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Paper Citation Record · LEDGER

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks

As of 19 August 2026, this Paper Citation Record lists 61 of 61 outbound references and 0 inbound Pith citation observations for arXiv:2607.06456.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2607.06456 v2

Coverage vector

measured 61 of 61 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-07-14T16:02:08.139778Z

measured 61 of 61 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

61 of 61 outbound references displayed

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Outbound references

Observation 78078dde-b690-4b6e-b1e1-be7a35c3b6ee · outbound

This paper cites Edge intelligence through in-sensor and near-sensor computing for the artificial intelligence of things,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Edge intelligence through in-sensor and near-sensor computing for the artificial intelligence of things,

Reference 1

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Observation 0b83ba21-322e-48c5-b556-0ced1dfd92cd · outbound

This paper cites Networks of spiking neurons: the third generation of neural network models,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Networks of spiking neurons: the third generation of neural network models,

Reference 2

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Observation 1d644580-c971-4c85-967c-477614eabc0c · outbound

This paper cites A Survey of Neuromorphic Computing and Neural Networks in Hardware.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A Survey of Neuromorphic Computing and Neural Networks in Hardware

Reference 3

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Observation 1005e1a6-f0b9-4183-b6e3-976e391f663e · outbound

This paper cites Loihi: A Neuromorphic Manycore Processor with On-Chip Learning,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Loihi: A Neuromorphic Manycore Processor with On-Chip Learning,

Reference 4

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Observation a96db352-1710-4609-888a-3b68f76adcfc · outbound

This paper cites TrueNorth: Design and Tool Flow of a 65 mW 1 Million Neuron Programmable Neurosynaptic Chip,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks TrueNorth: Design and Tool Flow of a 65 mW 1 Million Neuron Programmable Neurosynaptic Chip,

Reference 5

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Observation e4f8eef8-4407-4781-8113-9f0c3bcc72d4 · outbound

This paper cites SpiNNaker: A 1-W 18-Core System-on-Chip for Massively-Parallel Neural Network Simulation,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks SpiNNaker: A 1-W 18-Core System-on-Chip for Massively-Parallel Neural Network Simulation,

Reference 6

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Observation e33eb35b-8734-42e3-a25c-c20f216a555a · outbound

This paper cites A 65k-neuron 73-Mevents/s 22-pJ/event asynchronous micro-pipelined integrate-and-fire array transceiver,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A 65k-neuron 73-Mevents/s 22-pJ/event asynchronous micro-pipelined integrate-and-fire array transceiver,

Reference 7

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Observation 0bafc7e1-7fe8-4e4a-8c37-0a3f67117c7d · outbound

This paper cites Spike timing–dependent plasticity: a hebbian learning rule,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Spike timing–dependent plasticity: a hebbian learning rule,

Reference 8

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Observation 89f5d90a-3426-4578-9cf1-d8f3b071882a · outbound

This paper cites Neuromorphic electronic systems,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Neuromorphic electronic systems,

Reference 9

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Observation 1b43e79e-daae-4532-8744-da7002ef791c · outbound

This paper cites Memory and Information Processing in Neuromorphic Systems,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Memory and Information Processing in Neuromorphic Systems,

Reference 10

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Observation b0ae036f-50c8-48c1-8de5-fece32ea9299 · outbound

This paper cites A reconfigurable on-line learning spiking neuromorphic processor comprising 256 neurons and 128k synapses,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A reconfigurable on-line learning spiking neuromorphic processor comprising 256 neurons and 128k synapses,

Reference 11

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Observation bb1e330b-a295-4245-be8b-07295aa78306 · outbound

This paper cites Exploiting inherent error resiliency of deep neural networks to achieve extreme energy efficiency through mixed-signal neurons,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Exploiting inherent error resiliency of deep neural networks to achieve extreme energy efficiency through mixed-signal neurons,

Reference 12

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Observation be00893e-f213-4e06-882f-654db0bc5e46 · outbound

This paper cites Neuromorphic analog circuits for robust on-chip always-on learning in spiking neural networks.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Neuromorphic analog circuits for robust on-chip always-on learning in spiking neural networks

Reference 13

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Observation a7064443-4751-43f9-b27d-e638b11f79d3 · outbound

This paper cites Variation-tolerant hardware synthesis of spiking neural networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Variation-tolerant hardware synthesis of spiking neural networks,

Reference 14

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Observation 0bc1fefd-68fa-431a-a06d-da3f1a83e971 · outbound

