Related Experiment Video
Updated: Jan 16, 2026

Author Spotlight: Enhancing Understanding and Treatment Strategies with the NEC-on-a-Chip Model
Published on: July 28, 2023
Demonstration of transformer-based ALBERT model on a 14nm analog AI inference chip
An Chen1, Stefano Ambrogio2, Pritish Narayanan2
1IBM Research - Almaden, San Jose, CA, USA. chenan@us.ibm.com.
None:
A Lite Bidirectional Encoder Representations from Transformers model is demonstrated on an analog inference chip fabricated at 14nm node with phase change memory. The 7.1 million unique analog weights shared across 12 layers are mapped to a single chip, accurately programmed into the conductance of 28.3 million devices, for this first analog hardware demonstration of a meaningfully large Transformer model. The implemented model achieved near iso-accuracy on the General Language Understanding Evaluation benchmark of seven tasks, despite the presence of weight-programming errors, hardware imperfections, readout noise, and error propagation. The average hardware accuracy was only 1.8% below that of the floating-point reference, with several tasks at full iso-accuracy. Careful fine-tuning of model weights using hardware-aware techniques contributes an average hardware accuracy improvement of 4.4%. Accuracy loss due to conductance drift - measured to be roughly 5% over 30 days - was reduced to less than 1% with a recalibration-based "drift compensation" technique.
Related Concept Videos
Equivalent Circuits for Practical Transformers
In a practical transformer, each winding exhibits resistance and leakage reactance. The...
Transformers with Off-Nominal Turns Ratios
The Ideal Transformer
Ampere's Law forms the basis of understanding the magnetic field within the transformer. It states that the integral of the magnetic field intensity's tangential...
Ampere-Maxwell's Law: Problem-Solving
To solve the problem, we can use the equations from the analysis of an RC circuit and Maxwell's version of Ampère's law.
For the first part of the...
Types Of Transformers
If the ratio of the number of turns in the secondary winding to that of the primary winding is greater than one, then the transformer is said to be a step-up transformer. In a step-up transformer, the voltage at the secondary winding is greater than the voltage applied at the primary winding.
However, if this ratio is less than one, the transformer is said to be a step-down...
Source Transformation for AC Circuits
