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作 者:王程程 WANG Chengcheng(Zhangjiagang Third Vocational High School,Suzhou 215600,China)
机构地区:[1]张家港市第三职业高级中学,江苏苏州215600
出 处:《电声技术》2024年第11期98-101,共4页Audio Engineering
摘 要:在高性能扬声器功率放大电路设计中,创新是提升性能与效率的关键。电路拓扑结构的创新能够优化信号路径,减少失真和噪声。精心选择与优化元件可提升电路的稳定性和音质。热管理与散热设计的创新对于防止元件过热至关重要,有助于延长设备使用寿命并保持性能。电源管理与效率提升策略能够确保能量的有效利用,减少能源浪费。信号处理与反馈机制的优化则能进一步提高音质,加快系统响应速度。电磁兼容性(Electromagnetic Compatibility,EMC)设计的改进有助于减少干扰,确保设备在各种环境下稳定运行。In the design of high-performance loudspeaker power amplifier circuit,innovation is the key to improve performance and efficiency.The innovation of circuit topology can optimize signal path and reduce distortion and noise.Careful selection and optimization of components can improve the stability and sound quality of the circuit.The innovation of thermal management and heat dissipation design is very important to prevent overheating of components,which is helpful to prolong the life of equipment and maintain performance.Power management and efficiency improvement strategies can ensure the effective use of energy and reduce energy waste.The optimization of signal processing and feedback mechanism can further improve the sound quality and speed up the system response.The improvement of Electromagnetic Compatibility(EMC)design is helpful to reduce interference and ensure the stable operation of equipment in various environments.
关 键 词:电路拓扑创新 元件优化 热管理 电源效率 信号处理
分 类 号:TN643[电子电信—电路与系统]
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