STTH10R04G-TR Overview
The STTH10R04G-TR is a high-performance ultrafast recovery diode designed for industrial power electronics applications. With a repetitive peak reverse voltage of 400 V and a forward current rating of 10 A, this device ensures efficient switching and reduced power loss. Its ultrafast recovery time minimizes switching losses, making it ideal for high-frequency circuits. Packaged in a compact TO-220AC format, it supports enhanced thermal management and straightforward PCB integration. Available in tape and reel format, this diode suits automated assembly lines, offering reliability and consistency in demanding environments. For detailed technical support and sourcing, visit IC Manufacturer.
STTH10R04G-TR Technical Specifications
| Parameter | Value |
|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 400 V |
| Maximum Average Forward Current (IF(AV)) | 10 A |
| Surge Forward Current (IFSM) | 150 A |
| Forward Voltage Drop (VF) at 10 A | 1.7 V (typical) |
| Reverse Recovery Time (trr) | 35 ns (typical) |
| Junction Temperature Range (Tj) | -65 to +175 ??C |
| Package Type | TO-220AC |
| Storage Temperature Range (Tstg) | -65 to +175 ??C |
| Thermal Resistance Junction to Case (RthJC) | 2.5 ??C/W |
STTH10R04G-TR Key Features
- Ultrafast recovery time: Minimizes switching losses for improved efficiency in high-frequency power conversion systems.
- High surge current capability: Supports transient currents up to 150 A, enhancing robustness in inductive load switching.
- Compact TO-220AC package: Facilitates efficient thermal dissipation and easy mounting on standard heatsinks for reliable operation.
- Wide operating temperature range: Ensures stable performance in harsh industrial environments from -65??C to +175??C junction temperature.
Typical Applications
- Rectification in switch mode power supplies (SMPS), where ultrafast recovery diodes reduce switching losses and improve overall efficiency in industrial power modules.
- Freewheeling diode in motor control circuits, enabling rapid current commutation and protecting power transistors during switching events.
- Snubber circuits in high-voltage inverters, enhancing device protection and system reliability by quickly dissipating voltage spikes.
- Power factor correction (PFC) stages, where low forward voltage drop and fast recovery improve power conversion quality and reduce electromagnetic interference.
STTH10R04G-TR Advantages vs Typical Alternatives
This diode offers ultrafast recovery characteristics that significantly reduce switching losses compared to standard recovery diodes, improving efficiency in high-frequency applications. Its robust surge current handling and wide temperature tolerance enhance reliability under demanding operating conditions. The compact TO-220AC packaging supports effective thermal management, simplifying integration into industrial power systems. These factors collectively provide a superior balance of performance, durability, and ease of use versus conventional diodes.
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STTH10R04G-TR Brand Info
The STTH10R04G-TR is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in power semiconductors designed for industrial and automotive applications, known for quality, innovation, and reliability. The product is part of their ultrafast diode portfolio, engineered to optimize power efficiency and switching performance in demanding electronic systems. ST??s commitment to robust design and advanced fabrication techniques ensures this diode meets stringent industry standards for performance and longevity.
FAQ
What is the maximum repetitive peak reverse voltage of this diode?
The device supports a maximum repetitive peak reverse voltage (VRRM) of 400 volts, allowing it to block high voltage spikes safely in power circuits.
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How does the ultrafast recovery time benefit switching applications?
Ultrafast recovery time reduces the duration that the diode is in a non-conductive state during switching, minimizing switching losses and electromagnetic interference, which improves overall circuit efficiency and reliability.