This paper cites Training Spiking Neural Networks Using Lessons From Deep Learning.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Training Spiking Neural Networks Using Lessons From Deep Learning

Reference 15

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Observation db675df1-e6cb-4c96-b21e-ec1d221a4985 · outbound

This paper cites Shaping the learning landscape in neural networks around wide flat minima,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Shaping the learning landscape in neural networks around wide flat minima,

Reference 16

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Observation 807393f7-5f52-4d73-98bf-1d5f993bd8ac · outbound

This paper cites Gerstner, W.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Gerstner, W

Reference 17

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Observation 5264294e-9643-4051-bd81-abc7c4a23fe5 · outbound

This paper cites Genesis: A system for simulating neural networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Genesis: A system for simulating neural networks,

Reference 18

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Observation e4e5ce12-b017-4ec9-8f4a-4c9976b1e912 · outbound

This paper cites The neuron simulation environment,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks The neuron simulation environment,

Reference 19

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Observation b22820b5-252f-43d2-8fac-39f582f5ac67 · outbound

This paper cites Ermentrout, Simulating, Analyzing, and Animating Dynamical Systems: A Guide to XPPAUT for Researchers and Students.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Ermentrout, Simulating, Analyzing, and Animating Dynamical Systems: A Guide to XPPAUT for Researchers and Students

Reference 20

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Observation 4590ca59-de5f-4e29-9c50-8c52077be7d3 · outbound

This paper cites Csim: A neural simulation environment for modeling the dynamics of spiking neuron networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Csim: A neural simulation environment for modeling the dynamics of spiking neuron networks,

Reference 21

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Observation 3f7780c1-aa36-4ce4-bcc4-e993802c8b01 · outbound

This paper cites Exact simulation of integrate-and-fire models with synaptic conductances,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Exact simulation of integrate-and-fire models with synaptic conductances,

Reference 22

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Observation f2161550-f972-4d3f-bace-df01c81cf50c · outbound

This paper cites Nest (neural simulation tool),.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Nest (neural simulation tool),

Reference 23

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Observation 82472ba6-5b5d-4317-b0c5-95e23b17d227 · outbound

This paper cites On the performance of voltage stepping for the simulation of adaptive, nonlinear integrate-and-fire neuronal networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks On the performance of voltage stepping for the simulation of adaptive, nonlinear integrate-and-fire neuronal networks,

Reference 24

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Observation eaae0608-d6eb-4293-80a2-d71ec7337207 · outbound

This paper cites A large-scale model of the functioning brain,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A large-scale model of the functioning brain,

Reference 25

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Observation c187808b-5321-4c80-a77f-a45489cea31c · outbound

This paper cites Ncs: A framework for simulating large- scale, biologically realistic neural networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Ncs: A framework for simulating large- scale, biologically realistic neural networks,

Reference 26

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Observation e6998c90-b40b-4541-b95a-2d7f771e8db3 · outbound

This paper cites Mosaic: in-memory computing and routing for small-world spike-based neuromorphic systems,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Mosaic: in-memory computing and routing for small-world spike-based neuromorphic systems,

Reference 27

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Observation 694bc758-787e-4e75-a786-51d610076320 · outbound

This paper cites The neuron book,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks The neuron book,

Reference 28

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Observation 6115ae4b-9dfd-4368-8201-a4b863ac106c · outbound

This paper cites Simulation of networks of spiking neurons: A review of tools and strategies,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Simulation of networks of spiking neurons: A review of tools and strategies,

Reference 29

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Observation af8d951e-c51a-40be-9d16-ac4e6d48b2b4 · outbound

This paper cites A floating gate and its application to memory devices,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A floating gate and its application to memory devices,

Reference 30

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Observation 7d2ead27-22fe-4cc1-82f1-9426bc1d34cf · outbound

This paper cites A floating-gate MOS learning array with locally computed weight updates,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A floating-gate MOS learning array with locally computed weight updates,

Reference 31

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Observation caa8b22d-19d0-44eb-b951-e698b6fb04d7 · outbound

This paper cites Floating Gate Synapses With Spike-Time- Dependent Plasticity,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Floating Gate Synapses With Spike-Time- Dependent Plasticity,

Reference 32

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Observation 0892a519-552b-4f21-8bba-3fb4c91251de · outbound

This paper cites Temporally learning floating-gate VLSI synapses,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Temporally learning floating-gate VLSI synapses,

Reference 33

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Observation c232c5e2-0517-4bbf-9486-25184a86bdb0 · outbound

