24 results on '"Hajjam, Arash"'
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2. Self-Contained Frequency Trimming of Micromachined Silicon Resonators via Localized Thermal Oxidation
3. MEMS resonant human breath sensors for survivor detection in disaster areas
4. Doping-Induced Temperature Compensation of Thermally Actuated High-Frequency Silicon Micromechanical Resonators
5. Fabrication and Characterization of MEMS-Based Resonant Organic Gas Sensors
6. Electrostatic frequency tuning of thermal piezoresistive MEMS resonators
7. Input-output insulation in thermal-piezoresisitive resonant microsctructures using embedded oxide beams
8. Localized thermal oxidation for frequency trimming and temperature compensation of micromechanical resonators
9. Individual Air-Borne Particle Mass Measurement Using High-Frequency Micromechanical Resonators
10. Fabrication and characterization of MEMS-based resonant organic gas sniffers
11. High frequency thermal-piezoresistive MEMS resonators for detection of organic gases
12. Self-sustained micromechanical resonant particulate microbalance/counters
13. Temperature compensated single-device electromechanical oscillators
14. Sub-100ppb/°C temperature stability in thermally actuated high frequency silicon resonators via degenerate phosphorous doping and bias current optimization
15. Fabrication and characterization of thermally actuated micromechanical resonators for airborne particle mass sensing: II. Device fabrication and characterization
16. MEMS resonant sensors for detection of gasoline vapor
17. Detection and mass measurement of individual air-borne particles using high frequency micromechanical resonators
18. Thin-film piezoelectric-on-silicon particle mass sensors
19. Modeling Twinkling Artifact in Sonography
20. Fabrication and characterization of resonant aerosol particle mass sensors
21. Thermal actuation, a suitable mechanism for high frequency electromechanical resonators
22. Thermally actuated MEMS resonant sensors for mass measurement of micro/nanoscale aerosol particles
23. Thermal actuation of high frequency micromechanical resonators
24. A Modified Time-Domain Approach for Modelling the Ultrasound Signal from Blood-Flow
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