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neuromorphic-chip-design

Design and understand neuromorphic chips - brain-inspired processors that compute like neurons, achieving AI with a fraction of the energy of traditional computers.

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¿Qué es esto?

🎯 Consejos del simulador

📚 Glosario

Neuromorphic
Arquitectura informática inspirada en el cerebro
SNN
Red neuronal de picos
Spike
Evento neuronal discreto (potencial de acción)
LIF
Modelo de neurona Leaky Integrate-and-Fire
STDP
Plasticidad dependiente del momento del pico
EventDriven
Calcular solo cuando ocurren eventos
Synapse
Conexión entre neuronas
DVS
Sensor de visión dinámica (cámara de eventos)
InMemoryComputing
Computación donde se almacenan los datos.
EdgeAI
Procesamiento de IA en el dispositivo, no en la nube

🏆 Figuras clave

Carver Mead

Acuñado 'neuromórfico', campo pionero

Giacomo Indiveri

Líder en ingeniería neuromórfica

Steve Furber

Líder del proyecto SpiNNaker

Mike Davies

Líder en fichas de Loihi

Dharmendra Modha

Líder del proyecto TrueNorth

🎓 Recursos de aprendizaje

💬 Mensaje a los estudiantes

{'encouragement': "You're learning about chips that could run AI on a watch battery. Neuromorphic computing represents a fundamental rethinking of how computers should work.", 'reminder': "The brain computes with 20 watts what takes data centers megawatts. Nature solved efficient computing - we're finally learning to copy it.", 'action': 'Build a spiking neural network in the simulator. Watch the spikes propagate. See how learning changes connection strengths.', 'dream': 'A chip designer from Kenya might create the next breakthrough neuromorphic architecture. An algorithm researcher from Nigeria might solve the training problem. The future of computing needs global minds.', 'wiaVision': 'WIA Pin Code believes understanding brain-inspired computing should be accessible to everyone. The computers of the future might think more like you do.'}

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