Faculty of Electronics, Military University of Technology, 00-908 Warsaw, Poland.
Sensors (Basel). 2023 Mar 30;23(7):3598. doi: 10.3390/s23073598.
The passive multipliers based on semiconductor diodes, most frequently a Schottky type, should be driven by a certain value of input power, where the conversion losses are optimal. This means that the variation in the input power level causes the change in the output power level. A solution to this issue is the integration of an output power amplifier, which in the state of saturation provides quasi-stabilization of the output power. Practically, this approach gives an unsatisfactory performance: weak stabilization or narrow input power range. This paper comprises a concept of an active frequency multiplier with the use of one FET transistor and a special adaptive bias circuit in order to obtain a very wide input power range when the output power is stable. The principle of the operation, design guidelines, and measurement results have been presented for an example circuit of the frequency doubler. The results show the possibility to obtain up to 10 dB input power range for a 1 dB change in output power level without the use of additional amplifiers.
基于半导体二极管(最常见的是肖特基型)的无源倍增器应在输入功率达到某个特定值时进行驱动,此时转换损耗为最佳。这意味着输入功率水平的变化会导致输出功率水平的变化。解决此问题的一种方法是集成输出功率放大器,在饱和状态下,它可提供输出功率的准稳定。实际上,这种方法的性能并不令人满意:稳定性弱或输入功率范围窄。本文提出了一种使用单个 FET 晶体管和特殊自适应偏置电路的有源倍频器的概念,以便在输出功率稳定时获得非常宽的输入功率范围。本文给出了倍频器示例电路的工作原理、设计准则和测量结果。结果表明,无需使用额外的放大器,就可以在输出功率电平变化 1 dB 的情况下,获得高达 10 dB 的输入功率范围。