参数资料
型号: MSL2041GU-R
厂商: Atmel
文件页数: 16/20页
文件大小: 0K
描述: IC LED DRVR 4 CHAN PWM 32SOP
产品培训模块: Industrial Panel Backlighting Driver ICs
LED Lighting Drivers
LED Driver Basics
标准包装: 1,000
系列: Adaptive SourcePower™
拓扑: 交直流离线开关,PWM
输出数: 4
内部驱动器:
类型 - 主要: 通用
电源电压: 10.8 V ~ 13.2 V
输出电压: 9.6V
安装类型: 表面贴装
封装/外壳: 32-SOIC(0.295",7.50mm 宽)
供应商设备封装: 32-SOP
包装: 带卷 (TR)
工作温度: -40°C ~ 85°C
To select R TOP and R BOTTOM first determine V OUT(MIN) and
V OUT(MAX) , the minimum and maximum string supply
voltage limits, using:
V OUT(MIN) = ( V f (MIN) *[# ofLEDs ] ) + 0.5 ,
and
V OUT(MAX) = ( V f (MAX) *[# ofLEDs ] ) + 0.5 ,
where V f(MIN) and V f(MAX) are the LED’s minimum and
maximum forward voltage drops at the peak current set
by R S . For example, if the LED data are V f(MIN) = 3.5V and
V f(MAX) = 3.8V, and ten LEDs are used in a string, then
the total minimum and maximum voltage drop across a
string is 35V and 38V. Adding an allowance of 0.5V for
the string drive MOSFET headroom brings V OUT(MIN) to
35.5V and V OUT(MAX) to 38.5V. Then determine R TOP using:
Assure that the power supply settling time for a voltage
step size of 1.1μA * R TOP is less than the 4ms EO
Step-hold duration time.
Using Multiple EOs/Devices to
Control a Common Power Supply
Cascade multiple Efficiency Optimizers (EOs), either
within the same device or across multiple devices, into
a chain configuration (Figure 6), with the FBIn of one
EO connected to the FBOn of the next. Connect the
first FBOn to the power supply feedback resistor node
through a diode (1N4148 or similar) placed close to the
power supply feedback node, and unused FBIn inputs
to ground as close to the MSL2041/2 as possible. The
chained EOs work together to ensure that the system
operates at optimum efficiency. Note that the accuracy
of the feedback chain may degrade through each link
of the FBIn/FBOn chain by 2% (typical). Derate the
maximum FBOn current using:
R TOP =
V OUT ( MAX ) ? V OUT ( MIN )
I FBOn ( MAX )
,
I FBO(MAX / MIN) = 280.5 μA * (0.98) N -1 ,
where N is the number of EOs connected in series. Use
where I FBOn(MAX) is the 280.5μA maximum output current
of the Efficiency Optimizer outputs FBOn (280.5μA =
1.1μA * 255, the current per LSB of the FBO DAC times
the maximum DAC count). Finally, determine R BOTTOM
using:
I FBOn(MAX/MIN) in the above R TOP resistor equation for the
term I FBOn(MAX) instead of using 280.5μA.
Take care in laying out the traces for the Efficiency
Optimizer connections. Minimize the FBIn/FBOn trace
lengths as much as possible. Do not route the signals
R BOTTOM = R TOP *
V FB
V OUT(MAX) _ V FB
,
close to traces with large variations in voltage or current,
because noise may couple into FBIn. If these traces must
be routed near noisy signals, shield them from noise by
using ground planes or guard traces. For clarity, Figure
6 shows Source and Drain connections only for unused
outputs 2 and 3 of device two. Note that because of the
where V FB is the regulation feedback voltage of the
power supply. Place a diode (1N4148 or similar)
between FBOn and the supply’s feedback node to
protect the MSL2041/2 against current flow into FBOn.
Once configured, determine the change in power supply
output voltage in response to a change in FBOn output
current using:
interplay between EOs and the automatic fault response
behavior, when both strings monitored by a single EO
fault and turn off, that the string supply is forced to its
maximum value and all remaining active strings typically
detect short circuit faults and also turn off.
? V OUT = ? I FBOn ? R TOP
16
.
Atmel LED Drivers-MSL2041/2042
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