STTH3010GY-TR Overview
The STTH3010GY-TR is a high-performance ultrafast rectifier diode designed for industrial and power electronics applications. Featuring a high repetitive peak reverse voltage of 1000 V and a forward average current of 30 A, this device offers efficient switching capabilities with low forward voltage drop. Its fast recovery time minimizes switching losses, making it suitable for demanding environments including power supplies and motor drives. Packaged in a robust TO-220AC form factor, the device ensures reliable thermal management and ease of PCB integration. For engineers and sourcing specialists seeking dependable semiconductor solutions, this diode combines performance and durability, available through IC Manufacturer.
STTH3010GY-TR Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 1000 V |
| Average Forward Current (IF(AV)) | 30 A |
| Non-Repetitive Peak Surge Current (IFSM) | 200 A |
| Forward Voltage Drop (VF) at 30 A | 1.7 V (typical) |
| Reverse Recovery Time (trr) | 75 ns (typical) |
| Junction Temperature Range (Tj) | -65??C to +175??C |
| Thermal Resistance Junction to Case (RthJC) | 1.5 ??C/W |
| Package Type | TO-220AC |
STTH3010GY-TR Key Features
- High voltage rating: Supports up to 1000 V repetitive peak reverse voltage, enabling use in high-voltage rectification circuits.
- Fast recovery time: Approximately 75 ns recovery minimizes switching losses and electromagnetic interference, improving overall circuit efficiency.
- Robust current handling: 30 A average forward current and 200 A surge current capability support demanding power levels without degradation.
- Low forward voltage drop: Typical 1.7 V forward voltage reduces conduction losses, contributing to better thermal management and system reliability.
- Reliable thermal performance: TO-220AC package with 1.5 ??C/W junction-to-case thermal resistance facilitates effective heat dissipation.
Typical Applications
- High-voltage power supply rectification circuits where fast switching and high current capability are essential for efficiency and reliability in industrial environments.
- Motor drive and inverter circuits requiring ultrafast diode recovery to reduce switching losses and improve system responsiveness.
- Power factor correction (PFC) units that benefit from high voltage blocking and fast recovery characteristics to maintain power quality.
- Freewheeling diodes in switch-mode power supplies (SMPS) and uninterruptible power supplies (UPS) for improved transient response and durability.
STTH3010GY-TR Advantages vs Typical Alternatives
This ultrafast rectifier diode offers superior switching speed and current handling compared to standard rectifiers, reducing power dissipation and enhancing efficiency. Its low forward voltage drop and fast recovery time support improved thermal management and decreased electromagnetic interference. Packaged in a TO-220AC form factor, it delivers reliable mechanical stability and ease of integration, making it a preferred choice over slower or lower current devices in high-voltage industrial applications.
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STTH3010GY-TR Brand Info
The STTH3010GY-TR is part of STMicroelectronics?? portfolio of power semiconductors, known for high quality and reliability in industrial electronics. STMicroelectronics is a global leader in semiconductor solutions, delivering components designed to meet rigorous performance and safety standards. This diode exemplifies their commitment to innovation in power management, offering engineers a robust and efficient solution widely used in power conversion and motor control systems.
FAQ
What is the maximum repetitive peak reverse voltage of this diode?
The diode supports a maximum repetitive peak reverse voltage of 1000 V, allowing it to block high-voltage transients in power electronics applications safely.
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How does the fast recovery time benefit circuit performance?
A fast recovery time of approximately 75 ns minimizes switching losses and reduces electromagnetic interference, which improves overall efficiency and reliability in high-frequency switching circuits.
Can this diode handle surge currents effectively?
Yes, it can handle a non






