Description: 3~5 GHz Cascoded UWB Power Amplifier.PDF
A 1-8 GHz MMIC Down-Conversion Mixer with Input-Output.PDF
A 3.1- to 8.2-GHz Zero-IF Receiver.PDF
A Design Technique for a High-Gain, 10-GHz Class.PDF
A High-Power Low-Distortion GaAs HBT Power Amplifier with 3.3 V Supply for 5-6 GHz Broadband Wireless Applications.PDF
A novel cascode feedback GaAs MMIC LNA with transformer-coupled output using multiple fabrication processes.pdf
A single-bias diode-regulated 60 GHz monolithic LNA.pdf
Design of MMIC LNA for 1.9 GHz CDMA portable communication.pdf
Study on Matching Performance for Lossless.PDF
二项式与切比雪夫多项式宽带匹配的研究.pdf
-3 ~ 5 GHz Cascoded UWB Power Amplifier.PDF A 1-8 GHz MMIC Down-Conversion Mixer with Input-Output.PDF A 3.1-to 8.2-GHz Zero-IF Receiver.PDF A Design Technique for a High-Gain, 10-- GHz Class.PDF A High-Power Low-Distortion GaAs HBT Power Amplifier with 3.3 V Supply for 5-6 GHz Broadband Wireless Applications.PDF A novel cascode feedback GaAs MMIC LNA with transformer-coupled output using multiple fabrication processes.pdf A single- bias diode-regulated 60 GHz monolithic LNA.pdf Design of MMIC LNA for 1.9 GHz CDMA portable communication.pdf Study on Matching Performance for Lossless.PDF binomial and Chebyshev polynomials of the study of broadband matching. pdf Platform: |
Size: 6309888 |
Author:rolenss |
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Description: Each code provides the trace of reflection coefficient of the multisection Binomial/Chebyshev impedance transformer in the Smith Chart. The trace starts the load and ends to the source.-Each code provides the trace of reflection coefficient of the multisection Binomial/Chebyshev impedance transformer in the Smith Chart. The trace starts the load and ends to the source. Platform: |
Size: 1024 |
Author:Joonsuk Kim |
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