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EN
This paper presents a new high performance Bulk-Driven current differencing transconductance amplifier (BD-CDTA), a recently reported active element, especially suitable for analog signal processing applications. The proposed BD-CDTA provides high output impedances at port Z and X, excellent input/output current tracking. The proposed BD-CDTA circuit operates at supply voltages of ± 0.6V. PSPICE simulation results using TSMC 0.18 μm CMOS process model are included to verify the expected values.
EN
Operational Transconductance Amplifier (OTA) is one of the most significant building-blocks in integrated continuous-time filters. Here we design Low Power Low Voltage Bulk Driven OTA with a new concept of high-linearity OTA with controllable Transconductance is proposed. The OTA is simulated in a standard TSMC 0.18 mm CMOS process with a 0.6 V supply voltage.
EN
Parameterized wide-band geometry dependent SPICE models for oil-chip planar spiral inductors are developed in the paper. Model descriptions are presented in the form of PSpice model and in schematic view. The models are realized in the Cadence Capture and Cadence PSpice environment. The developed computer models can be used For adequate computer modeling and simulation of RF circuits. The geometry dependence of the model parameters allows geometry optimization and design automation of spiral inductors. The simulation results are compared to the measurement data for the model verification demonstrating the validity of the computer models.
EN
The paper [25] is dealing with some electromagnetic compatibility (EMC) problems of converters and inverters, which are utilized for feeding of electric machines and its analyzing by PSPICE program. The main attention is focused on implications of parasitic capacitance and capacitive coupling existence.
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