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LTC4354CS8 bảng dữ liệu(PDF) 9 Page - Linear Technology

tên linh kiện LTC4354CS8
Giải thích chi tiết về linh kiện  Negative Voltage Diode-OR Controller and Monitor
PDF  12 Pages
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nhà sản xuất  LINER [Linear Technology]
Trang chủ  http://www.linear.com
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LTC4354CS8 bảng dữ liệu(HTML) 9 Page - Linear Technology

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LTC4354
9
4354f
–5.2V Diode-Or Controller
LTC4354
LOAD
DB
GA
DA
GB
VSS
VB = –5.2V
VA = –5.2V
GND
FAULT
M2
Si4466DY
M1
Si4466DY
4354 TA02
VCC
R3
2k
D1
LED
CIN
1µF
2, 5
6
14
8
3
7
The worst case power dissipation in RIN:
P
VV
k
W
=
−
=
(.
)
.
72
10 5
12
0 315
2
Choose a 12k 0.5W resistor or use two 5.6k 0.25W
resistors in series.
Next, choose the N-channel MOSFET. The 100V, IRF3710S
in D2Pak package with RDS(ON) = 23mΩ (max.) offers a
good solution. The maximum voltage drop across it is:
∆V = (5A)(23mΩ) = 115mV
The maximum power dissipation in the FET is a mere:
P = (5A)(115mV) = 0.6W
R1 and R2 are chosen to be 2k to protect DA and DB pins
from being damaged by high voltage spikes that can occur
during an input supply fault.
The LED, D1, requires at least 1mA of current to fully turn
on, therefore R3 is set to 33k to accommodate lowest input
supply voltage of –36V.
Layout Considerations
The following advice should be considered when laying
out a printed circuit board for the LTC4354.
The bypass capacitor provides AC current to the device so
place it as close to the VCC and VSS pins as possible. The
inputs to the servo amplifiers, DA, DB and VSS pins, should
be connected directly to the MOSFETs’ terminals using
Kelvin connections for good accuracy.
Keep the traces to the MOSFETs wide and short. The PCB
traces associated with the power path through the MOSFETs
should have low resistance.
APPLICATIO S I FOR ATIO



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