參數(shù)資料
型號: LTC3707IGN-SYNC
廠商: LINEAR TECHNOLOGY CORP
元件分類: 穩(wěn)壓器
英文描述: 3 A SWITCHING CONTROLLER, 360 kHz SWITCHING FREQ-MAX, PDSO28
封裝: 0.150 INCH, PLASTIC, SSOP-28
文件頁數(shù): 6/32頁
文件大?。?/td> 403K
代理商: LTC3707IGN-SYNC
LTC3707-SYNC
14
3707sfa
the upper range of low current operation. In Burst Mode
operation, lower inductance values will cause the burst
frequency to decrease.
Inductor Core Selection
Once the value for L is known, the type of inductor must
be selected. High efciency converters generally cannot
afford the core loss found in low cost powdered iron cores,
forcing the use of more expensive ferrite, molypermalloy,
or Kool Mμ
cores. Actual core loss is independent of core
size for a xed inductor value, but it is very dependent
on inductance selected. As inductance increases, core
losses go down. Unfortunately, increased inductance
requires more turns of wire and therefore copper losses
will increase.
Ferrite designs have very low core loss and are preferred
at high switching frequencies, so design goals can con-
centrate on copper loss and preventing saturation. Ferrite
core material saturates “hard,” which means that induc-
tance collapses abruptly when the peak design current is
exceeded. This results in an abrupt increase in inductor
ripple current and consequent output voltage ripple. Do
not allow the core to saturate!
Molypermalloy (from Magnetics, Inc.) is a very good, low
loss core material for toroids, but it is more expensive
than ferrite. A reasonable compromise from the same
manufacturer is Kool Mμ. Toroids are very space efcient,
especially when you can use several layers of wire. Because
they generally lack a bobbin, mounting is more difcult.
However, designs for surface mount are available that do
not increase the height signicantly.
Power MOSFET and D1 Selection
Two external power MOSFETs must be selected for each
controller in the IC: One N-channel MOSFET for the top
(main) switch, and one N-channel MOSFET for the bottom
(synchronous) switch.
The peak-to-peak drive levels are set by the INTVCC voltage.
This voltage is typically 5V during start-up (see EXTVCC
Pin Connection). Consequently, logic-level threshold
MOSFETs must be used in most applications. The only
APPLICATIONS INFORMATION
exception is if low input voltage is expected (VIN < 5V);
then, sub-logic level threshold MOSFETs (VGS(TH) < 3V)
should be used. Pay close attention to the BVDSS speci-
cation for the MOSFETs as well; most of the logic level
MOSFETs are limited to 30V or less.
Selection criteria for the power MOSFETs include the “ON”
resistance RDS(ON), reverse transfer capacitance CRSS,
input voltage and maximum output current. When the IC
is operating in continuous mode the duty cycles for the
top and bottom MOSFETs are given by:
Main Switch Duty Cycle
V
OUT
IN
=
Synchronous Switch Duty Cycle
VV
V
IN
OUT
IN
=
The power dissipation for the main and synchronous
MOSFETs at maximum output current are given by:
P
V
IR
VI
MAIN
OUT
IN
MAX
DS ON
IN
M
=
() +
()
+
()
2
1
2
δ
()
A
AX
DR
MILLER
INTVCC
TH
RC
VV
V
f
()( )(
)
+
11
(()
P
VV
V
IR
SYNC
IN
OUT
IN
MAX
DS ON
=
() +
()
()
2
1
δ
where
δ is the temperature dependency of RDS(ON), RDR is
the effective top driver resistance over the (of approximately
4Ω at VGS = VMILLER), VIN is the drain potential and the
change in drain potential in the particular application. VTH
is the data sheet specied typical gate threshold voltage
specied in the power MOSFET data sheet. CMILLER is the
calculated capacitance using the gate charge curve from
the MOSFET data sheet. CMILLER is determined by dividing
the increase in charge indicated on the x axis during the
at, Miller portion of the curve by the stated VDS transition
voltage specied on the curve.
相關(guān)PDF資料
PDF描述
LTC3728IUH 3 A DUAL SWITCHING CONTROLLER, 590 kHz SWITCHING FREQ-MAX, PQCC32
LTC3728IG 3 A DUAL SWITCHING CONTROLLER, 590 kHz SWITCHING FREQ-MAX, PDSO28
LTC3728LIUH-1#TR 3 A DUAL SWITCHING CONTROLLER, 590 kHz SWITCHING FREQ-MAX, PQCC32
LTC3728LIGN-1 3 A DUAL SWITCHING CONTROLLER, 590 kHz SWITCHING FREQ-MAX, PDSO28
LTC3731HUH#TRPBF 5 A SWITCHING CONTROLLER, 750 kHz SWITCHING FREQ-MAX, PQCC32
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