FIELD GUIDE

Read every number honestly.

Each reading below states its unit, measurement window, practical interpretation and limit. SignalMetric favors transparent evidence over authoritative-looking guesses.

The critical boundary

dBFS and dBTP describe a digital signal relative to full scale. They are not calibrated dB SPL, dBA or a hearing-safety dose. Legal, occupational and certified delivery decisions require validated equipment and procedure.

0 dBFS ≠ 0 dB SPL
Digital level and headroom−72−48−240HEADROOM
Digital level and headroomZero dBFS is the ceiling. Useful signals are negative values; the distance to zero is digital headroom.
Three loudness time scalesM · 400 msS · 3 secI · GATED SESSION
Three loudness time scalesMomentary reacts in 400 ms, Short-Term describes 3 seconds, and Integrated accumulates a gated session.
Peak versus averageAVERAGE / LOUDNESSPEAKΔ DYNAMICS
Peak versus averageCrest, PSR and PLR compare peak energy with RMS, short-term loudness and integrated loudness respectively.
Spectral shapeCENTROIDR85BANDWIDTH
Spectral shapeCentroid is the energy-weighted center, bandwidth describes spread, and R85 marks the frequency below which 85% of energy falls.
Zero crossingsZERO-CROSSING EVENTS / WINDOW
Zero crossingsZCR counts sign changes. More high-frequency or noisy content usually crosses zero more often.
31 READINGS · 6 GROUPS

Digital full-scale. Not calibrated SPL.

Level & Peak

RMSdBFS

Window / method
Current analysis window; energy-averaged amplitude.
How to read it
Closer to 0 means a stronger digital input. It is usually steadier than a peak reading.
Limit
Not acoustic loudness or calibrated sound pressure.
Level & Peak

Sample PeakdBFS

Window / method
Highest stored sample in the current analysis window.
How to read it
Shows how close a captured sample came to digital full scale.
Limit
Can miss an inter-sample peak reconstructed between samples.
Level & Peak

Peak HolddBFS

Window / method
Highest recent sample peak with controlled visual decay.
How to read it
Useful for catching a short transient that the current value has already left behind.
Limit
A display memory, not a separate measurement standard.
Level & Peak

True Peak*dBTP

Window / method
4× oversampled inter-sample estimate.
How to read it
Reveals reconstructed peaks that may exceed the highest stored sample.
Limit
Marked as an estimate; not a certified delivery-compliance result.
Level & Peak

HeadroomdB

Window / method
Distance from estimated True Peak to 0 dBFS.
How to read it
A larger positive value means more digital margin before full scale.
Limit
Does not describe analogue preamp or acoustic headroom.
Loudness

MomentaryLUFS

Window / method
BS.1770-style K-weighted mono window of 400 ms.
How to read it
Fast perceptual loudness evidence for phrases and short events.
Limit
Too reactive to represent an entire programme.
Loudness

Short-TermLUFS

Window / method
BS.1770-style K-weighted mono window of 3 seconds.
How to read it
Describes the current passage with less fluctuation than Momentary.
Limit
Still local in time; it is not the session average.
Loudness

IntegratedLUFS

Window / method
K-weighted, absolute- and relative-gated session accumulation.
How to read it
The best single loudness summary for the measured session.
Limit
Needs time to settle and does not certify a delivery master.
Loudness

LRALU

Window / method
Distribution of gated short-term loudness across the session.
How to read it
Higher values indicate greater programme loudness variation.
Limit
Shown as provisional before 60 seconds of useful material.
Loudness

Target ΔLU

Window / method
Integrated LUFS minus the selected visual reference.
How to read it
Positive is above the reference; negative is below it.
Limit
The Streaming, EBU and ATSC targets are guidance, not certification.
Dynamics

Crest FactordB

Window / method
Sample Peak minus RMS in the same analysis window.
How to read it
Larger values indicate sharper transients relative to average energy.
Limit
Sensitive to the current window and not the same as programme dynamics.
Dynamics

PSRdB

Window / method
Estimated True Peak minus Short-Term loudness.
How to read it
Describes short-passage peak-to-loudness contrast.
Limit
Depends on a stable Short-Term loudness reading.
Dynamics

PLRdB

Window / method
Estimated True Peak minus Integrated loudness.
How to read it
Summarizes session peak-to-loudness contrast.
Limit
Unstable early in a session while Integrated loudness is warming up.
Dynamics

