MP2483 – 2.5A, 55V, PROGRAMABLE FREQUENCY WHITE LED DRIVER
MP2483 Rev. 1.0 www.MonolithicPower.com 7
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© 2013 MPS. All Rights Reserved.
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
V
IN
=20V, I
LED
=0.7A, seven 3W LED in series, Buck-boost application, referred to VSS, unless
otherwise noted
IWLED vs VEN
-100
0
100
200
300
400
500
600
700
800
0 200 400 600 800 1000 1200 1400 1600
VEN(mV)
IWLED(mA)
IWLED vs Dimming Duty
0
100
200
300
400
500
600
700
800
0 0.2 0.4 0.6 0.8 1
DIMMING DUTY
IWLED(mA)
Efficiency vs. Input Voltage
INPUT VOLTAGE (V)
EFFICIENCY (%)
EN on
Steady state
EN
20V/div
I
L
2A/div
I
L
2A/div
SW
20V/div
SW
20V/div
I
WLED
500mA/div
I
WLED
500mA/div
V
IN
2V/div
I
INDUCTOR
2A/div
I
INDUCTOR
2A/div
I
INDUCTOR
1A/div
I
SHORT
2A/div
SW
20V/div
I
WLED
500mA/div
I
WLED
500mA/div
V
LED+
10V/div
100us/div
100us/div
1us/div
2ms/div
1ms/div
10us/div
Open LED Protection
Short Circuit Protection
(short LED + to VSS)
PWM dimming
EN off
EN
20V/div
SW
20V/div
SW
20V/div
SW
10V/div
EN
5V/div
OVP
500mV/div
V
IN
20V/div
01020304050
60
65
70
75
80
85
90
95
100
3WLED,710mA
4WLED,710mA
5WLED,710mA
MP2483 – 2.5A, 55V, PROGRAMABLE FREQUENCY WHITE LED DRIVER
MP2483 Rev. 1.0 www.MonolithicPower.com 8
12/25/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
FUNCTIONAL BLOCK DIAGRAM
Figure 1—Functional Block Diagram
MP2483 – 2.5A, 55V, PROGRAMABLE FREQUENCY WHITE LED DRIVER
MP2483 Rev. 1.0 www.MonolithicPower.com 9
12/25/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
OPERATION
The MP2483 is a current mode regulator. The
EA output voltage is proportional to the peak
inductor current.
At the beginning of a cycle, M1 is off. The EA
output voltage is higher than the current sense
amplifier output, and the current comparator’s
output is low. The rising edge of the 1.35MHz
CLK signal sets the RS Flip-Flop. Its output
turns on M1 thus connecting the SW pin and
inductor to the input supply.
The increasing inductor current is sensed and
amplified by the Current Sense Amplifier. Ramp
compensation is summed to the Current Sense
Amplifier output and compared to the Error
Amplifier output by the PWM Comparator.
When the sum of the Current Sense Amplifier
output and the Slope Compensation signal
exceeds the EA output voltage, the RS Flip-
Flop is reset and M1 is turned off. The external
Schottky rectifier diode (D1) conducts the
inductor current.
If the sum of the Current Sense Amplifier output
and the Slope Compensation signal does not
exceed the EA output for a whole cycle, then
the falling edge of the CLK resets the Flip-Flop.
The output of the Error Amplifier integrates the
voltage difference between the feedback and
the 0.198V reference. The polarity is a FB pin
voltage lower than 0.198V increases the EA
output voltage. Since the EA output voltage is
proportional to the peak inductor current, an
increase in its voltage also increases the
current delivered to the output.
Open LED Protection
If the LED is open, there is no voltage on the
FB pin. The duty cycle will increase until OVP-
VSS reaches the shutdown threshold set by the
external resistor divider. The top switch will be
turned off till the voltage OVP-VSS decreases
sufficiently.
Dimming Control
The MP2483 allows both DC and PWM
dimming. When the voltage on EN is less than
0.6V, the chip is turned off. For analog dimming,
when the voltage on EN is from 0.7V to 1.4V,
the LED current will change from 0% to 100%
of the maximum LED current. If the voltage on
EN pin is higher than 1.4V, maximum LED
current will be generated. For PWM dimming,
its amplitude (VDIM – VINGND) must exceed
1.4V. The PWM frequency is recommended in
range of 100Hz to 2kHz to get a good dimming
linearity.
Output Short Circuit Protection
The MP2483 integrates output short circuit
protection. When the output is shorted to VSS,
the voltage on OVP pin which detects the
output voltage gets smaller than 0.4V, and FB
pin senses no voltage (<0.1V) as no current
goes through the WLED. At this condition, the
operating frequency is folded back to decrease
the power consumption.
In Buck-boost application, when there is
possibility that the LED+ short circuit to VSS, it
is recommended to add a diode from VSS to
INGND to protect the IC, as shown in below
Figure 2 .
VDD OVP BST
SW
FB
RSETCOMPVSS
INGND
EN/DIM
OFF
ON
L1
4.7
C3
100nF
D1
B360A
C2
2.2
C1
10
VIN
VIN-VSS<55V
C4
1nF
DC or PWM Input
R1
R2
R3
C5
1nF
R4
VSS
D2
Figure 2—Buck-boost Application When
LED+ Possibly Short to VSS

MP2483DS-LF-Z

Mfr. #:
Manufacturer:
Monolithic Power Systems (MPS)
Description:
LED Lighting Drivers 2.5A Prog WLED Driver
Lifecycle:
New from this manufacturer.
Delivery:
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