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DFLS240 参数 Datasheet PDF下载

DFLS240图片预览
型号: DFLS240
PDF下载: 下载PDF文件 查看货源
内容描述: 42V , 2.5A , 2MHz,降压型开关稳压器与2.7μA静态电流 [42V, 2.5A, 2MHz Step-Down Switching Regulator with 2.7μA Quiescent Current]
分类和应用: 稳压器开关
文件页数/大小: 24 页 / 293 K
品牌: Linear [ Linear ]
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LT3975  
APPLICATIONS INFORMATION  
A good choice of switching frequency should allow ad-  
equate input voltage range (see next two sections) and  
keep the inductor and capacitor values small.  
capacitor falls and requires refreshing. When this occurs,  
the switch will turn off, allowing the inductor current to  
recharge the boost capacitor. This places a limitation on  
the maximum duty cycle as follows:  
Maximum Input Voltage Range  
βSW  
βSW +1  
DCMAX  
=
The LT3975 can operate from input voltages of up to 42V.  
Often the highest allowed V during normal operation  
IN  
(V  
) is limited by the minimum duty cycle rather  
IN(OP-MAX)  
whereβ isequaltothebetaoftheinternalpowerswitch.  
SW  
than the absolute maximum ratings of the V pin. It can  
IN  
The beta of the power switch is typically about 50, which  
be calculated using the following equation:  
leads to a DC  
of about 98%. This leads to a minimum  
MAX  
input voltage of approximately:  
VOUT + VD  
fSW tON(MIN)  
V
=
VD + VSW  
IN(OP-MAX)  
VOUT + VD  
DCMAX  
V
=
VD + VSW  
IN(MIN1)  
where t  
is the minimum switch on-time. A lower  
ON(MIN)  
switching frequency can be used to extend normal opera-  
tion to higher input voltages.  
where V  
is the output voltage, V is the catch diode  
OUT  
D
drop, V is the internal switch drop and DC  
is the  
MAX  
SW  
maximum duty cycle.  
The circuit will tolerate inputs above the maximum op-  
erating input voltage and up to the absolute maximum  
The final factor affecting the minimum input voltage is  
the minimum dropout voltage. When the OUT pin is tied  
to the output, the LT3975 regulates the output such that  
ratings of the V and BOOST pins, regardless of chosen  
IN  
switching frequency. However, during such transients  
where V is higher than V  
, the LT3975 will enter  
IN(OP-MAX)  
IN  
it stays 500mV below V . This enforced minimum drop-  
IN  
pulse-skippingoperationwheresomeswitchingpulsesare  
skipped to maintain output regulation. The output voltage  
ripple and inductor current ripple will be higher than in  
out voltage is due to reasons that are covered in the next  
section. This places a limitation on the minimum input  
voltage as follows:  
typical operation. Do not overload when V is greater  
IN  
V
= V  
+ V  
than V  
.
IN(MIN2)  
OUT DROPOUT(MIN)  
IN(OP-MAX)  
where V  
DROPOUT(MIN)  
is the programmed output voltage and  
OUT  
Minimum Input Voltage Range  
V
is the minimum dropout voltage of 500mV.  
The minimum input voltage is determined by either the  
LT3975’sminimumoperatingvoltageof4.3V,itsmaximum  
duty cycle, or the enforced minimum dropout voltage.  
See the Typical Performance Characteristics section for  
the minimum input voltage across load for outputs of  
3.3V and 5V.  
Combining these factors leads to the overall minimum  
input voltage:  
V
= Max (V  
, V  
, 4.3V)  
IN(MIN)  
IN(MIN1) IN(MIN2)  
Minimum Dropout Voltage  
Toachievealowdropoutvoltage,theinternalpowerswitch  
must always be able to fully saturate. This means that the  
boost capacitor, which provides a base drive higher than  
The duty cycle is the fraction of time that the internal  
switch is on during a clock cycle. Unlike many fixed fre-  
quency regulators, the LT3975 can extend its duty cycle  
by remaining on for multiple clock cycles. The LT3975  
will not switch off at the end of each clock cycle if there  
is sufficient voltage across the boost capacitor (C3 in  
the Block Diagram). Eventually, the voltage on the boost  
V , must always be able to charge up when the part starts  
IN  
up and then must also stay charged during all operating  
conditions.  
3975f  
13