Search Results - "Jenkins, A. Keith"

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  1. 1

    State-of-the-Art Graphene High-Frequency Electronics by Wu, Yanqing, Jenkins, Keith A, Valdes-Garcia, Alberto, Farmer, Damon B, Zhu, Yu, Bol, Ageeth A, Dimitrakopoulos, Christos, Zhu, Wenjuan, Xia, Fengnian, Avouris, Phaedon, Lin, Yu-Ming

    Published in Nano letters (13-06-2012)
    “…High-performance graphene transistors for radio frequency applications have received much attention and significant progress has been achieved. However,…”
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  2. 2

    Wafer-Scale Graphene Integrated Circuit by Lin, Yu-Ming, Valdes-Garcia, Alberto, Han, Shu-Jen, Farmer, Damon B., Meric, Inanc, Sun, Yanning, Wu, Yanqing, Dimitrakopoulos, Christos, Grill, Alfred, Avouris, Phaedon, Jenkins, Keith A.

    “…A wafer-scale graphene circuit was demonstrated in which all circuit components, including graphene field-effect transistor and inductors, were monolithically…”
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  3. 3

    Operation of Graphene Transistors at Gigahertz Frequencies by Lin, Yu-Ming, Jenkins, Keith A, Valdes-Garcia, Alberto, Small, Joshua P, Farmer, Damon B, Avouris, Phaedon

    Published in Nano letters (14-01-2009)
    “…Top-gated graphene transistors operating at high frequencies (gigahertz) have been fabricated and their characteristics analyzed. The measured intrinsic…”
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  4. 4

    Utilization of a Buffered Dielectric to Achieve High Field-Effect Carrier Mobility in Graphene Transistors by Farmer, Damon B, Chiu, Hsin-Ying, Lin, Yu-Ming, Jenkins, Keith A, Xia, Fengnian, Avouris, Phaedon

    Published in Nano letters (09-12-2009)
    “…We utilize an organic polymer buffer layer between graphene and conventional gate dielectrics in top-gated graphene transistors. Unlike other insulators, this…”
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  5. 5

    Graphene radio frequency receiver integrated circuit by Han, Shu-Jen, Garcia, Alberto Valdes, Oida, Satoshi, Jenkins, Keith A., Haensch, Wilfried

    Published in Nature communications (01-01-2014)
    “…Graphene has attracted much interest as a future channel material in radio frequency electronics because of its superior electrical properties. Fabrication of…”
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  6. 6

    Limits to Jitter in Digital CMOS Gates by Jenkins, Keith A.

    Published in IEEE solid-state circuits letters (01-01-2023)
    “…The time delay of digital signals propagating through CMOS gates is unavoidably subject to some timing jitter, which imposes a lower limit on circuit jitter…”
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  7. 7

    High-frequency, scaled graphene transistors on diamond-like carbon by Wu, Yanqing, Lin, Yu-ming, Bol, Ageeth A., Jenkins, Keith A., Xia, Fengnian, Farmer, Damon B., Zhu, Yu, Avouris, Phaedon

    Published in Nature (London) (07-04-2011)
    “…Diamond standard for graphene transistor Graphene, the one-atom-thick layered form of carbon, shows promise for use in high-frequency microelectronics devices…”
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  8. 8

    Measurement of Self-Heating of High-Frequency CMOS Clock Buffers by Jenkins, Keith A., Weger, Alan J.

    Published in IEEE electron device letters (01-05-2022)
    “…A technique is presented to measure the temperature of a large, dense, CMOS clock buffer while it is operating. The technique uses the subthreshold slope of a…”
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  9. 9

    Characterization of TSV-Induced Loss and Substrate Noise Coupling in Advanced Three-Dimensional CMOS SOI Technology by Xiaoxiong Gu, Silberman, Joel A., Young, Albert M., Jenkins, Keith A., Dang, Bing, Yong Liu, Xiaomin Duan, Gordin, Rachel, Shlafman, Shlomo, Goren, David

    “…Electrical loss and substrate noise coupling induced by through-silicon-vias (TSVs) in silicon-on-insulator (SOI) substrates is characterized in frequency and…”
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  10. 10

    High-Frequency Graphene Voltage Amplifier by Han, Shu-Jen, Jenkins, Keith A, Valdes Garcia, Alberto, Franklin, Aaron D, Bol, Ageeth A, Haensch, Wilfried

