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MP9989GS 数据表(PDF) 10 Page - Monolithic Power Systems

部件名 MP9989GS
功能描述  CCM/DCM Flyback Ideal Diode with Integrated 100V/10mΩ MOSFET and No Need for Auxiliary Winding
PDF  15 Pages
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制造商  MPS [Monolithic Power Systems]
网页  http://www.monolithicpower.com
标志 MPS - Monolithic Power Systems

MP9989GS 数据表(HTML) 10 Page - Monolithic Power Systems

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MP9989
– FAST TURN-OFF INTELLIGENT RECTIFIER
MP9989 Rev. 1.1
www.MonolithicPower.com
10
8/27/2020
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2020 MPS. All Rights Reserved.
APPLICATION INFORMATION
Slew Rate Detection Function
In DCM operations, the demagnetizing ringing
may bring VDS below 0V. If VDS reaches the turn-
on threshold during the ringing, SR controllers
without the slew rate detection function may turn
on the MOSFET by mistake. This not only
increases power loss, but may also lead to
shoot-through if the primary side MOSFET is
turned on within the minimum on time.
Considering the slew rate of the ringing is always
much less than when the primary MOSFET is
completely turned off, this false turn-on situation
can be prevented by the slew rate detection
function. When the slew rate is less than the
threshold, the IC does not turn on the gate even
when VDS reaches the turn-on threshold. For
more details, see the Turn-On Phase section on
page 8.
External Resistor on SENSE
Over-voltage conditions may lead to damage to
the device, so there must be appropriate
application design to guarantee safe operation,
especially on the high voltage pin.
One common over-voltage condition is when the
body diode of the SR MOSFET is turned on, as
the forward voltage drop may exceed the
negative rating on the SENSE pin. In this case,
it is recommended to place an external resistor
between SENSE and the MOSFET drain. In
general, the resistance is recommended to be
about 100
Ω to 300Ω.
On the other hand, this resistor also cannot be
too large, because it may compromise the VDD
supply and slow down the slew rate on the VDS
detection. In general, it is not recommended to
use a resistor greater than 300
Ω, but for each
use case, it should be checked based on the
condition of VDD supply and the slew rate.
Typical System Implementations
Figure 3 and Figure 4 show the typical system IC
implementation in low-side rectification and high-
side rectification, respectively.
SENSE
VS
VDD
VD
MP9989
Figure 3: Low-Side Rectification
SENSE
VS
VDD
VD
MP9989
Figure 4: High-Side Rectification
Maximum Output Current
The allowed temperature rise of the MP9989
limits the maximum output current the device can
handle. The temperature rise is determined by its
own power loss. Generally, for a universal input
adapter the recommended rated output current
for MP9989 is 4A. For certain designs, the power
loss of the MP9989 can be calculated, so the
maximum output current can be deduced.
The power loss of the MP9989 can be separated
into
several
parts:
controller
consumption,
integrated MOSFET conduction loss, and so on.
If the MP9989 works in continuous conduction
mode (CCM), reverse-recovery loss of the
integrated MOSFET must also be considered.
Each part of the loss can be calculated based on
Equation (1), Equation (2), and Equation (3):

LOSS _ CONTROLLER
SENSE _ P
DD
P
V
I
(1)
S _ ON
t
LOSS _ SR _ CONDUCTION
SW
SR _ SD
SR _ SD
0
P
f
V
(t) I
(t)dt (2)
 
 
LOSS _ SR _ RR
DS
RR
F
SW
1
P
V
I
t
f
2
(3)
Where IDD is the current of the MP9989, and
VSENSE_P is the corresponding plateau voltage in
the SENSE pin when SR turns off. fSW is the SR
switching frequency, and tS_ON is the SR on
period, VSR_SD is the voltage drop from the SR,
and ISR_SD is the current flowing from the SR. IRR



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