HashFly tests fruit fly brain plug-in to reduce Bitcoin mining energy use
HashFly has developed a browser plug-in that mimics a fruit fly's brain to perform Bitcoin hashing, reportedly using 30% less energy than standard GPUs. This innovation aims to address Bitcoin's enerโฆ
HashFly, a Londonโbased cryptoโtech startup, launched its โHashFlyโ browser experiment on Monday, claiming the first digital model of a fruitโfly brain can perform Bitcoin hashing more efficiently than conventional processors. The prototype runs as a browser plugโin and uses a neural network that mimics the fruit flyโs 100,000โneuron circuit to solve the proofโofโwork puzzles that secure the blockchain. In early tests, the model reportedly used 30 percent less energy per hash than a standard GPU, and the company says a future hardware version built from actual biological tissue could boost efficiency even further.
The experiment arrives amid growing scrutiny of Bitcoinโs energy footprint. Critics argue that the networkโs power use rivals that of small countries, prompting miners to seek greener solutions. Researchers have turned to neuromorphic computing โ hardware that imitates brain structures โ because the brain can process information with far less electricity than silicon chips. Fruit flies are a popular target; their brains are tiny, yet they perform complex tasks like navigation and memory with remarkable speed. By translating those neural pathways into a digital form, HashFly hopes to capture the same lowโpower advantage for cryptographic work. The project builds on earlier academic work that demonstrated simple neural nets could solve hash functions, and it follows a wave of biotech firms exploring bioโsilicon hybrids for data centers.
HashFlyโs initial results have drawn cautious interest from both the crypto community and the scientific field. Independent analysts say the energy savings are promising but note that the current model still lags behind ASIC miners in raw speed. The company plans to open the browser plugโin to a broader user base in the coming weeks, gathering performance data at scale. If the digital model proves viable, HashFly aims to partner with biotech labs to create a physical chip that integrates living neurons with silicon, a step that could redefine mining hardware. Success could lower Bitcoinโs carbon impact and spark a new niche for bioโcomputing, while failure would reinforce the dominance of traditional ASICs. The next month will reveal whether the fruitโfly brain can truly mine Bitcoin or remain a curious experiment.
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