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SP4403EU Datasheet(PDF) 5 Page - Sipex Corporation

Part # SP4403EU
Description  Low Voltage Electroluminescent Lamp Driver
PDF  14 Pages
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Manufacturer  SIPEX [Sipex Corporation]
Direct Link  http://www.sipex.com
Logo SIPEX - Sipex Corporation

SP4403EU Datasheet(HTML) 5 Page - Sipex Corporation

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5
SP4403DS/05
SP4403 Electroluminescent Lamp Driver
© Copyright 2000 Sipex Corporation
This approach is large and bulky, and cannot be
implemented in most hand held equipment.
Sipex now offers low power single chip driver
circuits specifically designed to drive small to
medium sized electroluminescent panels.
All that is required for the EL driver circuitry is
an external inductor and an external capacitor.
Market Applications
Electroluminescent backlighting is ideal when
used with LCD displays, keypads, or other backlit
readouts. Its main use is to illuminate displays in
dim to dark conditions for momentary periods
of time. EL lamps typically consume less power
than LEDs or incandescent bulbs making them
ideal for battery powered products. Also, EL
lamps are able to evenly light an area without
creating any undesirable "hot spots" in the
display.
THEORY OF OPERATION
The SP4403 is a DC-AC inverter made up of:
1. The Oscillator/Frequency Divider, 2. The
Coil, and 3. The Switched H-bridge Network.
Further details of each element follow.
The Oscillator/Frequency Divider
The oscillator provides the SP4403 with an
on-chip clock used to control the coil switch
(f
COIL) and the H-bridge network (fLAMP and fLAMP).
Although the oscillator frequency can be varied
to optimize the lamp output, the ratio of f
COIL/
f
LAMP will always equal 128.
Figure 1 shows the oscillator output driving the
coil and the output of the oscillator with 7 flip
flops driving the lamp. The suggested oscillator
frequency is 50kHz (R
OSC = 450kΩ) for fCOIL.
The oscillator output is internally divided down
by 7 flip flops to create a second internal control
signal at 390Hz for f
LAMP.
The Coil
The supply V
BATT can range from +2.2V to
+4.5V. V
BATT should not exceed the maximum
coil current specification. The majority of the
current goes through the coil and is typically
much greater than I
DD.
The coil is an external component connected
from V
BATT to pin 3 of the SP4403. Energy is
stored in the coil according to the equation
E
L=1/2LIP
2 where I
P, to the first approximation,
is the product I
P = (tON)(VBATT - VCE)/L),
where t
ON is the time it takes for the coil to reach
its peak current, V
CE is the voltage drop across
the internal NPN switch transistor, and L is the
inductance of the coil. When the NPN transistor
switch is off, the energy is forced through an
internal diode which drives the switched H-
bridge network. This energy recovery is directly
related to the brightness of the EL lamp output.
There are many variations among coils; magnetic
material differences, winding differences and
parasitic capacitances. For suggested coil
suppliers, refer to Page 7.
The f
COIL signal controls a switch that connects
the end of the coil at pin 3 to ground or to open
circuit. The f
COIL signal is a 90% duty cycle
signal switching at the oscillator frequency,
50kHz. During the time when the f
COIL signal is
HIGH, the coil is connected from V
BATT to ground
and a charged magnetic field is created in the
coil. When the f
COIL signal is LOW, the ground
connection is switched open, the field collapses,
and the energy in the inductor is forced to flow
toward the high voltage H-bridge switches.
f
COIL
will send an array of charge pulses (see
Figure 4) to the lamp. Each pulse increases the
voltage drop across the lamp in discrete steps.
As the voltage potential approaches its maximum,
the steps become smaller (see Figure 3).
Figure 2. Typical Application Circuit for the SP4403, Set
for a Square Wave Output with C
INT = 0.1µF
ROSC
VSS
COIL
CINT
SP4403
VBATT
C1
0.1
µF
ROSC
450k
L1
470
µH
3
6
8
1
7
2
ELEN
D1
1N4148
CINT
1800pF
optional device
VDD
EL2
EL1
EL Lamp
5
4
C2
10nF
*
*
*



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