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PASS Audibility Project
![](https://static.wixstatic.com/media/a93cbb_825ef7e9aa22aae565f48f813c45f1c7.png/v1/fill/w_116,h_115,al_c,q_85,usm_0.66_1.00_0.01,enc_avif,quality_auto/a93cbb_825ef7e9aa22aae565f48f813c45f1c7.png)
![](https://static.wixstatic.com/media/a93cbb_344ab432c000c67ee2130ec3c01a09ec.jpg/v1/fill/w_121,h_121,al_c,q_80,usm_0.66_1.00_0.01,enc_avif,quality_auto/a93cbb_344ab432c000c67ee2130ec3c01a09ec.jpg)
Characterization of PASS Device
Work in progress
Analysis of Several PASS alarm signals.
![](https://static.wixstatic.com/media/a62a79_d2f9dea86b5842c094a85c2adafbbe45.jpg/v1/fill/w_158,h_221,al_c,q_80,usm_0.66_1.00_0.01,enc_avif,quality_auto/a62a79_d2f9dea86b5842c094a85c2adafbbe45.jpg)
![](https://static.wixstatic.com/media/a62a79_438f6b91d7764103813a5f62fea36a71.png/v1/fill/w_372,h_288,al_c,q_85,usm_0.66_1.00_0.01,enc_avif,quality_auto/a62a79_438f6b91d7764103813a5f62fea36a71.png)
As the PASS device is not a continuous signal, it is interesting to look at the levels of the PASS device as a function of frequency and time. For this purpose, a spectrogram representation of the signal is shown to the right. The primary signal of the device is accompanied by several non-linear effects seen in the higher frequencies.
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