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PDF PAM8303D Data sheet ( Hoja de datos )

Número de pieza PAM8303D
Descripción 3W FILTERLESS MONO CLASS-D AUDIO POWER AMPLIFIER
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A Product Line of
Diodes Incorporated
PAM8303D
ULTRA LOW EMI, 3W FILTERLESS
MONO CLASS-D AUDIO POWER AMPLIFIER
Description
The PAM8303D is a 3W mono filterless Class-D amplifier with high
PSRR and differential input that eliminate noise and RF rectification.
Features like 90% efficiency and small PCB area make the
PAM8303D Class-D amplifier ideal for cellular handsets. The filterless
architecture requires no external output filter, fewer external
components, less PCB area and lower system costs, and simplifies
application design.
The PAM8303D features short circuit protection and thermal
shutdown.
The PAM8303D is available in MSOP-8 and DFN3x3 8-pin packages.
Pin Assignments
Features
Ultra Low EMI, -20dB Better Than FCC Class-B @ 300MHz
High Efficiency up to 90% @1W with an 8Speaker
Shutdown Current <1µA
3W@10% THD Output with a 4Load at 5V Supply
Demanding Few External Components
Superior Low Noise without Input
Supply Voltage from 2.8V to 5.5V
Short Circuit Protection
Thermal Shutdown
Available in Space Saving Packages: MSOP-8, DFN3x3-8
Pb-Free Package
Applications
Cellular Phones/Smart Phones
MP4/MP3
GPS
Digital Photo Frame
Electronic Dictionary
Portable Game Machines
PAM8303D
Document number: DSxxxxx Rev. 1 - 7
1 of 16
www.diodes.com
November 2012
© Diodes Incorporated

1 page




PAM8303D pdf
A Product Line of
Diodes Incorporated
PAM8303D
Typical Performance Characteristics (@TA = +25°C, VDD = 5V, f = 1kHz, Gain = 2V/V, unless otherwise specified.)
PAM8303D
Document number: DSxxxxx Rev. 1 - 7
5 of 16
www.diodes.com
November 2012
© Diodes Incorporated

5 Page





PAM8303D arduino
A Product Line of
Diodes Incorporated
PAM8303D
Application Information (cont.)
Decoupling Capacitor (CS)
The PAM8303D is a high-performance CMOS audio amplifier that requires adequate power supply decoupling to ensure the output total
harmonic distortion (THD) as low as possible. Power supply decoupling also prevents the oscillations causing by long lead length between the
amplifier and the speaker.
The optimum decoupling is achieved by using two different types of capacitors that target on different types of noise on the power supply leads.
For higher frequency transients, spikes, or digital hash on the line, a good low equivalentseries- resistance (ESR) ceramic capacitor, typically
1µF, is placed as close as possible to the device each VDD and PVDD pin for the best operation. For filtering lower frequency noise signals, a
large ceramic capacitor of 10µF or greater placed near the audio power amplifier is recommended.
How to Reduce EMI
Most applications require a ferrite bead filter for EMI elimination shown at Figure 1. The ferrite filter reduces EMI around 1MHz and higher. When
selecting a ferrite bead, choose one with high impedance at high frequencies, but low impedance at low frequencies.
Figure 1: Ferrite Bead Filter to Reduce EMI
In order to reduce power consumption while not in use, the PAM8303D contains shutdown circuitry that is used to turn off the amplifier’s bias
circuitry. This shutdown feature turns the amplifier off when logic low is placed on the SD pin. By switching the shutdown pin connected to GND,
the PAM8303D supply current draw will be minimized in idle mode.
Shutdown Operation
In order to reduce power consumption while not in use, the PAM8303D contains shutdown circuitry that is used to turn off the amplifier’s bias
circuitry. This shutdown feature turns the amplifier off when logic low is placed on the pin. By switching the shutdown pin connected to GND, the
PAM8303D supply current draw will be minimized in idle mode.
Under Voltage Lock-Out (UVLO)
The PAM8303D incorporates circuitry designed to detect low supply voltage. When the supply voltage drops to 2.3V or below, the PAM8303D
goes into a state of shutdown, and the device comes out of its shutdown state and restore to normal function only when reset the power supply
or SD pin.
Thermal protection on the PAM8303D prevents the device from damage when the internal die temperature exceeds +135°C. There is a 15°C
tolerance on this trip point from device to device. Once the die temperature exceeds the set point, the device will enter the shutdown state and
the outputs are disabled. This is not a latched fault. The thermal fault is cleared once the temperature of the die decreased by 30°C. This large
hysteresis will prevent motor boating sound well and the device begins normal operation at this point with no external system interaction.
POP and Click Circuitry
The PAM8303D contains circuitry to minimize turn-on and turn-off transients or “click and pops”, where turn-on refers to either power supply turn-
on or device recover from shutdown mode. When the device is turned on, the amplifiers are internally muted. An internal current source ramps
up the internal reference voltage. The device will remain in mute mode until the reference voltage reach half supply voltage, 1/2 VDD. As soon as
the reference voltage is stable, the device will begin full operation. For the best power-off pop performance, the amplifier should be set in
shutdown mode prior to removing the power supply voltage.
PAM8303D
Document number: DSxxxxx Rev. 1 - 7
11 of 16
www.diodes.com
November 2012
© Diodes Incorporated

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