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ACE345E датащи(PDF) 9 Page - ACE Technology Co., LTD.

номер детали ACE345E
подробное описание детали  Adjustable USB Load Current Switch
PDF  11 Pages
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производитель  ACE [ACE Technology Co., LTD.]
домашняя страница  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE345E датащи(HTML) 9 Page - ACE Technology Co., LTD.

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ACE345E
Adjustable USB Load Current Switch
VER 1.2
9
Application Information
Input Output Capacitance
Input and output capacitance improves the performance of the device; the actual capacitance should be
optimized for the particular application. For all applications, a 4.7µF or greater ceramic bypass capacitor
between IN and GND is recommended as close to the device as possible for local noise de-coupling. This
precaution reduces ringing on the input due to power-supply transients. Additional input capacitance may
be needed on the input to reduce voltage overshoot from exceeding the absolute maximum voltage of the
device during heavy transient conditions. This is especially important during bench testing when long,
inductive cables are used to connect the evaluation board to the bench power-supply. Placing a
high-value electrolytic capacitor on the output pin is recommended when large transient currents are
expected on the output.
Setting The Current Limit Threshold
RILIM (K
Ω)
Typical Current Limit (mA)
RILIM (K
Ω)
Typical Current Limit (mA)
200
138
51
520
180
152
43
612
151
179
30
873
100
266
20
1295
82
324
15.1
1705
68
389
Power Dissipation
During normal operation as a switch, the power dissipated in the part will depend upon the level at which
the current limit is set. The maximum allowed setting for the current limit is 1A and this will result in a
power dissipation of,
P = (ILIM)
2 x RDS = (1)2 x 0.10 = 100mW
If the part goes into current limit the maximum power dissipation will occur when the output is shorted to
ground. This is more power than the package can dissipate, but the thermal shutdown of the part will
activate to protect the part from damage due to excessive heating. A short on the output will cause the
part to operate in a constant current state dissipating a worst case power of,
P(max) = VIN(max) x ILIM(max) = 5.5 x 1 = 5W
This large amount of power will activate the thermal shutdown and the part will cycle in and out of thermal
shutdown so long as the ON pin is active and the short is present.



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