevents the input signal's DC offsets from being passed onto the amplifier's inputs.
Works with C
Works with R
pole is set at f
Provides high impedance at high frequencies so that R may decouple a highly capacitive load and reduce the
Q of the series resonant circuit. Also provides a low impedance at low frequencies to short out R and pass audio
signals to the load. Refer to
Provides DC voltage biasing for the transistor Q1 in single supply operation.
Provides bias filtering for single supply operation.
Limits the voltage difference between the amplifier's inputs for single supply operation. Refer to the Clicks and
Pops application section for a more detailed explanation of the function of R
Provides input bias current for single supply operation. Refer to the Clicks and Pops application section for a
more detailed explanation of the function of R
Establishes a fixed DC current for the transistor Q1 in single supply operation. This resistor stabilizes the half-
supply point along with C
Mute resistance set up to allow 0.5mA to be drawn from each MUTE pin to turn the muting function off.
curves in the Typical Performance Characteristics section.
Mute capacitance set up to create a large time constant for turn-on and turn-off muting.
Mute switch. When open or switched to GND, the amplifier will be in mute mode.
Reduces current flow between outputs that are caused by Gain or DC offset differences between the amplifiers.
π
R
R
M
i
C
is calculated using: R
i
).
Figure
SN
SN
C
= 1/(2
to stabilize the output stage by creating a pole that reduces high frequency instabilities.
to stabilize the output stage by creating a pole that reduces high frequency instabilities. The
5.
C
= 1/(2
π
R
SN
A
.
π
C
M
Figure
R
SN
IN
). Refer to
(|V
C
IN
EE
i
). If the value of R
, sets AC gain.
5.
| − 2.6V)/l where l
f
f
, sets AC gain.
and R
+
Figure
Functional Description
and V
f
8
- R
BI
f2
i
.
)/2 = R
to reduce AC gain at higher frequencies.
-
5.
supply voltages are below 1.5V.
IN
f
is too large, oscillations may be observed on the outputs
// [1/(2
IN
0.5mA. Refer to the Mute Attenuation vs Mute Current
is present in the circuit. Also works with C
π
f
c
C
i
also creates a highpass filter at f
f
) + R
f2
] for the Non-Inverting configuration
INP
.
Figure
5.
c
IN
= 1/
to create

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