研究目的
To present a small-signal differential electro-optical equivalent circuit model of a VCSEL, focusing on modelling the asymmetric parasitics in a differential VCSEL configuration and estimating the common-mode rejection ratio (CMRR).
研究成果
The proposed differential equivalent circuit model of a VCSEL accurately predicts the differential-mode signal transfer level and estimates the common-mode signal transfer level. The model can be used to estimate the impact of the asymmetry in the parasitics on the common-mode rejection ratio (CMRR) and covers the frequency bandwidth required for EMC and ESD applications.
研究不足
The model is limited to the frequency bandwidth between 1 MHz and 4 GHz. The accuracy of the common-mode signal transfer model is affected by the noise in the common-mode characteristic and the measurement uncertainty at low frequencies.
1:Experimental Design and Method Selection:
The methodology combines Y-parameters and mixed-mode S-parameters to create a differential equivalent circuit model of the VCSEL. The model is extracted from the measurements of the laser diode S-parameters.
2:Sample Selection and Data Sources:
The characteristics of a 5-lead VCSEL in a TOSA package are measured. The laser diode is mounted on a characterization printed circuit board.
3:List of Experimental Equipment and Materials:
The test fixture is realized using conductor-backed coplanar waveguide (CBCPW) feed lines and two through-hole SubMinitature version A (SMA) connectors. The bias circuit consists of surface-mount technology (SMT) components and microstrip transmission lines.
4:Experimental Procedures and Operational Workflow:
The VCSEL characterization setup includes a Power-over-Fiber (PoF) module as the voltage source to bias the laser diode. The RF measurements are performed using a two-port vector network analyzer (VNA) R&S ZVB
5:Data Analysis Methods:
The measured single-ended S-parameters are used to calculate the mixed-mode S-parameters. The common-mode rejection ratio (CMRR) is calculated as the ratio between the differential-mode and common-mode signal transfer coefficients.
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