LAMC-2016
Regular Sessions
Monday, December 12
RS-1: Optimization and Surrogate Modeling (Mo-4A), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Mo-4A-1 |
122 |
Eye Diagram Optimization based on Design of Experiments (DoE) to Accelerate Industrial Testing of High Speed Links A. Viveros-Wacher1,2, J. E. Rayas-Sanchez1 1ITESO – The Jesuit University of Guadalajara, Tlaquepaque, Mexico 2Intel Corp., Zapopan, Mexico |
Mo-4A-2 |
144 |
A Holistic Methodology for System Margining and Jitter Tolerance Optimization in Post-Silicon Validation F. E. Rangel-Patiño2,1, A. Viveros-Wacher2,1, J. E. Rayas-Sánchez1, E. A. Vega-Ochoa2, I. Duron-Rosales2, N. Hakim3 1ITESO, Tlaquepaque, Mexico, 2Intel, Zapopan, Mexico, 3Intel, Santa Clara, United States |
Mo-4A-3 |
160 |
Multiphysics Polynomial-Based Surrogate Modeling of Microwave Structures in Frequency Domain J. L. Chavez-Hurtado, J. E. Rayas-Sanchez, Z. Brito-Brito ITESO - The Jesuit University of Guadalajara, Tlaquepaque, Mexico |
Mo-4A-4 |
152 |
Recent Advances in EM Modeling and Optimization Exploiting Parallel Computations V. Gongal Reddy1, C. Zhang1, F. Feng2,1, Q. Zhang1 1Carleton University, Ottawa, Canada, 2Tianjin University, Nankai, China |
Mo-4A-5 |
156 |
An Overview of Neuro-Space Mapping Techniques for Microwave Device Modeling W. Liu1, L. Zhu3, W. Na1,2, Q. Zhang2,1 1Tianjin University, Tianjin, China, 2Carleton University, Ottawa, Canada, 3Tianjin Chengjian University, Tianjin, Canada |
RS-2: Wireless Communications and Applications (Mo-4B), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Mo-4B-1 |
124 |
Frequency and Angular Estimations of Detected Microwave Source using Unmanned Aerial Vehicles I. Llamas-Garro1, K. Lukin2, M. T. de Melo4, J. Kim3 1Centre Tecnològic de Telecomunicacions de Catalunya (CTTC), Castelldefels, Spain, 2National Academy of Sciences of Ukraine (NASU), Kharkov, Ukraine, 3Chonbuk National University (CBNU), Jeonju, Republic of Korea, 4Universidade Federal de Pernambuco (UFPE), Recife, Brazil |
Mo-4B-2 |
139 |
A novel function segmentation methodology for implementing affordable channel emulators J. M. Trejo-Arellano1, J. Vazquez-Castillo2, O. Longoria-Gandara1, C. Gutierrez3, R. Carrasco-Alvarez4, A. Castillo-Atoche5 1ITESO – The Jesuit University of Guadalajara, Tlaquepaque, Mexico, 2Universidad de Quintana Roo, Chetumal, Mexico, 3UASLP, San Luis Potosi, Mexico, 4UDG, Guadalajara, Mexico, 5Universidad Autonoma de Yucatan, Merida, Mexico |
Mo-4B-3 |
171 |
The Packet Arrival Model and Separation Algorithm for an MPR-Aware 802.11 DCF MAC Protocol L. J. Medina-Marin1, A. G. Orozco-Lugo2, M. Lara2, F. Téllez-A.2, R. Parra-Michel1 1Cinvestav, Guadalajara, Mexico, 2Cinvestav, Ciudad de México, Mexico |
Mo-4B-4 |
172 |
Multiple Packet Reception Exploiting Blank Intervals F. Téllez-A., A. G. Orozco-Lugo, M. Lara Cinvestav, Ciudad de México, Mexico |
Mo-4B-5 |
179 |
Performance Evaluation of an OFDMA and CDMA overlaid system O. Guerrero-Méndez, J. Castañeda-Camacho, L. Cortez, G. Mino-Aguilar, J. F. Guerrero-Castellanos, G. A. Muñoz-Hernández, M. Gutierrez-Arias Benemérita Universidad Autónoma de Puebla, Puebla, Mexico |
RS-3: Sensors and Power Delivery Methods (Mo-8A), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Mo-8A-1 |
138 |
Modeling Linear VR for DDR4 Termination Scheme of ADDR/CMD/CTRL Signals R. Astro Bohorquez, C. J. Franco Tinoco INTEL Tecnologia de Mexico S.A de C.V, Zapopan, Mexico |
Mo-8A-2 |
150 |
