参数资料
型号: LM2735XSDEVAL
厂商: National Semiconductor
文件页数: 20/58页
文件大小: 0K
描述: BOARD EVAL LM2735 1.6MHZ 6LLP
标准包装: 1
主要目的: DC/DC,步升
输出及类型: 1,非隔离
输出电压: 12V
电流 - 输出: 500mA
输入电压: 3 ~ 5.5 V
稳压器拓扑结构: 升压
频率 - 开关: 1.6MHz
板类型: 完全填充
已供物品:
已用 IC / 零件: LM2735
SNVS485F – JUNE 2007 – REVISED APRIL 2013
1 ¨
D c ¨ ?
V IN ? 1 ¨
D c 2 R OUT
V OUT
V IN
=
§
1 -
§
¨
?
D c x V D · ¨
¨ 1 +
?
·
?
1 ?
R DCR + ( D x R DSON ) ?
?
1
(19)
One can see that if the loss elements are reduced to zero, the conversion ratio simplifies to:
V OUT
V IN
=
1
D c
(20)
And we know:
V OUT
V IN
=
K
D c
(21)
Therefore:
¨ 1 +
D c x V D ·
R DCR + ( D x R DSON ) ?
?
K = D c
V OUT
V IN
§
¨
¨
= ¨
¨
?
V IN ?
D c 2 R OUT 1
1 - ?
?
(22)
Calculations for determining the most significant power losses are discussed below. Other losses totaling less
than 2% are not discussed.
A simple efficiency calculation that takes into account the conduction losses is shown below:
K| ¨
¨ 1 +
D c x V D ·
R DCR + ( D x R DSON ) ?
?
§
¨
¨
¨
?
V IN ?
D c 2 R OUT 1
1 - ?
?
(23)
The diode, NMOS switch, and inductor DCR losses are included in this calculation. Setting any loss element to
zero will simplify the equation.
V D is the forward voltage drop across the Schottky diode. It can be obtained from the manufacturer’s Electrical
Characteristics section of the data sheet.
The conduction losses in the diode are calculated as follows:
P DIODE = V D x I O
(24)
Depending on the duty cycle, this can be the single most significant power loss in the circuit. Care should be
taken to choose a diode that has a low forward voltage drop. Another concern with diode selection is reverse
leakage current. Depending on the ambient temperature and the reverse voltage across the diode, the current
being drawn from the output to the NMOS switch during time D could be significant, this may increase losses
internal to the LM2735 and reduce the overall efficiency of the application. Refer to Schottky diode
manufacturer’s data sheets for reverse leakage specifications, and typical applications within this data sheet for
diode selections.
Another significant external power loss is the conduction loss in the input inductor. The power loss within the
inductor can be simplified to:
§ I 2 R
P IND = ¨ O
D '
P IND = I IN2 R DCR
·
DCR ?
¨ ?
? 1
The LM2735 conduction loss is mainly associated with the internal NFET:
P COND-NFET = I 2SW-rms x R DSON x D
(25)
(26)
(27)
20
Product Folder Links: LM2735
Copyright ? 2007–2013, Texas Instruments Incorporated
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