MAX98307ETE+ Maxim Integrated, MAX98307ETE+ Datasheet - Page 13

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MAX98307ETE+

Manufacturer Part Number
MAX98307ETE+
Description
Audio Amplifiers 3.3W Mono Class D Amplifier
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX98307ETE+

Rohs
yes
Product
Class-D
Output Type
Mono
Output Power
3.3 W
Thd Plus Noise
0.05 %
Supply Current
1.85 mA
Maximum Power Dissipation
1.667 W
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
TQFN-16
Common Mode Rejection Ratio (min)
65 dB
The MAX98307/MAX98308 fully differential mono Class
DG multilevel power amplifiers with integrated inverting
charge pumps offer highly efficient, high-power audio
solutions for portable applications.
The new Class DG multilevel modulation scheme extends
the dynamic range of the output signal by employing a
charge-pump-generated negative rail, which is used as
needed to extend the supply range. When the negative
rail is not needed, the output is drawn entirely from the
standard supply. This scheme results in high efficiency
over a wide output power range.
The power amplifier incorporates active emissions limit-
ing edge rate and overshoot control circuitry in combi-
nation with the multilevel output modulation scheme to
greatly reduce EMI. These features eliminate the need for
output filtering as compared to traditional Class D ampli-
fiers, which reduces an application’s component count.
The MAX98307 has an adjustable gain set by external
resistors. The MAX98308 has preset fixed gains of 8.5dB,
11.5dB, 14.5dB, 17.5dB, and 20.5dB set by a gain select
input (GAIN).
The ICs’ filterless Class DG multilevel amplifiers feature
a proprietary Maxim output stage that offers higher effi-
ciency over a greater output power range than previous
amplifiers. The amplifier combines Class D switching
output efficiency and Class G supply level shifting with a
multilevel output modulation scheme that with a 5V supply
has efficiency better than 80% efficiency over the 0.35W
to 2.2W output range.
The Class DG multilevel output stage uses pulse-width
modulation (PWM), a rail-to-rail digital output signal with
variable duty cycle, to approximate an analog input signal
as in a Class D amplifier. Rail-to-rail operation ensures that
any dissipation at the output is due solely to the R
of the power output MOSFETs. The Class DG multilevel
output stage also senses the magnitude of the output
signal and switches the supply rails as needed to more
3.3W Mono Class DG Multilevel Audio Amplifier
���������������������������������������������������������������� Maxim Integrated Products 13
Class DG Multilevel Operation
Detailed Description
DS(ON)
efficiently supply the required signal power. For a low out-
put signal swing requirement (below the battery supply rail
V
When output swing above V
internal inverting charge-pump-generated negative rail
replaces ground as the lower supply. The high output
swing range is then V
ble the low swing range. This approach efficiently man-
ages power consumption by switching the operating rails
as needed according to the output swing requirements.
Additionally, multilevel output modulation is employed in to
draw the maximum possible power from the lower imped-
ance battery supply rail, V
impedance charge-pump-generated rail V
accomplished by generating PWM signals that swing
from ground to V
end of the bridge tied load (BTL) rather than continually
swinging from V
lated in such a way that V
to generate low-end signal swing.
These combined operations ensure that power dissipa-
tion due to R
is minimized, and that efficiency and output power is
maximized across the audio range. Class DG multilevel
operation is shown as
Figure 1. Class DG Multilevel Operation
PVDD
MAX98307/MAX98308
), the output range is between V
DS(ON)
PVDD
PVDD
loss and charge-pump impedance
PVDD
400µs /div
Figure
to V
or from ground to V
PVSS
PVSS .
PVDD
to V
PVDD
1.
is used only as necessary
PVSS
, rather than the higher
The signals are modu-
MAX98307 fig01
is required, V
, approximately dou-
PVDD
OUT+
5V/div
OUT-
5V/div
OUT+ - OUT-
10V/div
PVSS
PVSS
and ground.
PVSS
. This is
at either
, an

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