NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] Presented by VED PRAKASH NAYAK EE200118008 Under the guidance.

Slides:



Advertisements
Similar presentations
Chapter 9 Capacitors.
Advertisements

Chapter 15 Capacitance and RC Circuits © Goodheart-Willcox Co., Inc.Permission granted to reproduce for educational use only. Objectives Define capacitance.
Technical Seminar on Refrigeration & Air Conditioning
Capacitors for RF Applications Michael P. Busse Vice President Dielectric Laboratories, Inc 2777 Rte. 20 East Cazenovia, NY
Introductory Circuit Analysis Robert L. Boylestad
BEXS100 - Basic Electricity Unit 19 Capacitors. Unit Objectives List the three (3) factors that determine the capacitance of a capacitor Explain electrostatic.
Capacitance Al Penney VO1NO.
2. Capacitor ConstructionTheory Support Electronics - AC Circuits 1 of 13 Capacitor Construction Topics covered in this presentation: Capacitor Construction.
National Institute of Science & Technology Technical Seminar Presentation-2004 Presented By: Danish Kumar Hotta [EC ] Compact Microstrip Antenna.
Capacitance and Dielectrics
HT13 150C Dielectric Development New high temperature capacitor dielectric Accelerated life testing complete at 2,000 hours and 150C Outstanding peak current.
Double Layer Electrolytic Capacitors Design Team 10 Technical Lecture ECE_480_FS08.
Lecture 101 Introduction to Energy Storage Elements: The Capacitor.
RF Packaging Jason Shin Fall 2007: ECEN 5004 Fundamentals of Microsystems Packaging Graduate Presentation.
Double Layer Electrolytic Capacitors Design Team 10 Technical Lecture ECE_480_FS08.
Double Layer Electrolytic Capacitors Design Team 10 Technical Lecture ECE_480_FS08.
Key Capacitor Specifications
Capacitors and Inductors. Introduction Resistor: a passive element which dissipates energy only Two important passive linear circuit elements: 1)Capacitor.
Capacitors.
Capacitors & Inductors. Introduction Unlike resistors, which dissipate energy, capacitors and inductors do not dissipate but store energy, which can be.
OSCILLATION SUPPRESSION COMPONENT INVESTIGATION: CAPACITANCE AS A FUNCTION OF TEMPERATURE AND VOLTAGE MICHAEL GURR ME304 FALL 2012.
Electric Circuit Capacitors Electric Circuits Capacitors DK 12.
OSCILLATION SUPPRESSION COMPONENT INVESTIGATION: CAPACITANCE AS A FUNCTION OF TEMPERATURE AND VOLTAGE MICHAEL GURR ME304 FALL 2012.
Switching Power Supply Component Selection
Energy Storage Devices Prepared By : Shingala Nital ( ) Paghdal Radhika ( ) Bopaliya Mamta ( ) Guided By : Prof. Tank.
PH 0101 Unit-5 Lecture-91 Introduction Principle, construction and working of Ultracapacitor Advantage, disadvantage and application PH0101 UNIT-5 LECTURE.
Motor Testing (Motor Only)
WIMA DC-LINK Capacitors
1/48 Passive components and circuits - CCP Lecture 9.
Fall 2001ENGR201 Capacitance & Inductance1 Capacitor, also called electrical condenser, device for storing an electrical charge. In its simplest form a.
1 © Unitec New Zealand DE4401 DC C APACITANCE AND CAPACITORS.
Levels of high voltage: World over the levels are classified as: LOW MEDIUM HIGH EXTRA and ULTRA HIGH Voltages However, the exact magnitude of these levels.
EE1008- ELECTRICAL AND ELECTRONICS MEASUREMENTS AND INSTRUMENTATION
Fundamentals of Electric Circuits Chapter 6
Copyright © 2012 Pearson Education Inc. PowerPoint ® Lectures for University Physics, Thirteenth Edition – Hugh D. Young and Roger A. Freedman Lectures.
Chapter 10 Capacitors and Capacitance. 2 Capacitance Capacitor –Stores charge –Two conductive plates separated by insulator –Insulating material called.
EE1008- ELECTRICAL AND ELECTRONICS MEASUREMENTS AND INSTRUMENTATION UNIT -1 Measurement of R, L, C 10/21/2015www.noteshit.com1.
Charges positive (+) negative (-) conservation Force (field) Potential (energy) Force between point charges Force on charge in the field Connect field.
CAPACITORS Guided By: Mrs. Megha Panicker Prepared By: T13EE02 Rohan Alwani T13EE12 Kumavat Sunilkumar T13EE29 Patel Ketankumar B. SAL TECHNICAL CAMPUS.
EMT 212 ANALOG ELECTRONICS Professor Robert T Kennedy.
Capacitors are one of the fundamental passive components. In its most basic form, it is composed of two conductive plates separated by an insulating dielectric.
1 Institute of Mechatronics and Information Systems Control and Driving Systems.
Early capacitors or “condensers” were known as Leyden Jars.
1 Decoupling Capacitors Requirements Intel - Microprocessor power levels in the past have increased exponentially, which has led to increased complexity.
1 AGBell – EECT by Andrew G. Bell (260) Chapter 17 Capacitance.
Capacitor Engr. Faheemullah Shaikh Lecturer, Department of Electrical Engineering.
Technical Seminar Presentation 2004 Presented by- Geetanjali Konhar EE O81 1 Dynamic power management for embedded system “ Dynamic power management.
BY: AANCHAL SINGH ANKITA DUBEY AYUSHI SRIVASTAVA.
Capacitors AC Circuits I. Capacitors and Capacitance: An Overview Capacitance – the ability of a component to store energy in the form of an electrostatic.
Chapter 9 CAPACITOR.
Chapter 9 Capacitors. Objectives Describe the basic structure and characteristics of a capacitor Discuss various types of capacitors Analyze series capacitors.
Capacitors A capacitor is a device that has the ability “capacity” to store electric charge and energy.
IDAX 300 Insulation Diagnostic Analyzer Dielectric Frequency Response Also known as: Frequency Domain Spectroscopy.
Chapter 31 Alternating Current.
CH5715 Energy Conversion and Storage
Capacitors.
Chapter 25 Capacitance In this chapter we will cover the following topics: -Capacitance C of a system of two isolated conductors.
Chapter 25 Capacitance In this chapter we will cover the following topics: -Capacitance C of a system of two isolated conductors.
Electric Circuits Fall, 2014
Construction of Mica Capacitor And Its Application
Testing of Transformers
Capacitance and Dielectrics
Prepared by T Vigneshkumar S Vijayakumar
CAPACITANCE SENSOR.
SUPERCAPACITOR AS AN ENERGY STORAGE DEVICE
Electromechanical Systems
Capacitors for RF Applications Michael P. Busse Vice President
Lecture 5 - RC/RL First-Order Circuits
Chapter 9 Capacitors.
Presentation transcript:

