STTH30RQ06L2-TR Overview
The STTH30RQ06L2-TR is a high-performance ultrafast rectifier diode designed for industrial power electronics applications requiring efficient and reliable switching. Featuring a 30 A forward current rating and a maximum repetitive peak reverse voltage of 600 V, this device ensures excellent conduction and switching performance. Its low forward voltage drop reduces power dissipation, enhancing energy efficiency in power conversion systems. Packaged in a rugged TO-220AB form factor with a thermally optimized design, it suits demanding environments. Ideal for use in freewheeling, polarity protection, and snubber circuits, the device offers reliable operation under high surge current conditions. Available in tape and reel format for automated assembly, it supports streamlined manufacturing. For detailed sourcing, visit IC Manufacturer.
STTH30RQ06L2-TR Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 600 | V |
| Maximum Average Forward Rectified Current (IF(AV)) | 30 | A |
| Surge Non-Repetitive Forward Current (IFSM) | 230 | A |
| Maximum Forward Voltage Drop (VF) at IF = 30 A | 1.6 | V |
| Reverse Recovery Time (trr) | 75 | ns |
| Junction Temperature Range (Tj) | -65 to +150 | ??C |
| Storage Temperature Range (Tstg) | -65 to +150 | ??C |
| Package Type | TO-220AB | ?C |
STTH30RQ06L2-TR Key Features
- High surge current capability: Supports non-repetitive forward surge currents up to 230 A, protecting circuits from transient overloads.
- Fast switching performance: With a reverse recovery time of 75 ns, it minimizes switching losses and improves overall system efficiency.
- Low forward voltage drop: Reduces conduction losses, enabling better thermal management and lower power dissipation.
- Robust thermal performance: Operates reliably up to 150??C junction temperature, ensuring durability in harsh industrial environments.
Typical Applications
- Rectification in switched-mode power supplies (SMPS), where fast recovery and high current handling improve efficiency and reduce electromagnetic interference.
- Snubber circuits in power inverters to protect semiconductor switching devices from voltage spikes.
- Freewheeling diodes in motor drive systems to ensure smooth current flow and prevent voltage transients.
- Polarity protection circuits in industrial control equipment to prevent damage from incorrect wiring.
STTH30RQ06L2-TR Advantages vs Typical Alternatives
This ultrafast diode offers superior switching speed and surge current capability compared to standard rectifiers, resulting in lower switching losses and enhanced reliability. Its low forward voltage drop reduces power dissipation, contributing to higher energy efficiency and improved thermal performance. Packaged in a TO-220AB format, it simplifies heat sinking and integration into industrial power designs. These advantages make it a preferred choice for demanding power conversion and protection applications.
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STTH30RQ06L2-TR Brand Info
The STTH30RQ06L2-TR is manufactured by STMicroelectronics, a global leader in semiconductor solutions and power electronic components. STMicroelectronics specializes in providing reliable, high-performance devices tailored for industrial, automotive, and consumer applications. This ultrafast rectifier diode benefits from ST??s extensive expertise in power semiconductor technology, ensuring robust quality, consistent manufacturing standards, and broad availability. The product supports automated manufacturing processes with its tape and reel packaging, aligning with industry requirements for high-volume production.
FAQ
What is the maximum repetitive peak reverse voltage rating of this diode?
The device supports a maximum repetitive peak reverse voltage of 600 volts, making it suitable for high-voltage power applications requiring robust blocking capabilities.
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How does the forward voltage drop impact the performance of this diode?
A lower forward voltage drop reduces conduction losses during operation, which translates to improved energy efficiency and lower heat generation in






