SERVICE · PERCEPTION AISERVICE · OBJEKTERKENNUNGSERVICE · PERCEPTION AISERVICE · PERCEPTION AISERVICE · PERCEPTION AISERVICE · PERCEPTION AI

Custom AI software for
industrial LiDAR & vision.
KI-Software nach Maß für
industrielle LiDAR & Bildverarbeitung.
Custom AI software for
industrial LiDAR & vision.
Custom AI software for
industrial LiDAR & vision.
Custom AI software for
industrial LiDAR & vision.
Custom AI software for
industrial LiDAR & vision.

We build custom perception pipelines for industrial customers — 3D point-cloud classification, object detection, anti-collision and worker-safety monitoring. Five years of LiDAR engineering in active production sites, packaged as software you can deploy on your own plant.

Wir entwickeln maßgeschneiderte Wahrnehmungs-Pipelines für industrielle Kunden — Punktwolken-Klassifikation, Objekterkennung, Kollisionsvermeidung und Personenschutz. Fünf Jahre LiDAR-Engineering in aktiven Produktionsanlagen, verpackt als Software, die auf Ihrem Werk läuft.

We build custom perception pipelines for industrial customers — 3D point-cloud classification, object detection, anti-collision and worker-safety monitoring. Five years of LiDAR engineering in active production sites, packaged as software you can deploy on your own plant.

We build custom perception pipelines for industrial customers — 3D point-cloud classification, object detection, anti-collision and worker-safety monitoring. Five years of LiDAR engineering in active production sites, packaged as software you can deploy on your own plant.

We build custom perception pipelines for industrial customers — 3D point-cloud classification, object detection, anti-collision and worker-safety monitoring. Five years of LiDAR engineering in active production sites, packaged as software you can deploy on your own plant.

We build custom perception pipelines for industrial customers — 3D point-cloud classification, object detection, anti-collision and worker-safety monitoring. Five years of LiDAR engineering in active production sites, packaged as software you can deploy on your own plant.

5 yrs industrial LiDAR engineeringindustrielles LiDAR-Engineeringindustrial LiDAR engineeringindustrial LiDAR engineeringindustrial LiDAR engineeringindustrial LiDAR engineering
40+ live deploymentsproduktive Installationenlive deploymentslive deploymentslive deploymentslive deployments
3D + 2D LiDAR & computer visionLiDAR & BildverarbeitungLiDAR & computer visionLiDAR & computer visionLiDAR & computer visionLiDAR & computer vision
K+S · Nordzucker · Aurubis production referencesProduktions-Referenzenproduction referencesproduction referencesproduction referencesproduction references
SERVICE  ·  Industrial perception AI · LiDAR + computer visionIndustrielle Objekterkennung · LiDAR + BildverarbeitungIndustrial perception AI · LiDAR + computer visionIndustrial perception AI · LiDAR + computer visionIndustrial perception AI · LiDAR + computer visionIndustrial perception AI · LiDAR + computer vision

Custom perception software, built by people who run it in production. Wahrnehmungs-Software nach Maß, gebaut von Leuten, die sie selbst produktiv betreiben. Custom perception software, built by people who run it in production. Custom perception software, built by people who run it in production. Custom perception software, built by people who run it in production. Custom perception software, built by people who run it in production.

Industrial perception AI is software that turns raw 3D point clouds and 2D camera images into machine-readable decisions on a plant floor. We design, build and ship those pipelines for industrial customers — scrap-vs-slag classification, crane and vehicle detection, worker safety in ATEX zones, material-flow optimisation.Industrielle Objekterkennung ist Software, die rohe 3D-Punktwolken und 2D-Kamerabilder in maschinenlesbare Entscheidungen auf der Werksebene umwandelt. Wir entwerfen, bauen und liefern diese Pipelines für industrielle Kunden — Schrott-/Schlacke-Klassifikation, Kran- und Fahrzeugerkennung, Personenschutz in ATEX-Zonen, Materialfluss-Optimierung.Industrial perception AI is software that turns raw 3D point clouds and 2D camera images into machine-readable decisions on a plant floor. We design, build and ship those pipelines for industrial customers — scrap-vs-slag classification, crane and vehicle detection, worker safety in ATEX zones, material-flow optimisation.Industrial perception AI is software that turns raw 3D point clouds and 2D camera images into machine-readable decisions on a plant floor. We design, build and ship those pipelines for industrial customers — scrap-vs-slag classification, crane and vehicle detection, worker safety in ATEX zones, material-flow optimisation.Industrial perception AI is software that turns raw 3D point clouds and 2D camera images into machine-readable decisions on a plant floor. We design, build and ship those pipelines for industrial customers — scrap-vs-slag classification, crane and vehicle detection, worker safety in ATEX zones, material-flow optimisation.Industrial perception AI is software that turns raw 3D point clouds and 2D camera images into machine-readable decisions on a plant floor. We design, build and ship those pipelines for industrial customers — scrap-vs-slag classification, crane and vehicle detection, worker safety in ATEX zones, material-flow optimisation.

We started with one job: measuring stockpiles with LiDAR inside an active mining operation. Five years and forty live installations later, we have a deep toolbox for industrial point-cloud and computer-vision work — Riegl, Livox and Faro on the hardware side; PCL, Open3D, OpenCV and PyTorch on the software side; OPC UA, REST and MQTT into your control system. We bring that toolbox to your data.Angefangen haben wir mit einer einzigen Aufgabe: Halden mit LiDAR im aktiven Bergbaubetrieb zu vermessen. Fünf Jahre und vierzig produktive Installationen später haben wir einen tiefen Werkzeugkasten für industrielle Punktwolken- und Bildverarbeitungs-Arbeit — Riegl, Livox und Faro auf der Hardware-Seite; PCL, Open3D, OpenCV und PyTorch auf der Software-Seite; OPC UA, REST und MQTT in Ihre Leittechnik. Diesen Werkzeugkasten bringen wir an Ihre Daten.We started with one job: measuring stockpiles with LiDAR inside an active mining operation. Five years and forty live installations later, we have a deep toolbox for industrial point-cloud and computer-vision work — Riegl, Livox and Faro on the hardware side; PCL, Open3D, OpenCV and PyTorch on the software side; OPC UA, REST and MQTT into your control system. We bring that toolbox to your data.We started with one job: measuring stockpiles with LiDAR inside an active mining operation. Five years and forty live installations later, we have a deep toolbox for industrial point-cloud and computer-vision work — Riegl, Livox and Faro on the hardware side; PCL, Open3D, OpenCV and PyTorch on the software side; OPC UA, REST and MQTT into your control system. We bring that toolbox to your data.We started with one job: measuring stockpiles with LiDAR inside an active mining operation. Five years and forty live installations later, we have a deep toolbox for industrial point-cloud and computer-vision work — Riegl, Livox and Faro on the hardware side; PCL, Open3D, OpenCV and PyTorch on the software side; OPC UA, REST and MQTT into your control system. We bring that toolbox to your data.We started with one job: measuring stockpiles with LiDAR inside an active mining operation. Five years and forty live installations later, we have a deep toolbox for industrial point-cloud and computer-vision work — Riegl, Livox and Faro on the hardware side; PCL, Open3D, OpenCV and PyTorch on the software side; OPC UA, REST and MQTT into your control system. We bring that toolbox to your data.

