Pump-up time
API · /compressor-api
Air Compressor API
Druckluft-Mathematik als API, lokal und deterministisch berechnet – die Receiver-, Pump-up- und SCFM-Zahlen, mit denen ein Pneumatik-Techniker oder Werkstattbesitzer ein System dimensioniert. Der Receiver-Size-Endpunkt gibt den Tank an, den Sie benötigen, um einen Bedarfsspitze zu überbrücken: Volumen = Bedarf (freie Luft CFM) × Minuten × 14,7 ÷ das nutzbare Druckfenster (max − min) – bei 20 CFM für eine Minute über ein 175-zu-100-psi-Fenster wird ein etwa 30-Gallonen-Receiver benötigt, der Puffer, der die Pumpe aufholen lässt. Der Pumpup-Endpunkt gibt die Zeit an, um einen Receiver von einem Druck auf einen anderen zu bringen: Volumen × Druckanstieg ÷ (14,7 × Kompressor-CFM), also benötigt ein 60-Gallonen-Tank von 100 auf 175 psi bei einem 15-CFM-Kompressor etwa 2,7 Minuten. Der SCFM-Endpunkt korrigiert tatsächliche CFM auf Standard-CFM für die Einlassbedingungen – SCFM = ACFM × (Einlassdruck ÷ 14,696) × (528 ÷ Einlasstemperatur in Rankine) – ein Kompressor auf 5.000 Fuß liefert also etwa 17 % weniger SCFM als auf Meereshöhe, der Grund, warum Sie Werkzeuge nach SCFM und nicht nach dem Typenschild dimensionieren. Alles wird lokal und deterministisch berechnet, daher ist es sofort und privat. Ideal für Pneumatik- und Werkstattluft-Apps, Kompressor-Dimensionierungs- und Werkzeugbedarfs-Tools, Industrieluft-Rechner und Handwerkshilfen. Reine lokale Berechnung – kein Key, kein Drittanbieter-Service, sofort. Live, nichts wird gespeichert. 3 Compute-Endpunkte. Schätzungen – Einschaltdauer und die Pumpenkennlinie verschieben die tatsächlichen Zahlen.
API salute
salutare- Tempo di attività
- 100.00%
- Sondaggi del server · 24 ore su 24
- Latenza media
- 80 ms
- Sondaggi del server · 24 ore su 24
- Abbonati
- 3,866
- attiva
- Chiamate totali
- 76
- ultimi 7 giorni
Prezzi
Scegli un livello: fatturazione mensile, annullamento in qualsiasi momento.
Free
Gratis
- 460 chiamate/mese
- 2 richieste/secondo
- Tetto rigido (429 sopra la quota, nessuna eccedenza)
- 460 Aufrufe/Monat
- 2 req/sec
- Receiver + pump-up + SCFM
- Keine Kreditkarte
Starter
€5.75 /mese
- 12,400 chiamate/mese
- 6 richieste/secondo
- Tetto rigido (429 sopra la quota, nessuna eccedenza)
- 12.400 Aufrufe/Monat
- 6 req/sec
- Altitude SCFM correction
- E-Mail-Support
Pro
€18.10 /mese
- 79,000 chiamate/mese
- 15 richieste/secondo
- Tetto rigido (429 sopra la quota, nessuna eccedenza)
- 79.000 Aufrufe/Monat
- 15 req/sec
- Sizing- und Shop-Pipelines
- Prioritäts-Support
Mega
€53.60 /mese
- 256,000 chiamate/mese
- 36 richieste/secondo
- Tetto rigido (429 sopra la quota, nessuna eccedenza)
- 256.000 Aufrufe/Monat
- 36 req/sec
- Plattform-Skalierung
- Dedizierte SLA
Costruito da
Correlato APIs
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Industrial Coatings API
Industrial and protective-coatings maths as an API, computed locally and deterministically — the film-build numbers a coatings inspector, painter or estimator works to, the ones simple paint estimating skips. The coverage endpoint gives theoretical and practical coverage from the coating's volume solids and the target dry film thickness: coverage = 1604 × the volume-solids fraction ÷ the DFT in mils, where 1604 is the square feet a gallon covers at one mil — so a 50 %-solids coating at 2 mils dry covers about 401 ft² per gallon, less a loss factor for overspray and surface profile. The film-thickness endpoint converts between wet and dry film thickness through the volume solids: WFT = DFT ÷ the solids fraction, because the solvent flashes off and the film shrinks, so a 50 %-solids coating laid 4 mils wet dries to 2 mils — the number you check with a wet-film comb as you spray. The transfer-efficiency endpoint gives the real material needed: theoretical gallons ÷ the transfer efficiency, since conventional spray lands only ~25 % on the part, HVLP ~65 %, electrostatic up to ~95 %. Everything is computed locally and deterministically, so it is instant and private. Ideal for coatings-estimating and inspection apps, industrial-painting and protective-coating tools, NACE/SSPC study aids, and spec calculators. Pure local computation — no key, no third-party service, instant. Live, nothing stored. 3 compute endpoints. For simple wall-paint area estimating use a paint API.
