参数资料
型号: LT3980IDE#PBF
厂商: Linear Technology
文件页数: 9/24页
文件大小: 0K
描述: IC REG BUCK ADJ 2A 14DFN
标准包装: 91
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 0.79 V ~ 52.2 V
输入电压: 3.6 V ~ 58 V
PWM 型: 电流模式,Burst Mode?
频率 - 开关: 225kHz ~ 2.25MHz
电流 - 输出: 2A
同步整流器:
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 14-WFDFN 裸露焊盘
包装: 管件
供应商设备封装: 14-DFN-EP(4x3)
LT3980
APPLICATIONS INFORMATION
R 1 = R 2 ? OUT – 1 ?
V IN ( MAX ) =
– V D + V SW
FB Resistor Network
The output voltage is programmed with a resistor divider
between the output and the FB pin. Choose the 1% resis-
tors according to:
? V ?
? 0 . 79 V ?
Reference designators refer to the Block Diagram.
Setting the Switching Frequency
The LT3980 uses a constant frequency PWM architecture
that can be programmed to switch from 100kHz to 2.4MHz
by using a resistor tied from the RT pin to ground. A table
showing the necessary RT value for a desired switching
frequency is in Figure 1.
SWITCHING FREQUENCY (MHz) R T VALUE (k?)
0.1 432
0.2 215
0.3 137
0.4 97.6
0.5 76.8
0.6 60.4
0.7 51.1
0.8 43.2
0.9 35.7
1.0 32.4
1.2 24.9
1.4 20
1.6 16.2
1.8 14
2.0 11
Figure 1. Switching Frequency vs R T Value
Operating Frequency Trade-Offs
Selection of the operating frequency is a trade-off between
efficiency, component size, minimum dropout voltage, and
maximum input voltage. The advantage of high frequency
operation is that smaller inductor and capacitor values may
be used. The disadvantages are lower efficiency, lower
maximum input voltage, and higher dropout voltage. The
highest acceptable switching frequency (f SW(MAX) ) for a
given application can be calculated as follows:
where V IN is the typical input voltage, V OUT is the output
voltage, V D is the catch diode drop (~0.5V) and V SW is the
internal switch drop (~0.5V at max load). This equation
shows that slower switching frequency is necessary to
safely accommodate high V IN / V OUT ratio. Also, as shown
in the next section, lower frequency allows a lower dropout
voltage. The reason input voltage range depends on the
switching frequency is because the LT3980 switch has
finite minimum on and off times. The switch can turn on
for a minimum of ~200ns and turn off for a minimum of
~200ns. This means that the minimum and maximum
duty cycles are:
DC MIN = f SW t ON ( MIN )
DC MAX = 1– f SW t OFF ( MIN )
where f SW is the switching frequency, the t ON(MIN) is the
minimum switch on time (~200ns), and the t OFF(MIN) is
the minimum switch off time (~200ns). These equations
show that duty cycle range increases when switching
frequency is decreased.
A good choice of switching frequency should allow ade-
quate input voltage range (see next section) and keep the
inductor and capacitor values small.
Input Voltage Range
The maximum input voltage for LT3980 applications de-
pends on switching frequency, Absolute Maximum Ratings
of the V IN and BOOST pins, and the operating mode.
The LT3980 can operate from input voltages of up to 58V,
and withstand voltages up to 80V. Note that while V IN is
above 61V typical (58V minimum and 64V maximum)
the part will keep the switch off and the output will not
be in regulation.
The switching frequency should be chosen according to
the following equation:
V OUT + V D
f SW t ON ( MIN )
f SW ( MAX ) =
V D + V OUT
t ON ( MIN ) ( V D + V IN – V SW )
where V IN(MAX) is the maximum typical operating input
voltage, V OUT is the output voltage, V D is the catch diode
3980fa
9
For more information www.linear.com/LT3980
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