We don't sell a generic AI platform. Every engagement starts with a short data audit: what sensors do you have, what does your data look like, what decision are you trying to automate? From there we propose a fixed-scope pipeline — typically 4–12 weeks from contract to live tool. For larger programmes we move into a monthly retainer model with shared road-mapping. Either way you own the code: see our FAQs on IP and hardware reuse for the standard terms.Wir verkaufen keine generische KI-Plattform. Jedes Projekt startet mit einem kurzen Daten-Audit: Welche Sensoren haben Sie, wie sieht Ihre Datenlage aus, welche Entscheidung wollen Sie automatisieren? Daraus entsteht ein fester Projektrahmen — typisch 4–12 Wochen vom Vertrag bis zum produktiven Tool. Für größere Programme wechseln wir in ein monatliches Retainer-Modell mit gemeinsamer Roadmap. In jedem Fall gehört der Code Ihnen: Details zur IP und zur Wiederverwendung Ihrer Hardware stehen in unseren FAQs.We don't sell a generic AI platform. Every engagement starts with a short data audit: what sensors do you have, what does your data look like, what decision are you trying to automate? From there we propose a fixed-scope pipeline — typically 4–12 weeks from contract to live tool. For larger programmes we move into a monthly retainer model with shared road-mapping. Either way you own the code: see our FAQs on IP and hardware reuse for the standard terms.We don't sell a generic AI platform. Every engagement starts with a short data audit: what sensors do you have, what does your data look like, what decision are you trying to automate? From there we propose a fixed-scope pipeline — typically 4–12 weeks from contract to live tool. For larger programmes we move into a monthly retainer model with shared road-mapping. Either way you own the code: see our FAQs on IP and hardware reuse for the standard terms.We don't sell a generic AI platform. Every engagement starts with a short data audit: what sensors do you have, what does your data look like, what decision are you trying to automate? From there we propose a fixed-scope pipeline — typically 4–12 weeks from contract to live tool. For larger programmes we move into a monthly retainer model with shared road-mapping. Either way you own the code: see our FAQs on IP and hardware reuse for the standard terms.We don't sell a generic AI platform. Every engagement starts with a short data audit: what sensors do you have, what does your data look like, what decision are you trying to automate? From there we propose a fixed-scope pipeline — typically 4–12 weeks from contract to live tool. For larger programmes we move into a monthly retainer model with shared road-mapping. Either way you own the code: see our FAQs on IP and hardware reuse for the standard terms.

„If we can run it on our own mining site, we can run it on yours." „Wenn wir es auf unserem eigenen Bergbau-Standort fahren können, fährt es auch bei Ihnen." „If we can run it on our own mining site, we can run it on yours." „If we can run it on our own mining site, we can run it on yours." „If we can run it on our own mining site, we can run it on yours." „If we can run it on our own mining site, we can run it on yours."

Production references across salt, sugar, copper, charcoal and minerals. Produktive Referenzen in Salz, Zucker, Kupfer, Holzkohle und Mineralien. Production references across salt, sugar, copper, charcoal and minerals. Production references across salt, sugar, copper, charcoal and minerals. Production references across salt, sugar, copper, charcoal and minerals. Production references across salt, sugar, copper, charcoal and minerals.

Three problem clustersDrei ProblemfelderThree problem clustersThree problem clustersThree problem clustersThree problem clusters

What we build — in three clusters. Was wir bauen — in drei Feldern. What we build — in three clusters. What we build — in three clusters. What we build — in three clusters. What we build — in three clusters.

Material classificationMaterialklassifikationMaterial classificationMaterial classificationMaterial classificationMaterial classification

Scrap-vs-slag classification on steel-mill yards, ore-grade detection on conveyors, mixed-material search and segmentation on stockpiles. Point-cloud classifiers and 2D vision models trained on your material — not a public benchmark. Schrott-/Schlacke-Klassifikation auf Stahlwerks-Höfen, Erz-Qualitäts-Erkennung auf Förderbändern, Mischmaterial-Suche und -Segmentierung auf Halden. Punktwolken-Klassifikatoren und 2D-Bildmodelle, trainiert auf Ihrem Material — nicht auf einem öffentlichen Benchmark. Scrap-vs-slag classification on steel-mill yards, ore-grade detection on conveyors, mixed-material search and segmentation on stockpiles. Point-cloud classifiers and 2D vision models trained on your material — not a public benchmark. Scrap-vs-slag classification on steel-mill yards, ore-grade detection on conveyors, mixed-material search and segmentation on stockpiles. Point-cloud classifiers and 2D vision models trained on your material — not a public benchmark. Scrap-vs-slag classification on steel-mill yards, ore-grade detection on conveyors, mixed-material search and segmentation on stockpiles. Point-cloud classifiers and 2D vision models trained on your material — not a public benchmark. Scrap-vs-slag classification on steel-mill yards, ore-grade detection on conveyors, mixed-material search and segmentation on stockpiles. Point-cloud classifiers and 2D vision models trained on your material — not a public benchmark.

Asset trackingAnlagen- & Fahrzeug-TrackingAsset trackingAsset trackingAsset trackingAsset tracking

Crane position + anti-collision in waste bunkers and warehouses, vehicle detection at plant gates and weighbridges, railcar and wagon recognition for loading automation. LiDAR-based, lighting-independent, works in dust. Kran-Position und Anti-Kollision in Müllbunkern und Hallen, Fahrzeugerkennung an Werkstoren und Waagen, Waggon- und Wagen-Identifikation für die Verladeautomatisierung. LiDAR-basiert, lichtunabhängig, staubtauglich. Crane position + anti-collision in waste bunkers and warehouses, vehicle detection at plant gates and weighbridges, railcar and wagon recognition for loading automation. LiDAR-based, lighting-independent, works in dust. Crane position + anti-collision in waste bunkers and warehouses, vehicle detection at plant gates and weighbridges, railcar and wagon recognition for loading automation. LiDAR-based, lighting-independent, works in dust. Crane position + anti-collision in waste bunkers and warehouses, vehicle detection at plant gates and weighbridges, railcar and wagon recognition for loading automation. LiDAR-based, lighting-independent, works in dust. Crane position + anti-collision in waste bunkers and warehouses, vehicle detection at plant gates and weighbridges, railcar and wagon recognition for loading automation. LiDAR-based, lighting-independent, works in dust.

Safety & complianceSicherheit & ComplianceSafety & complianceSafety & complianceSafety & complianceSafety & compliance

Worker detection inside ATEX zones and around moving plant equipment, safety-distance monitoring on automated cranes and AGVs, hazard-zone clearance checks before a process restart. Auditable event logs included. Personenerkennung in ATEX-Zonen und im Schwenkbereich beweglicher Anlagenteile, Sicherheitsabstand-Überwachung auf automatisierten Kranen und FTS, Räumungskontrolle vor dem Wieder-Anfahren. Auditfähiger Ereignis-Log inklusive. Worker detection inside ATEX zones and around moving plant equipment, safety-distance monitoring on automated cranes and AGVs, hazard-zone clearance checks before a process restart. Auditable event logs included. Worker detection inside ATEX zones and around moving plant equipment, safety-distance monitoring on automated cranes and AGVs, hazard-zone clearance checks before a process restart. Auditable event logs included. Worker detection inside ATEX zones and around moving plant equipment, safety-distance monitoring on automated cranes and AGVs, hazard-zone clearance checks before a process restart. Auditable event logs included. Worker detection inside ATEX zones and around moving plant equipment, safety-distance monitoring on automated cranes and AGVs, hazard-zone clearance checks before a process restart. Auditable event logs included.

Engagement modelZusammenarbeits-ModellEngagement modelEngagement modelEngagement modelEngagement model

Three ways to work with us. Drei Wege, mit uns zu arbeiten. Three ways to work with us. Three ways to work with us. Three ways to work with us. Three ways to work with us.