api.oanor.com/coating-api
Tank Volume API
Tank volume and fill-level maths as an API, computed locally and deterministically. The volume endpoint gives the total capacity — in litres, US gallons and cubic metres — of a vertical cylinder, horizontal cylinder, rectangular tank, sphere or capsule, from its dimensions in metres, centimetres, millimetres, feet or inches. The fill endpoint computes the volume of liquid and the percent full at a given fill depth, using the exact geometry for each shape — including the circular-segment formula for a horizontal cylinder (where the level is famously non-linear) and the spherical-cap formula for a sphere. The level endpoint is the inverse "dipstick" calculation: it finds the depth that corresponds to a target volume or a target percentage, solving the segment geometry by bisection. Everything is computed locally and deterministically, so it is instant and private. Ideal for fuel, water, oil and chemical tank monitoring, agriculture and irrigation, process and industrial tooling, and tank-gauging and dipstick apps. Pure local computation — no key, no third-party service, instant. Live, nothing stored. 3 endpoints. This is tank-gauging geometry; for swimming-pool volume and chemical dosing use a pool API, and for plain unit conversion use a unit-conversion API.
api.oanor.com/tank-api
Programming Languages API
The language definitions GitHub uses to recognise code (the open-source Linguist data) as an API — a clean reference for syntax highlighting, file-type detection, repository dashboards and developer tooling. For each of 800+ languages the API returns its type (programming, markup, data or prose), its brand colour (the hex GitHub paints it), the file extensions associated with it, common aliases, the GitHub language id and the editor (ace) mode. Look a language up by name or alias (golang resolves to Go), reverse-look-up which language(s) own a file extension (.py → Python; .h → C, C++, Objective-C), list the languages of a type, search, or list them all. Distinct from languages-api (ISO 639 human languages) — this is the programming-language reference. Served from memory — always fast.
api.oanor.com/proglang-api
MIME Types API
Die kanonische MIME-/Medientyp-Datenbank (die jshttp mime-db, die von Express und dem Großteil des Node-Ökosystems verwendet wird: IANA + Apache + nginx), aus dem Speicher bereitgestellt — kein Key. Lösen Sie einen Medientyp in seine Dateierweiterungen, Zeichensatz und Komprimierbarkeit auf; suchen Sie den/die Medientyp(en) für eine Dateierweiterung (z. B. png → image/png); und listen oder durchsuchen Sie Typen nach Quelle. 2.600+ Medientypen, 1.000+ mit Dateierweiterungen. Schlankes, vorhersagbares JSON. Ideal für Upload-Validierung, Content-Type-Auflösung, Dateityperkennung, Download-Handler und Entwicklerwerkzeuge.
api.oanor.com/mimetypes-api
Domande frequenti
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Come ottengo una chiave API per Air Compressor API?
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Air Compressor API è conforme al GDPR?
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Frammenti di codice
Iscriviti per ottenere una chiave API, quindi chiama qualsiasi percorso sotto il tuo slug.
curl https://api.oanor.com/compressor-api/SOME_PATH \
-H "x-oanor-key: oanor_test_..."
const res = await fetch("https://api.oanor.com/compressor-api/SOME_PATH", {
headers: { "x-oanor-key": "oanor_test_..." }
});
const data = await res.json();
$ch = curl_init("https://api.oanor.com/compressor-api/SOME_PATH");
curl_setopt($ch, CURLOPT_RETURNTRANSFER, true);
curl_setopt($ch, CURLOPT_HTTPHEADER, ["x-oanor-key: oanor_test_..."]);
$response = curl_exec($ch);
import requests
r = requests.get(
"https://api.oanor.com/compressor-api/SOME_PATH",
headers={"x-oanor-key": "oanor_test_..."},
)
print(r.json())
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