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LT4351CMS 데이터시트(PDF) 5 Page - Linear Technology

부품명 LT4351CMS
상세설명  MOSFET Diode-OR Controller
PDF  20 Pages
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제조업체  LINER [Linear Technology]
홈페이지  http://www.linear.com
Logo LINER - Linear Technology

LT4351CMS 데이터시트(HTML) 5 Page - Linear Technology

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LT4351
5
sn4351 4351fs
PI FU CTIO S
GATE (Pin 1): MOSFET Gate Drive Pin. This pin is tied to
the gate(s) of the external N-channel MOSFET(s). The
GATE pin drives high when UV is above the VUV(TH)
threshold, OV is below the VOV(TH) threshold and VIN is
greater than OUT by 15mV. When not driven high, GATE
actively pulls to GND. GATE can sink or source up to
600mA.
VDD (Pin 2): Gate Drive Supply Pin. This is the supply pin
for the gate drive amplifier. It is either generated by the
onboard boost regulator or supplied externally. When
turning on the MOSFET(s), a large high current pulse flows
through this pin. Bypass the pin with a 1
µF capacitor
placed in close proximity to the part. The voltage on this
pin is also the feedback for the boost regulator. If the VDD
voltage exceeds the VIN voltage by 10.7V, the boost switch
is held off.
VIN (Pin 3): Input Supply Pin. This pin is the supply pin for
the control circuitry and the boost regulator. It is also one
input in conjunction with OUT for controlling the
MOSFET(s). Bypassing should include a low ESR/ESL
capacitor placed in close proximity to the part.
SW (Pin 4): Boost Regulator Switch Pin. This pin is the
boost regulator switch output. It is connected to the boost
inductor and the boost diode. Peak switch current is
limited internally to 450mA. If an external VDD supply is
used, leave this pin open.
GND (Pin 5): Device Ground Pin. This pin is ground for the
boost switch, gate driver as well as the control circuitry.
Tie the VIN and VDD bypass capacitors and ground plane
close to this pin to minimize the effects of switching
currents on part performance.
Typical SW Pin Waveform
SW Pin Waveform at Maximum
Boost Regulator Output
VSW
5V/DIV
VIN = 5V
10
µs/DIV
3451 G12
4.7
µH INDUCTOR
VSW
5V/DIV
VIN = 5V
10
µs/DIV
3451 G13
4.7
µH INDUCTOR
TYPICAL PERFOR A CE CHARACTERISTICS
Specifications are at TA = 25°C unless otherwise specified.



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