Motivation. Project Goals Build two PCB boards consists power transmitter and power receiver. Add a communication channel between the two boards in order.

Slides:



Advertisements
Similar presentations
Chapter 21 Oscillators.
Advertisements

ECE201 Lect-231 Transient PSpice Analysis (7.4) Dr. Holbert April 26, 2006.
Basic Circuits TEST YOUR BRAIN!.
Arduino Guitar Pedal Ian Andal IME 458 Dr. Pan.
ECE480 Team 8: Maximum Power Point Tracker Daniel Chen Yue Guo Luis Kalaff Jacob Mills Brenton Sirowatka.
Revision analog electronics
EECE Hybrid and Embedded Systems: Computation T. John Koo, Ph.D. Institute for Software Integrated Systems Department of Electrical Engineering and.
ELE 1110D Lecture review Common-emitter amplifier Some functions of transistors  Current-source  Emitter Follower  Common-emitter amplifier.
Loaded Common-Emitter Amplifier i.e. Low load impedance  low gain or high g m. But, high g m  low r e  low r in. Ideal amplifier has high gain, high.
Project Improvement Ideas Brian Drost Bangda Yang.
EECE Hybrid and Embedded Systems: Computation
V Input V Output Kelvin Monitor Points Input power +12 volts Output / Test Load Carrier Board Plug In Card ASIC Chips Load Keep Short Leads Cable Yale.
Molly, Gwyn, Sam, and Eric.  We had assumed that components should have a rated current no more than mA above the requirement.  Fred says that.
Lecture 151 1st Order Circuit Examples. Lecture 152 Typical Problems What is the voltage as a capacitor discharges to zero? What is the voltage as a capacitor.
Electronics Principles & Applications Sixth Edition Chapter 7 More About Small-Signal Amplifiers (student version) ©2003 Glencoe/McGraw-Hill Charles A.
Chapter 1 Quick review over Electronics and Electric Components Prepared By : Elec Solv.
Introduction to Prototyping a LED Driver Part I: Driver Design and Component Selection September 24-28, 2012 Carol Lenk.
An amplifier with a transistor that conducts during the entire 360º of the input signal cycle. Optimum class A operation is obtained by designing an amplifier.
Image of Arduino. Arduino discussion Address issues with circuit walk-through – Electricity, Programming, Arduino Concepts Work on BeatTable (next week)
Some Test Result about Current Sensor
1 Wireless power for mobile phones - System overview Nov 25, 2012 V1.1.
McGraw-Hill © 2008 The McGraw-Hill Companies Inc. All rights reserved. Electronics Principles & Applications Seventh Edition Chapter 7 More About Small-Signal.
Team Members Jordan Bennett Kyle Schultz Min Jae Lee Kevin Yeh.
Differential Preamp Stephen Kaye New Preamp Design Motivation Move preamplifier from controller to the Vacuum Interface Board (VIB) Amplifies.
Supervisor: Mr. Shahar Porat Written by: Oren Hemo Hadar Zrihan High Speed Digital System Lab Spring semester 2014 Final Presentation.
3 rd Work Meeting of CBS-MPD STS, Karelia, 2009 Towards CBM STS Volker Kleipa, GSI Darmstadt.
Linear Regulator Fundamentals
DESIGN, CONTROL AND IMPLEMENTATION OF INVERTERS TOPOLOGIES APPLIED TO DOMESTIC INDUCTION HEATING Student: Peter Doyle Supervisor: Prof. Gerard Hurley Ignacio.
Subsystem Design Review P16203 Andre Pelletreau, Kerry Oliviera, Jeremy Willman, Vincent Stowbunenko, Kai Maslanka.
A Compact Inductively Coupled Connector for Mobile Devices Wenxu Zhao, Peter Gadfort, Evan Erickson, Paul D. Franzon North Carolina State University Introduction.
ASIC Activities for the PANDA GSI Peter Wieczorek.
Control Why do we need system control? 1. Produce PWM
Sponsored By: Freescale Sponsor: Kevin Kemp Faculty Advisor: William Stapleton Project # 1.3.
1 Electrical Fundamentals We need some understanding of electrical fundamentals to do the lab exercises. Electric Circuit Consists of: –Power Source: Battery,
18240 Element two - Components INPUTS OUTPUTS PURPOSE TYPICAL USE.
Students: Thomas Carley Luke Ketcham Brendan Zimmer Advisors: Dr. Woonki Na Dr. Brian Huggins Bradley University Department Of Electrical Engineering 2/28/12.
AND Gate Inputs Output Input A (Switch) Input B (Switch) Output Y (Lamp) 0 (Open) 0 (OFF) A B Lamp.
Task List  Group management plan  Background studies  Link budget: optical/electrical  Build, test learning Rx board  Order components for transceiver.
FSAEe Data Acquisition System ECE 445 Senior Design Mohan Sha Raviraj Mahajan Mohammad Farooq Shaik TA: Ryan May Project No. 34 Spring 2013.
Wireless Power Transfer Via Inductive Coupling SENIOR DESIGN GROUP 1615 RYAN ANDREWS, MICHAEL DONOHUE, WEICHEN ZHANG.
US ADC (Analogue to Digital Conversion) and DAC (Digital to Analogue Conversion) 4 Weeks 3 Credits.
SmartCup – Team 42 Harington Lee, Chirag Patil, Arjun Sharma 1.
PROJECT ON FAULT ANALYSIS AND DETECTION GUIDED BY:: SUBMITTED BY:- MS. SHUBRA GOEL.
Introduction to various types of systems, Causal System.
Date of download: 6/29/2016 Copyright © ASME. All rights reserved. From: Development of a Quick Dynamic Response Maximum Power Point Tracking Algorithm.
Solid State Amplifier Controller and Sequencer Jeff Millar, wa1hco.
Diode Circuits and DC Power Supply
EST Technology Integration Corp.
Introduction to Digital Electronics
ET5 Summer 2009.
Basic MOS Amplifiers: DC and Low Frequency Behavior
SCADA for Remote Industrial Plant
There are three parts of a transformer
Block Diagram Transmitter Receiver × 2 Transmitter Power Supply ADC
COMMON-GATE AMPLIFIER
Graduation Project-II submitted to:
Electronic Instrumentation
ECE 445 Senior Design, Spring 2018
PLC Hardware Components.
Govt. Polytechnic, Dhangar
Vibration Energy Harvesting Circuit to Power Wireless Sensor Nodes
A Floating-Gate Technology for Digital CMOS Processes
Generators and Transformers
TRANSFORMERS.
Power Semiconductor Systems I
Photoelectric Switch Department Of Physics Prof.Kurkute.P.V.
Budget *Cost divided evenly between Fuel Cell and Fly Wheel Groups.
Logic Gates and Memory.
Voltage Regulator Board
Presentation transcript:

Motivation

Project Goals Build two PCB boards consists power transmitter and power receiver. Add a communication channel between the two boards in order to communicate power management calibration. Improving the power delivery efficiency based on the HFSS simulation.

M controller DC 2 DC AC source at our selected freq Voltage source Power AMP רשת תיאום coil 7 Segment indicator TX input

coilrectifier M controller temperature transistor DC 2 DC Load RX Voltage -output

Solution Algorithm The transistor current and the temperature sensor are the indicators for the M Controller whether to decrease/increase the DC2DC voltage. According to the following logic: Temperature goes up, reaching to 70 deg, or the transistor transmits high current. M controller decreases the DC2DC voltage Or changes the capacitor Temperature goes down, reaching to 60 deg, or the transistor transmits low current. M Controller increases the DC2DC voltage Or changes the capacitor

Solution Algorithm transistor temperature M controller DC 2 DC M controller DC 2 DC current רשת תיאום

BlockPartComment MicrocontrollerPic 10f 200 / Arduino modelAbility to read temperature, IR/BT read/write, ADC DC2DC TXInput 20V, output 5-20V. I out max 1A OscillatorK50-HC Gate DriverIXD1502 Power AmplifierEPC1010 RectifierSupport up to max 50V DC2DC RXVin 20V, Vout 5V Max I 3A TransistorNFET, vds 20V Temperature sensor10-90 deg, ability to communicate with the controller 7 Segment displayDisplaying the temperature received

Project Gantt