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ZXLD1370QESTTC 数据表(PDF) 21 Page - Diodes Incorporated

部件名 ZXLD1370QESTTC
功能描述  AUTOMOTIVE COMPLIANT 60V HIGH ACCURACY BUCK/
PDF  39 Pages
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制造商  DIODES [Diodes Incorporated]
网页  http://www.diodes.com
标志 DIODES - Diodes Incorporated

ZXLD1370QESTTC 数据表(HTML) 21 Page - Diodes Incorporated

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ZXLD1370Q
Document number: DS37117 Rev. 4 - 2
21 of 39
www.diodes.com
February 2018
© Diodes Incorporated
ZXLD1370Q
Application Information (Cont.)
MOSFET Selection
The ZXLD1370Q requires an external NMOSFET as the main power switch with a voltage rating at least 15% higher than the maximum circuit
voltage to ensure safe operation during the overshoot and ringing of the switch node. The current rating is recommended to be at least 10% higher
than the average transistor current. The power rating is then verified by calculating the resistive and switching power losses.
P
P
P
SWITCHING
RESISTIVE
Resistive Power Losses
The resistive power losses are calculated using the RMS transistor current and the MOSFET on-resistance.
Calculate the current for the different topologies as follows:
Buck Mode
LED
MAX
MAX
MOSFET
I
x
D
I
When operating at low VIN in Buck mode a MOSFET with a suitably low VT must be chosen to ensure that the MOSFET is properly enhanced.
This is of most importance in Buck mode where a Bootstrap cannot be implemented.
Boost and Buck-Boost Mode
i
D
1
D
I
LED
MAX
MAX
MAX
MOSFET
When operating at low VIN in Boost or Buck-Boost modes a Bootstrap circuit (see Figure 37) to VAUX is recommended to fully enhance the external
MOSFET. If a Bootstrap circuit is not implemented, then a MOSFET with a suitably low VT must be chosen to ensure that the MOSFET is properly
enhanced.
The approximate RMS current in the MOSFET will be:
Buck Mode
D
I
I
LED
RMS
MOSFET
Boost and Buck-Boost Mode
LED
RMS
MOSFET
I
x
D
1
D
I
The resistive power dissipation of the MOSFET is:
ON
DS
2
RMS
MOSFET
RESISTIVE
R
x
I
P
Switching Power Losses
Calculating the switching MOSFET's switching loss depends on many factors that influence both turn-on and turn-off. Using a first order rough
approximation, the switching power dissipation of the MOSFET is:
GATE
LOAD
sw
IN
2
RSS
SWITCHING
I
I
x
f
x
V
x
C
P
Where:
CRSS is the MOSFET's reverse-transfer capacitance (a datasheet parameter),
fSW is the switching frequency,
IGATE is the MOSFET gate-driver's sink/source current at the MOSFET's turn-on threshold.



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