Mosaic SoC Secures $3.8M to Give Tiny Devices Big Spatial Awareness Without Draining Power

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Deeptech semiconductor startup Mosaic SoC has secured $3.8 million in pre seed funding to develop a new class of low power chips designed to bring real time spatial awareness to everyday devices. The company is targeting a fundamental limitation in modern hardware, enabling devices to not just capture data but actively understand their surroundings without compromising battery life or form factor.

Backing for a New Chip Architecture

The funding round was led by Founderful, with participation from Kick Foundation. The investment supports Mosaic SoC’s efforts to scale development of its perception chips and expand its platform capabilities.

The company has already demonstrated early commercial traction, generating revenue through engineering contracts with original design manufacturer partners. As its chips move toward production, it expects to transition toward scalable product based revenues.

Rethinking Intelligence at the Edge

Modern devices are increasingly equipped with cameras and sensors, yet they often lack the ability to interpret this data efficiently. Current solutions rely on power intensive processors and graphics units, which limit their use in compact and wearable devices.

Mosaic SoC is addressing this gap by building dedicated perception chips that operate within tight energy constraints. These chips are designed to process visual and positional data in real time, enabling devices to understand their environment without relying on heavy computing stacks.

This approach is particularly relevant for emerging categories such as augmented reality glasses, mobile devices, and always on AI systems.

Enabling Spatially Aware Devices

Founded by Moritz Scherer and Alfio Di Mauro, both PhD graduates from ETH Zurich, the company combines expertise in system on chip architecture and embedded systems.

Its chips allow devices to build a local understanding of their surroundings, including mapping spaces and identifying objects in real time. This capability opens up a range of applications, from smart glasses that can seamlessly integrate into everyday life to smartphones that can track and respond to specific events without draining battery power.

For example, devices can remember where objects were last seen, generate floor plans instantly, or trigger actions only when certain conditions are met.

A New Architectural Approach

Mosaic SoC’s key differentiation lies in its architecture. While many competing solutions rely on traditional processor designs, the company uses a proprietary multi core system with eight or more cores optimised for performance per watt.

This design enables continuous perception at low energy consumption, making always on functionality viable for devices with limited power budgets. By focusing on efficiency at the hardware level, the company aims to unlock new possibilities in device design and usability.

Beyond Hardware to Platform

While the chip itself is central to Mosaic SoC’s offering, the company is also building a broader ecosystem around its technology. This includes AI deployment toolchains and compilers that allow developers to optimise applications for its architecture.

The long term vision is to evolve from a chip manufacturer into a platform provider, enabling developers to build, deploy, and scale applications directly on its silicon.

Unlocking the Future of Spatial Computing

The demand for devices that can interpret and respond to their environment is growing rapidly. As industries move toward more immersive and intelligent experiences, the need for efficient on device processing becomes increasingly important.

Mosaic SoC is positioning itself at the forefront of this shift by delivering the foundational technology required for spatial computing. Its chips aim to make advanced perception capabilities accessible in compact, energy efficient devices.

With fresh funding, early customer engagement, and a clear technical vision, the company is taking steps toward enabling the next generation of smart devices that can truly understand the world around them.

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