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MAX8790(2006) Ver la hoja de datos (PDF) - Maxim Integrated

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MAX8790 Datasheet PDF : 24 Pages
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Six-String White LED Driver with Active
Current Balancing for LCD Panel Applications
adequate for oscillator frequencies in the 166Hz < fPLL
< 500Hz range. The PLL frequency capture window is
0.6 x fPLL to fPLL.
The PLL is disabled in DPWM mode; consequently, the
BRT frequency is not limited by fPLL. The maximum
BRT frequency is determined by the minimum BRT on-
time of 50µs and the minimum acceptable dimming
factor. If a 1% dimming factor is needed, the maximum
BRT frequency is 200Hz. If a 10% dimming factor is
acceptable, the maximum BRT frequency is 2kHz.
In analog dimming mode, load-current transients can
occur when the BRT duty cycle abruptly changes on
the fly. Large regulation transients induce a flash on the
LED load that is observable with the naked eye and
should therefore be avoided. Such annoying flashes
can be eliminated by dynamically changing the ENA
pin setting. When a capacitor is connected to the CPLL
pin and the ENA pin is grounded, the PLL continues to
run but does not affect the dimming. When fast PLL
lockup transitions are required, the ENA pin can be
momentarily pulled to ground; after the PLL is locked
up, ENA can be pulled high to reenable PLL in dim-
ming control.
Thermal Shutdown
The MAX8790 includes a thermal-protection circuit.
When the local IC temperature exceeds +170°C (typ),
the controller and current sources shut down and do
not restart until the die temperature drops by 15°C.
Design Procedure
All MAX8790 designs should be prototyped and tested
prior to production. Table 3 provides a list of power
Table 3. Component List
CIRCUIT
Switching
Frequency
White LED
FIGURE 1
1MHz
3.2V (typ), 3.5V (max) at
20mA
Nichia NSSW008C
FIGURE 1
750kHz
3.2V (typ), 3.5V (max) at
20mA
Nichia NSSW008C
FIGURE 1
500kHz
3.2V (typ), 3.5V (max) at
20mA
Nichia NSSW008C
FIGURE 3
750kHz
3.2V (typ), 3.5V (max) at
20mA
Nichia NSSW008C
Number of 6 series x 6 parallel,
White LEDs 20mA (max)
8 series x 6 parallel,
20mA (max)
10 series x 6 parallel,
25mA (max)
6 series x 6 parallel,
20mA (max)
Input Voltage 4.5V to 5.5V, VCC = IN
Inductor L1 2.2µH, 2.5A power inductor
Sumida CDRH5D16-2R2
7V to 21V
7V to 21V
4.7µH, 2.05A power inductor 4.7µH, 3.6A power inductor
Sumida CDRH5D16-4R7 Sumida CDRH8D28-4R7
2.8V to 5.5V, VCC = 5V
0.9µH, 4.7A power inductor
Sumida CDRH5D16-0R9
Input
Capacitors
10µF ±10%, 10V X5R
10µF ±10%, 25V X5R
10µF ±10%, 25V X5R
10µF ±10%, 10V X5R
ceramic capacitor (1206) ceramic capacitor (1206) ceramic capacitor (1206) ceramic capacitor (1206)
Murata GRM31MR61A106K Murata GRM31CR61E106KA Murata GRM31CR61E106KA Murata GRM31MR61A106K
COUT Output
Capacitor
2.2µF ±10%, 50V X7R
ceramic capacitor (1x)
Murata GRM31CR71H225K
2.2µF ±10%, 50V X7R
ceramic capacitor (1206)
(1x)
Murata GRM31CR71H225K
4.7µF ±10%, 50V X7R
ceramic capacitor (1210)
(1x)
Murata GRM32ER71H475K
2.2µF ±10%, 50V X7R
ceramic capacitor (1x)
Murata GRM31CR71H225K
MOSFET N1
Diode
Rectifier D1
Sense
Resistor
30V, 3A n-channel MOSFET
(6-pin SC70)
Vishay Si1402DH
60V, 2.8A n-channel
MOSFET (6-pin TSOP)
Fairchild Semiconductor
FDC5612
Sanyo Semiconductor
CPH6424
2A, 30V Schottky diode
Nihon EC21QS03L
2A, 40V Schottky diode
Toshiba CMS11
Nihon EC21QS04
50mΩ ±1%, 1/2W
IRC LRC-LRF-1206LF-01-
R050-F
56mΩ ±1%, 1/2W
IRC LRC-LRF-1206LF-01-
R056-F
60V, 6A n-channel MOSFET 30V, 4.9A n-channel
(PowerPAK 1212-8)
MOSFET (6-pin TSOP)
Vishay Si7308DN
Vishay Si3456BDV
3A, 60V Schottky diode
Nihon EC31QS06
40mΩ ±1%, 1/2W
IRC LRC-LRF-1206LF-01-
R040-F
3A, 30V Schottky diode
Nihon EC31QS03L
30mΩ ±1%, 1/2W
IRC LRC-LRF-1206LF-01-
R030-F
16 ______________________________________________________________________________________

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