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Amir Zjajo
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2020 – today
- 2024
- [j18]Moamen El-Masry, Thilo Werner, Amir Zjajo, Robert Weigel:
Toward Efficient System-on-Module for Design-Space Exploration of Analog Spiking Neural Networks. IEEE Trans. Circuits Syst. I Regul. Pap. 71(8): 3538-3549 (2024) - 2023
- [c51]Moamen El-Masry, Taher Kourany, Rex Kho, Thilo Werner, Amir Zjajo, Robert Weigel:
Integrated System-on-Module for Design-Space Exploration of Spiking Neural Networks. AICAS 2023: 1-5 - 2020
- [c50]Amir Zjajo:
Dynamic Homeostatic Regulation in Energy-Efficient Time-Locked Neuromorphic Systems. BIBE 2020: 719-722
2010 – 2019
- 2019
- [c49]Shashanka Marigi Rajanarayana, Sumeet Kumar, Amir Zjajo, René van Leuken:
Towards Computationally-Efficient Cognitive Sensor Systems for Autonomous Vehicles. ICCI*CC 2019: 1-8 - [c48]Amir Zjajo:
Neurosynaptic Computational Elements for Adaptive Transient Synchrony: Biophysical Accuracy versus Hardware Complexity. IWCIA 2019: 3-8 - [c47]Amir Zjajo, Sumeet S. Kumar, Rene van Leuken:
Heterogeneous Activation Function Extraction for Training and Optimization of SNN Systems. AICAS 2019: 244-245 - [c46]Amir Zjajo, Sumeet S. Kumar, Rene van Leuken:
Towards Robust Inference of Biomedical Signals in Energy-Efficient Neuromorphic Networks. LifeTech 2019: 261-262 - 2018
- [j17]Amir Zjajo, Jaco Hofmann, Gerrit Jan Christiaanse, Martijn F. van Eijk, Georgios Smaragdos, Christos Strydis, Alexander de Graaf, Carlo Galuzzi, Rene van Leuken:
A Real-Time Reconfigurable Multichip Architecture for Large-Scale Biophysically Accurate Neuron Simulation. IEEE Trans. Biomed. Circuits Syst. 12(2): 326-337 (2018) - [c45]Andrei Ardelean, Amir Zjajo, Sumeet S. Kumar, Rene van Leuken:
Energy-efficient multipath ring network for heterogeneous clustered neuronal arrays. BHI 2018: 190-193 - [c44]Amir Zjajo, Johan Mes, Eralp Kolagasioglu, Sumeet S. Kumar, Rene van Leuken:
Uncertainty in Noise-Driven Steady-State Neuromorphic Network for ECG Data Classification. CBMS 2018: 434-435 - 2017
- [j16]Sumeet S. Kumar, Amir Zjajo, Rene van Leuken:
Immediate Neighborhood Temperature Adaptive Routing for Dynamically Throttled 3-D Networks-on-Chip. IEEE Trans. Circuits Syst. II Express Briefs 64-II(7): 782-786 (2017) - [j15]Sumeet S. Kumar, Amir Zjajo, René van Leuken:
Fighting Dark Silicon: Toward Realizing Efficient Thermal-Aware 3-D Stacked Multiprocessors. IEEE Trans. Very Large Scale Integr. Syst. 25(4): 1549-1562 (2017) - [c43]Amir Zjajo, Sumeet S. Kumar, René van Leuken:
Neuromorphic spike data classifier for reconfigurable brain-machine interface. NER 2017: 150-153 - [c42]Xuefei You, Amir Zjajo, Sumeet S. Kumar, Rene van Leuken:
Energy-efficient neuromorphic receptors for wide-range temporal patterns of post-synaptic responses. NORCAS 2017: 1-6 - [c41]Johan Mes, Ester Stienstra, Xuefei You, Sumeet S. Kumar, Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
Neuromorphic self-organizing map design for classification of bioelectric-timescale signals. SAMOS 2017: 113-120 - [c40]Haipeng Lin, Amir Zjajo, Rene van Leuken:
Digital spiking neuron cells for real-time reconfigurable learning networks. SoCC 2017: 163-168 - 2016
- [j14]Amir Zjajo:
Power-Efficiency of Signal Processing Circuits in Implantable Multichannel Brain-Machine Interface. J. Low Power Electron. 12(4): 342-351 (2016) - [c39]Amir Zjajo, Rene van Leuken:
A 41 μW real-time adaptive neural spike classifier. BHI 2016: 489-492 - [c38]Amir Zjajo, Rene van Leuken:
A 2.1 μW/channel current-mode integrated neural recording interface. BHI 2016: 505-508 - [c37]Gerrit Jan Christiaanse, Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
A real-time hybrid neuron network for highly parallel cognitive systems. EMBC 2016: 792-795 - [c36]Jaco Hofmann, Amir Zjajo, Carlo Galuzzi, René van Leuken:
Multi-chip dataflow architecture for massive scale biophysically accurate neuron simulation. EMBC 2016: 5829-5832 - [c35]Amir Zjajo, Santosh Astigimath, Rene van Leuken:
A 2.7μW 10b 640kS/s time-based A/D converter for implantable neural recording interface. ISCAS 2016: 1074-1077 - 2015
- [c34]Amir Zjajo, Carlo Galuzzi, René van Leuken:
