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LT3467IDDB 参数 Datasheet PDF下载

LT3467IDDB图片预览
型号: LT3467IDDB
PDF下载: 下载PDF文件 查看货源
内容描述: [1.1A Step-Up DC/DC Converter with]
分类和应用:
文件页数/大小: 18 页 / 254 K
品牌: Linear Systems [ Linear Systems ]
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LT3467/LT3467A  
OPERATION  
TheLT3467usesaconstantfrequency,current-modecon-  
trol scheme to provide excellent line and load regulation.  
Refer to the Block Diagram. At the start of each oscillator  
cycle, the SR latch is set which turns on the power switch  
Q1. A voltage proportional to the switch current is added  
to a stabilizing ramp and the resulting sum is fed into the  
positive terminal of the PWM comparator A2. When this  
voltage exceeds the level at the negative input of A2, the  
SR latch is reset, turning off the power switch. The level  
at the negative input of A2 is set by the error amplifier A1,  
andissimplyanamplifiedversionofthedifferencebetween  
the feedback voltage and the reference voltage of 1.255V.  
In this manner, the error amplifier sets the correct peak  
current level to keep the output in regulation. If the error  
amplifier’s output increases, more current is delivered to  
the output. Similarly, if the error decreases, less current  
is delivered. The soft-start feature of the LT3467 allows  
for clean start-up conditions by limiting the rate of voltage  
rise at the output of comparator A1 which, in turn, limits  
the peak switch current. The soft-start pin is connected  
to a reference voltage of 1.255V through a 250k resistor,  
providing 4μA of current to charge the soft-start capacitor.  
Typical values for the soft-start capacitor range from 10nF  
to 200nF. The LT3467 has a current limit circuit not shown  
in the Block Diagram. The switch current is constantly  
monitoredandnotallowedtoexceedthemaximumswitch  
current (typically 1.4A). If the switch current reaches  
this value, the SR latch is reset regardless of the state  
of comparator A2. This current limit protects the power  
switch as well as the external components connected to  
the LT3467.  
TheBlockDiagramfortheLT3467A(notshown)isidentical  
except that the oscillator frequency is 2.1MHz.  
APPLICATIONS INFORMATION  
Duty Cycle  
Switching Frequency and Inductor Selection  
The typical maximum duty cycle of the LT3467 is 94%  
(88% for the LT3467A). The duty cycle for a given ap-  
plication is given by:  
TheLT3467switchesat1.3MHz, allowingforsmallvalued  
inductors to be used. 4.7μH or 10μH will usually suffice.  
TheLT3467Aswitchesat2.1MHz,allowingforevensmaller  
valued inductors to be used. 0.9μH to 6.8μH will usually  
suffice. Choose an inductor that can handle at least 1.2A  
without saturating, and ensure that the inductor has a  
|VOUT |+|VD |–|V |  
|VOUT |+|VD |–|VCESAT  
IN  
DC =  
|
2
low DCR (copper-wire resistance) to minimize I R power  
where V is the diode forward voltage drop and V  
is  
CESAT  
D
losses.Notethatinsomeapplications,thecurrenthandling  
requirements of the inductor can be lower, such as in the  
SEPIC topology where each inductor only carries one-half  
ofthetotalswitchcurrent.Forbetterefficiency,usesimilar  
valuedinductorswithalargervolume.Manydifferentsizes  
and shapes are available from various manufacturers.  
Choose a core material that has low losses at 1.3MHz,  
(2.1MHz for the LT3467A) such as ferrite core.  
in the worst case 330mV (at 1.1A)  
TheLT3467andLT3467Acanbeusedathigherdutycycles,  
but must be operated in the discontinuous conduction  
mode so that the actual duty cycle is reduced.  
Setting Output Voltage  
R1 and R2 determine the output voltage.  
V
= 1.255V (1+ R1/R2)  
OUT  
3467afe  
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