• HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS

HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS

Products Main features:
1、Axial leaded connection.
2、High thermal conductivity epoxy compound molding.
3、Fast Reverse Recovery Time for High Efficiency.
4、Special high temperature resistant chip.
5、Excellent discharge characteristics.
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • HVRT2530 Fast recovery High voltage diode 25KV 30mA 80nS
  • Desciption

  • data sheet

  • Installation Guide

 HVRT2530 Fast recovery High voltage diode Data Sheet 
 Parameter Symbol Unit Test Conditions Value
 Repetitive Peak Backward Voltage Vrrm KV Ta=25℃  Ir=2.0μA 25
 Peak Working Backward Voltage Vrwm KV Ta=25℃  Ir=2.0μA 25
 Average Forward Current If(AV) mA 50Hz Half-sine Wave , Resistance load @Tbreak=50℃ 30
 Backward Recovery Time Trr nS   80
 Surge Forward Current Ifsm A 0.01S @ Half-Sine wave  50Hz 3
 Operating Ambient Temperature Ta   -40~+150
 Storage Temperature Tstg   -40~+125
 Forward Peak Voltage Vfm V   ≥35.0
 Backward Peak  Current Irrm1 μA @ Ta=25℃ VRM=VRRM 2
Irrm2 μA @ Ta=100℃ VRM=VRRM 20.0
 Absolute Maximum Ratings & Electrical Characteristics

Specialized High Voltage Diode Solutions for Advanced Circuitry

The HVRT2530 fast recovery high voltage diode is engineered to meet the requirements of high voltage rectification professionals and system integrators. Its axial lead configuration simplifies integration into complex high voltage circuits, catering to engineers and manufacturers focused on durable, precise switching in power conversion environments. This solution suits applications demanding a balance between compact form factor and high reverse voltage resistance, ensuring compatibility with both prototype development and high volume production in high voltage diode manufacture.

Technical Specifications Supporting High-Efficiency Performance

Featuring a peak repetitive backward voltage (Vrrm) of 25 kV and an average forward current (If(AV)) of 30 mA, the HVRT2530 excels in high voltage diode performance criteria. Its rapid reverse recovery time of 80 ns minimizes switching losses, critical in pulsed power supplies that require rapid response without sacrificing reliability. Constructed with high-thermal-conductivity epoxy molding and a high-temperature resistant chip, this diode sustains stable operation across -40 °C to +150 °C. Such specifications provide measurable efficiency improvements and long-term operational stability for demanding high voltage environments.

Industry Applications Enabling Reliable High Voltage Rectification

The HVRT2530 supports a broad range of industrial applications including research instrumentation, power supply rectification, and high voltage test systems. Its ability to withstand high voltage stresses while maintaining rapid recovery makes it invaluable in laboratory setups and manufacturing test rigs, improving throughput and reducing downtime. By integrating this diode into assemblies, manufacturers benefit from compliance with ISO9001 and RoHS standards, ensuring the product meets stringent regulatory and environmental requirements in the global market for high voltage diode wholsale.



Product Advantages

Optimized Structural and Design Attributes for Integration

The axial leaded design of the HVRT2530 provides straightforward mechanical mounting and optimal heat dissipation via high thermal conductivity epoxy molding, which improves thermal management in constrained assemblies. This structural approach enables easy incorporation into modular high voltage diode circuits, supporting scalable solutions in high voltage diode manufacture. The high-temperature resistant chip further enhances reliability, reducing failure rates and maintenance costs in industrial applications where high voltage stress and temperature variations are common.

Enhanced Performance and Operational Reliability

From a performance perspective, the HVRT2530 fast recovery high voltage diode ensures reduced switching losses due to its 80 ns recovery time, which is vital for improving system efficiency in pulsed power devices. The diode's low leakage current and surge current tolerance extend operational life and maintain stable performance under transient conditions. These attributes facilitate easier system design validation and provide end users with greater confidence in product longevity, especially in optimizing high voltage diode wholsale supply chains with consistent quality.

FAQ

What high voltage ratings does the HVRT2530 support?

The HVRT2530 fast recovery diode features a repetitive peak backward voltage (Vrrm) of 25 kV, suitable for applications requiring high-voltage blocking and rectification in demanding circuits. This specification ensures safe and reliable performance within its rated electrical limits.

Can HVDIODE customize high voltage diodes for specific industrial needs?

Yes, HVDIODE offers customized solutions across its range of high voltage diodes and silicon stacks. With a professional R&D team and advanced testing facilities, the company can adapt specifications like voltage ratings and packaging types to meet various industrial requirements effectively.

How should the HVRT2530 be integrated into high-voltage assemblies?

The HVRT2530 features an axial-lead design for straightforward mechanical mounting and soldering in compact high-voltage assemblies. Its epoxy molding and thermal management properties help maintain performance and reliability in rigorous operating environments and during thermal cycling.

What logistics and testing assurances does HVDIODE provide for its products?

HVDIODE maintains ISO9001 and RoHS certifications to guarantee product quality and environmental compliance. Each high voltage diode undergoes comprehensive testing—including TRR, surge current, and temperature cycling—using certified metrology equipment, ensuring traceability and consistent product reliability.

The selection of high-voltage diodes is closely related to their usage environment。

1. Used in insulating oil. (Recommended)
2. Used in insulating gases. (Recommended)
3. Secondary packaging use. (High requirements for heat dissipation and other parameter performance of components)
4. Use in exposed air or add air cooling. (If the size of the high-voltage diode is small, it is easy to discharge, and the heat dissipation performance is average.)

For high-voltage diodes used in exposed air, it is recommended to install them with insulated electrodes at both ends.




Common treatment methods for surface adhesive insulation:

Characteristics of insulation adhesive material:

1. Silicone material usually presents a transparent and elastic rubber state after curing, which is more effective in shock resistance and can also withstand severe stress changes caused by large high and low temperature changes (-40 ° C~200 ° C).

2. Acrylic materials typically exhibit a transparent and hard coating after curing, with low moisture absorption and fast curing time, as well as excellent wear resistance and insulation.

3. After curing, Urethane material usually presents a transparent and hard coating, which has superior wear resistance and good moisture resistance. Its performance is particularly stable in low temperature environments, but it is less resistant to high temperatures.

4. The coating material based on epoxy is very sturdy and usually opaque, with good moisture and moisture resistance. Its resistance to chemical corrosion and wear is also very good. In addition, epoxy also has good dielectric properties.

Here, suitable insulation adhesive materials can be selected based on the different usage situations of engineers.

HVDIODE - Suly Electronics Co., Ltd.

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