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This paper presents a high-gain multi-input low-noise amplifier (LNA) design aimed at achieving stable phase and minimal noise within a flexible gain range for modern wireless communication systems. The proposed LNA, designed using a CASCODE architecture and implemented in a 65 nm silicon-on-insulator (SOI) process, demonstrates significant improvements in isolation, noise reduction, and miniaturization. The SOI process reduces parasitic capacitance, enhancing performance and thermal/electrical isolation, critical for high-frequency applications. The CASCODE structure minimizes unwanted coupling between stages, enhancing signal integrity and maintaining stable operation across multiple gain modes. The LNA operates in the 2.3 GHz to 2.69 GHz frequency band and supports seven gain modes. It achieves a maximum gain of 21.45 dB with a noise figure of 1.03 dB at the highest gain mode. Notably, it maintains phase stability within 16.4 degrees across the entire gain range, ensuring consistent phase alignment, which is crucial for applications requiring precise signal alignment. The design eliminates the need for switching mechanisms typically used in conventional LNAs, which often introduce additional noise. This work demonstrates that the CASCODE-based multi-input LNA, implemented in a 65 nm SOI process, successfully meets the rigorous demands of high-frequency communication systems, achieving an optimal balance between gain flexibility, noise reduction, and stable phase control within a 32 dB gain range.
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http://dx.doi.org/10.3390/s25061708 | DOI Listing |
J Mol Model
September 2025
Department of Electronics and Communication Engineering, National Institute of Technology Patna, Patna, Bihar, India.
Context: This study investigates the radiation tolerance of a SiGe source vertical tunnel field effect transistor (VTFET) under heavy ion-induced single event effects (SEEs). Single event effects (SEEs) occur when high-energy particles interact with semiconductor devices, leading to unintended behavior. The effect of high energy ions on the VTFET is examined for various linear energy transfer (LET) values and at multiple ion hit locations.
View Article and Find Full Text PDFAm J Prev Med
September 2025
Arnold School of Public Health, University of South Carolina.
Introduction: Summer day camps (SDC) can mitigate summer weight gain by providing a structured daily environment that promotes healthy behaviors, but SDCs are often cost prohibitive to families with low-income. This study evaluated the cost effectiveness of providing free SDC to disadvantaged children to prevent summer weight gain.
Methods: 422 children from a low-income school district in South Carolina were recruited and randomly assigned to receive 8-10 weeks of free SDC or to experience summer as usual in 2021-2023.
Background: Overweight and obesity are major concerns among people living with HIV (PLWH), particularly those on integrase inhibitors, as they elevate the risk of cardiovascular diseases. However, longitudinal data on the burden and risk factors for overweight/obesity in sub-Saharan Africa (SSA) remain limited. This study aimed to estimate the incidence and identify factors associated with overweight and obesity among PLWH who switched to a dolutegravir (DTG)-based ART regimen at Livingstone University Teaching Hospital.
View Article and Find Full Text PDFChaos
September 2025
Complex Systems Group & Grupo Interdisciplinar de Sistemas Complejos, Universidad Rey Juan Carlos, 28933 Móstoles, Madrid, Spain.
A flat control law is based on the structural analysis of a controlled system, allowing optimal placement of sensors and actuators. Once designed, any desired dynamics can be imposed onto the system. When the target dynamics comes from a system structurally different from the controlled one, generalized synchronization can be achieved, provided the control gain is sufficiently large.
View Article and Find Full Text PDFJ Exp Anal Behav
September 2025
Washington University in St. Louis, MO, USA.
Every day we encounter situations in which decisions require trade-offs between the delay to one reward and the likelihood of receiving another reward. The current study was designed to extend a general discounting framework to gain insights into this fundamental trade-off process. Forty-three undergraduates adjusted the probability of receiving an immediate hypothetical monetary reward (either $200 or $10,000) until that probabilistic reward was judged subjectively equal in value to the same reward received with certainty after a delay (ranging from 1 month to 25 years).
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