DDTD142JC-7-F Overview
The DDTD142JC-7-F is a high-performance discrete diode designed for efficient switching and rectification in industrial and power management applications. Featuring a robust voltage rating and fast recovery time, this device ensures reliable operation under demanding electrical conditions. Its compact SOD-123FL surface-mount package supports high-density PCB layouts while maintaining excellent thermal characteristics. Engineers and sourcing specialists will appreciate the balance of electrical efficiency and mechanical durability provided by this diode, making it suitable for a wide range of power conversion and protection circuits. For detailed specifications and sourcing, visit Производитель ИС.
DDTD142JC-7-F Technical Specifications
Параметр | Технические характеристики |
---|---|
Максимальное повторяющееся пиковое обратное напряжение (VRRM) | 400 V |
Average Rectified Forward Current (IF(AV)) | 1 A |
Non-Repetitive Peak Forward Surge Current (IFSM) | 30 A |
Forward Voltage Drop (VF) at IF = 1 A | 1.1 V (typical) |
Reverse Recovery Time (trr) | 35 ns (typical) |
Operating Temperature Range (TJ) | -55??C до +150??C |
Диапазон температур хранения (Tstg) | -55??C до +150??C |
Тип упаковки | SOD-123FL |
DDTD142JC-7-F Key Features
- High Voltage Capability: Supports up to 400 V repetitive peak reverse voltage, enabling robust protection in high-voltage circuits.
- Быстрое время восстановления: With a typical reverse recovery time of 35 ns, it minimizes switching losses and improves efficiency in high-frequency applications.
- Compact SOD-123FL Package: Allows for space-saving board designs while maintaining excellent thermal dissipation properties for reliability.
- High Surge Current Tolerance: Can handle surge currents up to 30 A, ensuring durability during transient conditions.
DDTD142JC-7-F Advantages vs Typical Alternatives
This diode offers significant advantages over typical general-purpose alternatives through its combination of high voltage rating, fast switching speed, and low forward voltage drop. These attributes translate into enhanced efficiency, improved thermal management, and greater reliability in demanding industrial and power electronics applications. Its compact package further supports integration in space-constrained designs without sacrificing performance.
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Типовые применения
- Switching power supplies: Ensures efficient rectification and fast recovery to sustain high-frequency operation and reduce power loss.
- Freewheeling diode in motor control circuits, protecting semiconductor devices from voltage spikes.
- Reverse polarity protection in industrial control systems, safeguarding sensitive components from damage.
- General-purpose rectification in compact power conversion modules due to its small footprint and robust electrical characteristics.
DDTD142JC-7-F Brand Info
The DDTD142JC-7-F is a product from a leading semiconductor manufacturer known for delivering high-quality discrete components tailored for industrial and power electronics markets. This diode exemplifies the brand??s commitment to reliability, performance, and advanced packaging technology, supporting engineers with solutions optimized for modern circuit demands and manufacturing standards.
ЧАСТО ЗАДАВАЕМЫЕ ВОПРОСЫ
What is the maximum voltage rating of this diode?
The device is rated for a maximum repetitive peak reverse voltage of 400 V, making it suitable for high-voltage rectification and protection tasks in various electronic circuits.
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How does the reverse recovery time affect performance?
The typical reverse recovery time of 35 ns allows the diode to switch quickly from conducting to blocking state, reducing switching losses and electromagnetic interference in high-frequency applications.
What package type is used for this diode, and what are its benefits?
It uses the SOD-123FL surface-mount package, which supports compact PCB layouts and offers improved thermal dissipation, enhancing overall device reliability in dense circuit designs.
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Can this diode handle surge currents during transient events?
Yes, it can withstand non-repetitive peak