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] Presented by VED PRAKASH NAYAK EE Under the guidance of Mr. SHYAMALENDU MOHANTY A TECHNICAL SEMINAR

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] INTRODUCTION  Geometry of construction  Equivalent ckt. of capacitor

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] BASIC PROPERTIES  Electrical  Capacitance of capacitor  Dissipation factor  measure losses

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] BASIC PROPERTIES  Temperature effect  Various transformation at different temp.

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] BASIC PROPERTIES  Voltage effects  Effect of voltage Voltage coefficient of capacitance

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] BASIC PROPERTIES  Frequency effects  Varies with different dielectric  Aging  What is aging  Aging cycle

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] DISCUSSION AND RESULTS  Electrical characteristics of HTPC  Impedance vs. Frequency  Capacitance vs. Frequency  Phase angle vs. Frequency

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] CAPACITOR PERFORMANCE  Frequency  Voltage Range

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] CAPACITOR PERFORMANCE  Energy Density  Temperature Coefficient  Specific Power Density

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] CAPACITOR PERFORMANCE  High Power Testing  Step to Develop HTPC

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] FEATURES  Improved Mechanical Constructions  Enhanced impregnation and oil circulation  Improved transient over voltage endurance  High inrush & discharge current withstanding capability

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] FEATURES  Low Dielectric Loss  Corona ring design  Insulator Bushings

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] APPLICATIONS  Automotive applications  Industrial application  Live-Line Indication  Electrostatic Spray Guns  DC Power Supplies

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] CONCLUSION  Connections should be solid and large in proportion to the termination area  Capacitor electrical performance is similar to that of tantalum electrolytic capacitor  Finds applications in military, avionics, and wireless communications

NATIONAL INSTITUTE OF SCIENCE & TECHNOLOGY HIGH TENSION POWER CAPACITOR VED PRAKASH NAYAK [ ] THANK U