NCP1271ADAPGEVB ON Semiconductor, NCP1271ADAPGEVB Datasheet - Page 17

EVAL BOARD FOR NCP1271ADAPG

NCP1271ADAPGEVB

Manufacturer Part Number
NCP1271ADAPGEVB
Description
EVAL BOARD FOR NCP1271ADAPG
Manufacturer
ON Semiconductor

Specifications of NCP1271ADAPGEVB

Design Resources
NCP1271 Adapter EVB BOM NCP1271ADAPGEVB Gerber Files NCP1271EVB Schematic
Main Purpose
AC/DC, Primary Side
Outputs And Type
1, Isolated
Voltage - Output
19V
Current - Output
3A
Voltage - Input
85 ~ 265VAC
Regulator Topology
Flyback
Frequency - Switching
65kHz
Board Type
Fully Populated
Utilized Ic / Part
NCP1271
Silicon Manufacturer
On Semiconductor
Silicon Core Number
NCP1271
Kit Application Type
Power Management
Application Sub Type
PWM Controller
Peak Reflow Compatible (260 C)
No
Rohs Compliant
No
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
NCP1271ADAPGEVBOS
Output Drive
drive a power MOSFET. It is capable of up to +500 mA and
−800 mA peak drive currents and has a typical rise and fall
The output stage of the device is designed to directly
opto
coupler
Figure 40. NCP1271 Operation Threshold
V skip
3 V
0 V
Figure 41. Non−Latchoff Shutdown
V FB
OFF
Fault operation when staying
in this region longer than 130 ms
PWM operation
Non−latched shutdown
1
2
3
4
NCP1271
http://onsemi.com
8
6
5
17
time of 30 ns and 20 ns with a 1.0 nF load. This allows the
NCP1271 to drive a high−current power MOSFET directly
for medium−high power application.
Noise Decoupling Capacitors
external decoupling capacitors.
There are three pins in the NCP1271 that may need
1. Skip/Latch Pin (Pin 1) – If the voltage on
2. Feedback Pin (Pin 2) – The FB pin is a high
3. V
this pin is above 8.0 V, then the circuit enters
latchoff. Hence, a decoupling capacitor on this
pin is essential for improved noise immunity.
Additionally, a resistor should always be placed
from this pin to GND to prevent noise from
causing the pin 1 level to exceed the latchoff
level.
impedance point and is very easily polluted in a
noisy environment. This could effect the circuit
operation.
operation when V
typical). But, if V
of switching noise, then the circuit can incorrectly
recognize it as a fault condition. Hence, it is
important to locate the V
additional decoupling capacitor as close as possible
to the device.
CC
Pin (Pin 6) – The circuit maintains normal
CC
CC
drops below V
is above V
CC
capacitor or an
CC(off)
CC(off)
(9.1 V
because

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