Features: • Pb−Free Package is Available• No Auxiliary Winding Operation• Current−Mode Control with Adjustable Skip−Cycle Capability• Internal Ramp Compensation• Limited Duty Cycle to 50% (A version only)• Internal 1.0 ms Soft−Start (A ve...
NCP1216A: Features: • Pb−Free Package is Available• No Auxiliary Winding Operation• Current−Mode Control with Adjustable Skip−Cycle Capability• Internal Ramp Compensa...
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Rating | Symbol | Value | Unit |
Power Supply Voltage, VCCPin | VCC | 16 | V |
Maximum Voltage on Low Power Pins (except Pin 8 and Pin 6) | −0.3 to 10 | V | |
Maximum Voltage on Pin 8 (HV), Pin 6 (VCC) Decoupled to Ground with 10 |
500 | V | |
Maximum Voltage on Pin 8 (HV), Pin 6 (VCC) Grounded | 450 | V | |
Minimum Operating Voltage on Pin 8 (HV) | 30 | V | |
Maximum Current into all Pins except VCC(Pin 6) and HV (Pin 8) when 10 V ESDDiodes are Activated | 5.0 | mA | |
Thermal Resistance Junction−to−Air, PDIP−7 Version Thermal Resistance Junction−to−Air, PDIP−7 Version |
RJ−A RJ−A |
100 178 |
°C/W |
Maximum Junction Temperature | TJMAX | 150 | °C |
Temperature Shutdown | TSD | 155 | °C |
Hysteresis in Shutdown | 30 | °C | |
Storage Temperature Range | −60 to +150 | °C | |
ESD Capability, HBM Model (All Pins except VCCand HV) | 2.0 | kV | |
ESD Capability, Machine Model | 200 | V |
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 of NCP1216 naturally eases the designer ask in some particular applications, e.g. battery chargers or TV sets. Current−mode control also provides an excellent input audiosu sceptibility 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.