VLSI Design Group

Navigation

Search This Site

Publications

Export 84 results:
Author Title [ Type(Asc)] Year
Filters: First Letter Of Last Name is S  [Clear All Filters]
Journal Article
A. Mallick, Bashar, M. K., Truesdell, D. S., Calhoun, B. H., Joshi, S., and Shukla, N., Using synchronized oscillators to compute the maximum independent set, Nature Communications, 2020.
J. Wang, Singhee, A., Rutenbar, R. A., and Calhoun, B. H., Two Fast Methods for Estimating the Minimum Standby Supply Voltage for Large SRAMs, Transactions on Computer-Aided Design of Integrated Circuits and Systems (TCAD), vol. 29, pp. 1908-1920, 2010.
S. N. Wooters, Cabe, A. C., Qi, Z., Wang, J., Mann, R. W., Calhoun, B. H., Stan, M. R., and Blalock, T. N., Tracking On-Chip Age Using Distributed, Embedded Sensors, Transactions on VLSI Systems (TVLSI), vol. 20, p. 12, 2012.
S. N. Wooters, Cabe, A. C., Qi, Z., Wang, J., Mann, R. W., Calhoun, B. H., Stan, M. R., and Blalock, T. N., Tracking On-Chip Age Using Distributed, Embedded Sensors, Transactions on VLSI Systems (TVLSI), 2011.
A. Alghaihab, Shi, Y., Breiholz, J., Kim, H. - S., Calhoun, B. H., and Wentzloff, D. D., Enhanced Interference Rejection Bluetooth Low-Energy Back-Channel Receiver With LO Frequency Hopping, IEEE Journal of Solid-State Circuits, 2019.
Y. Zhang, Shakhsheer, Y., Barth, A. T., Powell, Jr., H. C., Ridenour, S. A., Hanson, M. A., Lach, J., and Calhoun, B. H., Energy Efficient Design for Body Sensor Nodes, Journal of Low Power Electronics and Applications, 2011.
B. H. Calhoun, Cao, X. Li Yu, Mai, K., Pileggi, L. T., Rutenbar, R. A., and Shepard, K. L., Digital Circuit Design Challenges and Opportunities in the Era of Nanoscale CMOS, Proceedings of the IEEE (Special Issue on Integrated Electronics: Beyond Moore’s Law), vol. 96, pp. 343-365, 2008.
E. Shih, Cho, S. - H., Lee, F. S., Calhoun, B. H., and Chandrakasan, A., Design Considerations for Energy-Efficient Radios in Wireless Microsensor Networks, Journal of VLSI Signal Processing, vol. 37, pp. 77-94, 2004.
Y. Huang, Shrivastava, A., Barnes, L., and Calhoun, B. H., A Design and Theoretical Analysis of a 145 mV to 1.2 V Single-Ended Level Converter Circuit for Ultra-Low Power Low Voltage ICs, J. Low Power Electron. Appl. (JLPEA), vol. 6, 2016.
A. Shrivastava and Calhoun, B. H., A DC-DC Converter Efficiency Model for System Level Analysis in Ultra Low Power Applications, 2013.
X. Chen, Alghaihab, A., Shi, Y., Truesdell, D. S., Calhoun, B. H., and Wentzloff, D. D., A Crystal-Less BLE Transmitter with Clock Recovery from GFSK-Modulated BLE Packets, IEEE Journal of Solid-State Circuits, 2021.
B. H. Calhoun, Lach, J., Stankovic, J., Wentzloff, D. D., Whitehouse, K., Barth, A., Brown, J. K., Li, Q., Oh, S., Roberts, N., and Zhang, Y., Body Sensor Networks: A Holistic Approach From Silicon to Users, IEEE Proceedings, 2011.
Y. Zhang, Zhang, F., Shakhsheer, Y., Silver, J. D., Klinefelter, A., Nagaraju, M., Boley, J., Pandey, J., Shrivastava, A., Carlson, E. J., Wood, A., Calhoun, B. H., and Otis, B. P., A Batteryless 19 uW MICS/ISM-Band Energy Harvesting Body Sensor Node SoC for ExG Applications, Journal of Solid State Circuits, vol. 48, pp. 199-213, 2013.
