Sound Lab
Measure a sound the way we measure ours. Pick one of our recordings, upload a file, or record a tone — the analysis runs entirely in your browser and reads the same numbers we publish about our own instruments: the fundamental, the overtone fingerprint, how long the tone truly rings, and whether it lands on any known frequency.
Try one of ours
Energy chimes +
Wind chime +
Crystal pyramids +
Singing bowl +
Upload a sound
mp3, m4a or wav — nothing leaves your device.
Record a tone
Quiet room, phone close to the instrument, then let the tone ring out completely — recording stops on its own when the tone has faded (up to 3 minutes).
Fundamental
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measurement uncertainty
What does this mean?
The fundamental is the slowest, usually strongest vibration in a sound — the pitch you would sing back. We give it in hertz (cycles per second) and as the nearest note in three reference tunings: modern concert pitch (A = 440 Hz), the 432 tuning most of our chimes use, and the physicists’ “scientific pitch” (C = 256 Hz). Cents are hundredths of a semitone — trained ears start hearing a difference around 5–10 cents. The ± value is our measurement uncertainty: the shorter and noisier a recording, the less precisely any analyzer can pin a pitch down — so we show that limit instead of hiding it.
Known frequency
With this many reference grids, some tone will always land near something. A close match is a fact about numbers — not a promise about effects.
What does this mean?
We compare your tone against four grids: the 440 and 432 note grids; Hans Cousto’s “cosmic octave” tones — orbital periods inverted to frequencies, then doubled octave by octave into hearing range (the arithmetic is real; the meaning people attach to it is a matter of belief); scientific pitch, a physics convention proposed by Joseph Sauveur in 1713, with C at powers of two; and the modern Solfeggio set — a 1990s numerological reading of a medieval hymn, not a historical scale. Octave-shifted matches are marked as such.
Overtones
One clean mode dominates — the signature of a singing bowl, a tube, or a very pure rod. Ratios near 1 : 1.95 : 2.56 — the measured signature of our Cheops-proportion pyramid frames. Whole-number ratios (1×, 2×, 3×…) — the harmonic ladder of a string or an air column, or of several instruments tuned in pure intervals sounding as one. Ratios near 2.76× and 5.40× — the textbook fingerprint of a struck rod. An overtone pattern of its own — neither a harmonic ladder nor any shape we know from our workshop.
| Frequency | Ratio | Note (440) | Level |
|---|
What does this mean?
Almost no instrument makes a single frequency. Strings and air columns stack overtones at neat whole-number multiples — that is what “harmonic” means. Struck rods, bells, bowls and our pyramids follow other laws: their overtone ratios are a fingerprint of their shape. An exact 2.000× double with a suspiciously short ring can be playback distortion rather than a real overtone — when we see that, we flag it instead of celebrating it.
Decay & Q
What does this mean?
T60 is the time a tone needs to fade by 60 decibels — roughly “how long it audibly rings”. Q is the physicist’s version: how many swings the material manages before friction eats the energy. A guitar string lives around a Q of a few hundred; our crystal glass rods and pyramids measure in the tens of thousands — which is why a single strike carries for a minute or more. When a recording stops before the tone does, we extrapolate from the decay we can see and say so with a “≥”.
Beating
What does this mean?
A slow pulse — wah… wah… wah… — means two almost-identical frequencies are taking turns. In a struck rod these are usually its two bending planes, a hair apart by geometry; the pulse rate equals their difference. It is not a flaw. It is physics you can hear.
Recording quality
- Duration
- Sample rate
- Signal above background
- Clipping
What does this mean?
Numbers are only as honest as the recording behind them. Compressed formats (mp3, m4a) and phone processing (auto-gain, noise suppression) flatten a tone’s natural decay, which biases ring-time and Q. For serious decay numbers: record raw, in a quiet room, and let the tone ring out completely.
Everything runs on your device. Your audio is never uploaded.
¿Qué es la cimática?
La cimática es la práctica de hacer visible el sonido. Cuando una placa vibra en una de sus frecuencias naturales, la arena fina de su superficie sale despedida de las zonas en movimiento y se reúne a lo largo de las líneas en calma: los nodos. El resultado es un patrón que pertenece a ese tono exacto. Cambia la altura del sonido y el patrón se reorganiza en una figura nueva.
¿Quién fue Chladni?
Ernst Chladni (1756–1827), físico y músico alemán, frotó con un arco de violín el borde de placas metálicas cubiertas de arena y publicó en 1787 el primer catálogo sistemático de estas figuras. Desde entonces se conocen como «figuras de Chladni», y ayudaron a fundar la ciencia de la acústica.
¿Hasta qué punto es honesta esta simulación?
Lo que ves aquí es una simulación de base física: detectamos las frecuencias más intensas de tu sonido, seleccionamos los modos de vibración correspondientes de una placa ideal y dejamos que miles de granos simulados busquen las líneas nodales, el mismo mecanismo que en una placa real. Un instrumento real, con su propia geometría y su propio material, produce sus propias figuras, ligeramente distintas. El vidrio es el oficio de nuestra familia, y los instrumentos de estos presets se afinaron a mano en nuestro taller; preferimos contarte esa diferencia antes que fingir que no existe.
Pruébalo con un instrumento de cristal real
Los presets de arriba son grabaciones sin editar de instrumentos de nuestro taller: energy chimes y pirámides sonoras de cristal puro. Si tienes un cuenco cantor o un chime, cambia al micrófono y deja que la herramienta te muestre su frecuencia, su nota más cercana y su patrón.
Preguntas frecuentes
¿La herramienta sube mi audio o mi voz?+
No. Todo funciona dentro de tu navegador. La señal de tu micrófono y tus archivos nunca salen de tu dispositivo.
¿Puedo usar el vídeo exportado en Instagram o TikTok?+
Sí: en la mayoría de dispositivos la exportación es un MP4 vertical de 1080×1920 con sonido, pensado para Reels, TikTok y Shorts. Exporta, por favor, solo audio sobre el que tengas derechos de uso.
¿Por qué mi cuenco cantor muestra un patrón distinto al de un vídeo que vi?+
Cada placa y cada cuenco tienen su propia geometría, así que sus modos —y sus patrones— son distintos. La simulación muestra las figuras de una placa plana ideal en la frecuencia más intensa de tu sonido.
¿Qué frecuencia tiene el preset OM?+
El chime que oyes suena a aproximadamente 1088 Hz, una octava afinada a mano del tono del año calculado por Hans Cousto: 136.10 Hz. Explicamos el cálculo completo y su historia en nuestro blog.