STPS30H100DJF-TR Overview
The STPS30H100DJF-TR is a high-performance dual Schottky diode designed for industrial power applications requiring efficient switching and low forward voltage drop. With a voltage rating of 100 V and a current capability up to 30 A, it delivers robust performance in rectification and freewheeling scenarios. Its advanced packaging ensures enhanced thermal dissipation and reliability, making it suitable for demanding environments. This component supports power management in converters, power supplies, and motor drives, providing engineers with a compact, reliable, and efficient solution. For more detailed information, visit the IC Manufacturer.
STPS30H100DJF-TR Technical Specifications
| Parameter | Value |
|---|---|
| Type | Dual Schottky Diode |
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 100 V |
| Average Forward Current (IF(AV)) | 30 A |
| Forward Voltage Drop (VF) at IF=15A | 0.47 V (typical) |
| Surge Forward Current (IFSM) | 400 A |
| Operating Junction Temperature Range (Tj) | -55 to 150 ??C |
| Package | DFN 8 (Dual Flat No-leads) |
| Thermal Resistance Junction to Case (RthJC) | 1.1 ??C/W |
| Reverse Recovery Time (trr) | 25 ns (typical) |
STPS30H100DJF-TR Key Features
- Low forward voltage drop: Minimizes conduction losses, improving overall power efficiency in rectification circuits.
- High surge current capability: Supports transient current spikes up to 400 A, ensuring reliable operation during load variations.
- Fast reverse recovery time: Enhances switching performance, reducing switching losses and electromagnetic interference in high-frequency applications.
- Compact DFN 8 package: Facilitates excellent thermal dissipation and space-saving design integration on printed circuit boards.
Typical Applications
- Power factor correction circuits, where efficient rectification and low losses improve energy savings and reduce heat generation.
- Switch mode power supplies (SMPS), providing fast and reliable diode switching for stable voltage regulation.
- Motor drive inverters, ensuring robust freewheeling diode operation in high current environments.
- Battery charging systems, delivering efficient current flow while minimizing power dissipation during charging cycles.
STPS30H100DJF-TR Advantages vs Typical Alternatives
This device offers a lower forward voltage drop and faster reverse recovery time compared to traditional PN junction diodes, leading to improved efficiency and reduced thermal stress. Its high surge current tolerance enhances reliability under transient conditions. The compact DFN package supports better thermal management and space utilization, making it a superior choice for industrial power applications demanding high performance and integration.
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STPS30H100DJF-TR Brand Info
The STPS30H100DJF-TR is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in advanced power devices and discrete components designed to meet the stringent requirements of industrial and automotive markets. This particular diode reflects the company??s commitment to delivering high efficiency and reliability in compact form factors, backed by robust manufacturing processes and global technical support.
FAQ
What is the maximum current rating of the STPS30H100DJF-TR?
The diode supports an average forward current of 30 A under continuous operation. It is also capable of handling surge currents up to 400 A for short durations, which ensures reliable performance during transient load conditions.
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What package type is used for this diode, and why is it important?
This device is housed in a DFN 8 package, which provides enhanced thermal dissipation and a compact footprint. The package choice improves heat management on the PCB and enables space-efficient designs, crucial for high-density industrial electronics.
How does the STPS30H100DJF-TR contribute to power efficiency?
Its low forward voltage drop (approximately 0.47 V at 15 A) reduces conduction losses significantly. Additionally, the fast reverse recovery time minimizes switching






