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SILVERIO, Angelito A.

SILVERIO, Angelito A.

Engr. Angelito A. Silverio, Ph.D. received his B.Sc in EcE degree from the ÁùºÏ²ÊÖ±²¥¿ª½±, M.Sc. EcE degree from the Ateneo de Manila University and the Ph.D. in Microelectronics Engineering degree from Chung Yuan Christian University, Taiwan, ROC. He is currently a licensed Electronics Engineer and a faculty member of the Electronics Engineering Department of ÁùºÏ²ÊÖ±²¥¿ª½±. His research interests include CMOS Analog and Digital IC Design, Sensor Interfacing Design, Biomedical ICs, Bio-Impedance Studies, Renewable Energy, and Energy Harvesting Technologies. He has had several conference articles involving IC design specifically for sensor interfacing which is the bulk of his doctoral research. He is also currently aÌý member of the IEEE and a regular member of the IECEP and the SPVM. He previously was the president of the Filipino Students and Researchers in Taiwan (FiRST) which is based in his home university and a member of the Association of Filipino Scholars in Taiwan (AFST).

Updates

Academic Qualifications

Research Highlights

Research Interests

Academic Qualifications

Degrees

  • Doctor of Philosophy, with specialization in Electronics Engineering, Chung Yuan Christian University – Taiwan, Republic of China
  • Master of Science in Electronics Engineering, Ateneo de Manila University – Quezon City, Philippines
  • Bachelor of Science in Electronics and Communications Engineering, ÁùºÏ²ÊÖ±²¥¿ª½± – Manila, Philippines

Research Highlights

Fall Detection System with Physiological Signs Monitor

The target system consists of sensors: 3D accelerometer and 3D gyroscope for fall detection based on impact and free-fall phases, 3D accelerometer data for BCG measurements, optical-based sensors for PPG, and electrodes for heart rate variability detection via two-electrode ECG. It also consists of the corresponding readout circuits for interfacing as well as the extraction algorithms for obtaining valid fall logic, inactivity log, pre- and post-fall heart rate and heart rate variability and MAP.

Research Highlights

  • Microelectronic Systems and Application
  • Biomedical Electronics
  • CMOS Mixed Signal IC Design

Courses Handled

Major Recognitions

Professional Activities

Courses Handled

  • ECE211125 – Mixed Signal Electronics (Undegraduate Program)
  • ECE712 – CMOS Analog Circuit Design (Graduate Program)
  • ECE713 – Advanced CMOS Analog Circuit Design (Graduate Program)Ìý
  • ECE717 – Mixed Signal IC Design (Graduate Program)
  • ECE714 – CMOS VLSI Design (Graduate Program)

Major Recognitions

ÌýÌý

Professional Activities

  • Member – IEEE Philippine Section, Circuits and Systems Group
  • Member – IECEP – Manila Chapter
  • Regular Member – National Research Council of the Philippines

Selected Publications

Selected Publications

  • Wen-Yaw Chung, Salhi Heythem,ÌýAngelitoÌýA.ÌýSilverio, Vincent Tsai, Cheanyeh Cheng, Guan-Wei Wu, Syuan-kai Chang, Lin-Chen Yen, Chia Ming Yang, I-Wen Lo, Shu-Yu Chang .ÌýPoint-of-Care Based System Development forÌýUrolithiasisÌýRecurrence Prevention,Ìý2018ÌýECS TransactionsÌý, vol.85 ,Ìýp.175-186
  • Angelito. A.ÌýSilverio, Lean Angelo A. Silverio, and Angelina A. Silverio.ÌýAn Ultra-Low Power CMOS-based Temperature Sensor for Implantable Systems,ÌýSensors and Transducers Journal, Vol. 28, Special Issue 4-5, April – May,Ìý2018
  • Wen-Yaw Chung,ÌýAngelitoÌýA.ÌýSilverio, Vincent F.S. Tsai, Cheanyeh Cheng, Shu-Yu Chang, Ming-Ying Zhou, Si-Yuan Chen , Chi-Ying Kao, Dan Arcega Rustia, Yi-Wen Lo.ÌýDesign of a Multi-Frequency Bio-Impedance Spectroscopy System Analog Front-End and Digital Back-End with System On-Chip Implementation,ÌýMicroelectronics Journal. Volume 56, October 2016, Pages 142–155. http://dx.doi.org/10.1016/j.mejo.2016.08.011, ISSN:Ìý0026-2692
  • Wen-Yaw Chung,ÌýAngelitoÌýA.ÌýSilverio, Vincent F.S. Tsai, Cheanyeh Cheng, Shu-Yu Chang, Zhou Ming-Ying, Chi-Ying Kao, Si-Yuan Chen, Dorota G. Pijanowska, Dan Rustia, and Yi- Wen Lo.ÌýAnÌý implementationÌý ofÌý anÌý electronicÌý tongueÌý systemÌý basedÌý onÌý aÌý multi-sensor potentiometric readout circuit with embedded calibration and temperature compensation.ÌýMicroelectronics Journal.ÌýÌýÌýÌýÌý VolumeÌýÌýÌýÌýÌý 57,ÌýÌýÌýÌýÌý NovemberÌýÌýÌýÌýÌý 2016,ÌýÌýÌýÌýÌý PagesÌýÌýÌýÌýÌý 1–12. http://dx.doi.org/10.1016/j.mejo.2016.08.010 ISSN:Ìý0026-2692
  • Vincent F.S. Tsai,ÌýAngelitoÌýA.ÌýSilverio, Wen-Yaw Chung, Cheanyeh Cheng, Hai-Lung Wang, Chien-Min Kung, and Jun Chen.ÌýThe potential of at-home prediction of the formation ofÌýurolithiasisÌýby simple multi-frequency electrical conductivity of the urine and the comparison of its performance with urine ion-related indices, color and specific gravity.ÌýJournal ofÌýUrolithiasisÌý2015.ÌýSpringerlink. ISSN: 2194-7228.