STN1NK60Z STMicroelectronics 60V N-Channel MOSFET – TO-220 Package

  • STN1NK60Z functions as a high-voltage power transistor, enabling efficient switching in electronic circuits.
  • Its voltage rating supports robust operation under demanding electrical conditions, ensuring stable performance.
  • The device features a compact package, optimizing board space for dense circuit designs.
  • Ideal for power management in industrial equipment, it enhances energy control and system reliability.
  • Manufactured with stringent quality standards, it delivers consistent durability over extended use.
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STN1NK60Z Overview

The STN1NK60Z is a high-voltage N-channel MOSFET designed for efficient switching applications in industrial and power electronics. Featuring a 600V drain-source voltage rating and a low on-resistance, this device optimizes power conversion efficiency and thermal management. Ideal for use in power supplies, motor drives, and energy management systems, the component offers reliable performance under demanding conditions. Its robust construction and electrical characteristics make it suitable for engineers and sourcing specialists seeking durable, high-performance semiconductor solutions. For detailed product data and purchasing options, visit IC Manufacturer.

STN1NK60Z Technical Specifications

ParameterValueUnit
Drain-Source Voltage (VDS)600V
Continuous Drain Current (ID)1.0A
Gate Threshold Voltage (VGS(th))2.0 ?C 4.0V
Drain-Source On-Resistance (RDS(on))4.1?? (max at VGS=10 V)
Total Gate Charge (Qg)30nC
Power Dissipation (PD)30W
Operating Junction Temperature (Tj)-55 to +150??C
PackageTO-220

STN1NK60Z Key Features

  • High-voltage capability: With a 600V maximum drain-source voltage, it supports demanding power switching tasks, ensuring device durability in high-voltage environments.
  • Low on-resistance (RDS(on)): Minimizes conduction losses, improving energy efficiency and reducing heat generation during operation.
  • Robust thermal performance: The device handles high power dissipation up to 30W, enabling reliable operation under heavy load conditions.
  • Standard TO-220 package: Facilitates easy mounting and effective heat dissipation for industrial applications.

Typical Applications

  • Switch-mode power supplies (SMPS) requiring efficient, high-voltage MOSFETs to optimize power conversion efficiency and thermal management.
  • Motor control circuits in industrial automation, leveraging fast switching and low losses for precise speed regulation.
  • DC-DC converters and voltage regulators where high voltage tolerance and reliability are critical for sustained operation.
  • Energy management systems, including solar inverters and battery management, benefiting from durable and efficient switching components.

STN1NK60Z Advantages vs Typical Alternatives

This MOSFET stands out with its superior voltage rating and low on-resistance, reducing conduction losses compared to typical alternatives. Its robust thermal capacity ensures reliable performance in harsh industrial environments. The widely used TO-220 package allows easy integration and effective heat dissipation, making it a practical choice for engineers prioritizing efficiency, reliability, and long-term operational stability.

STN1NK60Z Brand Info

The STN1NK60Z is manufactured by STMicroelectronics, a global leader in semiconductor solutions. Known for innovation and quality, STMicroelectronics offers this MOSFET as part of its extensive portfolio targeting power management applications. The brand is recognized for delivering devices that combine performance, reliability, and cost-effectiveness, making it a trusted choice in industrial and automotive sectors worldwide.

FAQ

What is the maximum voltage rating of this MOSFET?

The device supports a maximum drain-source voltage (VDS) of 600 volts, enabling it to handle high-voltage applications safely and reliably.

What package type does this MOSFET come in?

It is supplied in a TO-220 package, which is widely used for power semiconductors due to its ease of mounting and effective thermal dissipation.

How does the low on-resistance benefit my application?

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