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 YB1519 High-Power White LED Driver
Description
The YB1519 is a high-power boost converter. An adjustable current limit, wide range of input voltage, and up to 40V of switch voltage are designed to drive white LEDs back-lighting for large LCD panel. It can drive up to 10 LEDs in series or 18 LEDs in parallel/series configuration. The wide application VIN range makes YB1519 suitable for many types of battery applications such as Li-ions, Alkaline, or Sealed Lead Acid batteries. The adjustable inductor current optimizes the performance for different output drive capability by an external resistor. The LED current is set by a resistor connected to FB pin. The On/Of duty with clock frequency from 1K to 100KHz at EN pin can control the LED brightness
Features
2V to 16V Input Voltage 40V Maximum Output Voltage Drive up to 18 White LEDs Adjustable Inductor Current 1s Constant Off-time PFM Control 1KHz to 100KHz PWM Dimming Control
Applications
High Power WLED Backlight Solution LCD Monitor LCD TV Car TV, Portable DVD GPS navigation system Handheld Game
Typical Application Circuit
VIN= 6 to14V
10uF 16V 22uH SL12 VIN LX EN Bypass Iset LX
4.7uF 35V
36V
BZV55-B 36
YB 1519
FB
2K
10nF 6.3V
10K
AGND
PGND
RFB 60OHM
Figure 1. Typical application circuit
YB1519 MRev.1.2
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YB1519 High-Power White LED Driver
Pin Configuration
YB 1519 PGND 1 AGND 2 VIN 3 Bypass 4 FB 5 MSOP 10
Figure 2. Pin configuration
10 LX 9 LX GND 8 Iset 7 NC 6 EN
Pin Description
Table 1
Pin 1 2 3 4 5 6 7 8 9 10
Name PGND AGND VIN Bypass FB EN NC Iset LX LX
Description Power ground, tie solidly to system ground of the board. Analog ground, tie solidly to system ground of the board. Input supply pin. Must be locally bypassed with a capacitor to eliminate noise. Internal compensation usage. A 10nF bypass capacitor is recommended. Feedback input pin. Enable control pin. Active high. No connection. Tie a resistor to ground to set inductor current. Switch pin, connect to external inductor. Switch pin, connect to external inductor.
Ordering Information
Order Number YB1519 Package Type MSOP-10 Supplied as 2500 Units Tape & Reel Package Marking YB1519
YB1519 MRev.1.2
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YB1519 High-Power White LED Driver
Absolute Maximum Ratings
Supply Voltage......................................... -0.3V to 16V LX Switch Voltage.................................... -0.3V to 40V Junction Temperature Range........................... +150 Storage Temperature Range ............. -65 to +150 Lead Temperature............................................ +250
Recommended Operating Conditions
Input Supply Voltage.............................. 2.2V to 16V Operating Temperature..................... -40 to +85
Electrical Characteristics
At TA=25, VIN=6V, unless otherwise noted. Table 2
Function Parameter Input Voltage Range VFB Threshold Voltage VFB Pin Bias Current Quiescent Current Quiescent Current in shutdown Switching Off Time Switching On VCE,SAT LX Leakage Current EN Logic Low Level EN Logic High Level EN Input Bias Current EN Input Bias Current ISET Source Current Inductor Peak Current ISWITCH=300mA VFB=1.23V
Conditions
Min 2.2 1.21 180
Typ
Max 16
Units V V nA A A s
1.23
1.25 250 400 10
VFB=1.5V, not switching VEN=0V 1 220 1
330 10 0.4
mV A V V A A A A
VFB=1.5V, VLX=40V EN pin voltage low EN pin voltage high VEN=3V VEN=0V 6 Rlimit=15K, Vin=12V, Vout=30V, Iout = 150mA 1.4 1.8
VIN 4.5 15 1 8 1.5 10 1.6
YB1519 MRev.1.2
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YB1519 High-Power White LED Driver
Typical Characteristics
.
