ENEL 300 : Design a Cross-Coupled Oscillator - Fabrication in IC Form - Engineering Assignment Help

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Assignment Task :

This document provides the student with information regarding the course project component of ENEL 300. Students are required to choose one of the proposed design problems and to arrive at a solution. The process of investigating the problem, reviewing relevant literature, documenting solution approaches, and the results of their proposed design should all be included in the final report submission.

The report should be in IEEE format. The submission should be in PDF. The total number of pages should not exceed 4 pages including references and figures. If your instructor requires additional information and clarifications, you may provide such information in a separate format.

Your report should include a discussion about the following (the list is not exhaustive):

  1. Background information such as theory of operation and example applications.

  2. Challenges faced in the project and attempts to solving the problems faced.

  3. Design and implementation details.

  4. Limitations of the proposed circuit implementation and its operation.

  5. Measured (simulated) results in the time domain and/or frequency domain.

 

The following is a list of proposed design projects. Some projects themes give you the option to choose one of two design problems. Some background information and related images in this document have been taken from Smith and Sidra, 7e [1].

  1. Cross-Coupled LC oscillator (MOSFET)

  2. The Cross-Coupled LC Oscillator (MOSFET)


 

Background [1]

A currently popular LC oscillator circuit suitable for fabrication in IC form and capable of

operating at frequencies approaching hundreds of gigahertz (for use in wireless transceivers) is

shown in the Figure below. It consists of a pair of MOSFETs connected in the differential amplifier configuration, each with a parallel LC-tuned circuit load, and with the drain of each connected to the gate of the other. The latter connection gives rise to the “cross-coupled” part of the name.

Cross

 

Problem Statement

Option 1:

Design a cross-coupled oscillator to operate at ω0 = 15 Grad/s. The inductors should have an inductance value between (7-12)nH with a quality factor (Q) of 10. Use a current mirror to implement the current source- the ( I ) shown in the schematic.

 

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