Noise Analysis of Programmable Gain Analog to Digital Converter for Integrated Neural Implant Front End. BIODEVICES 2015: 5-12 - [c33]Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
Low Power Programmable Gain Analog to Digital Converter for Integrated Neural Implant Front End. BIOSTEC (Selected Papers) 2015: 17-32 - [c32]Amir Zjajo, René van Leuken:
Iterative learning cascaded multiclass kernel based support vector machine for neural spike data classification. CIBCB 2015: 1-6 - [c31]Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
Stochastic noise analysis of neural interface front end. ISCAS 2015: 169-172 - [c30]Sumeet S. Kumar, Amir Zjajo, Rene van Leuken:
Physical characterization of steady-state temperature profiles in three-dimensional integrated circuits. ISCAS 2015: 1969-1972 - [c29]Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
Sequential power per area optimization of multichannel neural recording interface based on dual quadratic programming. NER 2015: 9-12 - [c28]Sumeet S. Kumar, Amir Zjajo, René van Leuken:
Ctherm: An Integrated Framework for Thermal-Functional Co-simulation of Systems-on-Chip. PDP 2015: 674-681 - [c27]Kiki Wirianto, Amir Zjajo, Carlo Galuzzi, Rene van Leuken:
Multi-Domain SystemC model of 128-channel time-multiplexed neural interface front-end. SAMOS 2015: 295-302 - 2014
- [j13]Qin Tang, Javier Rodríguez, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Statistical Transistor-Level Timing Analysis Using a Direct Random Differential Equation Solver. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 33(2): 210-223 (2014) - [j12]Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Considering Crosstalk Effects in Statistical Timing Analysis. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 33(2): 318-322 (2014) - [j11]Sumeet S. Kumar, Arnica Aggarwal, Radhika Sanjeev Jagtap, Amir Zjajo, Rene van Leuken:
System Level Methodology for Interconnect Aware and Temperature Constrained Power Management of 3-D MP-SOCs. IEEE Trans. Very Large Scale Integr. Syst. 22(7): 1606-1619 (2014) - [j10]Amir Zjajo, Nick van der Meijs, Rene van Leuken:
Dynamic Thermal Estimation Methodology for High-Performance 3-D MPSoC. IEEE Trans. Very Large Scale Integr. Syst. 22(9): 1920-1933 (2014) - [c26]Martijn F. van Eijk, Carlo Galuzzi, Amir Zjajo, Georgios Smaragdos, Christos Strydis, Rene van Leuken:
ESL design of customizable real-time neuron networks. BioCAS 2014: 671-674 - [c25]Kristof Blutman, Jan A. Angevare, Amir Zjajo, Nick van der Meijs:
A 0.1pJ Freeze Vernier time-to-digital converter in 65nm CMOS. ISCAS 2014: 85-88 - [c24]Amir Zjajo, Nick van der Meijs, Rene van Leuken:
Statistical power optimization of deep-submicron digital CMOS circuits based on structured perceptron. ISIC 2014: 95-98 - 2013
- [j9]Amir Zjajo, Nick van der Meijs, Rene van Leuken:
Adaptive Thermal Monitoring of Deep-Submicron CMOS VLSI Circuits. J. Low Power Electron. 9(4): 403-413 (2013) - [c23]Amir Zjajo, Nick van der Meijs, Rene van Leuken:
Balanced stochastic truncation of coupled 3D interconnect. ICICDT 2013: 13-16 - [c22]Jan A. Angevare, Kristof Blutman, Amir Zjajo, Nick van der Meijs:
A CMOS 0.23pj Freeze Vernier Time-To-Digital Converter. NORCHIP 2013: 1-4 - 2012
- [j8]Xiaoqin Sheng, Hans G. Kerkhoff, Amir Zjajo, Guido Gronthoud:
ADC Multi-Site Test Based on a Pre-test with Digital Input Stimulus. J. Electron. Test. 28(4): 393-404 (2012) - [j7]Mingxin Song, Jinghua Yin, Zuobao Cao, Tong Wu, Yu Zhao, Zhao Jin, Amir Zjajo:
Stimulus generation for RF MEMS switches test application. Int. J. Simul. Process. Model. 7(1/2): 107-114 (2012) - [j6]Amir Zjajo, Manuel J. Barragan Asian, José Pineda de Gyvez:
Digital Adaptive Calibration of Multi-Step Analog to Digital Converters. J. Low Power Electron. 8(2): 182-196 (2012) - [j5]Amir Zjajo, Manuel J. Barragan Asian, José Pineda de Gyvez:
Low-Power Die-Level Process Variation and Temperature Monitors for Yield Analysis and Optimization in Deep-Submicron CMOS. IEEE Trans. Instrum. Meas. 61(8): 2212-2221 (2012) - [c21]Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Crosstalk-aware statistical interconnect delay calculation. ASP-DAC 2012: 371-376 - [c20]Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Transistor-level gate model based statistical timing analysis considering correlations. DATE 2012: 917-922 - [c19]Amir Zjajo, Nick van der Meijs, René van Leuken:
