ICE2QS03 computer microchip ic electronic components Integrated Circuit Chip Quasi-Resonant PWM Controller
chip in electronics
,integrated components
ICE2QS03 Quasi-Resonant PWM Controller
Product Highlight
• Active burst mode for low standby power
• Digital frequency reduction for better overall system efficiency
• Integrated power cell for IC self-power supply
Features
• Quasiresonant operation till very low load
• Active burst mode operation at light/no load for low standby input power (< 100mW)
• Digital frequency reduction with decreasing load
• Power cell for VCC pre-charging with constant current
• Built-in digital soft-start
• Foldback correction and cycle-by-cycle peak current limitation
• Auto restart mode for VCC Overvoltage protection
• Auto restart mode for VCC Undervoltage protection
• Auto restart mode for openloop/overload protection
• Latch-off mode for adjustable output overvoltage protection
• Latch-off mode for Short-winding protection
Description
ICE2QS03 is a quasi-resonant PWM controller optimized for off-line switch power supply applications such as LCD TV, CRT TV and notebook adapter. The digital frequency reduction with decreasing load enables a quasi-resonant operation till very low load. As a result, the overall system efficiency is significantly improved compared to other conventional solutions. The active burst mode operation enables an ultra-low power consumption at standby mode with small and controllable output voltage ripple. Based on the BiCMOS technology, the product has a wide operation range (up to 26V) of IC power supply and lower power consumption. The numerous protection functions give a full protection of the power supply system in failure situations. All of these make the ICE2QS03 an outstanding controller for quasi-resonant flyback converter in the market.
Absolute Maximum Ratings
Note: Absolute maximum ratings are defined as ratings, which when being exceeded may lead to destruction of the integrated circuit. For the same reason make sure, that any capacitor that will be connected to pin 7 (VCC) is discharged before assembling the application circuit.
Parameter | Symbol | min. | max. | Unit | Remarks |
HV Voltage | VHV | - | 500 | V | |
VCC Supply Voltage | VVCC | -0.3 | 27 | V | |
FB Voltage | VFB | -0.3 | 5.0 | V | |
ZC Voltage | VZC | -0.3 | 5.0 | V | |
CS Voltage | VCS | -0.3 | 5.0 | V | |
GATE Voltage | VOUT | -0.3 | 27 | V | |
Maximum current out from ZC pin | IZCMAX | 3 | - | mA | |
Junction Temperature | Tj | -40 | 125 | °C | |
Storage Temperature | TS | -55 | 150 | °C | |
Thermal Resistance Junction -Ambient | RthJA | - | 90 | K/W | PG-DIP-8 |
ESD Capability (incl. Drain Pin) | VESD | - | 2 | kV | Human body model1) |
1) According to EIA/JESD22-A114-B (discharging a 100pF capacitor through a 1.5kΩ series resistor)
Typical Application Circuit
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