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Design of Efficient Sound Systems for Low Voltage Battery Driven Applications

机译:用于低压电池驱动应用的高效音响系统设计

摘要

The efficiency of portable battery driven sound systems is crucial as it relates to both the playback time and cost of the system. This paper presents design considerations when designing such systems. This include loudspeaker and amplifier design. Using a low resistance voice coil realized with rectangular wire one can boost the efficiency of the loudspeaker driver and eliminate the need of an additional power supply. A newly developed switching topology is described which is beneficial to near-idle efficiency ( 2 W), which is crucial for real audio applications in the consumer electronics space. A small sized sound system was implemented using the discussed design considerations. The amplifier efficiency performance was found to be very high with near-idle efficiency reaching a remarkably 88% at 2 W. The average output SPL was estimated to be up to 90 dB in half spheric anechoic conditions. Measured results are compared with current state-of-art and shows a 14% points efficiency improvement
机译:便携式电池驱动声音系统的效率至关重要,因为它与系统的播放时间和成本有关。本文介绍了设计此类系统时的设计注意事项。这包括扬声器和放大器设计。使用由矩形导线实现的低电阻音圈可以提高扬声器驱动器的效率,并且不需要额外的电源。描述了一种新开发的开关拓扑,该拓扑有利于接近空闲效率(<2 W),这对于消费电子领域的实际音频应用至关重要。使用讨论的设计考虑因素实现了小型音响系统。发现放大器的效率性能非常高,在2 W时的接近空转效率达到了88%。在半球形消声条件下,平均输出SPL估计高达90 dB。将测量结果与当前最新技术进行比较,结果表明效率提高了14%

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