Filter design methodology for low noise power domains in data center platforms D. M. Garcia Mora, D. Garcia Garcia, F. Yahyaei-Moayyed, J. C. Cinco Galicia, C. R. Sanchez Ortiz, C. A. Sala, Intel Tecnologias De Mexico S.A de S.V., Zapopan, Mexico |
Mo-8A-3 |
149 |
A resolution scalable temperature sensor for wireless systems A. Brönner, R. Kostack, J. Wagner, F. Ellinger Technische Universität Dresden, Dresden, Germany |
Mo-8A-4 |
166 |
A Tx/Rx 3-20-GHz DP16T Switching Matrix for Breast Cancer Detection System A. Azhari1,2, K. Yuki2, X. Xiao3, T. Kikkawa2 1Osaka University, Osaka, Japan, 2Hiroshima University, Hiroshima, Japan, 3Tianjin University, Tianjin, China |
RS-4: Power Amplifiers (Mo-8B), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Mo-8B-1 |
112 |
Broadband Class-E Power Amplifier with High Cold Output Impedance Suitable for Load modulated Dual Branch Amplifiers T. Sharma, P. Aflaki, M. Helaoui, F. Ghannouchi Iradio, Calgary, Canada |
Mo-8B-2 |
123 |
20 Gbit/s Ultra-Compact Optical Receiver Front-End with Variable Gain Transimpedance Amplifier in 80 nm CMOS L. Szilagyi, R. Henker, F. Ellinger Technische Universität Dresden, Dresden, Germany |
Mo-8B-3 |
162 |
A Fully Integrated 2.6 GHz Cascode Class-E PA in 0.25 µm CMOS Employing New Bias Network for Stacked Transistors M. Kreißig, R. Kostack, J. Pliva, R. Paulo, F. Ellinger Technische Universität Dresden, Dresden, Germany |
Mo-8B-4 |
178 |
Improved Envelope Load Pull System for High Power Characterization E. J. Malfavaun González1,2, M. A. Pulido Gaytán1,2, J. Urbina Martínez2,1, B. E. Figueroa Reséndiz2,1, J. R. Loo Yau2,1, M. Maya Sánchez1,2, J. A. Reynoso Hernández1,2 1Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Ensenada, Mexico, 2Centro de Investigación y de Estudios Avanzados del I.P.N. Unidad Guadalajara (CINVESTAV-GDL), Zapopan, Mexico |
Tuesday, December 13
RS-5: RF Integrated Circuits (Tu-4A), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Tu-4A-1 |
114 |
90 Gbit/s 4-level Pulse-Amplitude-Modulation Vertical-Cavity Surface-Emitting Laser Driver Integrated Circuit in 130 nm SiGe Technology G. Belfiore, R. Henker, F. Ellinger Technische Universität Dresden, Dresden, Germany |
Tu-4A-2 |
135 |
A Direct RF Sampling Receiver Using Continuous-Time Band-Pass Sigma-Delta ADC with Active Inductor in CMOS R. Kostack1,2, A. Naeini1, H. Stockinger1, A. Brönner2, F. Ellinger2 1Intel Deutschland GmbH, Neubiberg, Germany, 2Technische Universität Dresden, Dresden, Germany |
Tu-4A-3 |
136 |
Active CMOS Differential Filter with +3.5 dBm IP1dB and +12.3 dBm IIP3 A. Arbelaez1, A. Corona1, J. L. Olvera1, C. Saavedra2 1INAOE, San Andres Cholula, Mexico, 2Queen's University, Kingston, Canada |
Tu-4A-4 |
155 |
A Tunable 70 MHz IF Filter with 70 ns Settling Time in 130 nm CMOS for Wake-up Radios M. Khafaji, C. Tzschoppe, G. Tretter, P. Testa, F. Ellinger TU Dresden, Dresden, Germany |
Tu-4A-5 |
167 |
Design and Physical Implementation of an Analog Receiver for a 2.5 Gbps SerDes E. Conde Almada, E. Juarez Hernandez, E. Martinez-Guerrero ITESO – The Jesuit University of Guadalajara, Tlaquepaque, Mexico |
RS-6: Tunable Devices (Tu-4B), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
Tu-4B-1 |
115 |
New Tunable Substrate Integrated Waveguide Bandstop Resonator M. Cariou1,2, S. Cadiou1, B. Potelon1, C. Quendo1, R. Ségalen2, F. Mahé2 1Université de Brest, Brest, France, 2Thales Systèmes Aéroportés, Brest, France |
Tu-4B-2 |
143 |
