参数资料
型号: SC2440TETRT
厂商: Semtech
文件页数: 15/26页
文件大小: 0K
描述: IC REG BUCK 2A DL 16TSSOP
标准包装: 1
类型: 降压(降压)
输出数: 2
输入电压: 2.8 V ~ 20 V
PWM 型: 电流模式
频率 - 开关: 1.4MHz
电流 - 输出: 2A
同步整流器:
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 16-TSSOP(0.173",4.40mm)裸露焊盘
包装: 标准包装
供应商设备封装: 16-TSSOP
产品目录页面: 1358 (CN2011-ZH PDF)
其它名称: SC2440TEDKR
SC2440
POWER MANAGEMENT
Applications Information
loss of
DI SW V OUT
β
.
BOOST pin can be somewhat higher than 2V IN . The BOOST
pin voltage should not exceed its absolute maximum
rating of 40V.
Since V OUT < V IN , D BST should always be tied to V OUT (if
>2.5V) to maximize efficiency. Measurement of the 2-
channel regulator in Figure 1 shows that the efficiency
penalties are about 1.3% (V OUT = 5V) and 2.2% (V OUT =
3.3V) with input bootstrapping. In general efficiency
penalty increases as D decreases.
Figure 8 summarizes various ways of bootstrapping the
SC2440. A fast switching PN diode (such as 1N4148 or
1N914) and a small (0.1μF – 0.47μF) ceramic capacitor
can be used. In Figure 8(a) the power switch is
bootstrapped from the output. This is the most efficient
configuration and it also results in the least voltage stress
at the BOOST pin. The maximum BOOST pin voltage is
about V IN + V OUT . If the output is below 2.8V, then D BSTT
will preferably be a small Schottky diode (such as BAT-
54) to maximize bootstrap voltage. A 0.33-0.47μF
bootstrap capacitor may be needed to reduce droop.
Bench measurement shows that using Schottky
bootstrapping diode has no noticeable efficiency benefit.
The SC2440 can also be bootstrapped from the input
(Figure 8(b)). This configuration is not as efficient as Figure
8(a). However this may be only option if the output
voltage is less than 2.5V and there is no other supply
with voltage higher than 2.5V. Voltage stress at the
Minimum Starting and
Figures 8(c) and (d) show how to bootstrap the SC2440
from a second independent power supply V S with voltage
> 2.5V. D BST in Figure 8(d) prevents start up difficulty if
V IN comes up before V S .
Since the inductor current charges C BST , the bootstrap
circuit requires some minimum load current to get going.
Figures 9(a) and 9(b) show the dependence of the
minimum input voltage required to properly bootstrap a
5V and a 3.3V converters on the load current. Once
started the bootstrap circuit is able to sustain itself down
to zero load.
Shutdown and Soft-Start
Each regulating channel of the SC2440 has its own soft-
start circuit. Pulling its soft-start pin below 0.8V with an
open-collector NPN or an open-drain NMOS transistor
turns off the corresponding regulator. The other regulator
continues to operate. With one channel turned off, the
internal bias circuit is kept alive. In the “Typical
Characteristics”, the soft-start pin current is plotted
against the soft-start voltage with V IN = 5V. When one of
Minimum Starting and
MA729
TO OUTPUT
7.5
7.0
Sustaining V IN vs Load Current
D BST TIED V OUT = 5V
TO OUTPUT
5.5
Sustaining V IN vs Load Current
V OUT = 3.3V
D BST TIED
MA729
5.0
6.5
6.0
5.5
STARTING
4.5
4.0
STARTING
D BST TIED
TO INPUT
5.0
D BST TIED
SUSTAINING
4.5
TO INPUT
3.5
SUSTAINING
1
10
100
1000
0.1
1.0
10.0
100.0
1000.0
Load Current (mA)
(a)
Load Current (mA)
(b)
Figure 9. Minimum Input Voltage Required to Start and to Maintain Bootstrap.(T A = 25 ° C).
? 2005 Semtech Corp.
15
www.semtech.com
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