No long sales cycles. We scope every engagement around your data — start with a workshop, move to a fixed-scope project, optionally into a long-term retainer. Keine langen Vertriebszyklen. Wir schneiden jedes Projekt um Ihre Daten — Start mit einem Workshop, dann ein Fest-Scope-Projekt, optional ein langfristiger Retainer. No long sales cycles. We scope every engagement around your data — start with a workshop, move to a fixed-scope project, optionally into a long-term retainer. No long sales cycles. We scope every engagement around your data — start with a workshop, move to a fixed-scope project, optionally into a long-term retainer. No long sales cycles. We scope every engagement around your data — start with a workshop, move to a fixed-scope project, optionally into a long-term retainer. No long sales cycles. We scope every engagement around your data — start with a workshop, move to a fixed-scope project, optionally into a long-term retainer.

01

Discovery & Assessment

A 1–3 day on-site or remote workshop. We audit your sensors, your data pipeline and the decision you want to automate, and ship a written feasibility note with a recommended next step. Starting at a few days. Fixed price. Ein 1–3-tägiger Workshop, vor Ort oder remote. Wir auditieren Ihre Sensoren, Ihre Datenpipeline und die zu automatisierende Entscheidung, und liefern eine schriftliche Machbarkeits-Note mit empfohlenem nächsten Schritt. Ab wenigen Tagen. Festpreis. A 1–3 day on-site or remote workshop. We audit your sensors, your data pipeline and the decision you want to automate, and ship a written feasibility note with a recommended next step. Starting at a few days. Fixed price. A 1–3 day on-site or remote workshop. We audit your sensors, your data pipeline and the decision you want to automate, and ship a written feasibility note with a recommended next step. Starting at a few days. Fixed price. A 1–3 day on-site or remote workshop. We audit your sensors, your data pipeline and the decision you want to automate, and ship a written feasibility note with a recommended next step. Starting at a few days. Fixed price. A 1–3 day on-site or remote workshop. We audit your sensors, your data pipeline and the decision you want to automate, and ship a written feasibility note with a recommended next step. Starting at a few days. Fixed price.

02

Custom Pipeline / Tool

A 4–12 week project that delivers a working perception pipeline — data parser, detection/classification algorithm, dashboard or OPC UA integration into your control room. Fixed scope, fixed price, you own the code at handover. Ein 4–12-Wochen-Projekt, das eine fertige Wahrnehmungs-Pipeline liefert — Daten-Parser, Erkennungs-/Klassifikations-Algorithmus, Dashboard oder OPC-UA-Anbindung an Ihre Leittechnik. Fester Scope, Festpreis, Code-Übergabe am Ende. A 4–12 week project that delivers a working perception pipeline — data parser, detection/classification algorithm, dashboard or OPC UA integration into your control room. Fixed scope, fixed price, you own the code at handover. A 4–12 week project that delivers a working perception pipeline — data parser, detection/classification algorithm, dashboard or OPC UA integration into your control room. Fixed scope, fixed price, you own the code at handover. A 4–12 week project that delivers a working perception pipeline — data parser, detection/classification algorithm, dashboard or OPC UA integration into your control room. Fixed scope, fixed price, you own the code at handover. A 4–12 week project that delivers a working perception pipeline — data parser, detection/classification algorithm, dashboard or OPC UA integration into your control room. Fixed scope, fixed price, you own the code at handover.

03

Long-term PartnershipLangfristige PartnerschaftLong-term PartnershipLong-term PartnershipLong-term PartnershipLong-term Partnership

A monthly retainer for ongoing model retraining, sensor migrations, new use cases and on-call support. The right fit when you want a perception engineering team without hiring one. Quarterly road-mapping. Monatlicher Retainer für laufendes Re-Training, Sensor-Migrationen, neue Anwendungsfälle und On-Call-Support. Passt, wenn Sie ein Perception-Engineering-Team haben wollen, ohne eines einzustellen. Quartalsweise Roadmap. A monthly retainer for ongoing model retraining, sensor migrations, new use cases and on-call support. The right fit when you want a perception engineering team without hiring one. Quarterly road-mapping. A monthly retainer for ongoing model retraining, sensor migrations, new use cases and on-call support. The right fit when you want a perception engineering team without hiring one. Quarterly road-mapping. A monthly retainer for ongoing model retraining, sensor migrations, new use cases and on-call support. The right fit when you want a perception engineering team without hiring one. Quarterly road-mapping. A monthly retainer for ongoing model retraining, sensor migrations, new use cases and on-call support. The right fit when you want a perception engineering team without hiring one. Quarterly road-mapping.

All three tiers include source code, documentation and a written handover — no black boxes, no licence dependence on us. Alle drei Tiers enthalten Quellcode, Dokumentation und schriftliche Übergabe — keine Black Box, keine Lizenz-Abhängigkeit von uns. All three tiers include source code, documentation and a written handover — no black boxes, no licence dependence on us. All three tiers include source code, documentation and a written handover — no black boxes, no licence dependence on us. All three tiers include source code, documentation and a written handover — no black boxes, no licence dependence on us. All three tiers include source code, documentation and a written handover — no black boxes, no licence dependence on us.

Use cases · #use-casesAnwendungsfälle · #use-casesUse cases · #use-casesUse cases · #use-casesUse cases · #use-casesUse cases · #use-cases

Six places where perception AI earns its keep. Sechs Stellen, an denen Objekterkennung sich rechnet. Six places where perception AI earns its keep. Six places where perception AI earns its keep. Six places where perception AI earns its keep. Six places where perception AI earns its keep.

Scrap-vs-slag classificationSchrott-/Schlacke-KlassifikationScrap-vs-slag classificationScrap-vs-slag classificationScrap-vs-slag classificationScrap-vs-slag classification

Distinguish ferrous scrap from cooled slag on a steel-mill yard, in real time, from a portal-mounted LiDAR + camera pair. Feeds the EAF charging schedule and reduces sorting labour on the yard. Read the deep dive → Eisenschrott in Echtzeit von erkalteter Schlacke trennen — auf dem Stahlwerks-Hof, über ein Portal mit LiDAR und Kamera. Speist die EAF-Chargenplanung und reduziert Sortier-Aufwand auf dem Hof. Zum Use-Case-Deep-Dive → Distinguish ferrous scrap from cooled slag on a steel-mill yard, in real time, from a portal-mounted LiDAR + camera pair. Feeds the EAF charging schedule and reduces sorting labour on the yard. Read the deep dive → Distinguish ferrous scrap from cooled slag on a steel-mill yard, in real time, from a portal-mounted LiDAR + camera pair. Feeds the EAF charging schedule and reduces sorting labour on the yard. Read the deep dive → Distinguish ferrous scrap from cooled slag on a steel-mill yard, in real time, from a portal-mounted LiDAR + camera pair. Feeds the EAF charging schedule and reduces sorting labour on the yard. Read the deep dive → Distinguish ferrous scrap from cooled slag on a steel-mill yard, in real time, from a portal-mounted LiDAR + camera pair. Feeds the EAF charging schedule and reduces sorting labour on the yard. Read the deep dive →

Material flow optimisationMaterialfluss-OptimierungMaterial flow optimisationMaterial flow optimisationMaterial flow optimisationMaterial flow optimisation

