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为了设计大尺寸的红外触摸屏,解决大尺寸情况下触摸信号弱的问题,本文提出了一种适用于该触摸屏的驱动电路设计方案,并对方案进行了系统的测试与分析.在电路设计中,采用普通的中小功率管:三极管、达林顿管、MOSFET管等,调整电路参数充分发挥管子的性能,使电路的瞬态发射功率从传统的几百毫瓦提升到几千毫瓦.最后,基于PIC32MX440F256H对实验方案进行了测试,并与传统的驱动方法进行对比分析.实验结果表明,红外发射传感器驱动电路的最高瞬态电流达到500 mA,功率达到2 500 mW,远远大于普通驱动电路125mA的电流;接收传感器驱动电路能够准确无误的接收每个发射传感器的光信号并完整输出相应的电信号.该方案能够有效的驱动大尺寸红外触摸屏,提高了瞬态发射功率,降低了整体功耗,提升了系统信噪比.

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