77 GHz Polarization Reconfigurable Micromachined Antenna for Automotive Radar Applications A. Jaiswal, S. Dey, M. P. Abegaonkar, S. K. Koul Indian Institute of technology, New Delhi, India |
Tu-4B-3 |
146 |
EM wave propagation in a temporally modulated transmission line: Theory P. Halevi1, J. Reyes Ayona2,1 1INAOE, Tonantzintla, Mexico, 2Universidad de Guanajuato, Salamanca, Mexico |
Tu-4B-4 |
147 |
EM wave propagation in a temporally modulated transmission line: Experiment J. Reyes Ayona2,1, P. Halevi1 1INAOE, Tonantzintla, Mexico, 2Universidad de Guanajuato, Salamanca, Mexico |
Tu-4B-5 |
158 |
High Power Effects on a MEMS-based Tunable Matching Network for Power Amplifier Reconfigurability V. A. Silva Cortes, R. Weigel, G. Fischer, A. Hagelauer University of Erlangen-Nuremberg, Erlangen, Germany |
Wednesday, December 14
RS-7: Passive Components and Antennas (We-3A), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
We-3A-1 |
134 |
Effects of parasitic reactance on lattice circuit slotline switch G. E. Ponchak NASA Glenn Research Center, Cleveland, United States |
We-3A-2 |
168 |
Characterizing Printed Transmission Lines from Calculated Frequency-Dependent Resistance and Inductance and Experimental Propagation Constant D. M. Cortés Hernández1,2, J. Sánchez Mesa2, B. Galvez Sahagun2, R. Torres Torres1 1INAOE, San Andres Cholula, Mexico, 2Intel GDC, Zapopan, Mexico |
We-3A-3 |
180 |
Second Harmonic Suppression Band-Pass Filter Based on a Modified 2nd Order Microstrip Coupled Line J. L. Urbina-Martinez1, B. Figueroa-Resendiz1, J. R. Loo-Yau1, P. Moreno1, J. A. Reynoso-Hernández2 1Centro de Investigación y Estudios Avanzados del I.P.N. Unidad Guadalajara, Zapopan, Mexico, 2Centro de Investigación Científica y de Educación Superior de Ensenada, Ensenada, Mexico |
We-3A-4 |
182 |
A High-Speed Interconnect-Model in s-Domain C. H. Rodriguez1,3, J. L. Naredo1, R. Parra1, O. Longoria2 1Cinvestav Guadalajara, Zapopan, Mexico, 2ITESO - The Jesuit University of Guadalajara, 3Intel Guadalajara Design Center, Zapopan, Mexico |
RS-8: Microwave Systems and Applications (We-3B), (see details here)
ID |
Paper# |
Title / Authors / Affiliations |
We-3B-1 |
110 |
Multi-Polarimetric SAR Adapted Virtual Beamforming-Based Techniques for Feature Enhanced Tomography of Forested Areas G. D. Martín del Campo Becerra, Y. Shkvarko, D. L. Torres Román Cinvestav - IPN, Guadalajara, Mexico |
We-3B-2 |
126 |
Project FAST - Fast Actuators Sensors & Transceivers F. Ellinger1, T. Meister1, P. Grosa1, K. Jamshidi1, D. Ihle1, N. Franchi1, J. Wagner1, A. Richter1, G. Fettweis1, F. H. Fitzek1, M. Kreissig1, H. Klessig1, R. Kraemer2, K. Richter3, A. Frotzscher4, R. Loehr5, W. Winkler6, D. Zoeke7, A. Carot8, A. Bluschke9 1TU Dresden, Dresden, Germany, 2IHP, Frankfurt (Oder), Germany, 3Fraunhofer Institut IFF Magdeburg, Magdeburg, Germany, 4Fraunhofer Institut IIS, Dresden, Germany, 5Friedrich-Alexander Universität Erlangen-Nürnberg, Erlangen, Germany, 6Silicon Radar, Frankfurt (Oder), Germany, 7Siemens AG, München, Germany, 8Hochschule Anhalt, Köthen / Anhalt, Germany, 9Teleconnect, Dresden, Germany |
We-3B-3 |
165 |
Holographic Microwave Imaging: Experimental Study on spatial distribution of antennas for accurate results A. Villavicencio Paz, M. A. Yarlequé Medina Pontificia Universidad Católica del Perú, Lima, Peru |
We-3B-4 |
177 |
Radio Frequency Spoofing System to Take Over Law-Breaking Drones M. M. Donatti1,2, F. C. Frazatto1,2, L. T. Manera1, T. Teramoto2, E. Neger2 1University of Campinas, Campinas, Brazil, 2Neger Telecom, Campinas, Brazil |