Floor P10dBFS

Window / method
10th percentile of RMS levels in the rolling 30-second history.
How to read it
A robust low-level baseline that ignores a few isolated silent frames.
Limit
An input-floor estimate, not a calibrated room-noise SPL.
Dynamics

SNR ESTdB

Window / method
Current RMS relative to the rolling Floor P10 estimate.
How to read it
Higher values suggest the current source stands farther above its recent baseline.
Limit
Not a laboratory SNR measurement and changes with the recent source.
Spectrum

DominantHz

Window / method
Strongest stable component in the current 2,048-point FFT.
How to read it
Often points to a fundamental tone, resonance or strongest partial.
Limit
Complex audio may not have one meaningful dominant frequency.
Spectrum

CentroidHz

Window / method
Power-weighted center of the current spectrum.
How to read it
Higher values generally correlate with a brighter spectral balance.
Limit
A shape descriptor, not the pitch or strongest frequency.
Spectrum

BandwidthHz

Window / method
Power-weighted spread around the spectral centroid.
How to read it
A wider value means energy is distributed across a broader frequency range.
Limit
Does not identify where separate spectral clusters occur.
Spectrum

R85Hz

Window / method
Frequency below which 85% of current spectral power falls.
How to read it
Compactly shows how far meaningful energy extends into the high range.
Limit
A percentile boundary, not a hard low-pass cutoff.
Spectrum

Flatness%

Window / method
Geometric-to-arithmetic mean ratio of spectral power.
How to read it
Low values are more tonal; high values are more noise-like.
Limit
Depends on the analyzed band and does not judge sound quality.
Spectrum

64-band FFTdBFS

Window / method
2,048-point Hann FFT mapped to 64 logarithmic bands.
How to read it
Shows relative digital energy from roughly 45 Hz to 16 kHz.
Limit
Band values are not calibrated acoustic pressure or a laboratory RTA.
Spectrum

FFT ComponentsHz / dBFS

Window / method
Up to six strongest local FFT peaks with interpolation.
How to read it
Separates prominent partials by frequency, level, period, note and harmonic fit.
Limit
A selected peak view, not a complete inverse-FFT reconstruction.
Musical

Nearest Note

Window / method
Dominant stable frequency mapped to equal-tempered A4 = 440 Hz.
How to read it
Provides quick musical context such as A4 or F#3.
Limit
Approximate context, not a precision instrument tuner.
Musical

Cents Offsetcent

Window / method
Pitch distance from the nearest equal-tempered note.
How to read it
Positive is sharp and negative is flat relative to that note.
Limit
Only meaningful when the dominant frequency is stable and tonal.
Musical

Estimated BPMBPM

Window / method
Recent spectral-flux onset pattern within 48–200 BPM.
How to read it
Shows tempo only after repeated transient evidence becomes consistent.
Limit
Speech, sustained tones and free-time music may remain Listening.
Musical

Tempo Confidence%

Window / method
Consistency score for the recent beat estimate.
How to read it
Higher values mean the observed onset pattern supports the shown BPM more strongly.
Limit
Confidence is algorithmic evidence, not musical ground truth.
Signal Integrity

DC Offset EST%

Window / method
Mean sample value in the current time-domain window.
How to read it
Values near zero indicate the waveform is centered around digital zero.
Limit
A short-window estimate; route processing can influence it.
Signal Integrity

ZCR%

Window / method
Share of adjacent sample pairs that cross digital zero.
How to read it
Higher rates often accompany noisier or higher-frequency material.
Limit
Cannot identify content or quality by itself.
Signal Integrity

Clip Events

Window / method
Session count of entries into the digital clipping region.
How to read it
A rising count means the input repeatedly reached or approached full scale.
Limit
Does not prove audible distortion after route processing.
Signal Integrity

Channel CountCH

Window / method
Channel count reported by the active source format.
How to read it
Confirms whether the source is mono or multichannel before downmix analysis.
Limit
Multichannel analysis uses equal-gain averaging and can cancel opposite polarity.
Signal Integrity

Sample RatekHz

Window / method
Rate reported by the current microphone route or audio file.
How to read it
Shows how many samples per second feed the analysis.
Limit
A higher rate alone does not guarantee better source quality.