This paper cites Implementation of multilayer perceptron network with highly uniform passive memristive crossbar circuits,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Implementation of multilayer perceptron network with highly uniform passive memristive crossbar circuits,

Reference 34

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Observation ba2fb103-ce6a-448c-aa88-6cd17772cda3 · outbound

This paper cites An analytical MOS transistor model valid in all regions of operation and dedicated to low-voltage and low-current applications,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks An analytical MOS transistor model valid in all regions of operation and dedicated to low-voltage and low-current applications,

Reference 35

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Observation b70e2dbc-5844-4968-aa5a-93e12c4cbe11 · outbound

This paper cites Modeling, simulation and implementation of circuit elements in an open-source tool set on the FPAA,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Modeling, simulation and implementation of circuit elements in an open-source tool set on the FPAA,

Reference 36

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Observation bcd836fc-95ab-419e-8724-d3ea91cbcce1 · outbound

This paper cites Analysis and verilog-a modeling of floating-gate transistors,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Analysis and verilog-a modeling of floating-gate transistors,

Reference 37

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Observation 66694bb1-a495-4f04-a8be-b568da5f53c6 · outbound

This paper cites Integrated Floating-Gate Programming Environment for System-Level ICs,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Integrated Floating-Gate Programming Environment for System-Level ICs,

Reference 38

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Observation 7dfe9a24-8769-4da1-b335-d3fbe4c53606 · outbound

This paper cites Modeling and analysis of analog non-volatile devices for compute-in-memory applications,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Modeling and analysis of analog non-volatile devices for compute-in-memory applications,

Reference 39

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:c8e235f9231469b76f3748b281ebe583c8b7cc8a25bde187591ac3f2d65231c5

Observation bee257a5-c296-4ac2-82d4-2325ff4fdf47 · outbound

This paper cites 10 × 10nm 2 hf/hfo x crossbar resistive ram with excellent performance, reliability and low-energy operation,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks 10 × 10nm 2 hf/hfo x crossbar resistive ram with excellent performance, reliability and low-energy operation,

Reference 40

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:83b92b3e560dbb0d9bc7e976962265e678f065420bcc49e9b5089fb2d747da17

Observation c40fd7c9-26ec-4344-963c-040fd888a524 · outbound

This paper cites Influence of oxygen vacancies in ald hfo2-x thin films on non-volatile resistive switching phenomena with a ti/hfo2-x/pt structure,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Influence of oxygen vacancies in ald hfo2-x thin films on non-volatile resistive switching phenomena with a ti/hfo2-x/pt structure,

Reference 41

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Observation 2c1f5a5b-54b0-4fbd-b03a-e78962588dc7 · outbound

This paper cites A low-temperature-grown tio2-based device for the flexible stacked rram application,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A low-temperature-grown tio2-based device for the flexible stacked rram application,

Reference 42

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:9299d5f6901d2e8506143d686e669675499d9c1d6f6cf3318da18d397de99c37

Observation 33181c70-82ba-49d9-ba7c-d0ce1454713b · outbound

This paper cites Characterization and modeling of multilevel analog reram synapses in the sky130 process,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Characterization and modeling of multilevel analog reram synapses in the sky130 process,

Reference 43

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:30efeedeb6374cbc98e294379db84dc4ec5ed2f93a2526c5504c8f2f5cbd2842

Observation e3c7f204-db9a-48bf-8dbb-d493c5f52941 · outbound

This paper cites Neuromorphic Silicon Neuron Circuits,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Neuromorphic Silicon Neuron Circuits,

Reference 44

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:2f820e8fb9eccbbaae359a9de2b4c4d740f0f4b61307e491981d06bcf5ed17c5

Observation 92a4605a-64d7-421d-ab2e-1d59412e481e · outbound

This paper cites Mead, Analog VLSI and neural systems.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Mead, Analog VLSI and neural systems

Reference 45

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:157c0cecd685304b8da64402054510345d10be6dcf5fb8d2e6920391fd554292

Observation 79849086-f879-467b-bf17-2d365792e273 · outbound

This paper cites A low-power adaptive integrate-and-fire neuron circuit,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A low-power adaptive integrate-and-fire neuron circuit,

Reference 46

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:d987275a2688d23e80887a5e9aa6527f36a92f12bcb42523d8dc6f71aa3c2d56

Observation c87dca8e-af15-4cc0-b315-aae99a00afb2 · outbound

This paper cites Hardware aware modeling of mixed-signal spiking neural network,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Hardware aware modeling of mixed-signal spiking neural network,