Continuous classification of bulk material on conveyors and at transfer points — feeds blending models, prevents off-spec batches and gives the control room a real material-balance instead of an inferred one. Read the deep dive → Kontinuierliche Klassifikation von Schüttgut auf Förderbändern und Übergaben — speist Mischmodelle, vermeidet Off-Spec-Chargen und gibt der Leitwarte eine echte Materialbilanz statt einer abgeleiteten. Zum Use-Case-Deep-Dive → Continuous classification of bulk material on conveyors and at transfer points — feeds blending models, prevents off-spec batches and gives the control room a real material-balance instead of an inferred one. Read the deep dive → Continuous classification of bulk material on conveyors and at transfer points — feeds blending models, prevents off-spec batches and gives the control room a real material-balance instead of an inferred one. Read the deep dive → Continuous classification of bulk material on conveyors and at transfer points — feeds blending models, prevents off-spec batches and gives the control room a real material-balance instead of an inferred one. Read the deep dive → Continuous classification of bulk material on conveyors and at transfer points — feeds blending models, prevents off-spec batches and gives the control room a real material-balance instead of an inferred one. Read the deep dive →

Crane detection & anti-collisionKranerkennung & Anti-KollisionCrane detection & anti-collisionCrane detection & anti-collisionCrane detection & anti-collisionCrane detection & anti-collision

LiDAR tracks crane bridge, trolley and hook position in a waste bunker or warehouse. Drives anti-collision interlocks, optimises grab routing, integrates with the crane PLC over OPC UA. See OWL EYE® Waste Bunker for a productised version. Read the deep dive → LiDAR verfolgt Brücke, Katze und Greifer im Müllbunker oder in der Halle. Treibt Anti-Kollisions-Verriegelungen, optimiert Greif-Routen, koppelt über OPC UA an die Kran-SPS. Produkt-Version siehe OWL EYE® Müllbunker-Monitoring. Zum Use-Case-Deep-Dive → LiDAR tracks crane bridge, trolley and hook position in a waste bunker or warehouse. Drives anti-collision interlocks, optimises grab routing, integrates with the crane PLC over OPC UA. See OWL EYE® Waste Bunker for a productised version. Read the deep dive → LiDAR tracks crane bridge, trolley and hook position in a waste bunker or warehouse. Drives anti-collision interlocks, optimises grab routing, integrates with the crane PLC over OPC UA. See OWL EYE® Waste Bunker for a productised version. Read the deep dive → LiDAR tracks crane bridge, trolley and hook position in a waste bunker or warehouse. Drives anti-collision interlocks, optimises grab routing, integrates with the crane PLC over OPC UA. See OWL EYE® Waste Bunker for a productised version. Read the deep dive → LiDAR tracks crane bridge, trolley and hook position in a waste bunker or warehouse. Drives anti-collision interlocks, optimises grab routing, integrates with the crane PLC over OPC UA. See OWL EYE® Waste Bunker for a productised version. Read the deep dive →

Vehicle detectionFahrzeugerkennungVehicle detectionVehicle detectionVehicle detectionVehicle detection

Truck, loader and forklift recognition at plant gates, in-plant intersections and weighbridges. Drives gate control, traffic-light interlocks and in-plant routing — works at night, in fog and in dust. Read the deep dive → LKW-, Lader- und Stapler-Erkennung an Werkstoren, innerbetrieblichen Kreuzungen und Waagen. Treibt Tor-Steuerung, Ampel-Verriegelungen und innerbetriebliche Wegeführung — funktioniert nachts, im Nebel und im Staub. Zum Use-Case-Deep-Dive → Truck, loader and forklift recognition at plant gates, in-plant intersections and weighbridges. Drives gate control, traffic-light interlocks and in-plant routing — works at night, in fog and in dust. Read the deep dive → Truck, loader and forklift recognition at plant gates, in-plant intersections and weighbridges. Drives gate control, traffic-light interlocks and in-plant routing — works at night, in fog and in dust. Read the deep dive → Truck, loader and forklift recognition at plant gates, in-plant intersections and weighbridges. Drives gate control, traffic-light interlocks and in-plant routing — works at night, in fog and in dust. Read the deep dive → Truck, loader and forklift recognition at plant gates, in-plant intersections and weighbridges. Drives gate control, traffic-light interlocks and in-plant routing — works at night, in fog and in dust. Read the deep dive →

Railcar & wagon recognitionWaggon- & Wagen-ErkennungRailcar & wagon recognitionRailcar & wagon recognitionRailcar & wagon recognitionRailcar & wagon recognition

Detect, count and identify railcars at a loading station. Drives automated loading sequences, prevents misroutes and feeds a per-wagon material log into ERP. Read the deep dive → Waggons an einer Verlade-Station erkennen, zählen, identifizieren. Treibt automatisierte Verlade-Sequenzen, verhindert Fehl-Verladungen und speist ein Material-Log pro Waggon ins ERP. Zum Use-Case-Deep-Dive → Detect, count and identify railcars at a loading station. Drives automated loading sequences, prevents misroutes and feeds a per-wagon material log into ERP. Read the deep dive → Detect, count and identify railcars at a loading station. Drives automated loading sequences, prevents misroutes and feeds a per-wagon material log into ERP. Read the deep dive → Detect, count and identify railcars at a loading station. Drives automated loading sequences, prevents misroutes and feeds a per-wagon material log into ERP. Read the deep dive → Detect, count and identify railcars at a loading station. Drives automated loading sequences, prevents misroutes and feeds a per-wagon material log into ERP. Read the deep dive →

Worker detection & ATEX zonesPersonenerkennung & ATEX-ZonenWorker detection & ATEX zonesWorker detection & ATEX zonesWorker detection & ATEX zonesWorker detection & ATEX zones

Person detection in hazard zones — ATEX areas, swing radius of cranes, conveyor pull-cords. Triggers slowdowns, hard stops or audible warnings. Auditable event log for the safety officer. Read the deep dive → Personenerkennung in Gefahrenbereichen — ATEX-Zonen, Schwenkbereich von Kranen, Reißleinen an Bändern. Löst Drosselungen, Hart-Stopps oder Warnungen aus. Auditfähiger Ereignis-Log für die Sicherheits-Beauftragten. Zum Use-Case-Deep-Dive → Person detection in hazard zones — ATEX areas, swing radius of cranes, conveyor pull-cords. Triggers slowdowns, hard stops or audible warnings. Auditable event log for the safety officer. Read the deep dive → Person detection in hazard zones — ATEX areas, swing radius of cranes, conveyor pull-cords. Triggers slowdowns, hard stops or audible warnings. Auditable event log for the safety officer. Read the deep dive → Person detection in hazard zones — ATEX areas, swing radius of cranes, conveyor pull-cords. Triggers slowdowns, hard stops or audible warnings. Auditable event log for the safety officer. Read the deep dive → Person detection in hazard zones — ATEX areas, swing radius of cranes, conveyor pull-cords. Triggers slowdowns, hard stops or audible warnings. Auditable event log for the safety officer. Read the deep dive →

Stack we useUnser StackStack we useStack we useStack we useStack we use

Mature tools — industry-standard, not experimental. Reife Werkzeuge — Industrie-Standard, nicht experimentell. Mature tools — industry-standard, not experimental. Mature tools — industry-standard, not experimental. Mature tools — industry-standard, not experimental. Mature tools — industry-standard, not experimental.

We keep the stack boring on purpose. Every library on this list has a multi-year track record in industrial production environments. Wir halten den Stack absichtlich langweilig. Jede Bibliothek auf dieser Liste hat einen mehrjährigen Track-Record in industriellen Produktionsumgebungen. We keep the stack boring on purpose. Every library on this list has a multi-year track record in industrial production environments. We keep the stack boring on purpose. Every library on this list has a multi-year track record in industrial production environments. We keep the stack boring on purpose. Every library on this list has a multi-year track record in industrial production environments. We keep the stack boring on purpose. Every library on this list has a multi-year track record in industrial production environments.

