How to Color LEDs LED Color Standard BrightnessHigh Brightness Chip Material lpk (NM) Iv (mcd) Viewing Angle Chip Material lpk (NM) Iv 3 (mcd) Viewing.

Slides:



Advertisements
Similar presentations
A.J. Guzman Najinder Mann Terry Bankhead HARDWARE REPORT.
Advertisements

Fluorescent Lamps.
TERM 2 SCIENCE ACE DONE BY: HOON TIAN JUN, TERRENCE LEDs VS Energy-saving Light Bulbs.
How Architectural Engineers Impact Building Energy Use Lighting, Controls and Energy Savings.
Computer Graphics HARDWARE. LCD Displays Thinner and lighter. No tube or electron beams. Blocking/unblocking light through polarized crystals. Crystals.
USING LIGHT EMITTING DIODES FOR LIGHTING BY: GRANT GORMAN AND ALEC PAHL 5/6/2013 ABSTRACT: LIGHT EMITTING DIODES ARE SEMICONDUCTOR DEVICES THAT EMIT LIGHT.
 OLED stands for Organic Light-Emitting Diodes  It’s a solid-state semiconductor device that is 100 to 500 nanometers thick.  Consists of 5 Layers.
Types of Light Bulbs and Their Uses
Vision Basics Lighting II Vision Basics Lighting II ■ Contrast review ■ IR light ■ UV light ■ Dome light ■ Structured light.
Lesson 3. Producing Visible Light  The most important natural source of light on Earth is the Sun. There are, however, other natural sources of light,
IP Introduction © Oxford University Press 2011 Introduction.
Studio 3c LEDs: Periodic Trends in Action. Light Emitting Diodes (LED) Periodic Trends in Practice World's Largest LED display: 8 stories tall; 19 million.
The Future of Organic Electronics Jaya Movva Ben Spearin Jon Anderson Joshua Wrazen.
Semiconducting Light- Emitting Devices James A. Johnson 16 December 2006.
Organic Light Emitting Diodes (OLEDs) Physics 496/487 Matt Strassler.
CBE 555 Matt Zauner Geological Engineering Major.
“We now know a thousand ways not to build a light bulb”
CRT MONITOR cathode-ray tube
LED’s, what is it? LED: (Light-emitting diode) is an electric device that allows current to go in one way. LED uses a special material called semiconductors.
By: Garett henriksen 5/4/2015
If a substance emits a different color of light than it absorbs, that is called Fluorescence Quantum dots in solution fluoresce under UV light at different.
MEEN 3344 By: Ryan Evans. What the Flexible Organic Light Emitting Diode Consist of : The Top Layer is the Cathode layer made of tungsten releases electrons.
Terms 1. VGA VGA - Short for Video Graphics Array, VGA is a popular display standard developed by IBM and introduced in 1987 VGA provides 640 x 480 resolution.
LED Lights vs. Incandescent Lights vs. CFLs. What are LEDS ? LEDs, or light–emitting diodes, are semiconductor devices that produce visible light when.
CPO Science Foundations of Physics
TFT LCD. What is TFT LCD –Flat Panel Display What is TFT LCD  TFT-LCD stands for Thin-Film Transistor Liquid- Crystal Display  It is an advanced display.
Future Trends of Televisions By: Rion Núñez Team 11.
CRT MONITOR cathode-ray tube
Images:
Kang Bae Material Science MEEN 3344
LIGHT EMITTING DIODES (LED) By: Chris Grimm Megdi Morina Mike Oster Tony Joe Chupela.
POWER AND ENERGY IN THE HOME BY ALISSA WHITE AND RACHEL SHAH.
Light and Color. Light is a form of energy light travels extremely fast and over long distances light carries energy and information light travels in.
Solid State Lighting: The Future is here Xavier Fernando Ryerson University.