    Published in Nano letters (14-09-2011)
    “…While graphene transistors have proven capable of delivering gigahertz-range cutoff frequencies, applying the devices to RF circuits has been largely hindered…”
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  11. 11

    Injuries to Pacific mackerel (Scomber japonicus) from underwater explosions by Bowman, Victoria, Jenkins, A Keith, Dahl, Peter H, Kotecki, Sarah E, Casper, Brandon M, Boerger, Christiana, Smith, Michael E, Popper, Arthur N

    Published in ICES journal of marine science (18-10-2024)
    “…Abstract This study expands previous work examining the effects on fishes from exposure to a single 4.5 kg underwater explosive detonation. Experiments were…”
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  12. 12

    Physical effects of sound exposure from underwater explosions on Pacific mackerel ( Scomber japonicus ): Effects on non-auditory tissues by Jenkins, A. Keith, Dahl, Peter H., Kotecki, Sarah E., Bowman, Victoria, Casper, Brandon, Boerger, Christiana, Popper, Arthur N.

    “…Underwater explosions from activities such as construction, demolition, and military activities can damage non-auditory tissues in fishes. To better understand…”
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  13. 13

    Physical effects of sound exposure from underwater explosions on Pacific mackerel ( Scomber japonicus ): Effects on the inner ear by Smith, Michael E., Accomando, Alyssa W., Bowman, Victoria, Casper, Brandon M., Dahl, Peter H., Jenkins, A. Keith, Kotecki, Sarah, Popper, Arthur N.

    “…Studies of the effects of sounds from underwater explosions on fishes have not included examination of potential effects on the ear. Caged Pacific mackerel…”
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  14. 14

    An On-Chip Test Structure and Digital Measurement Method for Statistical Characterization of Local Random Variability in a Process by Mukhopadhyay, S., Keunwoo Kim, Jenkins, K.A., Ching-Te Chuang, Roy, K.

    Published in IEEE journal of solid-state circuits (01-09-2008)
    “…This paper presents an on-chip characterization method for random variation in minimum sized devices in nanometer technologies, using a sense amplifier-based…”
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  15. 15

    Physical effects of sound exposure from underwater explosions on Pacific sardines (Sardinops sagax)a by Dahl, Peter H., Keith Jenkins, A., Casper, Brandon, Kotecki, Sarah E., Bowman, Victoria, Boerger, Christiana, Dall'Osto, David R., Babina, Matthew A., Popper, Arthur N.

    “…Explosions from activities such as construction, demolition, and military activities are increasingly encountered in the underwater soundscape. However, there…”
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  17. 17

    Current Saturation in Submicrometer Graphene Transistors with Thin Gate Dielectric: Experiment, Simulation, and Theory by Han, Shu-Jen, Reddy, Dharmendar, Carpenter, Gary D, Franklin, Aaron D, Jenkins, Keith A

    Published in ACS nano (26-06-2012)
    “…Recently, graphene field-effect transistors (FET) with cutoff frequencies (f T) between 100 and 300 GHz have been reported; however, the devices showed very…”
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  18. 18

    Self-Heating Measurement of 14-nm FinFET SOI Transistors Using 2-D Time-Resolved Emission by Stellari, Franco, Jenkins, Keith A., Weger, Alan J., Linder, Barry P., Peilin Song

    Published in IEEE transactions on electron devices (01-05-2016)
    “…Self-heating of FinFET transistors is a reliability concern, especially for large devices with dense arrays of fins on Silicon On Insulator. In this paper,…”
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  19. 19

    Reduction of Hot Carrier Degradation of FinFETs Due to Short-Pulse Stress by Jenkins, Keith A., Linder, Barry P.

    Published in IEEE electron device letters (01-12-2015)
    “…Hot carrier degradation of field effect transistors is shown to be reduced when the transistors are subjected to very short pulses. A technique for applying…”
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  20. 20

    Pulse-Train Method to Measure Transient Response of Field-Effect Transistors by Jenkins, Keith A., Cartier, Eduard A., Yau, Jeng-Bang

    Published in IEEE electron device letters (01-02-2019)
    “…A simple method to measure the short time-domain output current of field-effect transistors (FETs) is demonstrated. By applying short gate pulses and measuring…”
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