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34844 Datasheet(PDF) 15 Page - Freescale Semiconductor, Inc

Part # 34844
Description  10 Channel LED Backlight Driver with Integrated Power Supply
PDF  37 Pages
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Manufacturer  FREESCALE [Freescale Semiconductor, Inc]
Direct Link  http://www.freescale.com
Logo FREESCALE - Freescale Semiconductor, Inc

34844 Datasheet(HTML) 15 Page - Freescale Semiconductor, Inc

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Analog Integrated Circuit Device Data
Freescale Semiconductor
15
34844
FUNCTIONAL DESCRIPTION
FUNCTIONAL INTERNAL BLOCK DESCRIPTION
Table 5. Operation Current Consumption Modes
BOOST
The integrated boost converter operates in non-
synchronous mode and integrates a 3A FET. An integrated
sense circuit is used to sense the voltage at the LED current
mirror inputs and automatically sets the boost output voltage
to the minimum voltage needed to keep all LEDs biased with
the required current.
The boost converter also features internal Over-current
Protection (OCP) and has a user programmable Over-
voltage Protection (OVP).
The OVP can be set from 11 to 62V, ~4V spaced, using
the I2C interface (OVP Register). If I2C capability is not
present, the OVP can be controlled by a resistor divider
connected from VOUT to GND with its mid point tied to A0/
SEN pin (threshold = 6.5V). During an OVP condition, the
output voltage will go to the OVP level which is programmed
via the I2C interface or settled by a resistor divider on A0/SEN
pin.
Hardware OVP:
The OVP value should be set to greater than the maximum
LED voltage over the whole temperature range. A good
practice is to set it 5V or so above the max LED voltage.
The OCP operates on a cycle by cycle basis. However, if
the OCP condition remains for more than 10ms then the
device turns off the LED Drivers, the Boost goes to Sleep
Mode and the output FAULT pin goes into high impedance.
The device can only be restarted by recycling the enable or
creating a Power On Reset (POR).
The user can program the boost frequency by I2C
(BST[1:0]) only after the IC is powered up and before the
boost circuit is turned ON for the first time (PWM pin low to
high). This sequence avoids boost frequency to be changed
inadvertently during operation. The first I2C command has to
wait for 5.0ms after the part is turned ON, in order to allow
sufficient time for the device power up sequence to be
completed.
The boost controller has an integral track and hold
amplifier with indefinite hold time capability, to enable
immediate LED on cycles after extended off times. During
extended off times, the external LEDs cool down from their
normal quiescent operating temperature and thereby
experience a forward voltage change, typically an increase in
the forward voltage. This change can be significant for
applications with a large number of series LEDs in a string
operating at high current. If the boost controller did not track
this increased change, the potential on the LED drivers would
saturate for a few cycles once the LED channels are re-
enabled.
Also the device has a precharge voltage that add 0.5 Volts
to the Boost, cycle by cycle of the PWM. It helps the boost to
respond faster every time the load turns back on again.
MODE
EN Pin
SCK/SDA Pins
I2C Bit Command
Current Consumption
Mode
Comments
Manual
Low
Low
N/A
Shutdown
High
Low
N/A
Operational
SM-Bus
Low
Low (> 27ms)
EN bit = X
Shutdown
Low
Active
EN bit = 0
Sleep
Low
Active
EN bit = 1
Operational
I2C
Low
X
SETI2C bit = 1
I2C Low Power
(Shutdown)
Part Doesn’t
Wake-up
CLRI2C bit = 0
EN bit = X
High
X
SETI2C bit = 1
Sleep
CLRI2C bit = 0
EN bit = 0
High
X
SETI2C bit = 1
Operational
CLRI2C bit = 0
EN bit = 1
OVP R1
⋅
()
R1 R2
+
-----------------------------
6.5V
=



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