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You will often see noise levels given in dBA (A-weighted sound levels) instead of dB. For this reason, sound levels in the low frequency end of the spectrum are reduced as the human ear is less sensitive at low audio frequencies than at high audio frequencies. Although dB is commonly used when referring to measuring sound, humans do not hear all frequencies equally.
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However, the B and C weights are only valid for pure signals (signals with a single frequency).Ī dBA is a weighted scale for judging loudness that corresponds to the hearing threshold of the human ear. The blue curve shows the gain for a type A weighting. The reference quantity remains the same 20 µPa and the units are still dB SPL, but each value has a different gain depending on the frequency in order to better represent human auditory perception. Indeed, the ear of a healthy person is more sensitive to frequencies between 2 and 5 kHz. However, the human ear does not perceive all frequencies in the same way. Thus, the reference quantity is the smallest pressure change detectable by the ear (hearing threshold), 20 µPa in air, which corresponds to 0 dB SPL. In acoustics, sound is a change in pressure relative to atmospheric pressure. For example, dBm means that the reference variable is the milliwatt dBV, the volt. In many cases, dBs are followed by a suffix to define a reference variable. Moreover, dB allows a realistic modelling of human auditory perception, since the ear reacts to relative changes in noise level. First of all, a dB (decibel) is a ratio between two quantities that has been reported on a logarithmic scale.