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LOW SWAP CIRCUIT CARD DESIGN FOR RF POWER AMPLIFIERS

机译:用于射频功率放大器的低插拔电路卡设计

摘要

A system and method for using an embedded microprocessor in an RF amplifier. The use of an embedded microprocessor avoids manual calibration. The Microprocessor collects initial amplifier performance data based on a set of parameters and calculates the needed corrections. The microprocessor can change levels within the circuit to achieve those operating points. The embedded microprocessor sets voltage levels with internal circuitry and communicates this information externally through a serial communication port, or the like, to allow a user to communicate with and look at the amplifier data and readjust the internal bias levels, as needed. Thus, the internal microprocessor provides for calibration, self-testing, and monitoring of the RF amplifier and also functions as an in situ bias and temperature compensation controller for use in the presence of temperature variation and provides bias sequencing control to protect against improper applied timing of voltage inputs to the amplifier.
机译:一种用于在RF放大器中使用嵌入式微处理器的系统和方法。嵌入式微处理器的使用避免了手动校准。微处理器基于一组参数收集初始放大器性能数据,并计算所需的校正量。微处理器可以改变电路中的电平以实现那些工作点。嵌入式微处理器通过内部电路设置电压电平,并通过串行通信端口等在外部传达此信息,以允许用户根据需要与放大器数据进行通信并查看放大器数据,并重新调整内部偏置电平。因此,内部微处理器提供了对RF放大器的校准,自检和监视功能,并且还可以用作现场偏置和温度补偿控制器,以在存在温度变化的情况下使用,并提供偏置时序控制以防止施加不正确的时序输入到放大器的电压。

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