VIN=3 to6V
10F 16V VIN
33H
SL12
VIN=5 to8V
10F 16V
22H
SL12
LX EN Bypass LX
4.7F 35V 36V
EN Bypass
VIN LX LX
36V
4.7F 35V
YB1519
FB
ISET 10nF 9.1K
AGND PGND
2K
YB1519
FB
ISET 10nF
PGND AGND
2K
RFB 60OHM
1K
FB R 60OHM
Figure 3. 8 LEDs in a Series
Figure 4. 10 LEDs in a Series
VIN=8 to14V
10F 16V VIN EN Bypass
10H
SL12
VIN=8 to 14V
10F 16V
33H
SL12
LX
4.7F 35V
VIN
36V
4.7F 35V
36V
LX
EN Bypass
LX
YB1519
FB
YB1519
FB
2K
ISET
PGND AGND
2K
ISET 10nF
1K
RFB1 60OHM
RFB2 60OHM
1K
AGND
PGND
RFB1 60OHM
RFB2 60OHM
Figure 5. 2 Legs of 6 LEDs in a Series
Figure 6. 2 Legs of 9 LEDs in a Series
CH1: LX CH2: Inductor Current CH3: VOUT (18 LEDs)
Figure 7. Typical Switching Waveform
CH1: EN CH2: LX CH3: VOUT (18 LEDs)
Figure 8. PWM Brightness Control by EN
YB1519 MRev.1.2
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YB1519 High-Power White LED Driver
Functional Block Diagram
VBAT CIN
L1
Charge Enable EN VIN SW Cout Bypass VFB 1. 23V VREF Set Q Reset Off Time Control Q1 D1
10nF
ISET
GND
60OHM
Figure 9. Block Diagram
Functional Description
The YB1519 is a constant current high-power white LED driver. It can drive up to 10 LEDs in series or 18 LEDs in parallel/series configuration. The IC uses a peak current, 1s off-time PFM scheme. The inductor current ramp up when power NPN is turn on. Once the inductor current reaches the preset value determined by the ISET pin, output power NPN is shut off and the energy stored in inductor is delivered to the output capacitor. Once the discharge cycle is completed, the power NPN is on again. If the FB voltage has not yet reached the designated value of 1.23V, the inductor current will be charged up again. This charging and discharging sequence will repeat itself until the FB voltage gets to the designated value and triggers the on-off
YB1519 MRev.1.2
latch to hold off the power NPN regardless the inductor current value. LED Current and Brightness control The LED's current is set by the resistor connected at FB pin to GND using:
I LED =
1.23V RFB
LED's brightness is accomplished by applying a PWM signal with a frequency range between 100Hz and 50KHz to the EN pin.
Inductor Current Set Using a resistor connected from ISET to
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YB1519 High-Power White LED Driver
GND is able to set inductor current. An 8A current source is coming out of the YB1519 and going through the ISET resistor to ground. The higher the ISET pin voltage, the larger the peak inductor current is built up. When using this equation be sure to use the minimum input voltage for the application, such as for battery-powered application. Choosing inductor with low ESR decrease power losses and increase efficiency. Diode selection To maintain high efficiency, the average current rating of the schottky diode should be large than the peak inductor current. Schottky diode with a low forward drop and fast switching speeds are ideal for increase efficiency in portable application. Choose a reverse breakdown of the schottky diode large than the output voltage. Thermal Consideration: When YB1519 is set to handle high switch current will result in internal power dissipation and thus generating heat. Always beware the amount of power dissipated during operation. To resolve the thermal built up issue, reduce resistance at ISET which lower the peak switch current. Layout consideration The input capacitor CIN must be placed close to the IC. This will reduce copper trace resistance which effect input voltage ripple of the IC. The output capacitor, COUT, should also be placed close to the IC. Any copper trace connections for the COUT capacitor can increase the series resistance, which directly effect output voltage ripple. The feedback resister should be kept close to the FB pin to
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Application Information
Enable/Shutdown The YB1519 comes with an active-high enable pin that allows the white LED driver to be enabled. Forcing the enable pin low disables the chip and puts it into the shutdown mode. This pin cannot be left floating; as it may cause an undetermined state. Input/Output Capacitor It is recommended to use a 10F capacitor on the YB1519 input and a 4.7F capacitor on the output. Higher capacitance is allowed to reduce the voltage and current ripple. Choose low ESR capacitors for the output to minimize output ripple. Multilayer ceramic capacitors are good choice for the input and output capacitor. Inductor The appropriate inductor for a given application is calculated using the following equation:
V - VIN,MIN + VD L = OUT I SET TOFF
Where VD is the schottky diode voltage, ISET is the setting for inductor current, and TOFF is the switch off time designed for 1s.
YB1519 MRev.1.2
www.yobon.com.tw
YB1519 High-Power White LED Driver
minimize copper trace connections that can inject noise into the system. The ground connection for the feedback resistor network should connect directly to an analog ground plane. Trace connections
made to the inductor and schottky diode should be short and wider for reducing power dissipation and increase overall efficiency.
Package Information
Note 5. X = 1.48mm, Y = 1.34mm
YB1519 MRev.1.2
www.yobon.com.tw
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