参数资料
型号: LTM8031IV#PBF
厂商: Linear Technology
文件页数: 12/22页
文件大小: 0K
描述: IC BUCK ADJ 1A 71LGA
产品培训模块: Power Module vs. Discrete DC to DC
µModule® Family of EN55022 Class B Certified Regulators
软件下载: LTM8031 Spice Model
产品目录绘图: LTM Series_9x15x2.8
设计资源: DC1597A Design Files
LTM8031IV#PBF Footprint.bxl
特色产品: μModule Products
标准包装: 170
系列: µModule®
类型: 非隔离(POL)
输出数: 1
电压 - 输入(最小): 3.6V
电压 - 输入(最大): 36V
Voltage - Output 1: 0.8 ~ 10 V
电流 - 输出(最大): 1A
安装类型: 表面贴装
封装/外壳: 71-LGA
尺寸/尺寸: 0.59" L x 0.35" W x 0.11" H(15.0mm x 9.0mm x 2.8mm)
包装: 托盘
工作温度: -40°C ~ 125°C
产品目录页面: 2711 (CN2011-ZH PDF)
配用: DC1597A-ND - BOARD EVAL LTM8031
LTM8031
APPLICATIONS INFORMATION
V IN
V IN
V OUT
V OUT
RUN
15k
I L
0.5A/DIV
RUN/SS
LTM8031
AUX
BIAS
ADJ
0.22μF
RUN/SS
GND
V RUN/SS
2V/DIV
R T SYNC GND
V OUT
2V/DIV
2ms/DIV 8031 F01
Figure 1. To Soft-Start the LTM8031, Add a Resistor
and Capacitor to the RUN/SS Pin
Synchronization
The internal oscillator of the LTM8031 can be synchro-
nized by applying an external 250kHz to 2MHz clock to
the SYNC pin. Do not leave this pin floating. The resistor
tied from the RT pin to ground should be chosen such
that the LTM8031 oscillates 20% lower than the intended
synchronization frequency (see the Frequency Selection
section). The LTM8031 will not enter Burst Mode operation
while synchronized to an external clock, but will instead
skip pulses to maintain regulation.
Shorted Input Protection
Care needs to be taken in systems where the output will
be held high when the input to the LTM8031 is absent.
This may occur in battery charging applications or in
battery back-up systems where a battery or some other
supply is diode ORed with the LTM8031’s output. If the
V IN pin is allowed to float and the RUN/SS pin is held high
(either by a logic signal or because it is tied to V IN ), then
the LTM8031’s internal circuitry will pull its quiescent
current through its internal power switch. This is fine if
your system can tolerate a few milliamps in this state. If
you ground the RUN/SS pin, the internal switch current
will drop to essentially zero. However, if the V IN pin is
grounded while the output is held high, then parasitic
diodes inside the LTM8031 can pull large currents from
the output through the V IN pin, potentially damaging the
8031 F02
Figure 2. The Input Diode Prevents a Shorted Input from
Discharging a Back-Up Battery Tied to the Output. It Also
Protects the Circuit from a Reversed Input. The LTM8031
Runs Only When the Input is Present
device. Figure 2 shows a circuit that will run only when
the input voltage is present and that protects against a
shorted or reversed input.
PCB Layout
Most of the headaches associated with PCB layout have
been alleviated or even eliminated by the high level of
integration of the LTM8031. The LTM8031 is neverthe-
less a switching power supply and care must be taken to
minimize EMI and ensure proper operation. Even with the
high level of integration, you may fail to achieve specified
operation with a haphazard or poor layout. See Figure 3
for a suggested layout.
Ensure that the grounding and heat sinking are acceptable.
A few rules to keep in mind are:
1. Place the R ADJ and R T resistors as close as possible to
their respective pins.
2. Place the C IN capacitor as close as possible to the V IN
and GND connection of the LTM8031. If a capacitor
is connected to the FIN terminals, place it as close
as possible to the FIN terminals, such that its ground
connection is as close as possible to that of the C IN
capacitor.
3. Place the C OUT capacitor as close as possible to the
V OUT and GND connection of the LTM8031.
8031fb
12
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