STTH30M06SPF Overview
The STTH30M06SPF is a high-performance ultrafast rectifier diode designed for industrial power conversion and switching applications. Featuring a 30A forward current rating and a repetitive peak reverse voltage of 600V, it ensures robust performance in demanding environments. Its ultrafast recovery time optimizes efficiency by minimizing switching losses, making it ideal for high-frequency circuits. Packaged in a compact, thermally efficient surface-mount form factor, this diode simplifies integration while maintaining reliable operation. Engineers and sourcing specialists will find this device well-suited for power supplies, inverters, and motor drives requiring a durable and efficient diode solution. Available through IC Manufacturer.
STTH30M06SPF Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 600 | V |
| Maximum Average Forward Rectified Current (IF(AV)) | 30 | A |
| Maximum Forward Voltage Drop (VF) at IF=30A | 1.7 | V |
| Surge Non-Repetitive Forward Current (IFSM) | 250 | A |
| Reverse Recovery Time (trr) | 75 | ns |
| Operating Junction Temperature Range (Tj) | -55 to +150 | ??C |
| Storage Temperature Range (Tstg) | -55 to +150 | ??C |
| Thermal Resistance Junction to Ambient (RthJA) | 40 | ??C/W |
STTH30M06SPF Key Features
- Ultrafast Recovery Time: Minimizes switching losses, enhancing efficiency in high-frequency power conversion systems.
- High Current Capacity: Supports up to 30A average forward current, enabling robust operation in demanding industrial circuits.
- High Voltage Blocking: Rated for 600V repetitive peak reverse voltage, providing reliability in medium-voltage applications.
- Thermally Efficient Package: Surface-mount design with optimized thermal resistance supports better heat dissipation and compact PCB layouts.
Typical Applications
- Power supply rectification in industrial and consumer electronics, ensuring efficient conversion from AC to DC at high currents and voltages.
- Motor control circuits requiring reliable ultrafast diodes to handle switching transients and improve system responsiveness.
- Inverters and uninterruptible power supplies (UPS), where fast recovery and high current capability are critical for stable operation.
- Switch-mode power supplies (SMPS) in telecommunications and computing equipment demanding compact, efficient rectification components.
STTH30M06SPF Advantages vs Typical Alternatives
This ultrafast diode offers superior switching performance with a fast recovery time that reduces energy losses compared to standard diodes. Its high current and voltage ratings enable use in demanding industrial environments, while the surface-mount package facilitates integration into compact designs. The device??s thermal efficiency and surge current capability provide enhanced reliability and longevity in power electronics applications, making it a preferred choice over conventional rectifiers.
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STTH30M06SPF Brand Info
The STTH30M06SPF is manufactured by STMicroelectronics, a global leader in semiconductor technology. STMicroelectronics is renowned for its broad portfolio of power devices designed to optimize performance and efficiency in industrial and consumer electronics. This diode is part of ST??s ultrafast rectifier family, combining advanced silicon technology with robust packaging to meet stringent industrial standards. ST??s commitment to quality and innovation ensures this device delivers reliable operation in critical power management systems worldwide.
FAQ
What is the maximum repetitive peak reverse voltage of this diode?
The diode is rated for a maximum repetitive peak reverse voltage of 600 volts, making it suitable for medium-voltage rectification applications where voltage spikes must be reliably blocked.
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How does the ultrafast recovery time benefit switching applications?
The ultrafast recovery time of 75 nanoseconds minimizes the duration the diode spends in reverse recovery during switching events. This reduces switching losses and electromagnetic interference, improving overall system efficiency and reliability.