A 11 µW 0°C-160°C temperature sensor in 90 nm CMOS for adaptive thermal monitoring of VLSI circuits. ISCAS 2012: 2007-2010 - [c18]Amir Zjajo, Nick van der Meijs, Rene van Leuken:
Thermal analysis of 3D integrated circuits based on discontinuous Galerkin finite element method. ISQED 2012: 117-222 - [c17]Javier Rodríguez, Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Direct Statistical Simulation of Timing Properties in Sequential Circuits. PATMOS 2012: 131-141 - 2011
- [j4]Amir Zjajo, Qin Tang, Michel Berkelaar, José Pineda de Gyvez, Alessandro Di Bucchianico, Nick van der Meijs:
Stochastic Analysis of Deep-Submicrometer CMOS Process for Reliable Circuits Designs. IEEE Trans. Circuits Syst. I Regul. Pap. 58-I(1): 164-175 (2011) - [c16]Ashish Nigam, Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Pseudo circuit model for representing uncertainty in waveforms. DATE 2011: 1521-1524 - [c15]Amir Zjajo, José Pineda de Gyvez:
A 1.2v 55mW 12bits self-calibrated dual-residue analog to digital converter in 90 nm CMOs. ISLPED 2011: 187-192 - 2010
- [j3]Ashish Nigam, Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Statistical Moment Estimation of Delay and Power in Circuit Simulation. J. Low Power Electron. 6(4): 578-587 (2010) - [c14]Amir Zjajo, Qin Tang, Michel Berkelaar, Nick van der Meijs:
Noise analysis of non-linear dynamic integrated circuits. CICC 2010: 1-4 - [c13]Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
RDE-based transistor-level gate simulation for statistical static timing analysis. DAC 2010: 787-792 - [c12]Alejandro Viteri, Amir Zjajo, Thijmen Hamoen, Nick van der Meijs:
Digital cartesian feedback linearization of switched mode power amplifiers. ICECS 2010: 890-893 - [c11]Amir Zjajo, Mingxin Song:
A low-power digitally-programmable variable gain amplifier in 65 nm CMOS. ISLPED 2010: 105-110 - [c10]Qin Tang, Amir Zjajo, Michel Berkelaar, Nick van der Meijs:
Transistor-Level Gate Modeling for Nano CMOS Circuit Verification Considering Statistical Process Variations. PATMOS 2010: 190-199
2000 – 2009
- 2009
- [j2]Amir Zjajo, José Pineda de Gyvez:
Analog Automatic Test Pattern Generation for Quasi-Static Structural Test. IEEE Trans. Very Large Scale Integr. Syst. 17(10): 1383-1391 (2009) - [c9]Xiaoqin Sheng, Hans G. Kerkhoff, Amir Zjajo, Guido Gronthoud:
Algorithms for ADC Multi-site Test with Digital Input Stimulus. ETS 2009: 45-50 - 2008
- [c8]Amir Zjajo, José Pineda de Gyvez:
Diagnostic Analysis of Static Errors in Multi-Step Analog to Digital Converters. DATE 2008: 74-79 - [c7]Amir Zjajo, Shaji Krishnan, José Pineda de Gyvez:
Efficient Estimation of Die-Level Process Parameter Variations via the EM-Algorithm. DDECS 2008: 287-292 - [c6]Amir Zjajo, José Pineda de Gyvez:
Calibration and Debugging of Multi-step Analog to Digital Converters. DELTA 2008: 512-515 - [c5]Amir Zjajo:
Diagnostic analysis of bandwidth mismatch in time-interleaved systems. ICECS 2008: 105-108 - 2007
- [c4]Amir Zjajo, Manuel J. Barragan Asian, José Pineda de Gyvez:
Interactive presentation: BIST method for die-level process parameter variation monitoring in analog/mixed-signal integrated circuits. DATE 2007: 1301-1306 - 2006
- [j1]Amir Zjajo, José Pineda de Gyvez, Guido Gronthoud:
Structural Fault Modeling and Fault Detection Through Neyman-Pearson Decision Criteria for Analog Integrated Circuits. J. Electron. Test. 22(4-6): 399-409 (2006) - 2005
- [c3]Amir Zjajo, José Pineda de Gyvez:
Evaluation of signature-based testing of RF/analog circuits. ETS 2005: 62-67 - [c2]Amir Zjajo, Henk Jan Bergveld, Rodger Schuttert, José Pineda de Gyvez:
Power-scan chain: design for analog testability. ITC 2005: 8 - 2003
- [c1]Amir Zjajo, Hendrik van der Ploeg, Maarten Vertregt:
A 1.8V 100mW 12-bits 80Msample/s two-step ADC in 0.18-μm CMOS. ESSCIRC 2003: 241-244
Coauthor Index
aka: Nick van der Meijs
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last updated on 2024-08-23 19:27 CEST by the dblp team
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