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MAX8790 查看數據表(PDF) - Maxim Integrated

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MAX8790 Datasheet PDF : 23 Pages
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MAX8790
Six-String White LED Driver with Active
Current Balancing for LCD Panel Applications
clamped to a level set with the OV feedback input. When
this elevated output voltage is applied to the undamaged
strings, excessive voltage drop develops across the FB_
pins. If the resulting HVC signal exceeds VCC + 0.6V for
greater than 65ms, the fault latch is triggered to protect
the circuit.
LED-Short and String Mismatch Protection
Normally, white LEDs have variations in forward-voltage
drop of 3.1V to 3.6V. The MAX8790 can tolerate slight
mismatches between LED strings. When the sum of the
LED forward voltages creates a mismatch in the strings
so the HVC signal exceeds VCC + 0.6V for greater than
65ms, the fault latch is triggered in much the same way as
the circuit responds to open string faults. Similar protec-
tion is activated when an LED is shorted.
The larger the number of series-connected LEDs (N), the
smaller the tolerable mismatch between LEDs:
Error < VCC + 0.6V VSAT
N
VSAT ≈ 450mV and VCC = 5V
Error < 5.150V
N
Average Error Per LED = 5.150V
N
For N = 8, the average error per LED = 644mV.
For N = 10, the average error per LED = 510mV.
The larger the total mismatch, the larger the voltage drop
required across each current source to correct for the
error, and therefore the larger the dissipation within the
MAX8790.
Dimming Control
The MAX8790 features both analog and digital dimming
control. Analog dimming can provide potentially higher
converter efficiency because of low voltage drop across
each WLED when the current is low. Digital dimming
(DPWM) provides less WLED color distortion since the
WLED current is held at full scale when the WLED is on.
The MAX8790’s dimming control circuit consists of a PLL,
a digital comparator, and a DAC. The controller provides
100:1 dimming range through either analog or digital
control methods. Both methods translate the duty cycle
of the BRT input into a control signal for the LED current
sources. In analog dimming mode, the current-source
outputs are DC and the BRT duty cycle (12.5% < DBRT <
100%) modulates the amplitude of the currents. For DBRT
< 12.5%, the LED current is digitally modulated to reduce
the average LED current down to 1% of full scale. The
PLL detects the BRT frequency and phase, and adjusts
the current-source amplitude and duty cycle synchro-
nously (see Figure 4).
D = tON
tBRT
BRT
D = 50%
tON
tBRT
ILEDMAX
ANALOG DIMMING MODE
D = 30%
D = 12.5%
D = 6.25%
ILED
0A
Figure 4. LED Current Control Using Analog Dimming Mode
www.maximintegrated.com
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