Picture for Thomas Kämpfe

Thomas Kämpfe

FeBiM: Efficient and Compact Bayesian Inference Engine Empowered with Ferroelectric In-Memory Computing

Add code
Oct 25, 2024
Figure 1 for FeBiM: Efficient and Compact Bayesian Inference Engine Empowered with Ferroelectric In-Memory Computing
Figure 2 for FeBiM: Efficient and Compact Bayesian Inference Engine Empowered with Ferroelectric In-Memory Computing
Figure 3 for FeBiM: Efficient and Compact Bayesian Inference Engine Empowered with Ferroelectric In-Memory Computing
Figure 4 for FeBiM: Efficient and Compact Bayesian Inference Engine Empowered with Ferroelectric In-Memory Computing
Viaarxiv icon

A Remedy to Compute-in-Memory with Dynamic Random Access Memory: 1FeFET-1C Technology for Neuro-Symbolic AI

Add code
Oct 20, 2024
Figure 1 for A Remedy to Compute-in-Memory with Dynamic Random Access Memory: 1FeFET-1C Technology for Neuro-Symbolic AI
Figure 2 for A Remedy to Compute-in-Memory with Dynamic Random Access Memory: 1FeFET-1C Technology for Neuro-Symbolic AI
Figure 3 for A Remedy to Compute-in-Memory with Dynamic Random Access Memory: 1FeFET-1C Technology for Neuro-Symbolic AI
Viaarxiv icon

Reconfigurable Frequency Multipliers Based on Complementary Ferroelectric Transistors

Add code
Dec 29, 2023
Figure 1 for Reconfigurable Frequency Multipliers Based on Complementary Ferroelectric Transistors
Figure 2 for Reconfigurable Frequency Multipliers Based on Complementary Ferroelectric Transistors
Figure 3 for Reconfigurable Frequency Multipliers Based on Complementary Ferroelectric Transistors
Figure 4 for Reconfigurable Frequency Multipliers Based on Complementary Ferroelectric Transistors
Viaarxiv icon

A Homogeneous Processing Fabric for Matrix-Vector Multiplication and Associative Search Using Ferroelectric Time-Domain Compute-in-Memory

Add code
Sep 24, 2022
Figure 1 for A Homogeneous Processing Fabric for Matrix-Vector Multiplication and Associative Search Using Ferroelectric Time-Domain Compute-in-Memory
Figure 2 for A Homogeneous Processing Fabric for Matrix-Vector Multiplication and Associative Search Using Ferroelectric Time-Domain Compute-in-Memory
Figure 3 for A Homogeneous Processing Fabric for Matrix-Vector Multiplication and Associative Search Using Ferroelectric Time-Domain Compute-in-Memory
Figure 4 for A Homogeneous Processing Fabric for Matrix-Vector Multiplication and Associative Search Using Ferroelectric Time-Domain Compute-in-Memory
Viaarxiv icon

An Ultra-Compact Single FeFET Binary and Multi-Bit Associative Search Engine

Add code
Mar 15, 2022
Viaarxiv icon

Deep Random Forest with Ferroelectric Analog Content Addressable Memory

Add code
Oct 06, 2021
Figure 1 for Deep Random Forest with Ferroelectric Analog Content Addressable Memory
Figure 2 for Deep Random Forest with Ferroelectric Analog Content Addressable Memory
Figure 3 for Deep Random Forest with Ferroelectric Analog Content Addressable Memory
Figure 4 for Deep Random Forest with Ferroelectric Analog Content Addressable Memory
Viaarxiv icon

In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories

Add code
Nov 13, 2020
Figure 1 for In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories
Figure 2 for In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories
Figure 3 for In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories
Figure 4 for In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories
Viaarxiv icon