参数资料
型号: LT3971IDD#PBF
厂商: Linear Technology
文件页数: 16/28页
文件大小: 0K
描述: IC REG BUCK ADJ 1.2A 10DFN
标准包装: 121
类型: 降压(降压)
输出类型: 可调式
输出数: 1
输出电压: 1.19 V ~ 30 V
输入电压: 4.3 V ~ 38 V
PWM 型: 电流模式,Burst Mode?
频率 - 开关: 200kHz ~ 2MHz
电流 - 输出: 1.2A
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: 10-WFDFN 裸露焊盘
包装: 管件
供应商设备封装: 10-DFN(3x3)
LT3971/LT3971-3.3/LT3971-5
APPLICATIONS INFORMATION
For outputs of 3V and above, the standard circuit (Figure 3a)
is best. For outputs between 2.8V and 3V, use a 1μF boost
capacitor. A 2.5V output presents a special case because it
is marginally adequate to support the boosted drive stage
while using the internal boost diode. For reliable BOOST pin
operation with 2.5V outputs use a good external Schottky
diode (such as the ON Semi MBR0540), and a 1μF boost
capacitor (Figure 3b). For output voltages below 2.5V,
the boost diode can be tied to the input (Figure 3c), or to
another external supply greater than 2.8V. However, the
circuit in Figure 3a is more efficient because the BOOST pin
current comes from a lower voltage source. You must also
be sure that the maximum voltage ratings of the BOOST
and BD pins are not exceeded.
BD
V IN V IN BOOST
The minimum operating voltage of an LT3971 application
is limited by the minimum input voltage (4.3V) and by
the maximum duty cycle as outlined in the Input Voltage
Range section. For proper start-up, the minimum input
voltage is also limited by the boost circuit. If the input
voltage is ramped slowly, the boost capacitor may not
be fully charged. Because the boost capacitor is charged
with the energy stored in the inductor, the circuit will rely
on some minimum load current to get the boost circuit
running properly. This minimum load will depend on input
and output voltages, and on the arrangement of the boost
circuit. The minimum load generally goes to zero once the
circuit has started. Figure 4 shows a plot of minimum load
to start and to run as a function of input voltage. In many
cases the discharged output capacitor will present a load
to the switcher, which will allow it to start. The plots show
the worst-case situation where V IN is ramping very slowly.
LT3971
C3
4.7μF
GND
SW
V OUT
5.0
4.8
4.6
(3a) For V OUT > 2.8V
4.4
4.2
4.0
3.8
TO RUN
TO START
3.0
V IN
4.7μF
V IN
BD
BOOST
LT3971
SW
GND
C3
D2
V OUT
3.6
3.4 V OUT = 3.3V
T A = 25°C
3.2 L = 4.7μH
f = 800kHz
10
100
LOAD CURRENT (mA)
1000
6.4
(3b) For 2.5V < V OUT < 2.8V
6.2
6.0
TO START
V IN
4.7μF
V IN
BD
BOOST
LT3971
SW
GND
C3
3971 FO3
V OUT
5.8
5.6
5.4
5.2
5.0
TO RUN
V OUT = 5V
T A = 25°C
L = 4.7μH
f = 800kHz
10
100
1000
LOAD CURRENT (mA)
(3c) For V OUT < 2.5V; V IN(MAX) = 27V
Figure 3. Three Circuits for Generating the Boost Voltage
3971 F04
Figure 4. The Minimum Input Voltage Depends on
Output Voltage, Load Current and Boost Circuit
3971fd
16
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