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RT7256B 参数 Datasheet PDF下载

RT7256B图片预览
型号: RT7256B
PDF下载: 下载PDF文件 查看货源
内容描述: 3A , 17V , 1.2MHz的同步降压型转换器 [3A, 17V, 1.2MHz Synchronous Step-Down Converter]
分类和应用: 转换器
文件页数/大小: 14 页 / 224 K
品牌: RICHTEK [ RICHTEK TECHNOLOGY CORPORATION ]
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RT7256B
Application Information
Output Voltage Setting
The resistive divider allows the FB pin to sense the output
voltage as shown in Figure 1.
V
OUT
Soft-Start
The RT7256B provides soft-start function. The soft-start
function is used to prevent large inrush current while
converter is being powered-up. The soft-start timing can
be programmed by the external capacitor between SS and
GND. An internal current source I
SS
(6μA) charges an
R1
FB
external capacitor to build a soft-start ramp voltage. The
V
FB
voltage will track the internal ramp voltage during soft-
start interval. The typical soft-start time is calculated as
follows :
RT7256B
GND
R2
Figure 1. Output Voltage Setting
The output voltage is set by an external resistive voltage
divider according to the following equation :
V
OUT
= V
REF
1
+
R1
R2
Soft-Start time t
SS
=
0.8
×
C
SS
, if C
SS
capacitor
I
SS
0.8
×
0.1
μ
13.5ms
6
μ
is 0.1
μ
F, then soft-start time =
Chip Enable Operation
Where V
REF
is the reference voltage (0.8V typ.).
External Bootstrap Diode
Connect a 0.1μF low ESR ceramic capacitor between the
BOOT pin and SW pin. This capacitor provides the gate
driver voltage for the high side MOSFET.
It is recommended to add an external bootstrap diode
between an external 5V and BOOT pin for efficiency
improvement when input voltage is lower than 5.5V or duty
ratio is higher than 65% .The bootstrap diode can be a
low cost one such as IN4148 or BAT54. The external 5V
can be a 5V fixed input from system or a 5V output of the
RT7256B. Note that the external boot voltage must be
lower than 5.5V
5V
The EN pin is the chip enable input. Pulling the EN pin
low (<0.4V) will shut down the device. During shutdown
mode, the RT7256B quiescent current drops to lower than
3μA. Driving the EN pin high (>2.7V, 17V) will turn on the
device again. For external timing control, the EN pin can
also be externally pulled high by adding a R
EN
resistor
and C
EN
capacitor from the VIN pin (see Figure 3).
EN
V
IN
R
EN
EN
RT7256B
GND
C
EN
Figure 3. Enable Timing Control
An external MOSFET can be added to implement digital
control on the EN pin when no system voltage above 2.5V
is available, as shown in Figure 4. In this case, a 100kΩ
pull-up resistor, R
EN
, is connected between V
IN
and the
EN pin. MOSFET Q1 will be under logic control to pull
down the EN pin.
V
IN
EN
R
EN
100k
Q1
EN
RT7256B
GND
BOOT
RT7256B
SW
0.1µF
Figure 2. External Bootstrap Diode
Figure 4. Digital Enable Control Circuit
Copyright
©
2012 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
DS7256B-00
February 2012
www.richtek.com
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