Thank you

When energy is no longer the trade-off, what will you create?

Innovation demands processors that can keep up. Readily available processors are built on technology that is over 70 years old. This limits innovation.

To meet modern demands, processors must be entirely reimagined, breaking free from the constraints that have plagued computing for decades.

This spatial dataflow architecture supports general-purpose computing, without being bound by the constraints of traditional processor designs or limited by fixed-purpose accelerators.

The Electron E1 processor combines efficiency, high performance, and general-purpose programmability to unlock new use cases across many industries, including industrial automation, space and defense, critical infrastructure, and wearables.

Experience unmatched results:

Benchmarks/data

Meet the first processor built for tomorrow

Electron E1: A new standard in energy efficiency

Removing the energy barrier for all applications.

-p-2000%201.avif)

Features/benefits

Familiar, general-purpose software programmability

Industrial automation systems often struggle with energy inefficiency, leading to higher maintenance cost and increased manual oversight. The Electron E1 general-purpose processor allows battery-operated vibration and acoustic sensors to perform local FFTs and predictive maintenance algorithms for years, eliminating the latency and cost of off-device communication. By enabling real-time data processing and predictive maintenance, our technology reduces manual oversight and improves operational efficiency.

.svg)

Power Management

By locally processing sensor data directly on the Fabric architecture, the Electron E1 eliminates the energy tax of off-device communication while providing real-time monitoring of critical infrastructure. Compared to specialized accelerators that only optimize isolated kernels, the Fabric architecture accelerates the entire application, allowing remote environmental sensors to perform significantly more compute while maintaining years of autonomous operation on a single battery.

.svg)

Fast on-chip memory

.svg)

Low-power RISC-V scalar core

.svg)

Package

Ultra-low-power flexible serial peripherals

Ultra-efficient operation via Efficient’s Fabric

Efficient Computer Electron E1 with Fabric architecture vs traditional SoCs

Stay updated with the latest articles

Latest resources

Monza: An Energy-Minimal, General-Purpose Dataflow System-on-Chip for the Internet of Things

RipTide: A programmable, energy-minimal dataflow compiler and architecture

Programmable, energy-minimal computer architectures

SNAFU: An Ultra-Low-Power, Energy-Minimal CGRA-Generation Framework and Architecture

MANIC: An Energy-Efficient Architecture for Ultra-Low-Power Embedded Systems

Intelligence Beyond the Edge: Inference on Intermittent Embedded Systems