Point cloudPunktwolkePoint cloudPoint cloudPoint cloudPoint cloud
PCL, Open3D
Computer visionBildverarbeitungComputer visionComputer visionComputer visionComputer vision
OpenCV
Deep learningDeep LearningDeep learningDeep learningDeep learningDeep learning
PyTorch
LanguagesSprachenLanguagesLanguagesLanguagesLanguages
Python, C++
Deployment
Docker, Linux, Windows
Robotics middlewareRobotik-MiddlewareRobotics middlewareRobotics middlewareRobotics middlewareRobotics middleware
ROS / ROS 2
Plant integrationAnlagen-AnbindungPlant integrationPlant integrationPlant integrationPlant integration
OPC UA, MQTT, REST, Analog outOPC UA, MQTT, REST, Analog-AusgangOPC UA, MQTT, REST, Analog outOPC UA, MQTT, REST, Analog outOPC UA, MQTT, REST, Analog outOPC UA, MQTT, REST, Analog out
LiDAR sensorsLiDAR-SensorenLiDAR sensorsLiDAR sensorsLiDAR sensorsLiDAR sensors
Riegl, Livox, Hesai, Ouster, Veyond, Faro
CamerasKamerasCamerasCamerasCamerasCameras
Basler, FLIR, Allied Vision, IDS
See it runIn Aktion sehenSee it runSee it runSee it runSee it run

Live detection — single scan, six lids, two seconds. Live-Erkennung — ein Scan, sechs Deckel, zwei Sekunden. Live detection — single scan, six lids, two seconds. Live detection — single scan, six lids, two seconds. Live detection — single scan, six lids, two seconds. Live detection — single scan, six lids, two seconds.

The Electron UI as the plant operator sees it: load a freshly arrived scan, the algorithm classifies the point cloud into ground, wagon body and lid cluster, projects centerpoints and updates the train log. All stateless on the algorithm side — the tracker is a separate state machine. Die Electron-Oberfläche aus Sicht des Anlagenbedieners: einen frisch aufgenommenen Scan laden, der Algorithmus klassifiziert die Punktwolke in Boden, Wagenkasten und Deckel-Cluster, projiziert die Mittelpunkte und aktualisiert das Zug-Log. Algorithmus-seitig vollständig zustandslos — der Tracker ist eine separate State-Machine. The Electron UI as the plant operator sees it: load a freshly arrived scan, the algorithm classifies the point cloud into ground, wagon body and lid cluster, projects centerpoints and updates the train log. All stateless on the algorithm side — the tracker is a separate state machine. The Electron UI as the plant operator sees it: load a freshly arrived scan, the algorithm classifies the point cloud into ground, wagon body and lid cluster, projects centerpoints and updates the train log. All stateless on the algorithm side — the tracker is a separate state machine. The Electron UI as the plant operator sees it: load a freshly arrived scan, the algorithm classifies the point cloud into ground, wagon body and lid cluster, projects centerpoints and updates the train log. All stateless on the algorithm side — the tracker is a separate state machine. The Electron UI as the plant operator sees it: load a freshly arrived scan, the algorithm classifies the point cloud into ground, wagon body and lid cluster, projects centerpoints and updates the train log. All stateless on the algorithm side — the tracker is a separate state machine.

How we scope a projectWie wir ein Projekt zuschneidenHow we scope a projectHow we scope a projectHow we scope a projectHow we scope a project
FAQ

Questions about custom perception AI. Fragen zur maßgeschneiderten Objekterkennung. Questions about custom perception AI. Questions about custom perception AI. Questions about custom perception AI. Questions about custom perception AI.

Industrial Perception AIIndustrielle ObjekterkennungIndustrial Perception AIIndustrial Perception AIIndustrial Perception AIIndustrial Perception AI

