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LM48821TLEVAL датащи(PDF) 18 Page - Texas Instruments

номер детали LM48821TLEVAL
подробное описание детали  Direct Coupled, Ultra Low Noise
PDF  24 Pages
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LM48821TLEVAL датащи(HTML) 18 Page - Texas Instruments

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LM48821, LM48821TLEVAL
SNAS354A – JUNE 2007 – REVISED MAY 2013
www.ti.com
Since the LM48821 has two power amplifiers in one package, the maximum internal power dissipation point is
twice that of the number which results from Equation 1. Even with large internal power dissipation, the LM48821
does not require heat sinking over a large range of ambient temperatures. The maximum power dissipation point
obtained must not be greater than the power dissipation that results from Equation 2:
PDMAX = (TJMAX - TA) / (θJA)
(2)
For the DSBGA package,
θJA = 105°C/W. TJMAX = 150°C for the LM48821. Depending on the ambient
temperature, TA, of the system surroundings, Equation 2 can be used to find the maximum internal power
dissipation supported by the IC packaging. If the result of Equation 1 is greater than that of Equation 2, then
either the supply voltage must be decreased, the load impedance increased or TA reduced. Power dissipation is
a function of output power and thus, if typical operation is not around the maximum power dissipation point, the
ambient temperature may be increased accordingly.
SELECTING EXTERNAL COMPONENTS
Optimizing the LM48821’s performance requires properly selecting external components. Though the LM48821
operates well when using external components with wide tolerances, best performance is achieved by optimizing
component values.
Charge Pump Capacitor Selection
Use low ESR (equivalent series resistance) (<100m
Ω) ceramic capacitors with an X7R dielectric for best
performance. Low ESR capacitors keep the charge pump output impedance to a minimum, extending the
headroom on the negative supply. Higher ESR capacitors result in reduced output power from the audio
amplifiers.
Charge pump load regulation and output impedance are affected by the value of the flying capacitor (connected
between the CCP-and CCP+ pins). A larger valued C1 (up to 4.7μF) improves load regulation and minimizes charge
pump output resistance. Beyond 4.7
μF, the switchon-resistance dominates the output impedance.
The output ripple is affected by the value and ESR of the output capacitor (connected between the VSS and
PGND pins). Larger capacitors reduce output ripple on the negative power supply. Lower ESR capacitors
minimize the output ripple and reduce the output impedance of the charge pump.
The LM48821 charge pump design is optimized for 4.7
μF, low ESR, ceramic, flying, and output capacitors.
Power Supply Bypass Capacitor
For good THD+N and low noise performance and to ensure correct power-on behavior at the maximum allowed
power supply voltage, a local 4.7
μF power supply bypass capacitor should be connected as physically closed as
possible to the PVDD pin.
Input Capacitor Value Selection
Amplifying the lowest audio frequencies requires high value input coupling capacitors (the 0.47
μF capacitors in
Figure 1). A high value capacitor can be expensive and may compromise space efficiency in portable designs. In
many cases, however, the speakers used in portable systems, whether internal or external, have little ability to
reproduce signals below 150Hz. Applications using speakers with this limited frequency response reap little
improvement by using high value input and output capacitors.
Besides affecting system cost and size, the input coupling capacitor value has an effect on the LM48821’s click
and pop performance. The magnitude of the pop is directly proportional to the input capacitor’s size. Thus, pops
can be minimized by selecting an input capacitor value that is no higher than necessary to meet the desired -3dB
frequency.
The LM48821's nominal input resistance at full volume is 10k
Ω and a minimum of 5kΩ. This input resistance and
the input coupling capacitor value produce a -3dB high pass filter cutoff frequency that is found using Equation 3.
f-3dB = 1/2πRiCi
(3)
REVISION HISTORY
Rev
Date
Description
1.0
06/06/07
Initial release.
A
05/02/2013
Changed layout of National Data Sheet to TI format.
18
Submit Documentation Feedback
Copyright © 2007–2013, Texas Instruments Incorporated
Product Folder Links: LM48821 LM48821TLEVAL



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