LDS8621002-T2-960/960 Leadis Technology, LDS8621002-T2-960/960 Datasheet - Page 4

LED Drivers 200mA Dual Output w/ PWM intereface

LDS8621002-T2-960/960

Manufacturer Part Number
LDS8621002-T2-960/960
Description
LED Drivers 200mA Dual Output w/ PWM intereface
Manufacturer
Leadis Technology
Datasheet

Specifications of LDS8621002-T2-960/960

Low Level Output Current
0 mA
High Level Output Current
192 mA
Operating Supply Voltage
2.7 V to 5.5 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
TQFN-16
Minimum Operating Temperature
- 45 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
LDS8621
BLOCK DIAGRAM
BASIC OPERATION
At power-up, PWM1 and PWM2 pins should be logic
LOW. During power-up device performs internal
circuit reset that requires less than 10 µs. To start
device, either PWM1 or PWM2 pin should be set
logic HIGH. The LDS8621 starts operating in 1x
mode, at which the output is approximately equal to
the input supply voltage (less any internal voltage
losses). If the output voltage is sufficient to regulate
all LED currents, the device remains in 1x operating
mode.
The low dropout PowerLite™ Current regulator
(PCR) performs well at input voltages up to 50 mV
above LED forward voltage significantly increasing
driver’s efficiency. The LDS8621 monitors voltage
drop Vd across PCR at every channel in ON state. If
this voltage falls below 50 mV (typical) at any one
channel, (channel with LED with highest forward
voltage), the Mode Control Block changes charge
pump mode to the next multiplication ratio.
Vd = V
Charge Pump Output Resistance at given mode, Iout
is sum of all LED currents, and M is a charge pump’
multiplication ratio.
© 2008 Leadis Technology
Characteristics subject to change without notice
IN
x M – V
F
– Rcp x Iout, where Rcp is a
LEADIS TECHNOLOGY CONFIDENTIAL
Figure 2. LDS8621 Functional Block Diagram
PRELIMINARY
4
If the input voltage is insufficient or falls to a level
where Vd ≤50 mV, and the regulated currents cannot
be maintained, the low dropout PowerLite™ Current
Regulator switches the charge pump into 1.33x mode
(after a fixed delay time of about 800 μ s). In 1.33x
mode,
approximately equal to 1.33 times the input supply
voltage (less any internal voltage losses).
This sequence repeats at every mode until driver
enters the 2x mode.
If the device detects a sufficient input voltage is
present to drive all LED currents in 1x mode, it will
change automatically back to 1x mode. This only
applies for changing back to the 1x mode. The
difference between the input voltage when exiting 1x
mode and returning to 1x mode is called the 1x mode
transition hysteresis (about 600 mV).
LED Current Setting
The maximum current value in each of the LED is
factory preset. Each LED has independendet current
setting that allows use one of the LEDs for flash,
while other for a torch mode. If both LEDs should be
used in flash mode, or both cannels are connected in
the
charge
pump’
Doc. No. 8621DS, Rev. 0.2
output
voltage
is

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