Seurat offers 3D printed metal parts manufacturing using its Area Printing technology, enabling faster production speeds and lower part costs compared to traditional methods. Their process focuses on quality control and repeatability, allowing customers to scale production of complex metal components. Seurat aims to provide a future-ready manufacturing solution with reduced energy demands and emissions.
Funding
$99M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.



CINFounders
Product
Problem
Traditional metal additive manufacturing methods often struggle to achieve the throughput and cost-effectiveness required for high-volume production, limiting their applicability across various industries. Existing solutions may also present challenges in maintaining consistent quality and repeatability at scale.
Solution
Seurat Technologies addresses these limitations with its Area Printing® technology, a metal additive manufacturing solution designed for high-volume production. As a contract manufacturer, Seurat focuses on producing high-quality metal parts at competitive prices, enabling customers to scale their operations without compromising on quality or cost. Seurat's approach aims to reduce energy demands and emissions, offering a more sustainable manufacturing solution. The company's vertically integrated model brings manufacturing back to the U.S., strengthening domestic industrial capabilities and supply chain resilience.
Target Audience
Seurat's primary customers are OEMs in the consumer electronics, automotive, energy, and aerospace sectors seeking cost-effective, high-volume metal part manufacturing solutions.
Features
- Area Printing® technology enables faster production speeds compared to traditional LPBF processes.
- Focus on process control and repeatability to ensure consistent part quality across entire production runs.
- Capability to manufacture parts from a range of meltable materials, with initial focus on common steel, nickel, and aluminum alloys.
- Scalable manufacturing processes designed to meet the demands of high-volume production.
- Reduced energy demands and emissions compared to traditional manufacturing methods.
- Production Qualification Program to ensure parts meet environmental, quality, cost, and throughput targets.
- Localized factories for faster turnaround times and increased supply chain resilience.