What does custom perception AI software cost?Was kostet maßgeschneiderte Wahrnehmungs-Software?What does custom perception AI software cost?What does custom perception AI software cost?What does custom perception AI software cost?What does custom perception AI software cost?
We don't publish list prices because every project is scoped against your data and your decision logic — but we work to three predictable tiers. Discovery & Assessment — a 1–3 day workshop, on-site or remote, fixed price in the low-four-figure range. You receive a written feasibility note, a recommended next step and (if applicable) a fixed-price quote for the follow-on project. Useful even if you don't then go ahead — many customers use the note to evaluate two or three vendors. Custom Pipeline / Tool — a 4–12 week project delivering a working perception pipeline (parser + algorithm + dashboard or OPC UA integration). Fixed scope, fixed price, you own the code at handover. Typical project size is in the mid-five to low-six-figure range depending on data volume, sensor count and integration depth. Long-term Partnership — a monthly retainer for ongoing development and on-call support. Sized to the team capacity you need (typically 0.5–2 FTE equivalent). Quarterly road-mapping included. All three tiers include source code, written documentation and a clean handover — no licence dependence on us. See our Industrial Perception AI service for the full engagement model. Wir veröffentlichen keine Listenpreise, weil jedes Projekt auf Ihre Daten und Ihre Entscheidungs-Logik zugeschnitten wird — aber wir arbeiten in drei berechenbaren Tiers. Discovery & Assessment — ein 1–3-tägiger Workshop, vor Ort oder remote, Festpreis im unteren vierstelligen Bereich. Sie erhalten eine schriftliche Machbarkeits-Note, einen empfohlenen nächsten Schritt und ggf. ein Festpreis-Angebot für das Folge-Projekt. Lohnt sich auch ohne Folge-Auftrag — viele Kunden nutzen die Note, um zwei oder drei Anbieter zu vergleichen. Custom Pipeline / Tool — ein 4–12-Wochen-Projekt, das eine fertige Wahrnehmungs-Pipeline liefert (Parser + Algorithmus + Dashboard oder OPC-UA-Anbindung). Fester Scope, Festpreis, Code-Übergabe am Ende. Übliche Projektgröße liegt im mittleren fünf- bis unteren sechsstelligen Bereich, je nach Datenvolumen, Sensor-Anzahl und Integrations-Tiefe. Langfristige Partnerschaft — monatlicher Retainer für laufende Entwicklung und On-Call-Support. Dimensioniert nach benötigter Team-Kapazität (typisch 0,5–2 FTE-Äquivalente). Quartalsweise Roadmap inklusive. Alle drei Tiers enthalten Quellcode, schriftliche Dokumentation und saubere Übergabe — keine Lizenz-Abhängigkeit von uns. Vollständiges Zusammenarbeits-Modell siehe unsere Industrielle Objekterkennung. We don't publish list prices because every project is scoped against your data and your decision logic — but we work to three predictable tiers. Discovery & Assessment — a 1–3 day workshop, on-site or remote, fixed price in the low-four-figure range. You receive a written feasibility note, a recommended next step and (if applicable) a fixed-price quote for the follow-on project. Useful even if you don't then go ahead — many customers use the note to evaluate two or three vendors. Custom Pipeline / Tool — a 4–12 week project delivering a working perception pipeline (parser + algorithm + dashboard or OPC UA integration). Fixed scope, fixed price, you own the code at handover. Typical project size is in the mid-five to low-six-figure range depending on data volume, sensor count and integration depth. Long-term Partnership — a monthly retainer for ongoing development and on-call support. Sized to the team capacity you need (typically 0.5–2 FTE equivalent). Quarterly road-mapping included. All three tiers include source code, written documentation and a clean handover — no licence dependence on us. See our Industrial Perception AI service for the full engagement model. We don't publish list prices because every project is scoped against your data and your decision logic — but we work to three predictable tiers. Discovery & Assessment — a 1–3 day workshop, on-site or remote, fixed price in the low-four-figure range. You receive a written feasibility note, a recommended next step and (if applicable) a fixed-price quote for the follow-on project. Useful even if you don't then go ahead — many customers use the note to evaluate two or three vendors. Custom Pipeline / Tool — a 4–12 week project delivering a working perception pipeline (parser + algorithm + dashboard or OPC UA integration). Fixed scope, fixed price, you own the code at handover. Typical project size is in the mid-five to low-six-figure range depending on data volume, sensor count and integration depth. Long-term Partnership — a monthly retainer for ongoing development and on-call support. Sized to the team capacity you need (typically 0.5–2 FTE equivalent). Quarterly road-mapping included. All three tiers include source code, written documentation and a clean handover — no licence dependence on us. See our Industrial Perception AI service for the full engagement model. We don't publish list prices because every project is scoped against your data and your decision logic — but we work to three predictable tiers. Discovery & Assessment — a 1–3 day workshop, on-site or remote, fixed price in the low-four-figure range. You receive a written feasibility note, a recommended next step and (if applicable) a fixed-price quote for the follow-on project. Useful even if you don't then go ahead — many customers use the note to evaluate two or three vendors. Custom Pipeline / Tool — a 4–12 week project delivering a working perception pipeline (parser + algorithm + dashboard or OPC UA integration). Fixed scope, fixed price, you own the code at handover. Typical project size is in the mid-five to low-six-figure range depending on data volume, sensor count and integration depth. Long-term Partnership — a monthly retainer for ongoing development and on-call support. Sized to the team capacity you need (typically 0.5–2 FTE equivalent). Quarterly road-mapping included. All three tiers include source code, written documentation and a clean handover — no licence dependence on us. See our Industrial Perception AI service for the full engagement model. We don't publish list prices because every project is scoped against your data and your decision logic — but we work to three predictable tiers. Discovery & Assessment — a 1–3 day workshop, on-site or remote, fixed price in the low-four-figure range. You receive a written feasibility note, a recommended next step and (if applicable) a fixed-price quote for the follow-on project. Useful even if you don't then go ahead — many customers use the note to evaluate two or three vendors. Custom Pipeline / Tool — a 4–12 week project delivering a working perception pipeline (parser + algorithm + dashboard or OPC UA integration). Fixed scope, fixed price, you own the code at handover. Typical project size is in the mid-five to low-six-figure range depending on data volume, sensor count and integration depth. Long-term Partnership — a monthly retainer for ongoing development and on-call support. Sized to the team capacity you need (typically 0.5–2 FTE equivalent). Quarterly road-mapping included. All three tiers include source code, written documentation and a clean handover — no licence dependence on us. See our Industrial Perception AI service for the full engagement model.
How long does it take to build a custom perception pipeline?Wie lange dauert eine maßgeschneiderte Wahrnehmungs-Pipeline?How long does it take to build a custom perception pipeline?How long does it take to build a custom perception pipeline?How long does it take to build a custom perception pipeline?How long does it take to build a custom perception pipeline?
From signed contract to a working tool in production, expect 4–12 weeks for a standard custom-pipeline engagement. The spread is driven by three factors. Data readiness. If you already have labelled data or representative recordings, we start training in week 1. If we need to set up data collection, add a sensor, or label from scratch, the front end adds 1–3 weeks. Integration depth. A standalone dashboard with REST output is the fastest path — typically 4–6 weeks. OPC UA integration into a running control system, with interlocks, factory-acceptance tests and a customer change-management process, is closer to 8–12 weeks. Sensor count and site complexity. One LiDAR + one camera in a clean indoor environment is faster than a six-sensor outdoor portal with dust, snow and dynamic lighting. We scope the difference up-front in the Discovery workshop. For a faster first signal we recommend the Discovery & Assessment tier — 1–3 days, fixed price, written feasibility note within a week. See Industrial Perception AI for the full model. Vom unterzeichneten Vertrag bis zum produktiven Tool rechnen Sie mit 4–12 Wochen für ein Standard-Custom-Pipeline-Projekt. Die Spanne wird von drei Faktoren bestimmt. Datenlage. Wenn Sie bereits gelabelte Daten oder repräsentative Aufnahmen haben, starten wir in Woche 1 mit dem Training. Müssen wir Datenerfassung aufsetzen, einen Sensor ergänzen oder von Null labeln, kommt vorne 1–3 Wochen dazu. Integrations-Tiefe. Ein eigenständiges Dashboard mit REST-Schnittstelle ist der schnellste Weg — typisch 4–6 Wochen. OPC-UA-Anbindung in eine laufende Leittechnik, mit Verriegelungen, Werks-Abnahme und kundenseitigem Change-Management, eher 8–12 Wochen. Sensor-Anzahl und Anlagen-Komplexität. Ein LiDAR + eine Kamera in einer sauberen Innen-Umgebung geht schneller als ein 6-Sensor-Portal im Freien mit Staub, Schnee und wechselndem Licht. Den Unterschied schneiden wir vorab im Discovery-Workshop sauber zu. Für ein schnelleres erstes Signal empfehlen wir das Discovery & Assessment-Tier — 1–3 Tage, Festpreis, schriftliche Machbarkeits-Note innerhalb einer Woche. Vollständiges Modell siehe Industrielle Objekterkennung. From signed contract to a working tool in production, expect 4–12 weeks for a standard custom-pipeline engagement. The spread is driven by three factors. Data readiness. If you already have labelled data or representative recordings, we start training in week 1. If we need to set up data collection, add a sensor, or label from scratch, the front end adds 1–3 weeks. Integration depth. A standalone dashboard with REST output is the fastest path — typically 4–6 weeks. OPC UA integration into a running control system, with interlocks, factory-acceptance tests and a customer change-management process, is closer to 8–12 weeks. Sensor count and site complexity. One LiDAR + one camera in a clean indoor environment is faster than a six-sensor outdoor portal with dust, snow and dynamic lighting. We scope the difference up-front in the Discovery workshop. For a faster first signal we recommend the Discovery & Assessment tier — 1–3 days, fixed price, written feasibility note within a week. See Industrial Perception AI for the full model. From signed contract to a working tool in production, expect 4–12 weeks for a standard custom-pipeline engagement. The spread is driven by three factors. Data readiness. If you already have labelled data or representative recordings, we start training in week 1. If we need to set up data collection, add a sensor, or label from scratch, the front end adds 1–3 weeks. Integration depth. A standalone dashboard with REST output is the fastest path — typically 4–6 weeks. OPC UA integration into a running control system, with interlocks, factory-acceptance tests and a customer change-management process, is closer to 8–12 weeks. Sensor count and site complexity. One LiDAR + one camera in a clean indoor environment is faster than a six-sensor outdoor portal with dust, snow and dynamic lighting. We scope the difference up-front in the Discovery workshop. For a faster first signal we recommend the Discovery & Assessment tier — 1–3 days, fixed price, written feasibility note within a week. See Industrial Perception AI for the full model. From signed contract to a working tool in production, expect 4–12 weeks for a standard custom-pipeline engagement. The spread is driven by three factors. Data readiness. If you already have labelled data or representative recordings, we start training in week 1. If we need to set up data collection, add a sensor, or label from scratch, the front end adds 1–3 weeks. Integration depth. A standalone dashboard with REST output is the fastest path — typically 4–6 weeks. OPC UA integration into a running control system, with interlocks, factory-acceptance tests and a customer change-management process, is closer to 8–12 weeks. Sensor count and site complexity. One LiDAR + one camera in a clean indoor environment is faster than a six-sensor outdoor portal with dust, snow and dynamic lighting. We scope the difference up-front in the Discovery workshop. For a faster first signal we recommend the Discovery & Assessment tier — 1–3 days, fixed price, written feasibility note within a week. See Industrial Perception AI for the full model. From signed contract to a working tool in production, expect 4–12 weeks for a standard custom-pipeline engagement. The spread is driven by three factors. Data readiness. If you already have labelled data or representative recordings, we start training in week 1. If we need to set up data collection, add a sensor, or label from scratch, the front end adds 1–3 weeks. Integration depth. A standalone dashboard with REST output is the fastest path — typically 4–6 weeks. OPC UA integration into a running control system, with interlocks, factory-acceptance tests and a customer change-management process, is closer to 8–12 weeks. Sensor count and site complexity. One LiDAR + one camera in a clean indoor environment is faster than a six-sensor outdoor portal with dust, snow and dynamic lighting. We scope the difference up-front in the Discovery workshop. For a faster first signal we recommend the Discovery & Assessment tier — 1–3 days, fixed price, written feasibility note within a week. See Industrial Perception AI for the full model.
