Discussion Overview
The discussion revolves around calculating total power over a specific frequency bandwidth using a Spectrum Analyzer in the context of an amplifier circuit. Participants explore methods for measuring and integrating power readings, particularly focusing on noise power and the implications of different settings on the Spectrum Analyzer.
Discussion Character
- Exploratory
- Technical explanation
- Debate/contested
- Mathematical reasoning
Main Points Raised
- One participant inquires about measuring total power over a bandwidth using dBm readings from a Spectrum Analyzer and mentions the amplifier's gain and noise power.
- Another participant estimates the noise power to be approximately -111 dBm per MHz, including a noise figure adjustment, and suggests that conversion to watts is unnecessary.
- A subsequent participant seeks clarification on how to calculate total power over a bandwidth given specific dBm readings and questions the integration process over that range.
- One participant asks about the frequency resolution of the analyzer and notes that the dBm values correspond to energy within a specific frequency window.
- A participant expresses a goal to reduce the Noise Floor of the Spectrum Analyzer to -65 dBm or lower, discussing settings for Resolution Bandwidth (RBW) and Video Bandwidth (VBW).
- The same participant reiterates the importance of back-terminating the input to the Spectrum Analyzer to achieve a desired noise level, referencing earlier calculations of noise power.
Areas of Agreement / Disagreement
Participants express differing views on the methods for calculating total power and the implications of various settings on the Spectrum Analyzer. There is no consensus on a definitive approach to integrating power over the specified bandwidth.
Contextual Notes
Participants mention specific values and calculations related to noise power and the settings of the Spectrum Analyzer, but there are unresolved assumptions regarding the integration process and the impact of frequency resolution.