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ON Semiconductor 2SK3747-1E

   
Výrobca Číslo dielu : 2SK3747-1E
Výrobca : ON Semiconductor
Popis : MOSFET N-CH 1500V 2A TO3PF-3
Stav bez olova / stav RoHS : Lead free / RoHS Compliant
Datasheet : 2SK3747-1E.PDF 2SK3747-1E PDF
EDA / CAD Models : 2SK3747-1E by SnapEDA
Stock Condition :In Stock 33609, New Original
Množstvo:
Delivery:
Payment:
1780 1798 6583529 /datasheets/Discrete Semiconductor Products/2SK3747-1E-6583529.pdf ON/2SK3747-1E

Q1: What are the key features of the 2SK3747‑1E?

The 2SK3747‑1E is a high-voltage N-channel MOSFET rated for 1,500 V and 2 A. It offers low ON-resistance and low input capacitance, which help minimize power loss and enable very fast switching. Built using ON Semiconductor’s HVP process, it provides enhanced reliability, and comes in a mica-less TO-3PF-3 through-hole package for easier mounting. It also has guaranteed avalanche resistance to protect against voltage spikes.

Q2: What is this MOSFET typically used for?

Because of its high voltage rating and robust switching capabilities, the 2SK3747‑1E is ideal for demanding power applications. It is commonly used in high-voltage power supplies, industrial inverters, motor drive circuits, and other systems where reliable high-voltage switching is essential. Its strong thermal performance (up to 50 W at case temperature) also makes it suitable for applications with significant power dissipation.

Q3: Are there alternative parts to the 2SK3747‑1E?

Yes. While the 2SK3747‑1E itself is quite specialized, alternative high-voltage MOSFETs are available depending on your requirements. For example, other N‑channel MOSFETs from ON Semiconductor or legacy devices in similar voltage classes may work, though finding a direct drop-in replacement is difficult due to its unique TO‑3PF package and 1,500 V rating. For more modern designs, you might also consider silicon carbide (SiC) MOSFETs—Infineon offers SiC devices rated at 2,000 V that could serve in high-voltage DC-link applications.

Q4: What should I watch out for when choosing an alternative?

When looking for a replacement, ensure that the alternative has a sufficiently high breakdown voltage, comparable current rating, and compatible thermal management for your design. Pay attention to on-resistance, switching speed, and package type—especially since TO‑3PF is less common in newer MOSFETs. If using SiC MOSFETs, also consider differences in gate voltage requirements and switching behavior.

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Nástroje

Technické parametre 2SK3747-1E

TypeDescription
CategoryDiscrete Semiconductor Products Transistors - FETs, MOSFETs - Single 
MfrON Semiconductor / onsemi
Series-
PackagingTube
Part StatusObsolete
FET TypeN-Channel
TechnologyMOSFET (Metal Oxide)
Drain to Source Voltage (Vdss)1500 V
Current - Continuous Drain (Id) @ 25°C2A (Ta)
Drive Voltage (Max Rds On, Min Rds On)10V
Rds On (Max) @ Id, Vgs13Ohm @ 1A, 10V
Vgs(th) (Max) @ Id-
Gate Charge (Qg) (Max) @ Vgs37.5 nC @ 10 V
Vgs (Max)±35V
Input Capacitance (Ciss) (Max) @ Vds380 pF @ 30 V
FET Feature-
Power Dissipation (Max)3W (Ta), 50W (Tc)
Operating Temperature150°C (TJ)
Grade-
Qualification-
Mounting TypeThrough Hole
Supplier Device PackageTO-3PF-3
Package / CaseSC-94
Base Product Number2SK3747


The 2SK3747-1E from ON Semiconductor is a high-voltage N-channel MOSFET designed to deliver dependable performance in demanding power-switching environments. With a voltage rating of 1500 V and a continuous drain current of 2 A at ambient temperature, it provides strong capability for handling high-energy loads while maintaining stable operation. Its low ON-resistance and low input capacitance help improve efficiency by reducing conduction losses and enabling faster switching behavior, making it suitable for circuits that require quick response times. Built using ON Semiconductor’s HVP process, this device ensures superior reliability, even under stressful electrical conditions, and its avalanche resistance guarantee further supports robust performance in applications exposed to voltage spikes or transient events.

ON Semiconductor 2SK3747-1E mosfet chip

The device is packaged in a TO-3PF-3 through-hole case, offering excellent thermal performance with up to 50 W dissipation when mounted on a properly cooled surface. Its Mica-less package design enhances assembly convenience by eliminating the need for insulator pads, which helps reduce mounting steps and potential installation errors. These qualities make the 2SK3747-1E well suited for use in high-voltage power supplies, industrial control equipment, inverter circuits, and other systems that demand both durability and efficiency. 

ON Semiconductor 2SK3747-1E original package label

As a professional ON Semiconductor distributor, Nantian Electronics maintains substantial stock of the 2SK3747-1E and provides detailed datasheets and pin configuration resources to support your design and procurement needs.

Q1: What are the key features of the 2SK3747‑1E?

The 2SK3747‑1E is a high-voltage N-channel MOSFET rated for 1,500 V and 2 A. It offers low ON-resistance and low input capacitance, which help minimize power loss and enable very fast switching. Built using ON Semiconductor’s HVP process, it provides enhanced reliability, and comes in a mica-less TO-3PF-3 through-hole package for easier mounting. It also has guaranteed avalanche resistance to protect against voltage spikes.

