HV8CB Vihtori Virta Specification review. Motivation 0 – 4000V variable high voltage board Can be used in many applications.

Slides:



Advertisements
Similar presentations
Uninterruptible Power Supply (UPS)
Advertisements

Ryan Roberts April 2, Background The tool I am building will be used by me on my dads stock car team. I have a tool already that I use to measure.
Voice Controlled Helicopter Team Members: Jonathan Lam, Mian Zhu.
Guitar Effect Pedal By: Jerry Passeno Brian D. Stricklen.
A continuation of last year’s project to design a user interface module to assist in the calibration of internal combustion engines This year’s goal is.
Troubleshoot The AC Circuitry
EE 136 Project Presentation
Ahmed Abdel-Fattah Jerry Chang (a.k.a. Fred) Derrick Culver Matt Zenthoefer.
Project Improvement Ideas Brian Drost Bangda Yang.
A Solder Reflow Oven Dylan Gifford David Cobler. A typical $30,000 Reflow Oven Solder Paste Surface Mount Technology.
Electronics II Lab. Two Weeks. power connections Solderless Prototyping Board jacks for power connections.
ESE Lab Computer based Temperature Control Sid Deliwala, ESE Labs.
02/12/03 Brian Crosby Electrical Report Auto Tuner Brian Crosby.
EKT214 - ANALOG ELECTRONIC CIRCUIT II
Voice Controlled Helicopter Team Members: Jonathan Lam, Mian Zhu.
Chapter 6 Voltage Regulators - Part 2-.
CHAPTER 6 VOLTAGE REGULATOR POWER SUPPLIES (VOLTAGE REGULATORS) Fig. 6.1 Block diagram showing parts of a power supply. Power supply Power supply: a.
OPERATIONAL AMPLIFIERS Why do we study them at this point??? 1. OpAmps are very useful electronic components 2. We have already the tools to analyze practical.
Solar Powered Battery Charger
Lab #5 Overview Activity #1 - Simulation of an Op-Amp inverting amplifier Activity #2 - Build and Test the Op-Amp inverting amplifier Activity #3 - Determining.
Viking Pump Flow Manager - Phase 2 Senior Design May
Hybrid Wind & Solar Generation Project
Emco High Voltage DC to DC Converters BY John Kmiec.
ENGR 1181 First-Year Engineering Program College of Engineering Engineering Education Innovation Center First-Year Engineering Program Solar Energy Meter.
1 Applied Control Systems Technology. 2 Pin configuration Applied Control Systems.
MSP 430 Project ECE 300 Spring 2004 William S. McLemore Ruben D. Briano Cheng-Han Tsai.
AUTOMATIC VOLTAGE REGULATOR(AVR)
Paguio, Cindy Sandoval, Andrew Valdez, Rozelle EE 241 Design Problem.
Data Acquisition Systems
Justin Kenny – IME  Project Description + Goals  Block Diagram + Descriptions  Schematic + Layout  Construction, Testing + Problems.
Differential Preamp Stephen Kaye New Preamp Design Motivation Move preamplifier from controller to the Vacuum Interface Board (VIB) Amplifies.
Basics of Schematic Capture [ Single Supply OP-Amp Simulation ]
ECE 300 Microprocessor Project MSP 430. Group Members Demetric Banahene David Fish Zack Pannell.
Figure 1: ICD Single Channel Block Diagram Schematic PMT High Voltage Supply (see Figure 4 & 4a) LED Pulser PMT Calibration (see Figure 6) ICD Scintillator.
Last week Installed PADS and XILINX Learning PADS (tutorials of PADS Layout and Logick) Web- code.google.com/p/hv8cb/ Learning about my project.
Solar Power Array Management for the Solar Racing Team Mark Calotes Ginah Colón Alemneh Haile Nidhi Joshi Michael Lu School of Electrical and Computer.
DESIGNING A TEMPERATURESENSOR DESIGNING A TEMPERATURE SENSOR We will be using the following format for designing this circuit: CONTROLOUTPUTINPUT.
High Voltage 8- Channel Board [HV8CB] Vihtori Virta Design Review.
Chapter 6 Voltage Regulators - Part 2-.
Math – What is a Function? 1. 2 input output function.
Unit 3 REACTIVE POWER AND VOLTAGE CONTROL.  BASIC REQUIREMENTS OF EXCITATION CNTRL  Excitation Current up to 10’000 amps  Input frequency range from.
Imagine. SENIOR PROJECT Wireless Weather Monitor Final Presentation Project Team –Dale McClure –Dave McHugh –Joe Russo.
Low Power FM Receiver Andrew Young November 17, 2008.
Current Monitor System (1606) AJ Pikul Barath Parthasarathy Jason Stock Maya Dubrow.
Portable Rechargeable Output Power Supply (PROPS) Final Presentation April 24, 2008.
ELENA Fast Deflectors Generators N.Voumard, T. Gharsa.
CONTENTS: 1.Abstract. 2.Objective. 3.Block diagram. 4.Methodology. 5.Advantages and Disadvantages. 6.Applications. 7.Conclusion.
Plasma Sense Amplifier
Basic Equipment and Schematic Reading. Objectives Learn the basic equipment that will be used in the Lab. Learn some of the basic symbols used on electrical.
Mark Neil - Microprocessor Course 1 Digital to Analog Converters.
Closed Loop Temperature Control Circuit with LCD Display Mike Wooldridge ECE 4330 Embedded Systems.
CoCo – Cockroft Walton Feedback Control Circuit Deepak G, Paul T, Vladimir G 1D. Gajanana ET On the behalf of.
5-3-2 The Emitter Follower. Learning Objectives: At the end of this topic you will be able to;
Programmable Power Supply Characterization presentation Dec. 04, 2007 Gregory Kaplan Dmitry Babin Supervisor: Boaz Mizrahi.
Uninterruptible Power Supply (UPS)
Rectifiers, Filters and Regulator
AUTOMATIC TEMPERATURE CONTROLLED FAN USING 8051
NFC Menu Ordering System
UNIT-5 Design of CMOS Op Amps.
same for both sectors 45 and 56
Yuchen Chai, Pradeep Shenoy, Philip T. Krein
LM2596: Buck Regulator, Switching, 3.0 A
Digital Theremin with LED
SHU: The Running Companion
LM2596: Buck Regulator, Switching, 3.0 A
Arduino Controlled DC Load
Control Systems Spring 2016
OPERATIONAL AMPLIFIERS
LM2596: Buck Regulator, Switching, 3.0 A
Voltage Regulator Board
Presentation transcript:

HV8CB Vihtori Virta Specification review

Motivation 0 – 4000V variable high voltage board Can be used in many applications

Block Diagram INPUT 1, 15 V ADJUSTMENT 0-15V DC to HVDC CONVERTER 15 -> 4000 V OUTPUT V INPUT 2-7 INPUT 8 OPAMP (TRANSFER) LCD- DISPLAY 0–4.000 V

Specifications Output range: V Potentiometer adjust Sensing +- 1V (LV measure opamp sensing) +15 V Power Supply HV- board have to fit on standard rack (16’’) 8- Channels

Parts 15 V Power supply On/Off Switch Potentionmeter EMCO E-40 OpAmp (LM741?) Voltage meter (DK712?)

Milestones 1.Choose right components (2/10/2012) 2.Getting schematic done on paper (2/10/2012) Move it to pads (Have to learn how to do it) (2/17/2012) 3.Start and finish layout designs (2/24/2012) 4.Fabricate 5.Test