Optimum Design of Transformer-Type Marchand Balun Using Scalable Integrated Passive Device Technology
Chien‐Hsiang Huang, Tzyy‐Sheng Horng, Chen-Chao Wang, Chi-Tsung Chiu, Chih-Pin Hung
Abstract
Chien‐Hsiang Huang, Tzyy‐Sheng Horng, Chen-Chao Wang, Chi-Tsung Chiu, Chih-Pin Hung
Abstract
A simple and effective technique for designing transformer-type Marchand baluns is presented in this paper. The coupled-line sections required in a Marchand balun design are realized using planar transformers with a scalable model. The proposed design technique enables the prediction and optimization of Marchand balun performance over a wide range of layout and process parameters. To demonstrate the optimization process, Marchand baluns are designed for implementation using silicon and glass integrated passive device (IPD) technologies. Finally, experimental verification shows very good agreement between the modeled and measured results, thereby validating the IPD design optimization.
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A simple and effective technique for designing transformer-type Marchand baluns is presented in this paper. The coupled-line sections required in a Marchand balun design are realized using planar transformers with a scalable model. The proposed design technique enables the prediction and optimization of Marchand balun performance over a wide range of layout and process parameters. To demonstrate the optimization process, Marchand baluns are designed for implementation using silicon and glass integrated passive device (IPD) technologies. Finally, experimental verification shows very good agreement between the modeled and measured results, thereby validating the IPD design optimization.
Key concepts: Balun, Transformer, Electronic engineering, Scalability, Planar, Engineering, Computer science, Electrical engineering