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MP5016 bảng dữ liệu(PDF) 15 Page - Monolithic Power Systems

tên linh kiện MP5016
Giải thích chi tiết về linh kiện  2.7 - 15V, 0.7 - 5A, Current Limit Switch with Over-Voltage Clamp and Reverse Blocking
PDF  17 Pages
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nhà sản xuất  MPS [Monolithic Power Systems]
Trang chủ  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MP5016 bảng dữ liệu(HTML) 15 Page - Monolithic Power Systems

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MP5016 – 2.7 - 15V, 0.7 - 5A, PROGRAMMABLE, CURRENT-LIMITED SWITCH
MP5016 Rev.1.1
www.MonolithicPower.com
15
6/14/2019
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2019 MPS. All Rights Reserved.
Table 4: K1 Factor Value at External DV/DT
Capacitor
MODE Connection
K1
Low
5.75
High
15.2
Float
27
RMODE
MODE
clamp
R
μ*
7
V
For example, when the external DV/DT cap is
47nF and RMODE = 76.8kΩ, the dV/dt slew rate
is 1V/ms.
Large Output Capacitor
With large output capacitor, if the charge
current during soft start triggers the current limit,
the MP5016 enters hiccup when the current
limit is triggered for 2ms. To avoid start-up
failure with a large output capacitor, a proper
dV/dt slew rate must be set during the soft start
to avoid triggering the current limit.
PCB Layout Guide
Efficient PCB layout is critical for stable
operation. For best results, refer to Figure 4 and
follow the guidelines below.
1. Place the high-current paths (VCC, VOUT)
close to the device using short, direct, and
wide traces.
2. Place the input capacitors close to the VCC
and GND.
3. Connect the VCC and VOUT pads to large
VCC and VOUT planes respectively to
achieve better thermal performance.
4. Place a current-limit resistor close to ILIMIT.
5. Place a DV/DT capacitor close to DV/DT.
Figure 4: Recommended Layout
Design Example
Table 5 is a design example following the
application
guidelines
for
the
given
specifications.
Table 5: Design Example
VIN (V)
2.7 to 15
Current Limit (A)
3.5
DV/DT Slew Rate (V/ms)
3.8
The detailed application circuits are shown in
Figure 5 and Figure 6. The typical performance
and circuit waveforms are shown in the Typical
Performance Characteristics section. For more
detailed device applications, please refer to the
related evaluation board datasheet.



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