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Sunday, December 10, 2023

500W Switch Mode Power Supply with IR2153 +70-0-70 Volts


 500W Switch Mode Power Supply with IR2153 +70-0-70 Volts

Hi, in this tutorial I'll show you how to make a dual rail power supply for a power amplifier with a wattage of up to 500W. Its based on the IR2153 Half-Bridge driver IC. As always thanks for watching

Today I’ll share with you an IR2153 based Switch Mode Power Supply with a +-50V dual-rail output voltage for an audio power amplifier. Overall, the circuit is kept as minimalist as it can be while preserving its reliability and output capability of 500 watts no problem. I hope you enjoy and learn something new.

Hi, in this video I'll show you how to make a dual rail power supply with the IR2153 Half Bridge Driver IC. The output voltage can be easily configured for any voltage from 12V to 50V by just tinkering with the Transformer windings. As always thanks for watching, and don't forget to Like, Share and SUBSCRIBE for more.

Hey guys. In this video I'll show you how to make an adjustable power supply based on the UC3843 PWM IC with an output from 0-50V and a maximum current of 10A. Stay tuned and don't forget to SUBSCRIBE!

The IR2153D(S) is an improved version of the

popular IR2155 and IR2151 gate driver ICs, and incorporates a high voltage half-bridge gate driver with a front end oscillator similar to the industry standard CMOS

555 timer. The IR2153 provides more functionality and is easier to use than previous ICs. A shutdown feature

has been designed into the CT pin, so that both gate driver outputs can be disabled using a low voltage control

signal. In addition, the gate driver output pulse widths are the same once the rising undervoltage lockout

The threshold on VCC has been reached, resulting in a more stable profile of frequency vs time at startup.

Noise immunity has been improved significantly, both by lowering the peak di/dt of the gate drivers, and by

increasing the undervoltage lockout hysteresis to 1V. Finally, special attention has been paid to maximizing

the latch immunity of the device, and providing comprehensive ESD protection on all pins.


 500W Switch Mode Power Supply with IR2153 +70-0-70 Volts

Hi, in this tutorial I'll show you how to make a dual rail power supply for a power amplifier with a wattage of up to 500W. Its based on the IR2153 Half-Bridge driver IC. As always thanks for watching

Today I’ll share with you an IR2153 based Switch Mode Power Supply with a +-50V dual-rail output voltage for an audio power amplifier. Overall, the circuit is kept as minimalist as it can be while preserving its reliability and output capability of 500 watts no problem. I hope you enjoy and learn something new.

Hi, in this video I'll show you how to make a dual rail power supply with the IR2153 Half Bridge Driver IC. The output voltage can be easily configured for any voltage from 12V to 50V by just tinkering with the Transformer windings. As always thanks for watching, and don't forget to Like, Share and SUBSCRIBE for more.

Hey guys. In this video I'll show you how to make an adjustable power supply based on the UC3843 PWM IC with an output from 0-50V and a maximum current of 10A. Stay tuned and don't forget to SUBSCRIBE!

The IR2153D(S) is an improved version of the

popular IR2155 and IR2151 gate driver ICs, and incorporates a high voltage half-bridge gate driver with a front end oscillator similar to the industry standard CMOS

555 timer. The IR2153 provides more functionality and is easier to use than previous ICs. A shutdown feature

has been designed into the CT pin, so that both gate driver outputs can be disabled using a low voltage control

signal. In addition, the gate driver output pulse widths are the same once the rising undervoltage lockout

The threshold on VCC has been reached, resulting in a more stable profile of frequency vs time at startup.

Noise immunity has been improved significantly, both by lowering the peak di/dt of the gate drivers, and by

increasing the undervoltage lockout hysteresis to 1V. Finally, special attention has been paid to maximizing

the latch immunity of the device, and providing comprehensive ESD protection on all pins.

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