Six-String WLED Driver with Integrated
Step-Up Converter
Full-Scale and Low-Level LED Current
The full-scale LED current is set by:
The controller can also operate in discontinuous con-
duction mode (DCM). In this mode, the inductor value
I LED_MAX =
20mA × 180k ?
R ISET
can be lower, but the peak inductor current is higher
than in CCM. In DCM, the maximum inductor value is
calculated with the following equation:
V IN(MIN)
L DCM(MAX) = ? 1 ? ?
V OUT(MAX) DIODE ? ?
?
V IN(MIN) 2 × η
?? I LIM = R × 0.97, when D < 30%
?
? I
= × (1.27-D), when D > 30%
( V OUT(MAX) + V DIODE ? 2 × V IN(MIN) ) × R S
L CCM(MIN) =
V IN
I OUT_CCM(MAX) = ? I LIM ?
? × ×η
V IN ? 12.5V
1 +
The acceptable resistance range for ISET is 120kI <
R ISET < 360k I , which corresponds to full-scale LED
current of 30mA > I LED_MAX > 10mA.
Thermal Shutdown
The MAX17127 includes a thermal-protection circuit.
When the local IC temperature exceeds +150 N C (typ),
the controller and current sources shut down. When
the thermal shutdown happens, the FPO output pin is
asserted low. The controller and current sources do not
restart until the next enable signal is sent or input supply
is recycled.
Design Procedure
All MAX17127 designs should be prototyped and tested
prior to production.
External component value choice is primarily dictated
by the output voltage and the maximum load current, as
well as maximum and minimum input voltages. Begin by
selecting an inductor value. Once the inductor is known,
choose the diode and capacitors.
Step-Up Converter Current Calculation
To ensure the stable operation, the MAX17127 includes
slope compensation, which sets the minimum inductor
value. In continuous conduction mode (CCM), the minimum
inductor value is calculated with the following equation:
2 × SF × f SW(MIN)
where:
? SF = 72mV, when V IN < 12.5V
?? 72mV
? SF = , when V IN > 12.5V
?
?? 10.6V
? ?
? + V
×
2 × f SW(MAX) × V OUT(MAX) × I OUT(MAX)
where the L DCM(MAX) is the maximum inductor value for
DCM, E is the nominal regulator efficiency (85%), and
I OUT(MAX) is the maximum output current.
The output current capability of the step-up regulator
is a function of current limit, input voltage, operating
frequency, and inductor value. Because the slope com-
pensation is used to stabilize the feedback loop, the
inductor current limit depends on the duty cycle, and is
determined with the following equation:
? SF
S
SF
?? LIM R S
where SF is the scale factor from the slope compensa-
tion, 2.5A is the current limit specified at 75% duty cycle,
and D is the duty cycle.
The output current capability depends on the current-
limit value and operating mode. The maximum output
current in CCM is governed by the following equation:
? 0.5 × D × V IN ?
? f SW × L ? V OUT
where I LIM is the current limit calculated above, E is the
nominal regulator efficiency (85%), and D is the duty
cycle. The corresponding duty cycle for this current is:
SF is a scale factor from the slope compensation
depending on input voltage (this allows a higher current
D =
V OUT ? V IN + V DIODE
V OUT ? I LIM × R ON + V DIODE
capability), the L CCM(MIN) is the minimum inductor value
for stable operation in CCM, and R S = 15m I (typ) is
the equivalent sensing scale factor from the controller’s
internal current-sense circuit.
where V DIODE is the forward voltage of the rectifier
diode and R ON is the internal MOSFET’s on-resistance
(0.2 I typ).
16
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相关代理商/技术参数
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MAX17127EVKIT+ 功能描述:电源管理IC开发工具 MAX17127 Eval Kit RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V
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MAX17129AETE+T 功能描述:LED照明驱动器 Six String WLED Drvr w/Integrated MOSFET RoHS:否 制造商:STMicroelectronics 输入电压:11.5 V to 23 V 工作频率: 最大电源电流:1.7 mA 输出电流: 最大工作温度: 安装风格:SMD/SMT 封装 / 箱体:SO-16N
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MAX17129EVKIT+ 功能描述:电源管理IC开发工具 MAX17129 Eval Kit RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V
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