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NCP1216, NCP1216A
PWM Current-Mode
Controller for High-Power
Universal Off-Line Supplies
Housed in a SOIC−8 or PDIP−7 package, the NCP1216 represents
an enhanced version of NCP1200 based controllers. Due to its high
drive capability, NCP1216 drives large gate−charge MOSFETs, which
together with internal ramp compensation and built−in frequency
jittering, ease the design of modern AC−DC adapters.
With an internal structure operating at different fixed frequencies,
the controller supplies itself from the high−voltage rail, avoiding the
need of an auxiliary winding. This feature naturally eases the designer
task in some particular applications, e.g. battery chargers or TV sets.
Current−mode control also provides an excellent input audio
susceptibility and inherent pulse−by−pulse control. Internal ramp
compensation easily prevents sub−harmonic oscillations from taking
place in continuous conduction mode designs.
When the current setpoint falls below a given value, e.g. the output
power demand diminishes, the IC automatically enters the so−called
skip cycle mode and provides excellent efficiency at light loads.
Because this occurs at a user adjustable low peak current, no acoustic
noise takes place.
The NCP1216 features an efficient protective circuitry, which in
presence of an over current condition disables the output pulses while
the device enters a safe burst mode, trying to restart. Once the default
has gone, the device auto−recovers.
Features
• No Auxiliary Winding Operation
• Current−Mode Control with Adjustable Skip−Cycle Capability
• Internal Ramp Compensation
• Limited Duty Cycle to 50% (NCP1216A Only)
• Internal 1.0 ms Soft−Start (NCP1216A Only)
• Built−In Frequency Jittering for Better EMI Signature
• Auto−Recovery Internal Output Short−Circuit Protection
• Extremely Low No−Load Standby Power
• 500 mA Peak Current Capability
• Fixed Frequency Versions at 65 kHz, 100 kHz, 133 kHz
• Internal Temperature Shutdown
• Direct Optocoupler Connection
• SPICE Models Available for TRANsient and AC Analysis
• Pin−to−Pin Compatible with NCP1200 Series
• These are Pb−Free and Halide−Free Devices
Typical Applications
• High Power AC−DC Converters for TVs, Set−Top Boxes, etc.
• Offline Adapters for Notebooks
• Telecom DC−DC Converters
• All Power Supplies
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8
1
SOIC−8
D SUFFIX
CASE 751
MARKING
DIAGRAMS
8
XXXXX
ALYW
G
1
PDIP−7
P SUFFIX
CASE 626B
XXXXXXXXX
AWL
YYWWG
1
XXXXXX = Specific Device Code
A = Assembly Location
WL, L = Wafer Lot
YY, Y = Year
WW, W = Work Week
G or G = Pb−Free Package
PIN CONNECTIONS
Adj 1
FB 2
CS 3
Gnd 4
8 HV
7 NC
6 VCC
5 Drv
DEVICE MARKING AND
ORDERING INFORMATION
See detailed ordering and shipping information in the ordering
information section on page 16 of this data sheet.
© Semiconductor Components Industries, LLC, 2016
May, 2016 − Rev. 16
1
Publication Order Number:
NCP1216/D
NCP1216, NCP1216A
EMI
Filter
Universal Input
*See Application Section
NCP1216
1 AdjFosc = 35kHz HV 8
+
2 FB
7
3 CS Vcc 6
4 GNDDrv 5
Rcomp
+
Rsense
+
Figure 1. Typical Application Example
ÁÁÁPÁÁÁPINinFÁÁÁNUoN.ÁÁÁCTIÁÁÁOPNinÁÁÁDNEaSÁÁÁmCeRÁÁÁIPTÁÁÁIONÁÁÁÁÁÁFÁÁÁunctÁÁÁionÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁPiÁÁÁnDeÁÁÁscrÁÁÁiptioÁÁÁn ÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁÁ
1 Adj Adjust the Skipping Peak Current This pin lets you adjust the level at which the cycle skipping process
takes place. Shorting this pin to ground, permanently disables the skip
cycle feature.
2 FB Sets the Peak Current Setpoint By connecting an Optocoupler to this pin, the peak current setpoint is
adjusted accordingly to the output power demand.
3 CS
Current Sense Input
This pin senses the primary current and routes it to the internal com-
parator via an L.E.B. By inserting a resistor in series with the pin, you
control the amount of ramp compensation you need.
4 GND
IC Ground
−
5 Drv
Driving Pulses
The driver’s output to an external MOSFET.
6 VCC
7 NC
Supplies the IC
−
This pin is connected to an external bulk capacitor of typically 22 mF.
This un−connected pin ensures adequate creepage distance.
8 HV Generates the VCC from the Line Connected to the high−voltage rail, this pin injects a constant current
into the VCC bulk capacitor.
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