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Multiplexing EL Display System

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... Inductive Flyback circuit design. Full-wave Inductive Flyback circuit ... Half-wave Inductor Flyback circuit. PSDAS -IC Design Project Dissemination Seminar ... – PowerPoint PPT presentation

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Title: Multiplexing EL Display System


1
Multiplexing EL Display System
  • Company Dr. Ringo Lam
  • Micro-Glory International Ltd.
  • Mentor Ir Dr. C. K. Li
  • Dept. of Electronic and Information
    Engineering,
  • The Hong Kong Polytechnic University

2
Electroluminescence (EL) display
  • An optical phenomenon and electrical phenomenon
  • Emits light when an electric current passes
    through it
  • Usually driven by an 100 300 VAC source of
    frequency from a few hundreds to a few thousands
    hertz
  • Lifetime depends on voltage, frequency,
    temperature and humidity (humidity is the
    strongest contributor to shorten the lifetime)
  • Increased voltage and/or frequency, reduce the EL
    lifetime
  • EL brightness gradually decreases with time

3
EL Display Structure
  • Colors Yellow, Blue Green, Green, Blue, Red,
    Pink White, etc.
  • Materials ZnS, Mn/SrS, Ce, etc.

Source Supertex Inc.
4
Our Design
  • Analogue and digital circuit design
  • Analogue
  • Flyback circuit
  • Digital
  • Switching circuit

5
Existing EL Driver Designs
  • Half-wave Inductive Flyback circuit design
  • Full-wave Inductive Flyback circuit design
  • Oscillator design
  • DC-DC converter design
  • E.g. Supertex HV809

6
Half-wave Inductor Flyback circuit
7
Full-wave Inductor Flyback Symbolic Circuit
8
Output Waveform
Vpeak 80 150V
  • Power (DV)2 / (2fL)
  • Where D Duty Cycle
  • V Input Voltage
  • F converter Frequency
  • L Inductor value

9
Full-Wave Output
EL - A point output
EL - B point output
EL output A - B
10
Another Full-wave Flyback Circuit
11
Full-wave Inductor Flyback Circuit
12
Oscillator Type Design
13
Problems
  • Low cost
  • High luminance
  • Low power consumption

14
Advantages
  • Full-wave design
  • Provide higher luminance than conventional
    half-wave fly-back converter design
  • Can multiplex
  • Integrate analogue circuit with digital circuit
    to reduce the cost

15
Multiplex EL Circuit
16
Methodology
  • Pspice
  • Prototyping
  • Tanner Pro

17
Pspice
  • In the beginning, we test our design in Pspice
  • After verified by simulation, we build discrete
    component prototypes

18
Tanner-Pro
  • Design Tools
  • S-Edit
  • LVS
  • Netlist Converter
  • Simulation Tools
  • T-Spice
  • GateSim
  • W-Edit
  • Masking Tools
  • L-Edit

19
What we have learnt
  • Custom IC layout techniques
  • ASIC technologies

20
Our EL Clock Display IC
21
Future Plan
  • Employ the IC design techniques learnt in the
    program for another project.
  • In our new project, we have to design an
    electronic device to help workers to improve
    their efficiencies. Data can be collected from
    the device to the server through the network.
  • Although the device is mainly driven by MCUs, we
    may employ our knowledge learnt in the mentorship
    program to integrate logic control circuitry into
    an ASIC
  • Besides, we are writing patent documents and will
    apply for patents to protect our Intellectual
    Property
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