STTH8R06FP Overview
The STTH8R06FP is a high-performance ultrafast diode designed for industrial power applications requiring efficient switching and low losses. Featuring a 600 V repetitive peak voltage and 8 A forward current, it supports high-frequency rectification in power supplies and inverters. Its fast recovery time minimizes switching losses, increasing overall system efficiency. Packaged in a compact, thermally efficient TO-220FP form factor, it offers enhanced reliability and easy integration into demanding electronic circuits. This device is ideal for engineers seeking robust, cost-effective solutions with proven performance in power conversion environments. For detailed specifications and purchasing options, visit the IC Manufacturer.
STTH8R06FP Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 600 | V |
| Maximum Average Forward Current (IF(AV)) | 8 | A |
| Non-Repetitive Peak Forward Surge Current (IFSM) | 120 | A |
| Forward Voltage Drop (VF) at IF=8 A | 1.35 | V |
| Reverse Recovery Time (trr) | 75 | ns |
| Junction Temperature Range (Tj) | -65 to +175 | ??C |
| Thermal Resistance Junction to Case (RthJC) | 1.5 | ??C/W |
| Package Type | TO-220FP | ?? |
STTH8R06FP Key Features
- Fast Recovery Time: With a reverse recovery time of 75 ns, it reduces switching losses, leading to higher efficiency in power conversion systems.
- High Voltage Capability: Rated for 600 V repetitive peak reverse voltage, suitable for demanding industrial voltage environments.
- Robust Forward Current: Supports continuous forward current of 8 A, enabling it to handle substantial load currents without degradation.
- Low Forward Voltage Drop: At 1.35 V forward voltage, it minimizes conduction losses, improving overall power efficiency.
- Thermally Efficient Package: The TO-220FP package offers excellent thermal dissipation, enhancing reliability under high power operation.
Typical Applications
- High-frequency rectification in switch-mode power supplies where fast switching and low losses are critical for efficiency and thermal management.
- Freewheeling diode in motor control circuits to handle inductive load switching.
- Snubber circuits in power inverters to protect switching devices and improve system reliability.
- General purpose power diode applications in industrial electronics requiring robust voltage and current handling.
STTH8R06FP Advantages vs Typical Alternatives
This ultrafast diode offers superior switching speed and a competitive forward voltage drop, which translates to lower power dissipation and enhanced efficiency compared to traditional silicon diodes. Its robust 600 V and 8 A ratings make it suitable for a wide range of industrial applications where reliability and thermal performance are critical. The TO-220FP package improves thermal management over smaller or less efficient alternatives, ensuring longer device lifetime and stable operation under high load conditions.
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STTH8R06FP Brand Info
The STTH8R06FP is manufactured by STMicroelectronics, a leading global semiconductor company renowned for its innovative power and discrete devices. STMicroelectronics specializes in delivering high-quality components designed for energy-efficient and reliable industrial systems. The ultrafast diodes from STMicroelectronics are widely recognized in the market for their performance in power management, automotive, and industrial automation sectors. This product benefits from ST??s extensive expertise in semiconductor fabrication and rigorous quality control, ensuring dependable operation in demanding environments.
FAQ
What is the maximum operating temperature of the STTH8R06FP diode?
The diode supports a junction temperature range from -65??C up to +175??C, allowing it to operate reliably in harsh industrial conditions and high-temperature environments without performance degradation.
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How does the fast recovery time benefit power supply designs?
A fast recovery time of 75 ns reduces switching losses during diode turn-off, which improves the overall efficiency






