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LM2735XMF/NOPB датащи(PDF) 44 Page - Texas Instruments

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номер детали LM2735XMF/NOPB
подробное описание детали  LM2735-xx 520-kHz and 1.6-MHz Space-Efficient Boost and SEPIC DC-DC Regulator
PDF  59 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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LM2735XMF/NOPB датащи(HTML) 44 Page - Texas Instruments

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background image
D
2
x
x
=
RDSON
¸¸
¹
·
¨¨
©
§
D'
IO
P
NFET
-
COND
Isw-rms = IIND D
1 +
'i
IIND
1
3
2
x
IIND
|
PIND = IIN
2 x R
IND-DCR
D
t
i
I
I
( )
t
sw
LM2735, LM2735-Q1
SNVS485G – JUNE 2007 – REVISED AUGUST 2015
www.ti.com
Thermal Considerations (continued)
The LM2735 conduction loss is mainly associated with the internal NFET:
PCOND-NFET = I
2
SW-rms × RDSON × D
(40)
Figure 49. LM2735 Switch Current
(small ripple approximation)
(41)
PCOND-NFET = IIN
2 × R
DSON × D
(42)
(43)
The value for should be equal to the resistance at the junction temperature you wish to analyze. As an example,
at 125°C and VIN = 5 V, RDSON = 250 mΩ (see Typical Characteristics for value).
Switching losses are also associated with the internal NMOS switch. They occur during the switch on and off
transition periods, where voltages and currents overlap resulting in power loss.
The simplest means to determine this loss is to empirically measuring the rise and fall times (10% to 90%) of the
switch at the switch node:
PSWR = 1/2(VOUT × IIN × FSW × TRISE)
(44)
PSWF = 1/2(VOUT × IIN × FSW × TFALL)
(45)
PSW = PSWR + PSWF
(46)
Table 2. Typical Switch-Node Rise and Fall Times
VIN
VOUT
TRISE
TFALL
3 V
5 V
6 nS
4 nS
5 V
12 V
6 nS
5 nS
3 V
12 V
7 nS
5 nS
5 V
18 V
7 nS
5 nS
Quiescent Power Losses:
IQ is the quiescent operating current, and is typically around 4 mA.
PQ = IQ x VIN
(47)
44
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Product Folder Links: LM2735 LM2735-Q1



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