Q2: What is this MOSFET typically used for?

Because of its high voltage rating and robust switching capabilities, the 2SK3747‑1E is ideal for demanding power applications. It is commonly used in high-voltage power supplies, industrial inverters, motor drive circuits, and other systems where reliable high-voltage switching is essential. Its strong thermal performance (up to 50 W at case temperature) also makes it suitable for applications with significant power dissipation.

Q3: Are there alternative parts to the 2SK3747‑1E?

Yes. While the 2SK3747‑1E itself is quite specialized, alternative high-voltage MOSFETs are available depending on your requirements. For example, other N‑channel MOSFETs from ON Semiconductor or legacy devices in similar voltage classes may work, though finding a direct drop-in replacement is difficult due to its unique TO‑3PF package and 1,500 V rating. For more modern designs, you might also consider silicon carbide (SiC) MOSFETs—Infineon offers SiC devices rated at 2,000 V that could serve in high-voltage DC-link applications.

Q4: What should I watch out for when choosing an alternative?

When looking for a replacement, ensure that the alternative has a sufficiently high breakdown voltage, comparable current rating, and compatible thermal management for your design. Pay attention to on-resistance, switching speed, and package type—especially since TO‑3PF is less common in newer MOSFETs. If using SiC MOSFETs, also consider differences in gate voltage requirements and switching behavior.

Here is a dialogue that explains how QC identifies counterfeit electronic components and highlights the importance of Nantian's QC process, ultimately encouraging purchases through NTCHIP.com.


Scene: A procurement officer, Alex, is discussing with Sarah, a Senior QC Engineer at Nantian Electronics.

Alex: Sarah, I need your help. My previous supplier sent us counterfeit ICs. They passed our initial check but failed in the field, causing massive losses. How can your QC at Nantian prevent this?
Sarah: Alex, a common and costly problem. Counterfeits are sophisticated, but they can't fool a multi-layered QC process like ours. At Nantian, our first line of defense is a meticulous Visual Inspection.

Alex: We also do visual checks. We look for obvious signs.
Sarah: We go deeper. Our QC team uses high-powered microscopes to examine the chip surface for polishing marks, which leave subtle scratches . We check the printing. Authentic chips use laser marking that's clear, even, and hard to remove. Counterfeits often have smudged, uneven, or easily wiped-off printing . We also examine the pins. Genuine components often have what we call "silver powder pins" with a dark but uniform hue, not the unusually bright, re-tinned pins of refurbished parts .

Alex: Okay, that's more thorough. But what if the counterfeits look perfect?
Sarah: Appearance can be deceiving. That's where our technical analysis begins. We use X-ray imaging to non-destructively inspect the internal structure—the die, wire bonds, and lead frame. A missing die or incorrect bond wire pattern is an immediate red flag . For suspicious markings, we perform an Acetone Wipe Test. Genuine laser marks won't smudge, but reprinted ones on fakes often do .

Alex: What if a chip is a remarked lower-grade component from the same brand? It might look and even test okay initially.
Sarah: An excellent point. For such deceptions, we perform Electrical Testing/Functional Testing. We use curve tracers and testers to verify all parameters against the datasheet . A chip marked as a high-speed grade but performing at a commercial grade is a fake. Furthermore, for ultimate verification, we can perform a Decapsulation (Opening Test), to physically expose the die and check its original, unchangeable markings and layout . This confirms if the internal core matches the external branding.

Alex: This is a comprehensive suite of tests. It sounds expensive and time-consuming.
Sarah: It's an investment in reliability. This leads to why Nantian's QC is your most critical safeguard. Preventing Catastrophic Failure: A single counterfeit component can halt a production line or cause a field failure in a critical system. Our QC ensures the reliability and performance of every component we ship . Protecting Your Brand and Reducing Costs: By guaranteeing authenticity, we protect you from the immense costs of recalls, rework, and damaged customer trust. This directly lowers your Total Cost of Ownership . A Systemic Approach, Not Just Inspection: Our QC isn't just a final step; it's part of a full Quality Assurance System. We have a Three-Tier Inspection System (Incoming, In-process, Outgoing) and a strict Component Quality Approval System that rigorously vets all suppliers . We manage quality through process, not just people.

Alex: So, when I place an order on your official website, NTCHIP.com, how can I be sure the components I receive have undergone this process?
Sarah: Every component sold on NTCHIP.com is sourced through our certified supply chain and is subject to these rigorous QC protocols. Our online platform is the direct and exclusive channel for Nantian's guaranteed-authentic parts. When you order from us, you aren't just buying components; you are buying peace of mind.

Alex: That makes the decision clear. The slightly higher cost is insignificant compared to the risk of counterfeits. I'll place my next order on NTCHIP.com immediately. Thank you, Sarah.
Sarah: You're making a secure choice for your business. We look forward to fulfilling your order with the quality and integrity you can count on.
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Garancija kakovosti delov: 365 dni

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Garancija za embalažo delov: 100 % antistatična zaščita ESD, v kombinaciji z visoko trdnostjo in vrhunsko absorpcijo udarcev.

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How we verify 2SK3747-1E authenticity?

At NTCHIP.com, we are committed to delivering the highest standards in electronic components. For critical Discrete Semiconductor Products-Transistors - FETs, MOSFETs - Single like the ON Semiconductor 2SK3747-1E, we operate a professional Quality Control (QC) center to ensure every unit you receive is factory-grade in quality and reliability.

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