Y. Zhang, Zhang, F., Shakhsheer, Y., Silver, J. D., Klinefelter, A., Nagaraju, M., Boley, J., Pandey, J., Shrivastava, A., Carlson, E. J., Wood, A., Calhoun, B. H., and Otis, B. P., A Batteryless 19 uW MICS/ISM-Band Energy Harvesting Body Sensor Node SoC for ExG Applications, Journal of Solid State Circuits, vol. 48, pp. 199-213, 2013.
Y. Zhang, Zhang, F., Shakhsheer, Y., Silver, J. D., Klinefelter, A., Nagaraju, M., Boley, J., Pandey, J., Shrivastava, A., Carlson, E. J., Wood, A., Calhoun, B. H., and Otis, B. P., A Batteryless 19 uW MICS/ISM-Band Energy Harvesting Body Sensor Node SoC for ExG Applications, Journal of Solid State Circuits, vol. 48, pp. 199-213, 2013.
A. Roy, Klinefelter, A., Yahya, F., Chen, X., Gonzalez, P., Lukas, C. J., Akella, D., Boley, J., Craig, K., Faisal, M., Oh, S., Roberts, N., Shakhsheer, Y., Shrivastava, A., Vasudevan, D., Wentzloff, D. D., and Calhoun, B., A 6.45μW Self-Powered SoC with Integrated Energy-Harvesting Power Management and ULP Asymmetric Radios for Portable Biomedical Systems, IEEE Transactions on Biomedical Circuits and Systems, vol. 9, pp. 862-874, 2015.
A. Roy, Klinefelter, A., Yahya, F., Chen, X., Gonzalez, P., Lukas, C. J., Akella, D., Boley, J., Craig, K., Faisal, M., Oh, S., Roberts, N., Shakhsheer, Y., Shrivastava, A., Vasudevan, D., Wentzloff, D. D., and Calhoun, B., A 6.45μW Self-Powered SoC with Integrated Energy-Harvesting Power Management and ULP Asymmetric Radios for Portable Biomedical Systems, IEEE Transactions on Biomedical Circuits and Systems, vol. 9, pp. 862-874, 2015.
D. Akella, Shrivastava, A., Duan, C., and Calhoun, B. H., A 36nW, 7 ppm/oC Fully On-Chip Clock Source System for Ultra-Low Power Applications, Journal of Low Power Electronics and Applications (JLPEA), vol. 6, 2016.
K. Craig, Shakhsheer, Y., Arrabi, S., Khanna, S., Lach, J., and Calhoun, B. H., A 32b 90nm Processor Implementing Panoptic DVS Achieving Energy Efficient Operation from Sub-threshold to High Performance, Journal of Solid State Circuits, 2014.
X. Shen, Duvvuri, D., Bassirian, P., Bishop, H. L., Liu, X., Dissanayake, A., Zhang, Y., Blalock, T. N., Calhoun, B. H., and Bowers, S. M., A 184 nW, -78.3 dBm Sensitivity Antenna-Coupled Supply, Temperature, and Interference-Robust Wake-up Receiver at 4.9 GHz, IEEE Transactions on Microwave Theory and Techniques, 2022.
A. Shrivastava, Akella, D., and Calhoun, B. H., A 1.5nW, 32.768kHz XTAL Oscillator Operational from 0.3V Supply, IEEE Journal of Solid-State Circuits (JSSC), vol. 51, 2016.
A. Shrivastava, Roberts, N. E., Khan, O. U., Wentzloff, D. D., and Calhoun, B. H., A 10mV-Input Boost Converter with Inductor Peak Current Control and Zero Detection for Thermoelectric and Solar Energy Harvesting with 220mV Cold-Start and -14.5dBm, 915MHz RF Kick-Start, IEEE Journal of Solid-State Circuits (JSSC), vol. 50, pp. 1820-1832, 2015.
A. D. Kamakshi, Shrivastava, A., and Calhoun, B. H., A 0.2 V, 23 nW CMOS Temperature Sensor for Ultra-Low-Power IoT Applications, J. Low Power Electron. Appl. (JLPEA), vol. 6, 2016.

Pages