The Develogic Sono.Vault SubMAReS is a modular deep‑sea acoustic recording system designed for long‑duration deployments and high‑fidelity underwater monitoring. It supports up to 36TBs with four fully synchronised 24‑bit channels and offers expandable storage up to 36 TB, enabling continuous multi‑year data collection.

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Its low‑power architecture, integrated battery housing, and optional external battery modules ensure mission durations of up to two years. The system provides live Ethernet audio streaming, GPS‑based PPS time synchronisation, and flexible sensor interfacing via RS‑232. Rated to 6000 m depth and pressure‑tested to industry standards, it delivers reliable performance for environmental monitoring, marine biology, and leakage detection applications.

Key Features

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TB

Secure, onboard storage

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kSPS

Data sampling rate

Construction

Titanium Grade 5

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m

Depth rating

Compliance

Pressure tested according API 17F

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Up to four channels of simultaneous sampling

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years

Up to two years continuous logging depending on sampling regime

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Bit

Sampling resolution

Customisation

Programmable input amplifier and recording schedule

Engineered for the deepest missions, Sono.Vault SubMAReS delivers reliable multi‑year acoustic recording and live streaming with up to 36 TB storage and uncompromised 24‑bit fidelity.

Unlock the full potential of deep‑sea acoustic monitoring with Sono.Vault SubMAReS. Capture high‑resolution data for years, stream live when needed, and rely on unmatched storage, precision, and durability. Choose the system engineered for the world’s most demanding underwater missions.

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FAQs

Interested in this product?

Below you’ll find answers to the questions we’re asked most often. If your query isn’t covered, get in touch and we’ll provide the guidance you need.

With its low‑power design and internal battery housing, the system supports up to two years of continuous operation, extendable with external battery containers.

The base system includes up to 4 TB, but storage can be expanded to 36 TB, enabling long‑term, high‑resolution multi‑channel recordings.

Yes. Sono.Vault SubMAReS supports up to four fully synchronised channels at full sampling rate and 24‑bit resolution.

Absolutely. The system is rated to 6000 metres (approx 19,000 ft) depth, pressure‑tested according to API 17F, and delivered with a certified test protocol.

Both. It offers live Ethernet audio streaming for real‑time monitoring as well as long‑term autonomous recording with large onboard storage.

Develogic’s Sono.Vault SubMAReS acoustic recorders have been deployed as part of an environmental impact assessment (EIA) in Japan’s Exclusive Economic Zone, supporting scientific evaluation of the ecological effects of polymetallic nodule extraction at extreme depths – months before Japan’s most significant deep-sea mineral discovery became public.

The assessment is led by the University of Tokyo and Deep Reach Technology, Inc., targeting nodule fields in the seabed around Minamitorishima Island at depths between 5,200 and 5,700 metres. Develogic’s systems were in the water as part of the baseline science phase: the environmental groundwork laid before extraction activities can be sanctioned. That work proved prescient.

In June 2024, the University of Tokyo and the Nippon Foundation jointly announced the discovery of a nodule deposit covering approximately 10,000 square kilometres of seabed, estimated to contain around 230 million tonnes of polymetallic material – including cobalt reserves equivalent to 75 years of Japan’s national consumption. The scale of the find has since accelerated Japan’s timeline toward commercial extraction, with harvester trials anticipated in 2025 and production potentially beginning as early as 2026.

The EIA follows an ecosystem-based management approach in alignment with International Seabed Authority guidelines, with a mandate to establish rigorous environmental baselines before any extraction activities proceed. Develogic’s Sono.Vault SubMAReS systems capture continuous underwater soundscapes and detect marine mammals across the project area. Passive acoustic monitoring of this kind is a foundational requirement in modern deep-sea EIA methodology: sound propagates effectively through water at depth where light does not, making acoustic data one of the most reliable proxies for biological activity and ecosystem health. The datasets generated inform assessments of noise impact, species presence, and habitat disturbance across the full operational lifecycle of the programme.

For Develogic, the project demonstrates the versatility of the Sono.Vault platform. Originally developed for long-duration, autonomous deep-sea acoustic recording, the SubMAReS variant is purpose-built for marine mammal monitoring, with optimised frequency response, on-board detection algorithms, and deployment endurance suited to remote, high-pressure environments. At depths exceeding 5,000 metres, the engineering tolerances involved are considerable: pressure housings, connectors, and electronics must perform reliably over extended periods without maintenance access or intervention.

The Japan EEZ programme positions Develogic as a credible partner for the environmental science dimension of deep-sea resource projects — not as a retrospective supplier, but as part of the scientific infrastructure from the outset. As regulatory frameworks for deep-sea mining mature globally, that early-stage involvement becomes increasingly significant. The data Develogic’s systems collect does not simply satisfy a compliance requirement: it forms part of the scientific record on which extraction decisions, and the public accountability that surrounds them, will ultimately depend.Develogic’s Sono.Vault SubMAReS acoustic recorders have been deployed as part of an environmental impact assessment (EIA) in Japan’s Exclusive Economic Zone, supporting scientific evaluation of the ecological effects of polymetallic nodule extraction at extreme depths — months before Japan’s most significant deep-sea mineral discovery became public.

The assessment is led by the University of Tokyo and Deep Reach Technology, Inc., targeting nodule fields in the seabed around Minamitorishima Island at depths between 5,200 and 5,700 metres. Develogic’s systems were in the water as part of the baseline science phase: the environmental groundwork laid before extraction activities can be sanctioned. That work proved prescient. In June 2024, the University of Tokyo and the Nippon Foundation jointly announced the discovery of a nodule deposit covering approximately 10,000 square kilometres of seabed, estimated to contain around 230 million tonnes of polymetallic material — including cobalt reserves equivalent to 75 years of Japan’s national consumption. The scale of the find has since accelerated Japan’s timeline toward commercial extraction, with harvester trials anticipated in 2025 and production potentially beginning as early as 2026.

The EIA follows an ecosystem-based management approach in alignment with International Seabed Authority guidelines, with a mandate to establish rigorous environmental baselines before any extraction activities proceed. Develogic’s Sono.Vault SubMAReS systems capture continuous underwater soundscapes and detect marine mammals across the project area. Passive acoustic monitoring of this kind is a foundational requirement in modern deep-sea EIA methodology: sound propagates effectively through water at depth where light does not, making acoustic data one of the most reliable proxies for biological activity and ecosystem health. The datasets generated inform assessments of noise impact, species presence, and habitat disturbance across the full operational lifecycle of the programme.

For Develogic, the project demonstrates the versatility of the Sono.Vault platform. Originally developed for long-duration, autonomous deep-sea acoustic recording, the SubMAReS variant is purpose-built for marine mammal monitoring, with optimised frequency response, on-board detection algorithms, and deployment endurance suited to remote, high-pressure environments. At depths exceeding 5,000 metres, the engineering tolerances involved are considerable: pressure housings, connectors, and electronics must perform reliably over extended periods without maintenance access or intervention.

The Japan EEZ programme positions Develogic as a credible partner for the environmental science dimension of deep-sea resource projects — not as a retrospective supplier, but as part of the scientific infrastructure from the outset. As regulatory frameworks for deep-sea mining mature globally, that early-stage involvement becomes increasingly significant. The data Develogic’s systems collect does not simply satisfy a compliance requirement: it forms part of the scientific record on which extraction decisions, and the public accountability that surrounds them, will ultimately depend.