IRFZ44NPBF - Datasheet, Pinout & Arduino Infineon Technologies
- FET Type: N-Channel
- Drainto Source Voltage(Vdss): 55 V
- Current-Continuous Drain(Id)@25°C: 49A (Tc)
- Package: TO-220AB

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IRFZ44NPBF
IRFZ44NPBF N-Channel MOSFET
IRFZ44NPBF is a high-performance N-channel power MOSFET chip produced by Infineon. This chip uses the common TO-220AB package, with its most notable feature being its ability to handle high currents, up to 49A, and an exceptionally low on-state resistance of only 17.5 milliohms, effectively reducing losses. Additionally, it has a fast switching speed, making it particularly effective for high-frequency switching applications. Due to the use of Infineon’s HEXFET technology, the chip not only has strong voltage endurance but also operates very stably. It is commonly used in motor drives Power management, inverters and various switching power supplies will use this chip, can be said to have a very wide range of applications, stability is also particularly good.
IRFZ44NPBF Pinout

| Pin Number | Pin Name | Description |
|---|---|---|
| 1 | Gate (G) | Controls the MOSFET (switches device ON/OFF) |
| 2 | Drain (D) | Connected to load or power source |
| 3 | Source (S) | Ground or return reference |
Pinout Usage and Precautions:
When using IRFZ44NPBF, the Gate (pin 1) is connected to the driver circuit to control the MOSFET’s switching operation. Drain (pin 2) should connect to your load or power supply, as it handles the main current flow. Source (pin 3) typically connects to ground or reference.
Be cautious when handling the Gate pin, as it is highly sensitive to static electricity; always practice ESD protection to prevent damage. Additionally, the Drain pin is internally connected to the tab or metal body of the device. When mounting onto heat sinks or chassis, ensure proper insulation to avoid short-circuits or electrical hazards.
IRFZ44NPBF Equivalent

| Part Number | VDS (V) | ID (A) | RDS(on) (mΩ) | VGS(th) (V) | Max Power (W) | Remarks |
|---|---|---|---|---|---|---|
| IRFZ44NPBF | 55 | 49 | 17.5 | 2.0–4.0 | 94 | Original MOSFET, general-purpose applications |
| IRFZ46N | 50 | 50 | 24 | 2.0–4.0 | 150 | Slightly higher current, higher RDS(on), suitable for medium power |
| IRFZ48N | 60 | 50 | 18 | 2.0–4.0 | 190 | Higher voltage & power rating, for higher-power circuits |
| IRF3205 | 55 | 110 | 8 | 2.0–4.0 | 200 | High current, very low RDS(on), ideal for heavy loads |
| IRF1405 | 55 | 169 | 5.3 | 2.0–4.0 | 330 | Ultra-high current handling, suitable for very heavy load conditions |
| IRLZ44N | 55 | 47 | 22 | 1.0–2.0 | 94 | Logic-level MOSFET, direct microcontroller compatibility |
| IRF540N | 100 | 33 | 77 | 2.0–4.0 | 150 | Higher voltage rating, ideal for high-voltage applications |
Summary and Replacement Notes:
Package Compatibility:All the above replacements share the TO-220 package, allowing direct PCB replacements without redesign.
Electrical Parameters:Ensure the replacement MOSFET matches or exceeds key parameters like drain-source voltage(VDS),, continuous drain current (ID), and on-resistance(RDS(on)) as required by your application.
Gate Drive Requirements:If the MOSFET is driven directly from microcontrollers, consider choosing a logic-level MOSFET such as the IRLZ44N, due to its lower gate threshold voltage, ensuring proper switching at lower gate drive voltages.
Thermal Management:Pay attention to the power dissipation capabilities (maximum power rating), ensuring adequate heat dissipation to maintain safe operating temperatures.
IRFZ44NPBF arduino

In this circuit, the digital output pin of Arduino is connected to the gate (Gate) of IRFZ44NPBF through a resistor, with the drain (Drain) connected to one end of the motor, and the other end of the motor connected to the positive power supply. The source (Source) is grounded. The gate threshold voltage of IRFZ44NPBF is relatively high, typically requiring over 10V to fully conduct. However, the output voltage of Arduino is only 5V, which may not be sufficient to fully conduct the MOSFET, resulting in the motor not receiving enough current. Therefore, it is recommended to use logic levels MOSFET, such as IRLZ44N, can be fully on at a lower gate voltage and is more suitable for direct use with Arduino.
IRFZ44NPBF Alternative to IRFZ44N MOSFET


Here is a clear side-by-side comparison table showing the pinouts of IRFZ44NPBF and IRFZ44N MOSFETs in English:
| Pin Number | IRFZ44NPBF | IRFZ44N | Difference |
|---|---|---|---|
| 1 | Gate (G) | Gate (G) | No difference |
| 2 | Drain (D) | Drain (D) | No difference |
| 3 | Source (S) | Source (S) | No difference |
The pin configurations of IRFZ44NPBF and IRFZ44N are identical. Both devices use a standard TO-220 package, and their pins serve the same functions: Gate (control pin), Drain (connected to load), and Source (reference or ground). Therefore, no modifications are necessary when substituting these devices in a circuit.
In summary, the IRFZ44NPBF MOSFET stands out as a reliable, efficient, and robust component widely used in power management, switching applications, and motor control circuits. Its low on-resistance, fast switching capability, and compatibility with standard TO-220 packages make it an ideal choice for diverse electronic designs.

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