参数资料
型号: LTM4600IV#PBF
厂商: Linear Technology
文件页数: 16/24页
文件大小: 0K
描述: IC DC/DC UMODULE 10A 104-LGA
产品培训模块: Power Module vs. Discrete DC to DC
软件下载: LTM4600 Spice Model
产品目录绘图: LTM Series_15x15x2.8
设计资源: DC823B-A Design Files
LTM4600IV#PBF Footprint.bxl
特色产品: μModule Products
标准包装: 119
系列: µModule®
类型: 非隔离(POL)
输出数: 1
电压 - 输入(最小): 4.5V
电压 - 输入(最大): 20V
Voltage - Output 1: 0.6 ~ 5 V
电流 - 输出(最大): 10A
安装类型: 表面贴装
封装/外壳: 104-LGA
尺寸/尺寸: 0.59" L x 0.59" W x 0.11" H(15.0mm x 15.0mm x 2.8mm)
包装: 托盘
工作温度: -40°C ~ 85°C
效率: 92%
产品目录页面: 2711 (CN2011-ZH PDF)
配用: DC823B-A-ND - BOARD EVAL LTM4600
LTM4600
APPLICATIONS INFORMATION
Layout Checklist/Example
The high integration of the LTM4600 makes the PCB board
layout very simple and easy. However, to optimize its electri-
cal and thermal performance, some layout considerations
are still necessary.
? Use large PCB copper areas for high current path, in-
cluding V IN , PGND and V OUT . It helps to minimize the
PCB conduction loss and thermal stress
? Place high frequency ceramic input and output capaci-
tors next to the V IN , PGND and V OUT pins to minimize
high frequency noise
? Place a dedicated power ground layer underneath
the unit
? To minimize the via conduction loss and reduce module
thermal stress, use multiple vias for interconnection
between top layer and other power layers
? Do not put a via directly on pad unless it is capped
? Use a separated SGND ground copper area for com-
ponents connected to signal pins. Connect the SGND
to PGND underneath the unit
Figure 16 gives a good example of the recommended
layout.
LTM4600 Frequency Adjustment
The LTM4600 is designed to typically operate at 850kHz
across most input and output conditions. The control ar-
chitecture is constant on time valley mode current control.
The f ADJ pin is typically left open or decoupled with an
optional 1000pF capacitor. The switching frequency has
been optimized to maintain constant output ripple over the
operating conditions. The equations for setting the operat-
ing frequency are set around a programmable constant on
time. This on time is developed by a programmable current
into an on board 10pF capacitor that establishes a ramp
that is compared to a voltage threshold equal to the output
voltage up to a 2.4V clamp. This I ON current is equal to:
I ON = (V IN – 0.7V)/110k, with the 110k onboard resistor
from V IN to f ADJ . The on time is equal to t ON = (V OUT /I ON )
? 10pF and t OFF = t s – t ON . The frequency is equal to: Freq.
= DC/t ON . The I ON current is proportional to V IN , and the
regulator duty cycle is inversely proportional to V IN , there-
fore the step-down regulator will remain relatively constant
frequency as the duty cycle adjustment takes place with
lowering V IN . The on time is proportional to V OUT up to a
2.4V clamp. This will hold frequency relatively constant
with different output voltages up to 2.4V. The regulator
switching period is comprised of the on time and off time
as depicted in Figure 17.
V IN
C IN
PGND
V OUT
4600 F16
LOAD
TOP LAYER
Figure 16. Recommended PCB Layout
4600fc
16
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