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    AuthorSalama, Khaled N. (4)Shamim, Atif (4)Arsalan, Muhammad (3)Marnat, Loic (2)Ouda, Mahmoud H. (2)View MoreDepartmentComputer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division (4)
    Electrical Engineering Program (4)
    Integrated Microwave Packaging Antennas and Circuits Technology (IMPACT) Lab (4)
    Sensors Lab (4)Physical Sciences and Engineering (PSE) Division (3)View MoreJournal2013 IEEE MTT-S International Microwave Symposium Digest (MTT) (1)2013 IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications (IMWS-BIO) (1)Proceedings of the 2012 IEEE International Symposium on Antennas and Propagation (1)The 8th European Conference on Antennas and Propagation (EuCAP 2014) (1)PublisherInstitute of Electrical and Electronics Engineers (IEEE) (4)SubjectSoC (2)60GHz (1)ASIC (1)Glaucoma wireless CMOS sensor (1)Intraocular Pressure Monitoring (IOPM) (1)View MoreType
    Conference Paper (4)
    Year (Issue Date)2014 (1)2013 (2)2012 (1)Item AvailabilityMetadata Only (4)

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    60 GHz system-on-chip (SoC) with built-in memory and an on-chip antenna

    Ghaffar, Farhan A.; Arsalan, Muhammad; Cheema, Hammad; Salama, Khaled N.; Shamim, Atif (The 8th European Conference on Antennas and Propagation (EuCAP 2014), Institute of Electrical and Electronics Engineers (IEEE), 2014-04) [Conference Paper]
    A novel 60 GHz transmitter SoC with an on-chip antenna and integrated memory in CMOS 65 nm technology is presented in this paper. This highly integrated transmitter design can support a data rate of 2 GBPS with a transmission range of 1 m. The transmitter consists of a fundamental frequency 60 GHz PLL which covers the complete ISM band. The modulator following the PLL can support both BPSK and OOK modulation schemes. Both stored data on the integrated memory or directly from an external source can be transmitted. A tapered slot on chip antenna is integrated with the power amplifier to complete the front end of the transmitter design. Size of the complete transmitter with on-chip antenna is only 1.96 mm × 1.96 mm. The core circuits consume less than 100 mW of power. The high data rate capability of the design makes it extremely suitable for bandwidth hungry applications such as unencrypted HD video streaming and transmission.
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    Implantable intraocular pressure monitoring systems: Design considerations

    Arsalan, Muhammad; Ouda, Mahmoud H.; Marnat, Loic; Shamim, Atif; Salama, Khaled N. (2013 IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications (IMWS-BIO), Institute of Electrical and Electronics Engineers (IEEE), 2013-12) [Conference Paper]
    Design considerations and limitations of implantable Intraocular Pressure Monitoring (IOPM) systems are presented in this paper. Detailed comparison with the state of the art is performed to highlight the benefits and challenges of the proposed design. The system-on-chip, presented here, is battery free and harvests energy from incoming RF signals. This low-cost design, in standard CMOS process, does not require any external components or bond wires to function. This paper provides useful insights to the designers of implantable wireless sensors in terms of design choices and associated tradeoffs. © 2013 IEEE.
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    A 5.2GHz, 0.5mW RF powered wireless sensor with dual on-chip antennas for implantable intraocular pressure monitoring

    Arsalan, Muhammad; Ouda, Mahmoud H.; Marnat, Loic; Ahmad, Talha Jamal; Shamim, Atif; Salama, Khaled N. (2013 IEEE MTT-S International Microwave Symposium Digest (MTT), Institute of Electrical and Electronics Engineers (IEEE), 2013-06) [Conference Paper]
    For the first time a single chip implantable wireless sensor system for Intraocular Pressure Monitoring (IOPM) is presented. This system-on-chip (SoC) is battery-free and harvests energy from incoming RF signals. The chip is self-contained and does not require external components or bond wires to function. This 1.4mm3 SoC has separate 2.4GHz-transmit and 5.2GHz-receive antennas, an energy harvesting module, a temperature sensor, a 7-bit TIQ Flash ADC, a 4-bit RFID, a power management and control unit, and a VCO transmitter. The chip is fabricated in a standard 6-metal 0.18μm CMOS process and is designed to work with a post-processed MEMS pressure sensor. It consumes 513μW of peak power and when implanted inside the eye, it is designed to communicate with an external reader using on-off keying (OOK). © 2013 IEEE.
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    Impedance matching through a single passive fractional element

    Radwan, Ahmed Gomaa; Shamim, Atif; Salama, Khaled N. (Proceedings of the 2012 IEEE International Symposium on Antennas and Propagation, Institute of Electrical and Electronics Engineers (IEEE), 2012-07) [Conference Paper]
    For the first time, a generalized admittance Smith chart theory is introduced to represent fractional order circuit elements. The principles of fractional order matching circuits are described. We show that for fractional order α < 1, a single parallel fractional element can match a wider range of load impedances as compared to its series counterpart. Several matching examples demonstrate the versatility of fractional order series and parallel element matching as compared to the conventional approach. © 2012 IEEE.
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