1 Chapter 2 Electic-ight conversion. 2 p-n junction We insert atoms of another material (called dopants) into a semiconductor so that either a majority.
What is spectroscopy? It is the study of how matter interacts with electromagnetic radiation (gamma rays down to radio waves) Matter can interact with.
WHAT IS LIGHT? Form of energy (first basic principle of light) that you can see Radiates (spreads out) in all directions Light travels in a straight line.
LIGHT EMITTING DIODES A brief analysis. What is an LED? A light emitting diode (LED) is essentially a PN junction opto- semiconductor that emits a monochromatic.
Technology that Produces Light 1. Incandescence – when objects are heated enough, they glow. Ex. Incandescent Light Bulbs – electricity heats up metal.
POLYMER LED Presented By UMAKANTA MOHAPATRO ROLL # EI
The electrons within atoms are the sources of all light.
Introduction Recently, more and more plasma displays are marketed. They have wide screens, comparable to the largest CRT displays, but they are only about.
Quantum Dot Led by Ignacio Aguilar. Introduction Quantum dots are nanoscale semiconductor particles that possess optical properties. Their emission color.
Light Emitting Diode By Rabail Faizan.. What is a LED?  A light-emitting diode (LED) is a semiconductor light source. LEDs are used as indicator lamps.
Daniel Bowser Fernando Robelo
Quantum Dots Brittany Webb Departments of Chemistry and Physics Utah State University Size: 2.3nm 5nm Source:
Producing Visible Light. Light produced by the Sun or other stars is called NATURAL light. Light produced through human technology is called ARTIFICIAL.
Display Technology INFO410 & INFO350 S Jack Pinches INFORMATION
Lighting Systems: Lamps for Special Applications Chapter 4 © 2006 Fairchild Publications, Inc.
Types of Spectra.
How much makes it through the atmosphere. Why a seasonal variation? First, why do we have seasons? Earth’s axis is tilted 23.5° to the plane of its orbit.
Output. What is Output?  Input  Processing  Storage  Output Output is data that has been processed into useful form, now called Information.
CenterPoint Energy Street Light Luminaire Replacement LED Street Light Conversion Program August 27, 2015.
LED Research James Edwards. What is an LED? An LED is also called by it’s full name a “Light Emitting Diode” They are compact light sources Much more.
OLEDs Theory & Fabrication
ARC 252 : Lighting & Acoustical Design Department of Architecture I BRAC University 1ARC 252 : Lighting & Acoustical Design LED.
Light Sources. Luminescent materials Luminescent materials ~materials that glow when they get excited. ex. most metals, certain gases (neon) Artificial.
MADHUBEN AND BHANUBHAI PATEL WOMEN’S INSTITUTE OF ENGINEERING FOR STUDIES AND RESEARCH IN COMPUTER AND COMMUNICATION TECHNOLOGY Presentation on: (LED TVs)
1/9 OLED (Organic Light Emitting Diode) Display Engineering.
Gujarat Technological University B.H.GARDI COLLEGE OF ENGINEERING AND TECHNOLOGY Prepared By Prajapati aditya(13ec032) Somaiya priyanka(12ec044) Presentation.
Light.
The Production of Light
Photonics-More 22 February 2017
Color How do we see color? What is color?
LIGHT WAVES.
Photonics-LED And LASER 29 February 2016
Topic 4: Energy and Electricity
PRINCIPLE AND WORKING OF A SEMICONDUCTOR LASER
LED Basics Jim Hinds RICHMOND CONTROLS.
Photonics-More 6 March 2019 One More slide on “Bandgap” Engineering.
Presentation transcript:

How to Color LEDs LED Color Standard BrightnessHigh Brightness Chip Material lpk (NM) Iv (mcd) Viewing Angle Chip Material lpk (NM) Iv 3 (mcd) Viewing Angle RedGaAsP/GaP AS AlInGaP OrangeGaAsP/Gap AS AlInGaP 6091,30030 AmberGaAsP/Gap AS AlInGaP 5921,30030 YellowGap GreenGap GaN5201,20045 Turquoise-- GaN4952,00030 Blue-- GaN Slide By Adam Bull

The approach is based on encapsulating semiconductor quantum dots and engineering their surfaces Doing so will effectively emit visible light when excited by near-ultraviolet light emitting diodes (LEDs). How to Color LEDs Slide By Adam Bull

The quantum dots strongly absorb light in the near UV range and re-emit visible light that has its color determined by both their size and surface chemistry. How to Color LEDs Slide By Adam Bull

The discretized nature of quantum dot bands means that the energy separation between the valence and conduction bands (the band gap) can be altered with the addition or the subtraction of just one atom, making for a size dependent Band gap. Predetermining the size of the QLEDs dots would fix the emitted photon wavelength at the appropriate specified color, even if it is not naturally occurring, an ability limited only to dots. The extremely small size and versatility of form for quantum dots allows them to be inserted into any medium necessary, paint, water, plastics and more. Slide By Adam Bull How to Color LEDs

General Applications of LEDs Architectural Lighting –Used for Exterior and Interior Lighting –The GardenLED Series by LEDtronics Only Requires Only 12-Volts DC to Operate Traffic Lights –Currently Being Installed in California Remote Controls –Infrared LEDs Sources: 1)“LED Uses 12 Watts of Power” By Loretta Conley 2)“California 'Green Lights' Energy Savings With New Traffic Signals” By Rob Schlichting 3) Mills, Evan (2005). "The Specter of Fuel-Based Lighting". Science 308: Slide By Joe Iannucci

General Applications of LEDs Christmas Lights –Use About 1/10 of the Electrical Current Used By Incandescent Lights Dot Matrix Arrangements –Used for Message Displays Sources: 1)“What are LED Christmas Lights?” By Bryan Pedersen 2) Mills, Evan (2005). "The Specter of Fuel-Based Lighting". Science 308: Slide By Joe Iannucci

Applications of LEDs with Quantum Dots Screens and Displays –Still in Development –Quantum dot-Organic Light-Emitting Devices (QD-OLED) Will Replace Liquid Crystal Displays (LCD) – Unlike LCDs, Quantum Dots Generate Their Own Light and Can be Tuned to Emit Any Color –Displays Thin and Very Bright Sources: 1)“Quantum-Dot LED May Be the Future of Screens” < Slide By Joe Iannucci

Applications of LEDs with Quantum Dots –White Light LEDs Used to Emit White Light in Laptops, Car Interiors, Building Interiors, and Flashlights Sources: 1)“Mighty Small Dots” Slide By Joe Iannucci

White Light LEDs –Researchers at Vanderbilt University Have Recently Created a True White Light LED Before This Development, White LEDs Had a Blue Tint Sources: 1)“Quantum Dots That Produce White Light Could Be the Light Bult’s Successor” By David F. Salisbury 2) Mills, Evan (2005). "The Specter of Fuel-Based Lighting". Science 308: Slide By Joe Iannucci –How Does It Work? Extremely Small Quantum Dots Coat a Blue LED Quantum Dots Glow White in Response to the Blue Light Creates Light Similar to That Created by Common Incandescent Bulbs

Advantages of LEDs Can emit light of an intended color without the use of a filter. Design of the package allows light to be focused. Insensitive to vibration/shock. Hard to break. Long life span and give off less heat. Slide By Ryan McCombs

Disadvantages of LEDs Currently more expensive than traditional lighting. “Performance largely depends on the ambient temperature of the operating environment.” Slide By Ryan McCombs

Why use Quantum Dot LEDs? Can be tuned to emit at any visible or infrared wavelength (color). Can be fabricated into a great variety of forms and media. Allows for incredible flexibility of form, letting quantum dots operate in matrixes, sheets, films, water solutions, gels, inks, and three-dimensional arrays. Slide By Ryan McCombs

Advantages over Organic Light Emitting Diodes Retain high quantum yields. Retain luminosities over long lifetimes. OLEDs have poor photostability and a short lifetime. Tiny quantum dots in a glass tube produce white light when stimulated by an ultraviolet laser beam. Slide By Ryan McCombs

Other Advantages of QLEDs The Department of Energy has estimated that LED lighting could reduce U.S. energy consumption for lighting by 29 percent by 2025, saving the nation's households about $125 million in the process. Infrared radiation in light bulbs produces large amounts of heat which accounts for low energy efficiency Slide By Ryan McCombs