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MC33025P Switching Controllers: Datasheet, Pinout, Circuit [FAQ]

  • Contents

Product Overview

The MC34025 series are high speed, fixed frequency, double−ended pulse width modulator controllers optimized for high frequency operation. They are specifically designed for Off−Line and DC−to−DC converter applications offering the designer a cost effective solution with minimal external components. These integrated circuits feature an oscillator, a temperature compensated

reference, a wide bandwidth error amplifier, a high speed current sensing comparator, steering flip−flop, and dual high current totem pole outputs ideally suited for driving power MOSFETs.

 

This blog will introduce MC33025P systematically from its features, pinout to its specifications, applications, also including MC33025P datasheet and so much more.

 

Catalog

Product Overview

MC33025P Features

MC33025P Pinout

MC33025P Block Diagram

MC33025P Circuit Diagram

MC33025P Package

MC33025P Specification

MC33025P Manufacturer

MC33025P Datasheet

Using Warnings

MC33025P FAQ

 

MC33025P Features

  • 50 ns Propagation Delay to Outputs
  • Dual High Current Totem Pole Outputs
  • Wide Bandwidth Error Amplifier 
  • Fully−Latched Logic with Double Pulse Suppression
  • Latching PWM for Cycle−By−Cycle Current Limiting
  • Soft−Start Control with Latched Overcurrent Reset
  • Input Undervoltage Lockout  with Hysteresis
  • Low Startup Current (500 A Typ)
  • Internally Trimmed Reference with Undervoltage Lockout 
  • 45% Maximum Duty Cycle (Externally Adjustable)
  • Precision Trimmed Oscillator
  • Voltage or Current Mode Operation to 1.0 MHz
  • Functionally Similar to the UC3825
  • These Devices are Pb−Free, Halogen Free/BFR Free and are RoHSCompliant

 

MC33025P Pinout

The following figure is the diagram of MC33025P pinout.

 

MC33025P Pinout

MC33025P Pinout

 

MC33025P Block Diagram

The following figure shows the block diagram of MC33025P.

 

MC33025P Block Diagram

MC33025P Block Diagram

 

MC33025P Circuit Diagram

The following are the circuit diagrams of MC33025P.

 

MC33025P Simplified Application

MC33025P Simplified Application

 

Bipolar Transistor Drive

Bipolar Transistor Drive

 

Isolated MOSFET Drive

Isolated MOSFET Drive

 

MC33025P Package

The following diagram shows the MC33025P package.

 

MC33025P Package

MC33025P Package

MC33025P Package

 

MC33025P Specification

Product Attribute Attribute Value
Manufacturer: onsemi
Product Category: Switching Controllers
RoHS: N
Topology: Half-Bridge, Push-Pull
Number of Outputs: 2 Output
Switching Frequency: 1000 kHz
Duty Cycle - Max: 0.45
Output Voltage: 5.05 V to 5.15 V
Output Current: 500 mA
Minimum Operating Temperature: - 40 C
Maximum Operating Temperature: + 105 C
Mounting Style: Through Hole
Brand: onsemi
Fall Time: 30 ns
Operating Supply Voltage: 30 V
Product Type: Switching Controllers

 

MC33025P Manufacturer

ON Semiconductor is a Fortune 500 company driving energy efficient innovations, empowering customers to reduce global energy use. The company is a leading supplier of semiconductor-based solutions, offering a comprehensive portfolio of energy efficient power and signal management, logic, standard and custom devices. The company’s products help engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, medical and military/aerospace applications.

 

MC33025P Datasheet

You can download MC33025P datasheet from the link given below:

MC33025P Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

MC33025P FAQ

What is PWM in controller?

Pulse-width modulation (PWM) is a powerful technique for controlling analog circuits with a microcontroller's digital outputs. PWM is used in many applications, ranging from communications to power control and conversion.

 

What is PWM and how it works?

Pulse width modulation turns a digital signal into an analog signal by changing the timing of how long it stays on and off. The term “duty cycle” is used to describe the percentage or ratio of how long it stays on compared to when it turns off.

 

What is the advantage of PWM?

The main advantage of PWM is that power loss in the switching devices is very low. When a switch is off there is practically no current, and when it is on and power is being transferred to the load, there is almost no voltage drop across the switch.

 

What is the disadvantages of PWM?

The disadvantages of PWM may be described by under: Due to the variable pulse width, the pulses have variable power contents. Hence, the transmission must be powerful enough to handle the maximum width, pulse, though the average power transmitted can be as low as 50% of this maximum power.

 

What are the types of PWM?

The three conventional types of pulse width modulation are a) Trail Edge Modulation b) Lead Edge Modulation c) Pulse Center Two Edge Modulation.

MC33025P Documents & Media

Download datasheets and manufacturer documentation for ON Semiconductor MC33025P.
PCN Obsolescence/ EOL
Datasheets
datasheet

MC33025P PCB Symbol, Footprint & 3D Model

ON Semiconductor MC33025P

ON Semiconductor

IC REG CTRLR ISO PWM CM/VM 16DIP

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