參數資料
型號: LXMG1626-12-45
廠商: MICROSEMI CORP-ANALOG MIXED SIGNAL GROUP
元件分類: 顯示驅動器
英文描述: 12V Dual 3W CCFL Programmable Inverter Module
中文描述: EL DISPLAY DRIVER, DMA
文件頁數: 5/6頁
文件大小: 207K
代理商: LXMG1626-12-45
P
RODUCTION
D
ATASHEET
Microsemi
Integrated Products
11861 Western Avenue, Garden Grove, CA. 92841, 714-898-8121, Fax: 714-893-2570
Page 5
Copyright
2005
Rev.1.0, 2006-10-18
W
M
.
C
PanelMatch
LXMG1626-12-45
12V Dual 3W CCFL Programmable Inverter Module
TM
T Y P I C A L A P P L I C A T I O N
LXMG1626-12-45
12V
FAULT
`
NC
GND
V
HI2
V
LO
BRITE
V
IN1
SLEEP
SET
500K
DAC or
Pot
NC
V
HI1
Figure 1
– Brightness Control
(Output current set to maximum)
P
.
W
.
10 μs
to
200 μS
BRITE
LXMG1626-12-45
0 < P.W. < 100 % of period
PWM Signal
from System
Figure 1A
– PWM Brightness Control
LXMG1626-12-45
FAULT
GND
V
HI2
V
LO
SLEEP
SET
1
BRITE
12V
V
IN1
V
HI1
Lamp(s) Status
Normal Operation
One Lamp Open
Both Lamps Open
One Lamp High
Side Short to
Ground
Both Lamps High
Side Short to
Ground
FAULT
Low
High
High
Inverter Operation
Normal full lamp current
Normal @ ~ lamp current*
Shutdown
High
Normal @ ~ lamp current*
High
Shutdown
Figure 2
– FAULT Output Operation
* Under some conditions the second lamp will also shutdown, this is especially
true if the inverter draws an arc going open or when shorted.
The brightness control may be a voltage output DAC or
other voltage source, a digital pot or 500K manual pot. The
inverter contains an internal 215K pull-up to 3V to bias the
pot. A 3.3V Logic Level PWM signal from a micro-
controller may also be used as shown in Figure 1A.
If you need to turn the inverter ON/OFF remotely, connect
to TTL logic signal to the
SLEEP
input.
Connect V
HI1
and V
HI2
to high voltage wires from the
lamps. Connect V
LO
to the low voltage wire lamp return
(wire with thinner insulation). Never connect V
LO
to circuit
ground as this will defeat lamp current regulation. If both
lamp wires have heavy high voltage insulation, connect the
longest wire to V
LO
. This wire is typically white.
Use the SET input to change the desired maximum output
current. Generally the best lamp lifetime correlates with
driving the CCFL at the manufactures nominal current
setting.
Although the SET pin is designed such that just leaving it
open or grounding it is all that is needed to program the
output current, it can also be actively set. Using an open
collector or open drain logic signal will allow you to reduce
the lamp current for situations where greater dim range is
required, as an example in nighttime situations. In
conjunction with a light sensor or other timer the panel
could be set to higher brightness (maximum output current)
for daytime illumination and lower brightness (minimum or
typical output current) at nighttime. Since the dim ratio is a
factor of both the burst duty cycle and the peak output
current, using this technique the effective dim ratio can be
increased greater than the burst duty cycle alone.
Conversely, the SET input could be used to overdrive the
lamp temporarily to facilitate faster lamp warm up at initial
lamp turn on. Of course, any possible degradation of lamp
life from such practices is the user’s responsibility since not
all lamps are designed to be overdriven.
Input connector (CN1-8) FAULT signal which is normally
low will toggle high to indicate that an output fault
condition has occurred as summarized in the table to the left
figure 2. FAULT will toggle high if one or both lamps are
open or short circuited. If only one lamp opens, or its high
side shorts to ground then the other lamp should continue to
operate with the FAULT signal going high. If both lamps
open and/or both lamps are shorted the FAULT will toggle
high if it is not already high and the inverter output will
shutdown. Also if either low side connection of the lamps
is shorted to ground, or the lamps are shorted high side to
low side, FAULT will go high and the inverter will
shutdown. In order to restart the inverter after a fault it is
necessary to toggle the SLEEP input or cycle the V
IN1
input
supply. In fault induced shutdown mode the inverter will
draw about 15mA from V
IN1
supply.
A
P
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A
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