參數(shù)資料
型號(hào): LTC3783IDHD
廠商: LINEAR TECHNOLOGY CORP
元件分類: 穩(wěn)壓器
英文描述: 1 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PDSO16
封裝: 5 X 4MM, PLASTIC, MO-229WJGD-2, DFN-16
文件頁(yè)數(shù): 13/24頁(yè)
文件大?。?/td> 250K
代理商: LTC3783IDHD
LTC3783
20
3783fb
OPERATION
5. Check the stress on the power MOSFET by measuring its
drain-to-source voltage directly across the device terminals
(reference the ground of a single scope probe directly to the
source pad on the PC board). Beware of inductive ringing
which can exceed the maximum specied voltage rating of
theMOSFET.Ifthisringingcannotbeavoidedandexceedsthe
maximum rating of the device, either choose a higher voltage
device or specify an avalanche-rated power MOSFET.
6. Place the small-signal components away from high
frequency switching nodes. All of the small-signal com-
ponents should be placed on one side of the IC and all
of the power components should be placed on the other.
This also allows the use of a pseudo-Kelvin connection for
the signal ground, where high di/dt gate driver currents
ow out of the IC ground pad in one direction (to bottom
plate of the INTVCC decoupling capacitor) and small-signal
currents ow in the other direction.
7. If a sense resistor is used in the source of the power
MOSFET, minimize the capacitance between the SENSE
pin trace and any high frequency switching nodes. The
LTC3783 contains an internal leading-edge blanking time
of approximately 160ns, which should be adequate for
most applications.
8. For optimum load regulation and true remote sensing,
the top of the output resistor should connect indepen-
dently to the top of the output capacitor (Kelvin connec-
tion), staying away from any high dV/dt traces. Place the
divider resistors near the LTC3783 in order to keep the
high impedance FBN node short.
9. For applications with multiple switching power convert-
ers connected to the same input supply, make sure that
the input lter capacitor for the LTC3783 is not shared
with any other converters. AC input current from another
converter could cause substantial input voltage ripple, and
this could interfere with the operation of the LTC3783. A
few inches of PC trace or wire (L ~ 100nH) between the
CIN of the LTC3783 and the actual source VIN should be
sufcient to prevent current-sharing problems.
Returning the Load to VIN: A Single Inductor
Buck-Boost Application
As shown in Figure 11, due to its available high side current
sensing mode, the LTC3783 is also well-suited to a boost
converter in which the load current is returned to VIN,
hence providing a load voltage (VOUT – VIN) which can be
greater or less than the input voltage VIN.Thisconguration
allows for complete overlap of input and output voltages,
with the disadvantages that only the load current, and not
the load voltage, can be tightly regulated. The switch must
be rated for a VDS(MAX) equal to VIN + VLOAD.
The design of this circuit resembles that of the boost
converter above, and the procedure is much the same,
except VOUT is now (VIN + VLOAD), and the duty cycles
and voltages must be adjusted accordingly.
LTC3783
RUN
PWMIN
ITH
SS
VREF
FBP
FBN
FREQ
SYNC
VIN
OV/FB
PWMOUT
ILIM
GATE
SENSE
INTVCC
GND
VIN
9V TO 26V
RL
0.28Ω
VOUT
LED STRING 1-4 EA
LUMILEDS LHXL-BW02
EACH LED IS 3V TO 4.2V
AT 350mA
10μF, 50V
C5750X7R1H106M
CERAMIC
0V TO
1.23V
10μF, 50V
2
UMK432C106MM
10μH
SUMIDA
CDRH8D28-100
GND
3783 F11
1M
20k
PMEG6010
FAIRCHILD
FDN5630
1k
40.2k
4.7μF
100k
PWM
5V AT 0Hz TO 10Hz
4.7μF
0.05Ω
1μF
Figure 11. Single Inductor Buck-Boost Application with Analog Dimming and Low Frequency PWM Dimming
相關(guān)PDF資料
PDF描述
LTC3783IFE#TR 1 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PDSO16
LTC3783IDHD#TR 1 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PDSO16
LTC3783IFE 1 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PDSO16
LTC3785IUF#PBF 3 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PQCC24
LTC3785EUF 3 A SWITCHING CONTROLLER, 1000 kHz SWITCHING FREQ-MAX, PQCC24
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