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LCVT 参数 Datasheet PDF下载

LCVT图片预览
型号: LCVT
PDF下载: 下载PDF文件 查看货源
内容描述: 36V ,2A , 2.8MHz降压型开关稳压器 [36V, 2A, 2.8MHz Step-Down Switching Regulator]
分类和应用: 稳压器开关
文件页数/大小: 24 页 / 327 K
品牌: Linear [ Linear ]
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LT3684  
APPLICATIONS INFORMATION  
frequency will be necessary to achieve safe operation at  
high input voltages.  
at least 3.5A at low duty cycles and decreases linearly to  
2.5A at DC = 0.8. The maximum output current is a func-  
tion of the inductor ripple current:  
Iftheoutputisinregulationandnoshort-circuitorstart-up  
events are expected, then input voltage transients of up to  
36V are acceptable regardless of the switching frequency.  
In this mode, the LT3684 may enter pulse skipping opera-  
tion where some switching pulses are skipped to maintain  
output regulation. In this mode the output voltage ripple  
and inductor current ripple will be higher than in normal  
operation.  
I
= I ΔI /2  
LIM L  
OUT(MAX)  
Be sure to pick an inductor ripple current that provides  
sufficient maximum output current (I ).  
OUT(MAX)  
The largest inductor ripple current occurs at the highest  
V . To guarantee that the ripple current stays below the  
IN  
specified maximum, the inductor value should be chosen  
according to the following equation:  
The minimum input voltage is determined by either the  
LT3684’s minimum operating voltage of ~3.6V or by its  
maximum duty cycle (see equation in previous section).  
The minimum input voltage due to duty cycle is:  
VOUT + VD  
fIL  
VOUT + VD  
L =  
1–  
V
IN MAX  
(
)
VOUT + VD  
where V is the voltage drop of the catch diode (~0.4V),  
D
V
=
) VD + VSW  
IN MIN  
(
)
1– fSWtOFF MIN  
V
is the maximum input voltage, V  
is the output  
IN(MAX)  
OUT  
(
voltage, f is the switching frequency (set by R ), and L  
SW  
T
whereV  
istheminimuminputvoltage,andt  
OFF(MIN)  
IN(MIN)  
is in the inductor value.  
is the minimum switch off time (150ns). Note that higher  
switching frequency will increase the minimum input  
voltage. If a lower dropout voltage is desired, a lower  
switching frequency should be used.  
Theinductor’sRMScurrentratingmustbegreaterthanthe  
maximumloadcurrentanditssaturationcurrentshouldbe  
about 30% higher. For robust operation in fault conditions  
(start-up or short circuit) and high input voltage (>30V),  
the saturation current should be above 3.5A. To keep the  
efficiency high, the series resistance (DCR) should be less  
than 0.1Ω, and the core material should be intended for  
high frequency applications. Table 1 lists several vendors  
and suitable types.  
Inductor Selection  
For a given input and output voltage, the inductor value  
and switching frequency will determine the ripple current.  
The ripple current ΔI increases with higher V or V  
L
IN  
OUT  
and decreases with higher inductance and faster switch-  
ing frequency. A reasonable starting point for selecting  
the ripple current is:  
Table 1. Inductor Vendors  
VENDOR  
Murata  
TDK  
URL  
PART SERIES  
TYPE  
www.murata.com  
LQH55D  
Open  
ΔI = 0.4(I  
)
L
OUT(MAX)  
www.componenttdk.com SLF7045  
SLF10145  
Shielded  
Shielded  
where I  
is the maximum output load current. To  
OUT(MAX)  
Toko  
www.toko.com  
D62CB  
D63CB  
D75C  
Shielded  
Shielded  
Shielded  
Open  
guarantee sufficient output current, peak inductor current  
mustbelowerthantheLT3684’sswitchcurrentlimit(I ).  
LIM  
The peak inductor current is:  
D75F  
I
= I  
+ ΔI /2  
OUT(MAX) L  
L(PEAK)  
Sumida  
www.sumida.com  
CR54  
Open  
CDRH74  
CDRH6D38  
CR75  
Shielded  
Shielded  
Open  
where I  
is the peak inductor current, I  
is  
OUT(MAX)  
L(PEAK)  
the maximum output load current, and ΔI is the inductor  
L
ripple current. The LT3684’s switch current limit (I ) is  
LIM  
3684f  
11