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Anabrid

Anabrid develops Analog-Digital Hybrid Computing systems that merge the speed and efficiency of analog computation with the accessibility of digital platforms. Their patented technology delivers ultra-fast, energy-efficient supercomputers suitable for real-time applications like motion control and complex system modeling. This hybrid approach offers superior performance and lower operational costs compared to conventional fully digital architectures.

Berlin, GermanyFounded 202018700+ followers
Updated 4 months ago

Funding

$30K 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.

Funding rounds are not available yet.

Founders

Product

Problem

Traditional computing architectures face limitations in processing complex mathematical problems, particularly those involving real-world analog data, leading to high energy consumption and slower processing speeds. Converting analog data to digital format for processing introduces inefficiencies and delays, hindering real-time applications.

Solution

anabrid develops LUCIDAC, a hybrid analog-digital computer designed to work alongside digital systems, directly processing analog data to solve complex mathematical problems with greater speed and energy efficiency. By leveraging analog computing principles, LUCIDAC bypasses the energy-intensive conversion processes required by purely digital systems, enabling faster computation and reduced power consumption. The system automatically constructs analog electronic circuits based on mathematical equations under digital control, offering a flexible and precise computational approach. LUCIDAC provides both analog results, ideal for real-time control systems, and converted digital results for seamless integration into hybrid environments.

Target Audience

The primary target audience includes organizations and researchers in fields such as AI, climate modeling, automation, and real-time control systems seeking high-performance, energy-efficient computing solutions.

Features

  • Fully reconfigurable analog computer that operates in conjunction with digital systems
  • Direct processing of analog data, eliminating energy-intensive conversion steps
  • Automated construction of analog circuits from mathematical equations using a digital controller
  • Up to 1,000x faster computation compared to digital, algorithm-based calculations
  • Requires up to 10,000x less energy than equivalent digital calculations
  • Dual capability: provides both analog and digital results
  • Suitable for real-time control systems, signal processing, AI acceleration, and climate modeling
This profile is AI-generated and may contain inaccuracies.