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LM4875M 数据表(PDF) 7 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
部件名 LM4875M
功能描述  750 mW Audio Power Amplifier with DC Volume Control and Headphone Switch
PDF  13 Pages
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制造商  NSC [National Semiconductor (TI)]
网页  http://www.national.com
标志 NSC - National Semiconductor (TI)

LM4875M 数据表(HTML) 7 Page - National Semiconductor (TI)

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Typical Performance Characteristics (Continued)
Output Power vs Supply Voltage
Output Power vs Supply Voltage
10104231
10104232
Supply Current vs Supply Voltage
10104233
Application Information
BRIDGE CONFIGURATION EXPLANATION
As shown in Figure 1, the LM4875 consists of two opera-
tional amplifiers internally. An external DC voltage sets the
closed-loop gain of the first amplifier, whereas two internal
20k
Ω resistors set the second amplifier’s gain at -1. The
LM4875 can be used to drive a speaker connected between
the two amplifier outputs or a monaural headphone con-
nected between V
O1 and GND.
Figure 1 shows that the output of Amp1 serves as the input
to Amp2. This results in both amplifiers producing signals
that are identical in magnitude, but 180˚ out of phase.
Taking advantage of this phase difference, a load placed
between V
O1 and VO2 is driven differentially (commonly
referred to as “bridge mode“ ). This mode is different from
single-ended driven loads that are connected between a
single amplifier’s output and ground.
Bridge mode has a distinct advantage over the single-ended
configuration: its differential drive to the load doubles the
output swing for a specified supply voltage. This results in
four times the output power when compared to a single-
ended amplifier under the same conditions. This increase in
attainable output assumes that the amplifier is not current
limited or the output signal is not clipped. To ensure mini-
mum output signal clipping when choosing an amplifier’s
closed-loop gain, refer to the Audio Power Amplifier De-
sign section.
Another advantage of the differential bridge output is no net
DC voltage across load. This results from biasing V
O1 and
V
O2 at half-supply. This eliminates the coupling capacitor
that single supply, single-ended amplifiers require. Eliminat-
ing an output coupling capacitor in a single-ended configu-
ration forces a single supply amplifier’s half-supply bias volt-
age across the load. The current flow created by the half-
supply bias voltage increases internal IC power dissipation
and may permanently damage loads such as speakers.
POWER DISSIPATION
Power dissipation is a major concern when designing a
successful bridged or single-ended amplifier. Equation (1)
states the maximum power dissipation point for a single-
ended amplifier operating at a given supply voltage and
driving a specified output load.
P
DMAX =(VDD)
2/(2
π2R
L)
Single-Ended
(1)
However, a direct consequence of the increased power de-
livered to the load by a bridge amplifier is an increase in
internal power dissipation point for a bridge amplifier oper-
ating at the same given conditions.
P
DMAX = 4*(VDD)
2/(2
π2R
L)
Bridge Mode
(2)
The LM4875 has two operational amplifiers in one package
and the maximum internal power dissipation is 4 times that
www.national.com
7



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