Cargando…
Design and Analysis of a Novel 24 GHz Up-Conversion Mixer with Improved Derivative Super-Position Linearizer Technique for 5G Applications
A 24 GHz high linear, high-gain up-conversion mixer is realized for fifth-generation (5G) applications in the 65 nm CMOS process. The mixer’s linearity is increased by applying an Improved Derivative Super-Position (I-DS) technique cascaded between the mixer’s transconductance and switching stage. T...
Autores principales: | Siddique, Abrar, Delwar, Tahesin Samira, Behera, Prangyadarsini, Biswal, Manas Ranjan, Haider, Amir, Ryu, Jee-Youl |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471453/ https://www.ncbi.nlm.nih.gov/pubmed/34577325 http://dx.doi.org/10.3390/s21186118 |
Ejemplares similares
-
A 65 nm Duplex Transconductance Path Up-Conversion Mixer for 24 GHz Automotive Short-Range Radar Sensor Applications
por: Delwar, Tahesin Samira, et al.
Publicado: (2022) -
A Novel 65 nm Active-Inductor-Based VCO with Improved Q-Factor for 24 GHz Automotive Radar Applications
por: Behera, Prangyadarsini, et al.
Publicado: (2022) -
Pattern Classification Using Quantized Neural Networks for FPGA-Based Low-Power IoT Devices
por: Biswal, Manas Ranjan, et al.
Publicado: (2022) -
A Novel Optimized V-VLC Receiver Sensor Design Using μGA in Automotive Applications
por: Siddique, Abrar, et al.
Publicado: (2021) -
A 24-to-30 GHz Ultra-High-Linearity Down-Conversion Mixer for 5G Applications Using a New Linearization Method
por: Yang, Shenghui, et al.
Publicado: (2022)