Infineon HEXFET Type N-Channel MOSFET, 33 A, 100 V Enhancement, 3-Pin TO-247 IRFP140NPBF
- RS-stocknr.:
- 541-1269
- Artikelnummer Distrelec:
- 303-41-344
- Fabrikantnummer:
- IRFP140NPBF
- Fabrikant:
- Infineon
Bulkkorting beschikbaar
Subtotaal (1 eenheid)*
€ 1,88
(excl. BTW)
€ 2,27
(incl. BTW)
GRATIS bezorging voor bestellingen van meer dan € 75,00
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Aantal stuks | Per stuk |
|---|---|
| 1 - 9 | € 1,88 |
| 10 - 49 | € 1,62 |
| 50 - 99 | € 1,52 |
| 100 - 249 | € 1,42 |
| 250 + | € 1,30 |
*prijsindicatie
- RS-stocknr.:
- 541-1269
- Artikelnummer Distrelec:
- 303-41-344
- Fabrikantnummer:
- IRFP140NPBF
- Fabrikant:
- Infineon
Specificaties
Datasheets
Wetgeving en compliance
Productomschrijving
Zoek vergelijkbare producten door een of meer kenmerken te selecteren.
Alles selecteren | Attribuut | Waarde |
|---|---|---|
| Merk | Infineon | |
| Channel Type | Type N | |
| Product Type | MOSFET | |
| Maximum Continuous Drain Current Id | 33A | |
| Maximum Drain Source Voltage Vds | 100V | |
| Package Type | TO-247 | |
| Series | HEXFET | |
| Mount Type | Through Hole | |
| Pin Count | 3 | |
| Maximum Drain Source Resistance Rds | 52mΩ | |
| Channel Mode | Enhancement | |
| Typical Gate Charge Qg @ Vgs | 94nC | |
| Minimum Operating Temperature | -55°C | |
| Maximum Power Dissipation Pd | 140W | |
| Maximum Gate Source Voltage Vgs | 20 V | |
| Forward Voltage Vf | 1.3V | |
| Maximum Operating Temperature | 175°C | |
| Width | 5.3 mm | |
| Standards/Approvals | No | |
| Height | 20.3mm | |
| Length | 15.9mm | |
| Automotive Standard | No | |
| Distrelec Product Id | 30341344 | |
| Alles selecteren | ||
|---|---|---|
Merk Infineon | ||
Channel Type Type N | ||
Product Type MOSFET | ||
Maximum Continuous Drain Current Id 33A | ||
Maximum Drain Source Voltage Vds 100V | ||
Package Type TO-247 | ||
Series HEXFET | ||
Mount Type Through Hole | ||
Pin Count 3 | ||
Maximum Drain Source Resistance Rds 52mΩ | ||
Channel Mode Enhancement | ||
Typical Gate Charge Qg @ Vgs 94nC | ||
Minimum Operating Temperature -55°C | ||
Maximum Power Dissipation Pd 140W | ||
Maximum Gate Source Voltage Vgs 20 V | ||
Forward Voltage Vf 1.3V | ||
Maximum Operating Temperature 175°C | ||
Width 5.3 mm | ||
Standards/Approvals No | ||
Height 20.3mm | ||
Length 15.9mm | ||
Automotive Standard No | ||
Distrelec Product Id 30341344 | ||
Infineon HEXFET Series MOSFET, 33A Maximum Continuous Drain Current, 140W Maximum Power Dissipation - IRFP140NPBF
This MOSFET plays a crucial role in improving efficiency and performance across various electronic applications. It is designed to accommodate high currents and voltages, offering dependable power management solutions in automation systems, electronics, and mechanical industries. Its ability to function under extreme conditions ensures versatility in numerous applications.
Features & Benefits
• Maximum continuous drain current of 33A for enhanced load capabilities
• Drain-source voltage rating of up to 100V for effective performance
• Low maximum drain-source resistance of 52 mΩ for efficient operation
• Designed for power dissipation of 140W to manage thermal conditions
• Typical gate charge of 94 nC at 10V for rapid switching speeds
Applications
• Reliable use in switching power supplies
• Motor control for accurate operation
• High current in power conversion systems
• Integration into power amplifiers for improved signal amplification
What is the maximum voltage this component can handle?
It withstands a maximum drain-source voltage of 100V, suitable for high-voltage applications.
How does the gate charge affect the operation?
A typical gate charge of 94 nC at 10V facilitates faster switching, enhancing circuit efficiency.
What are the thermal characteristics of this component?
It operates effectively between -55°C and +175°C, ensuring reliability in different environments.
Can this component be used in automation projects?
Yes, its high continuous current capacity and voltage ratings are ideal for various automation applications.
How does the low RDS(on) enhance its performance?
The low maximum drain-source resistance helps to reduce conduction losses, leading to more energy-efficient operation.
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