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MC33166D2T Datasheet(PDF) 8 Page - ON Semiconductor

Part # MC33166D2T
Description  3.0 A, Step?뭊p/Down/Inverting Switching Regulators
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

MC33166D2T Datasheet(HTML) 8 Page - ON Semiconductor

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MC34166, MC33166
http://onsemi.com
8
equivalent Schottky barrier rectifier is recommended to fulfill
these requirements.
Undervoltage Lockout
An
Undervoltage
Lockout
comparator
has
been
incorporated to guarantee that the integrated circuit is fully
functional before the output stage is enabled. The internal
5.05 V reference is monitored by the comparator which
enables the output stage when VCC exceeds 5.9 V. To prevent
erratic output switching as the threshold is crossed, 0.9 V of
hysteresis is provided.
Thermal Protection
Internal Thermal Shutdown circuitry is provided to protect
the integrated circuit in the event that the maximum junction
temperature is exceeded. When activated, typically at 170
°C,
the latch is forced into a ‘reset’ state, disabling the output
switch. This feature is provided to prevent catastrophic
failures from accidental device overheating. It is not
intended to be used as a substitute for proper heatsinking.
The MC34166 is contained in a 5−lead TO−220 type package.
The tab of the package is common with the center pin (Pin 3)
and is normally connected to ground.
DESIGN CONSIDERATIONS
Do not attempt to construct a converter on wire−wrap
or plug−in prototype boards. Special care should be taken
to separate ground paths from signal currents and ground
paths from load currents. All high current loops should be
kept as short as possible using heavy copper runs to minimize
ringing and radiated EMI. For best operation, a tight
component layout is recommended. Capacitors CIN, CO, and
all feedback components should be placed as close to the IC
as physically possible. It is also imperative that the Schottky
diode connected to the Switch Output be located as close to
the IC as possible.
Figure 16. Low Power Standby Circuit
Figure 17. Over Voltage Shutdown Circuit
Figure 18. Soft−Start Circuit
1
5
R1
120
Error
Amp
Compensation
100
mA
I = Standby Mode
VShutdown = VZener + 0.7
tSoft−Start ≈ 35,000 Css
Css
D1
D2
1.0 M
Vin
1
5
R1
120
Error
Amp
Compensation
100
mA
1
5
R1
120
Error
Amp
Compensation
100
mA
+
+
+


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