Who owns the code and IP we pay you to build?Wem gehören Code und IP, die wir bei Ihnen beauftragen?Who owns the code and IP we pay you to build?Who owns the code and IP we pay you to build?Who owns the code and IP we pay you to build?Who owns the code and IP we pay you to build?
You do. Our standard contract transfers full ownership of the project-specific code, model weights, training data (where the data is yours) and documentation to you on final acceptance. We don't keep a back-door licence and we don't lock you into a maintenance contract. What we retain is our pre-existing toolbox — reusable libraries, calibration utilities, generic data parsers, the OWL EYE® core — which we license to you, royalty-free, for use on the delivered tool. This is the same boundary that any reputable engineering firm draws: we bring the toolbox, you keep the deliverable. If you want a different IP arrangement — for example a joint patent on a novel algorithm, or a co-developed model that we both reuse with consent — we structure that explicitly in the project contract. Tell us up-front in the Discovery workshop. Full engagement details on our Industrial Perception AI page. Ihnen. Unser Standard-Vertrag überträgt das volle Eigentum am projektspezifischen Code, an den Modell-Gewichten, an Trainingsdaten (soweit die Daten Ihnen gehören) und an der Dokumentation bei der Abnahme an Sie. Wir behalten keine Hintertür-Lizenz und binden Sie nicht an einen Wartungsvertrag. Was bei uns bleibt, ist unser vorhandener Werkzeugkasten — wiederverwendbare Bibliotheken, Kalibrier-Utilities, generische Daten-Parser, der OWL EYE®-Kern — den wir Ihnen lizenzgebührenfrei für das gelieferte Tool lizenzieren. Das ist dieselbe Grenze, die jedes seriöse Ingenieurbüro zieht: Wir bringen den Werkzeugkasten, Sie behalten das Ergebnis. Wenn Sie eine andere IP-Vereinbarung wollen — etwa ein gemeinsames Patent auf einen neuartigen Algorithmus oder ein gemeinsam entwickeltes Modell, das wir beide mit Einwilligung wiederverwenden — regeln wir das explizit im Projektvertrag. Sagen Sie es vorab im Discovery-Workshop. Vollständige Details auf unserer Seite zur Industriellen Objekterkennung. You do. Our standard contract transfers full ownership of the project-specific code, model weights, training data (where the data is yours) and documentation to you on final acceptance. We don't keep a back-door licence and we don't lock you into a maintenance contract. What we retain is our pre-existing toolbox — reusable libraries, calibration utilities, generic data parsers, the OWL EYE® core — which we license to you, royalty-free, for use on the delivered tool. This is the same boundary that any reputable engineering firm draws: we bring the toolbox, you keep the deliverable. If you want a different IP arrangement — for example a joint patent on a novel algorithm, or a co-developed model that we both reuse with consent — we structure that explicitly in the project contract. Tell us up-front in the Discovery workshop. Full engagement details on our Industrial Perception AI page. You do. Our standard contract transfers full ownership of the project-specific code, model weights, training data (where the data is yours) and documentation to you on final acceptance. We don't keep a back-door licence and we don't lock you into a maintenance contract. What we retain is our pre-existing toolbox — reusable libraries, calibration utilities, generic data parsers, the OWL EYE® core — which we license to you, royalty-free, for use on the delivered tool. This is the same boundary that any reputable engineering firm draws: we bring the toolbox, you keep the deliverable. If you want a different IP arrangement — for example a joint patent on a novel algorithm, or a co-developed model that we both reuse with consent — we structure that explicitly in the project contract. Tell us up-front in the Discovery workshop. Full engagement details on our Industrial Perception AI page. You do. Our standard contract transfers full ownership of the project-specific code, model weights, training data (where the data is yours) and documentation to you on final acceptance. We don't keep a back-door licence and we don't lock you into a maintenance contract. What we retain is our pre-existing toolbox — reusable libraries, calibration utilities, generic data parsers, the OWL EYE® core — which we license to you, royalty-free, for use on the delivered tool. This is the same boundary that any reputable engineering firm draws: we bring the toolbox, you keep the deliverable. If you want a different IP arrangement — for example a joint patent on a novel algorithm, or a co-developed model that we both reuse with consent — we structure that explicitly in the project contract. Tell us up-front in the Discovery workshop. Full engagement details on our Industrial Perception AI page. You do. Our standard contract transfers full ownership of the project-specific code, model weights, training data (where the data is yours) and documentation to you on final acceptance. We don't keep a back-door licence and we don't lock you into a maintenance contract. What we retain is our pre-existing toolbox — reusable libraries, calibration utilities, generic data parsers, the OWL EYE® core — which we license to you, royalty-free, for use on the delivered tool. This is the same boundary that any reputable engineering firm draws: we bring the toolbox, you keep the deliverable. If you want a different IP arrangement — for example a joint patent on a novel algorithm, or a co-developed model that we both reuse with consent — we structure that explicitly in the project contract. Tell us up-front in the Discovery workshop. Full engagement details on our Industrial Perception AI page.
Can you use our existing cameras and LiDAR sensors?Können Sie unsere vorhandenen Kameras und LiDAR-Sensoren weiterverwenden?Can you use our existing cameras and LiDAR sensors?Can you use our existing cameras and LiDAR sensors?Can you use our existing cameras and LiDAR sensors?Can you use our existing cameras and LiDAR sensors?
Yes — in most cases. Our toolchain is sensor-agnostic on the data layer. If your sensors deliver a standard format (PCD, LAS, E57 for point clouds; RTSP, GigE Vision, USB3 Vision for cameras) we can ingest them in a day. We've worked with Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision and IDS cameras. We'll tell you honestly when the existing hardware isn't the right tool. Common cases where we recommend a replacement: - The existing LiDAR is too narrow (FoV or range) to cover the area you want classified — usually solved by repositioning before buying anything new. - The camera is auto-exposing on a high-contrast scene (sun + shadow at a gate), which breaks classification reliability — solved by switching to a manual-exposure industrial camera with HDR sensor. - The existing sensor's vendor lock-in (proprietary stream format, no documented SDK) makes integration cost more than a Livox replacement. We don't earn a margin on reselling hardware to you. If you do want us to source new sensors, we do that through our normal Hardware & products channel at list price. See Industrial Perception AI for how we scope it. In den meisten Fällen ja. Unsere Toolchain ist auf der Datenebene sensor-agnostisch. Wenn Ihre Sensoren ein Standard-Format liefern (PCD, LAS, E57 für Punktwolken; RTSP, GigE Vision, USB3 Vision für Kameras), binden wir sie an einem Tag an. Wir haben mit Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision und IDS gearbeitet. Wir sagen Ihnen ehrlich, wenn die vorhandene Hardware nicht das richtige Werkzeug ist. Übliche Fälle, in denen wir zum Tausch raten: - Der vorhandene LiDAR ist zu schmal (FoV oder Reichweite), um den gewünschten Bereich abzudecken — meist durch Repositionierung gelöst, bevor neu gekauft wird. - Die Kamera auto-belichtet auf einer Szene mit hohem Kontrast (Sonne + Schatten am Tor), das bricht die Klassifikations-Zuverlässigkeit — gelöst durch Wechsel auf eine manuell belichtbare Industrie-Kamera mit HDR-Sensor. - Vendor-Lock-in des vorhandenen Sensors (proprietärer Stream, kein dokumentiertes SDK) macht die Anbindung teurer als ein Livox-Ersatz. Wir verdienen nicht am Weiterverkauf von Hardware an Sie. Wenn Sie wollen, dass wir neue Sensoren beschaffen, läuft das über unseren regulären Kanal Handelsware & Produkte zum Listenpreis. Scoping-Modell siehe Industrielle Objekterkennung. Yes — in most cases. Our toolchain is sensor-agnostic on the data layer. If your sensors deliver a standard format (PCD, LAS, E57 for point clouds; RTSP, GigE Vision, USB3 Vision for cameras) we can ingest them in a day. We've worked with Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision and IDS cameras. We'll tell you honestly when the existing hardware isn't the right tool. Common cases where we recommend a replacement: - The existing LiDAR is too narrow (FoV or range) to cover the area you want classified — usually solved by repositioning before buying anything new. - The camera is auto-exposing on a high-contrast scene (sun + shadow at a gate), which breaks classification reliability — solved by switching to a manual-exposure industrial camera with HDR sensor. - The existing sensor's vendor lock-in (proprietary stream format, no documented SDK) makes integration cost more than a Livox replacement. We don't earn a margin on reselling hardware to you. If you do want us to source new sensors, we do that through our normal Hardware & products channel at list price. See Industrial Perception AI for how we scope it. Yes — in most cases. Our toolchain is sensor-agnostic on the data layer. If your sensors deliver a standard format (PCD, LAS, E57 for point clouds; RTSP, GigE Vision, USB3 Vision for cameras) we can ingest them in a day. We've worked with Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision and IDS cameras. We'll tell you honestly when the existing hardware isn't the right tool. Common cases where we recommend a replacement: - The existing LiDAR is too narrow (FoV or range) to cover the area you want classified — usually solved by repositioning before buying anything new. - The camera is auto-exposing on a high-contrast scene (sun + shadow at a gate), which breaks classification reliability — solved by switching to a manual-exposure industrial camera with HDR sensor. - The existing sensor's vendor lock-in (proprietary stream format, no documented SDK) makes integration cost more than a Livox replacement. We don't earn a margin on reselling hardware to you. If you do want us to source new sensors, we do that through our normal Hardware & products channel at list price. See Industrial Perception AI for how we scope it. Yes — in most cases. Our toolchain is sensor-agnostic on the data layer. If your sensors deliver a standard format (PCD, LAS, E57 for point clouds; RTSP, GigE Vision, USB3 Vision for cameras) we can ingest them in a day. We've worked with Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision and IDS cameras. We'll tell you honestly when the existing hardware isn't the right tool. Common cases where we recommend a replacement: - The existing LiDAR is too narrow (FoV or range) to cover the area you want classified — usually solved by repositioning before buying anything new. - The camera is auto-exposing on a high-contrast scene (sun + shadow at a gate), which breaks classification reliability — solved by switching to a manual-exposure industrial camera with HDR sensor. - The existing sensor's vendor lock-in (proprietary stream format, no documented SDK) makes integration cost more than a Livox replacement. We don't earn a margin on reselling hardware to you. If you do want us to source new sensors, we do that through our normal Hardware & products channel at list price. See Industrial Perception AI for how we scope it. Yes — in most cases. Our toolchain is sensor-agnostic on the data layer. If your sensors deliver a standard format (PCD, LAS, E57 for point clouds; RTSP, GigE Vision, USB3 Vision for cameras) we can ingest them in a day. We've worked with Riegl, Livox, Faro, Hesai, Velodyne, Ouster, Basler, FLIR, Allied Vision and IDS cameras. We'll tell you honestly when the existing hardware isn't the right tool. Common cases where we recommend a replacement: - The existing LiDAR is too narrow (FoV or range) to cover the area you want classified — usually solved by repositioning before buying anything new. - The camera is auto-exposing on a high-contrast scene (sun + shadow at a gate), which breaks classification reliability — solved by switching to a manual-exposure industrial camera with HDR sensor. - The existing sensor's vendor lock-in (proprietary stream format, no documented SDK) makes integration cost more than a Livox replacement. We don't earn a margin on reselling hardware to you. If you do want us to source new sensors, we do that through our normal Hardware & products channel at list price. See Industrial Perception AI for how we scope it.

