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PAM8406DR PDF预览

PAM8406DR

更新时间: 2024-02-13 03:19:25
品牌 Logo 应用领域
美台 - DIODES 放大器商用集成电路
页数 文件大小 规格书
14页 559K
描述
Audio Amplifier

PAM8406DR 技术参数

是否Rohs认证: 符合生命周期:Active
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8542.33.00.01Factory Lead Time:20 weeks
风险等级:1.68商用集成电路类型:AUDIO AMPLIFIER
JESD-609代码:e3湿度敏感等级:3
端子面层:Matte Tin (Sn)Base Number Matches:1

PAM8406DR 数据手册

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A Product Line of  
Diodes Incorporated  
PAM8406  
Application Information (cont.)  
Power Supply Decoupling  
The PAM8406 is a high performance CMOS audio amplifier that requires adequate power supply decoupling to ensure the output THD and  
PSRR as low as possible. Power supply decoupling affects low frequency response. Optimum decoupling is achieved by using two capacitors of  
different types targeting to different types of noise on the power supply leads. For higher frequency transients, spikes, or digital hash on the line,  
a good low equivalent-series resistance (ESR) ceramic capacitor, typically 1.0μF, works best, placing it as close as possible to the device VDD  
terminal. For filtering lower frequency noise signals, a large capacitor of 20μF (ceramic) or greater is recommended, placing it near the audio  
power amplifier.  
Input Capacitor (CI)  
Large input capacitors are both expensive and space hungry for portable designs. Clearly, a certain sized capacitor is needed to couple in low  
frequencies without severe attenuation. But in many cases the speakers used in portable systems, whether internal or external, have little ability  
to reproduce signals below 100Hz to 150Hz. Thus, using a large input capacitor may not increase actual system performance. In this case, input  
capacitor (CI) and input resistance (RI) of the amplifier form a high-pass filter with the corner frequency determined by equation below,  
1
fC  
2R  
I CI  
In addition to system cost and size, click and pop performance is affected by the size of the input coupling capacitor, CI. A larger input coupling  
capacitor requires more charge to reach its quiescent DC voltage (nominally 1/2 VDD). This charge comes from the internal circuit via the  
feedback and is apt to create pops upon device enable. Thus, by minimizing the capacitor size based on necessary low frequency response,  
turn-on pops can be minimized.  
Analog Reference Bypass Capacitor (CBYP  
)
The Analog Reference Bypass Capacitor (CBYP) is the most critical capacitor and serves several important functions. During start-up or recovery  
from shutdown mode, CBYP determines the rate at which the amplifier starts up. The second function is to reduce noise caused by the power  
supply coupling into the output drive signal. This noise is from the internal analog reference to the amplifier, which appears as degraded PSRR  
and THD+N.  
A ceramic bypass capacitor (CBYP) with values of 0.47μF to 1.0μF is recommended for the best THD and noise performance. Increasing the  
bypass capacitor reduces clicking and popping noise from power on/off and entering and leaving shutdown.  
Under Voltage Lock-Out (UVLO)  
The PAM8406 incorporates circuitry designed to detect low supply voltage. When the supply voltage drops to 2.0V or below, the PAM8406  
outputs are disabled, and the device comes out of this state and starts to normal function when VDD 2.2V.  
Short Circuit Protection (SCP)  
The PAM8406 has short circuit protection circuitry on the outputs to prevent damage to the device when output-to-output or output-to-GND short  
occurs. When a short circuit is detected on the outputs, the outputs are disabled immediately. If the short was removed, the device activates  
again.  
Over Temperature Protection  
Thermal protection on the PAM8406 prevents the device from damage when the internal die temperature exceeds +150°C. There is a 15 degree  
tolerance on this trip point from device to device. Once the die temperature exceeds the thermal set point, the device outputs are disabled. This  
is not a latched fault. The thermal fault is cleared once the temperature of the die is reduced by 30°C. This large hysteresis will prevent motor  
boating sound well and the device begins normal operation at this point without external system intervention.  
10 of 14  
www.diodes.com  
March 2013  
© Diodes Incorporated  
PAM8406  
Document number: DSxxxxx Rev. 1 - 0  

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