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MAX9721 查看數據表(PDF) - Maxim Integrated

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MAX9721 Datasheet PDF : 14 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
1V, Fixed-Gain, DirectDrive, Stereo Headphone
Amplifier with Shutdown
LF ROLLOFF (16LOAD)
0
-3 330µF
-5
220µF
-10
100µF
-15
-3dB CORNER FOR
100µF IS 100Hz
33µF
-20
-25
-30
-35
10
100
1k
FREQUENCY (Hz)
Figure 2. Low-Frequency Attenuation for Common DC-Blocking
Capacitor Values
ADDITIONAL THD+N DUE
TO DC-BLOCKING CAPACITORS
10
1
0.1
TANTALUM
0.01
0.001
ALUM/ELEC
0.0001
10
100
1k
10k
100k
FREQUENCY (Hz)
Figure 3. Distortion Contributed By DC-Blocking Capacitors
frequency noise attenuation can be achieved by
increasing the size of C2 (see the Functional Diagram).
Extra noise attenuation is not typically required.
Shutdown
The MAX9721’s low-power shutdown mode reduces sup-
ply current to 1µA. Driving SHDN low disables the ampli-
fiers and charge pump. The driver’s output impedance is
typically 50k(MAX9721A), 37.5k(MAX9721B), or
25k(MAX9721C) when in shutdown mode.
Click-and-Pop Suppression
In conventional single-supply audio drivers, the output-
coupling capacitor is a major contributor of audible
clicks and pops. Upon startup, the driver charges the
coupling capacitor to its bias voltage, typically half the
supply. Likewise, on shutdown, the capacitor is dis-
charged to GND. This results in a DC shift across the
capacitor that appears as an audible transient at the
speaker. The MAX9721’s DirectDrive technology elimi-
nates the need for output-coupling capacitors.
The MAX9721 also features extensive click-and-pop
suppression that eliminates any audible transient
sources internal to the device. The Power-Up/Down
Waveform in the Typical Operating Characteristics
shows minimal DC shift and no spurious transients at
the output upon startup or shutdown.
In most applications, the output of the preamplifier dri-
ving the MAX9721 has a DC bias of typically half the
supply. At startup, the input coupling capacitor is
charged to the preamplifier’s DC bias voltage through
the internal input resistor (25k, typ) causing an audi-
ble click/pop. Delaying the rise of SHDN 4 or 5 time
constants, based on RIN x CIN, relative to the startup of
the preamplifier eliminates any click/pop caused by the
input filter (see the Functional Diagram).
Applications Information
Power Dissipation
Linear power amplifiers can dissipate a significant
amount of power under normal operating conditions.
The maximum power dissipation for each package is
given in the Absolute Maximum Ratings section under
Continuous Power Dissipation or can be calculated by
the following equation:
PDISSPKG(MAX) =
TJ(MAX) - TA
θ JA
where TJ(MAX) is +150°C, TA is the ambient tempera-
ture, and θJA is the reciprocal of the derating factor in
°C/W as specified in the Absolute Maximum Ratings
section. For example, θJA for the thin QFN package is
+59.3°C/W.
The MAX9721 has two power dissipation sources, the
charge pump and the two amplifiers. If the power dissi-
pation exceeds the rated package dissipation, reduce
VDD, increase load impedance, decrease the ambient
temperature, or add heatsinking to the device. Large
output, supply, and ground traces decrease θJA, allow-
ing more heat to be transferred from the package to
surrounding air.
8 _______________________________________________________________________________________

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