Tell us about your data.Erzählen Sie uns von Ihren Daten.Tell us about your data.Tell us about your data.Tell us about your data.Tell us about your data.

A short call, a few sample files or a sensor stream — we come back within two business days with a written feasibility note and a fixed-price scope for the discovery workshop.Ein kurzes Gespräch, ein paar Beispiel-Dateien oder ein Sensor-Stream — wir kommen innerhalb von zwei Werktagen mit einer schriftlichen Machbarkeits-Note zurück und einem Festpreis-Angebot für den Discovery-Workshop.A short call, a few sample files or a sensor stream — we come back within two business days with a written feasibility note and a fixed-price scope for the discovery workshop.A short call, a few sample files or a sensor stream — we come back within two business days with a written feasibility note and a fixed-price scope for the discovery workshop.A short call, a few sample files or a sensor stream — we come back within two business days with a written feasibility note and a fixed-price scope for the discovery workshop.A short call, a few sample files or a sensor stream — we come back within two business days with a written feasibility note and a fixed-price scope for the discovery workshop.

info@sachtleben-technology.com +49 7831 969 22-190
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Tell us about your perception task. Erzählen Sie uns von Ihrer Wahrnehmungs-Aufgabe. Tell us about your perception task. Tell us about your perception task. Tell us about your perception task. Tell us about your perception task.

Sensor setup, sample data, the decision you want to automate — anything you have. We come back within two business days with an honest first assessment and a fixed-price scope for the Discovery workshop. Sensor-Setup, Beispiel-Daten, die zu automatisierende Entscheidung — alles was Sie haben. Wir kommen innerhalb von zwei Werktagen mit einer ehrlichen ersten Einschätzung und einem Festpreis-Angebot für den Discovery-Workshop zurück. Sensor setup, sample data, the decision you want to automate — anything you have. We come back within two business days with an honest first assessment and a fixed-price scope for the Discovery workshop. Sensor setup, sample data, the decision you want to automate — anything you have. We come back within two business days with an honest first assessment and a fixed-price scope for the Discovery workshop. Sensor setup, sample data, the decision you want to automate — anything you have. We come back within two business days with an honest first assessment and a fixed-price scope for the Discovery workshop. Sensor setup, sample data, the decision you want to automate — anything you have. We come back within two business days with an honest first assessment and a fixed-price scope for the Discovery workshop.

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Response within one business day. Antwort innerhalb eines Werktages. OdpowiedŁº w ciągu jednego dnia roboczego. Risposta entro un giorno lavorativo. Réponse sous un jour ouvré. Respuesta en un día laborable.
Headquarters Unternehmenssitz Siedziba główna Sede principale Siège social Sede central
Sachtleben Technology GmbH
Tresdorf 6
24238 Mucheln
Germany Deutschland Niemcy Germania Allemagne Alemania
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