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Home > products > Power Management ICs > NCP1207ADR2G Integrated Circuit Chip PWM Current-Mode Controller for Free Running Quasi-Resonant Operation

NCP1207ADR2G Integrated Circuit Chip PWM Current-Mode Controller for Free Running Quasi-Resonant Operation

manufacturer:
ON Semi / Catalyst Semi
Description:
Converter Offline Flyback Topology Up to 200kHz 8-SOIC
Category:
Power Management ICs
Price:
Negotiate
Payment Method:
T/T, Western Union, Paypal
Specifications
Power Supply Voltage:
16 V
Thermal Resistance, Junction−to−Case:
57 °C/W
Operating Junction Temperature:
-40 To +125 °C
Maximum Junction Temperature:
150 °C
Temperature Shutdown:
155 °C
Storage Temperature Range:
−60 To +150 °C
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Introduction

 

NCP1207A

PWM Current−Mode Controller for Free Running Quasi−Resonant Operation

 

The NCP1207A combines a true current mode modulator and a demagnetization detector to ensure full borderline/critical Conduction Mode in any load/line conditions and minimum drain voltage switching (Quasi−Resonant operation). Due to its inherent skip cycle capability, the controller enters burst mode as soon as the power demand falls below a predetermined level. As this happens at low peak current, no audible noise can be heard. An internal 8.0 s timer prevents the free−run frequency to exceed 100 kHz (therefore below the 150 kHz CISPR−22 EMI starting limit), while the skip adjustment capability lets the user select the frequency at which the burst foldback takes place.

The Dynamic Self−Supply (DSS) drastically simplifies the transformer design in avoiding the use of an auxiliary winding to supply the NCP1207A. This feature is particularly useful in applications where the output voltage varies during operation (e.g. battery chargers). Due to its high−voltage technology, the IC is directly connected to the high−voltage DC rail. As a result, the short−circuit trip point is not dependent upon any VCC auxiliary level.

The transformer core reset detection is done through an auxiliary winding which, brought via a dedicated pin, also enables fast Overvoltage Protection (OVP). Once an OVP has been detected, the IC permanently latches off.

Finally, the continuous feedback signal monitoring implemented with an overcurrent fault protection circuitry (OCP) makes the final design rugged and reliable.

 

Features

• Free−Running Borderline/Critical Mode Quasi−Resonant Operation

• Current−Mode with Adjustable Skip−Cycle Capability

• No Auxiliary Winding VCC Operation

• Auto−Recovery Overcurrent Protection

• Latching Overvoltage Protection

• External Latch Triggering, e.g. Via Overtemperature Signal

• 500 mA Peak Current Source/Sink Capability

• Undervoltage Lockout for VCC Below 10 V

• Internal 1.0 ms Soft−Start

• Internal 8.0 s Minimum TOFF

• Adjustable Skip Level

• Internal Temperature Shutdown

• Direct Optocoupler Connection

• SPICE Models Available for TRANsient Analysis

• Pb−Free Package is Available

 

Typical Applications

• AC/DC Adapters for Notebooks, etc.

• Offline Battery Chargers

• Consumer Electronics (DVD Players, Set−Top Boxes, TVs, etc.)

• Auxiliary Power Supplies (USB, Appliances, TVs, etc.)

 

MAXIMUM RATINGS

RATING Symbol Value Units
Power Supply Voltage VCC, Drv 16 V
Maximum Voltage on all other pins except Pin 8 (HV), Pin 6 (VCC) Pin 5 (Drv) and Pin 1 (Demag) - −0.3 to 10 V
Maximum Current into all pins except VCC (6), HV (8) and Demag (1) when 10 V ESD diodes are activated - 5.0 mA
Maximum Current in Pin 1 Idem +3.0/−2.0 mA
Thermal Resistance, Junction−to−Case RθJC 57 °C/W
Thermal Resistance, Junction−to−Air, SOIC version RθJA 178 °C/W
Thermal Resistance, Junction−to−Air, DIP8 version RθJA 100 °C/W
Operating Junction Temperature TJ -40 to +125 °C
Maximum Junction Temperature TJMAX 150 °C
Temperature Shutdown - 155 °C
Hysteresis in Shutdown - 30 °C
Storage Temperature Range - −60 to +150 °C
ESD Capability, HBM Model (All pins except HV) - 2.0 kV
ESD Capability, Machine Model - 200 V
Maximum Voltage on Pin 8 (HV), Pin 6 (VCC) decoupled to ground with 10 μF VHVMAX 500 V
Minimum Voltage on Pin 8 (HV), Pin 6 (VCC) decoupled to ground with 10 μF VHVMIN 40 V

Maximum ratings are those values beyond which device damage can occur. Maximum ratings applied to the device are individual stress limit values (not normal operating conditions) and are not valid simultaneously. If these limits are exceeded, device functional operation is not implied, damage may occur and reliability may be affected.

 

       

 

NCP1207A

 

                                                      Figure 1. Typical Application

 

 

 

                                             Figure 2. Internal Circuit Architecture

 

 

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