Reference 47

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Observation 16ef1aa6-4967-447a-a059-7249e0dcd12b · outbound

This paper cites A quantitative description of membrane current and its application to conduction and excitation in nerve,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A quantitative description of membrane current and its application to conduction and excitation in nerve,

Reference 48

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:69d9314aa0fbff7dc3d5a565a68e873c4014c8218edad0ab4aa0e8b26024078a

Observation e17fec7c-8fd0-483b-8808-50521bba7615 · outbound

This paper cites Hodgkin–Huxley Neuron and FPAA Dynamics,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Hodgkin–Huxley Neuron and FPAA Dynamics,

Reference 49

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:a372d2e5359140e0e27fca7ef6ccd0da8db69c70090ac6c6a49a1327e35e9898

Observation 7dd3fe5d-7985-4f10-8525-6c934320f8e5 · outbound

This paper cites Backpropagation through time and the brain,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Backpropagation through time and the brain,

Reference 50

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Observation 03ae3939-deae-456e-b64e-20ae43091a20 · outbound

This paper cites Surrogate Gradient Learning in Spiking Neural Networks.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Surrogate Gradient Learning in Spiking Neural Networks

Reference 51

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:516a2e0c55ede335892274e684bff17d67ae1614408448e67bd0cb10f3dc34fc

Observation 1a41b9dd-4244-4735-ab49-debc12455dcc · outbound

This paper cites Converting Static Image Datasets to Spiking Neuromorphic Datasets Using Saccades,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Converting Static Image Datasets to Spiking Neuromorphic Datasets Using Saccades,

Reference 52

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Observation 92a5f96a-2424-49e6-8423-fa7ced3b836d · outbound

This paper cites A low power, fully event-based gesture recognition system,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks A low power, fully event-based gesture recognition system,

Reference 53

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Observation aefc1846-5c3e-4945-a474-a02aa48ca6e4 · outbound

This paper cites The heidelberg spiking data sets for the systematic evaluation of spiking neural networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks The heidelberg spiking data sets for the systematic evaluation of spiking neural networks,

Reference 54

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:8a4d7e1eab9de0a34f5e2bdc26ca3b5d4a5ed2759279912d5ad56a33fab6e1e4

Observation f421587a-07e5-4d88-9822-c9a12370ccb7 · outbound

This paper cites Deep Learning for Event-based Vision: A Comprehensive Survey and Benchmarks.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Deep Learning for Event-based Vision: A Comprehensive Survey and Benchmarks

Reference 55

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Observation ddd740d2-feb1-4fe7-84b0-1ce715941f5b · outbound

This paper cites Tonic: event-based datasets and transformations.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Tonic: event-based datasets and transformations

Reference 56

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source=pdf_text observed=2026-07-14T16:02:08.139778Z digest=sha256:c7637ccb17365e252bff0bb68a5372506cc6bfe15c0201921e5e737538a5706c

Observation 485f12cd-f5e5-4138-bc9e-9ecc5fb82142 · outbound

This paper cites Performance comparison of dvs data spatial downscaling methods using spiking neural networks,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Performance comparison of dvs data spatial downscaling methods using spiking neural networks,

Reference 57

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Observation 008824dd-d24e-47c2-9eba-8b07c35bb299 · outbound

This paper cites Sana-fe: Simulating advanced neuromorphic architectures for fast exploration,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Sana-fe: Simulating advanced neuromorphic architectures for fast exploration,

Reference 58

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Observation f8f8b53a-5c4f-4911-8a7b-e261edd219cf · outbound

This paper cites Open-source floating-gate cell for analogue synapses,.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Open-source floating-gate cell for analogue synapses,

Reference 59

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Observation 6d74ee39-b9fb-44b6-9669-ade7f5626689 · outbound

This paper cites Standard LIF neuron M84M1 M M3M2 C1 M5 M6 M9 M7 VspikeIleak Iin Figure S1: Standard LIF neuron circuit used in the manuscript The LIF neuron circuit, shown in Fig.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Standard LIF neuron M84M1 M M3M2 C1 M5 M6 M9 M7 VspikeIleak Iin Figure S1: Standard LIF neuron circuit used in the manuscript The LIF neuron circuit, shown in Fig

Reference 60

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Observation cadf7948-f1b4-439e-a704-63b0cceee674 · outbound

This paper cites an unresolved cited work.

A Hardware-Aware Open-Source Framework for Design Space Exploration of Mixed-Signal Spiking Neural Networks Unresolved cited work

Reference 61

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Pith citing papers

No inbound Pith citation observations are available.