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MP3378EGF bảng dữ liệu(PDF) 15 Page - Monolithic Power Systems

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Giải thích chi tiết về linh kiện  4-Channel WLED Controller with High-Efficiency Buck Converter
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nhà sản xuất  MPS [Monolithic Power Systems]
Trang chủ  http://www.monolithicpower.com
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MP3378E
– 4-CHANNEL WLED CONTROLLER WITH BUCK CONVERTER
MP3378E Rev. 1.02
www.MonolithicPower.com
15
5/26/2017
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2017 MPS. All Rights Reserved.
BUCK CONVERTER SECTION:
The buck converter is a step-down, switch-
mode converter with built-in internal power
MOSFETs and offers a very compact solution.
It operates in a fixed-frequency, peak-current-
control mode to regulate the output voltage. A
PWM cycle is initiated by an internal clock. The
integrated high-side power MOSFET is turned
on and remains on until its current reaches the
value set by the COMP_BUCK voltage (this
COMP_BUCK is one of the buck’s internal
control voltage, not the COMP pin). When the
power switch is off, it remains off until the next
clock cycle starts. If the current in the power
MOSFET does not reach the COMP_BUCK set
current value in 95% of one PWM period, the
power MOSFET is forced to turn off.
Internal Regulator
Most of the internal circuitries are powered by a
5V internal regulator. This regulator takes the
VIN2 input and operates in the full VIN2 range.
When VIN2 is greater than 5.0V, the output of
the regulator is in full regulation. When VIN2 is
lower than 5.0V, the output decreases. A 0.1µF
ceramic capacitor is required for decoupling
purposes.
Error Amplifier
The error amplifier compares the FB voltage
with the internal 0.8V reference (REF) and
outputs a COMP_BUCK voltage, which is used
to control the power MOSFET current. The
optimized
internal
compensation
network
minimizes the external component count and
simplifies the control loop design.
SYNC Control
The buck converter can be synchronized to an
external clock ranging from 250kHz to 2MHz
through SYNC. The internal clock
’s rising edge
is synchronized to the external clock
’s falling
edge. The synchronized logic high voltage
should
be
higher
than
1.8V,
and
the
synchronized logic low voltage should be lower
than 0.6V. The frequency of the external clock
should be higher than the internal clock.
Otherwise the internal clock may turn on the
high-side MOSFET.
Under-Voltage Lockout (UVLO)
Under-voltage lockout (UVLO) is implemented
to protect the buck converter from operating at
insufficient supply voltages by monitoring the
output voltage of the internal regulator (VCC2).
The UVLO rising threshold is about 3.9V while
its falling threshold is consistently 3.25V.
Internal Soft Start (SS)
The soft start is implemented to prevent the
converter output voltage from overshooting
during start-up. When the chip starts up, the
internal circuitry generates a soft-start voltage
(SS) and ramps up from 0V. The soft-start
period lasts until the voltage of the soft-start
capacitor exceeds the reference voltage of 0.8V.
At this point, the reference voltage takes over.
The soft-start time is set internally to around
1.5ms.
Over-Current Protection and Hiccup Mode
The
cycle-by-cycle
over-current
limit
is
implemented when the inductor current peak
value exceeds the set current limit threshold.
The output voltage drops until FB is below the
under-voltage (UV) threshold, typically 50%
below the reference. Once UV is triggered, the
buck converter enters hiccup mode to restart
the part periodically. This protection mode is
especially useful when the output is dead-
shorted to ground. The average short-circuit
current is greatly reduced to alleviate thermal
issues and protect the regulator. The buck
converter exits hiccup mode once the over-
current condition is removed.
Thermal Shutdown
Thermal shutdown is implemented to prevent
the chip from operating at exceedingly high
temperatures. When the silicon die temperature
is higher than 150°C, the buck converter shuts
down. When the temperature is lower than its
lower threshold, typically 130°C, the buck
converter is enabled again.



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