An anatomically-structured spiking neural network that perceives, remembers, holds a thought, learns on instruction, and feels — every function tied to a named biological mechanism. Running, spiking, and verified on real silicon.
The brain's memory circuit: it keeps experiences distinct so they don't blur together, and completes a whole memory from a partial cue. This is how it stores and recalls.
The visual hierarchy that turns raw light into recognised objects. It learns to recognise what it sees, with dozens of distinct categories discriminated on the chip.
An auditory pathway for sound, and a Pāṇinian (Sanskrit-grammar) analyser that assigns the roles in a sentence — a sovereign, indigenous approach to language.
The brain's neuromodulatory chemistry, a dopamine reward system that learns value, and an amygdala that learns emotional associations from experience.
It holds a thought across time with no further input — active working memory, the way a prefrontal cortex sustains an idea while you act on it.
A cerebellar circuit that learns to predict and refine a movement and converges on it — the basis for natural, learned motion in the body.
Real spiking neurons with real synaptic plasticity (learning physically changes the synapses) — running today on hardware, with a custom Indian neuromorphic ASIC as the next step.
Silicon-verifiedKnowledge is held in the synapses, not in any external DRAM/HBM/GPU-RAM — and it survives a power-cut, so the brain keeps what it learned across shutdowns.
Power-off persistentA live camera feeds the perception pathway directly on hardware — the brain sees and reacts to the physical world in real time.
On hardwareThe internal implementation — the hardware design, the algorithms, and the learning machinery — is protected intellectual property, disclosed only under NDA. A live demonstration is offered for independent verification.