• PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS

PC3F SMD high voltage diode 3KV,100mA,70nS

Products Main features:
1、SMD connection.
2、High thermal conductivity epoxy compound molding.
3、Fast recovery time for high efficiency.
4、J-Lead(Inner Bend) shapes.
5、Ultra small size package
6、Fast recovery PC Series are the same package size.
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • PC3F SMD high voltage diode 3KV,100mA,70nS
  • Desciption

  • data sheet

  • SMD HVdiode

  • Installation Guide

 PC3F SMD high voltage diode Data Sheet 
 Parameter Symbol Unit Test Conditions Value
 Repetitive Peak Backward Voltage Vrrm KV Ta=25℃  Ir=1.0μA 3
 Peak Working Backward Voltage Vrwm KV Ta=25℃  Ir=1.0μA 3
 Average Forward Current If(AV) mA 50Hz Half-sine Wave , Resistance load @Tbreak=50℃ 100
 Backward Recovery Time Trr nS   70
 Surge Forward Current Ifsm A 0.01S @ Half-Sine wave  50Hz 10
 Operating Ambient Temperature Ta   -55~+175
 Storage Temperature Tstg   -55~+150
 Forward Peak Voltage Vfm V   ≥2.5
 Backward Peak  Current Irrm1 μA @ Ta=25℃ VRM=VRRM 1.0
Irrm2 μA @ Ta=100℃ VRM=VRRM 20.0
 Absolute Maximum Ratings & Electrical Characteristics

Functional Role and Intended Users of the PC3F SMD High Voltage Diode

The PC3F SMD high voltage diode serves as a compact rectifier solution designed primarily for electronics engineers and procurement professionals developing high-voltage power circuits. This product targets applications requiring efficient, reliable fast-recovery diodes in limited PCB space. As part of the high voltage diode family, it meets demands for surface-mount technology (SMT) integration, offering compatibility with modern automated manufacturing processes. Its design suits developers focused on high-voltage diode manufacture who seek components that ensure both electrical performance and assembly efficiency. Users in sectors such as power supply design, laboratory testing, and semiconductor equipment benefit from this diode’s footprint and robust specifications.

Key Technical Features and Electrical Specifications of the PC3F Diode

This high voltage diode package features a repetitive peak reverse voltage rating of 3KV, supporting transient voltages and steady operational peaks typical in HV power electronics. The average forward current is rated at 100mA with a rapid backward recovery time of approximately 70ns, supporting fast switching and minimal reverse recovery losses critical in high-efficiency rectification. The J-Lead (Inner Bend) geometry and ultra-small epoxy molded SMD package provide enhanced thermal conductivity and enable tight layouts without compromising heat dissipation. Additional specifications include surge forward current capability and wide operating temperature range (-55°C to +175°C), ensuring reliability in harsh operating environments. These characteristics position the diode as a high-performance component for demanding circuit conditions in the high voltage diode manufacture sector.

Industry Use Cases and Practical Value of the PC3F High Voltage Diode

The PC3F diode’s high voltage rating combined with fast recovery capability makes it suitable for various industrial applications such as compact high-voltage power supplies, testing equipment, and laboratory bench-top experiments emphasizing fast switching. It reliably performs in surface mount high voltage diode modules found in compact industrial electronics, medical devices, and high-frequency converters. OEMs and integrators benefit from the diode’s ability to maintain operational stability while minimizing circuit board real estate and thermal stresses. Furthermore, its compliance with international manufacturing standards supports use in high voltage diode wholesale distribution for various sectors requiring reproducible, tested, and durable diodes. This diode enhances system robustness while supporting the evolving demands of the high voltage electronics industry.



Product Advantages

Structural and Design Attributes Supporting Integration and Scalability

The PC3F high voltage diode incorporates a J-Lead (Inner Bend) design that optimizes solderability and mechanical stability on SMT boards, facilitating consistent automated assembly and reflow soldering processes valued in high volume high voltage diode manufacture environments. Its ultra-small epoxy molded package enhances thermal conductivity, allowing for effective heat dissipation despite a compact footprint. These structural features enable system integrators to design scalable, space-efficient power modules and compact rectifier bridges without sacrificing electrical integrity. Additionally, the surface mount configuration streamlines inventory and logistics management for distributors specializing in high voltage diode wholesale by simplifying stocking and deployment across multiple PCB designs. The diode’s robustness in package design supports long-term reliability and conformity with advanced manufacturing standards.

Performance Efficiency and Usability Benefits for Engineering Applications

With a backward recovery time of 70ns, the PC3F delivers superior switching performance, which reduces power losses and enhances overall circuit efficiency in high-voltage rectification tasks. Its 3KV repetitive peak voltage rating ensures durability under demanding operational conditions, reinforcing system reliability. These performance metrics support design engineers aiming for minimal electromagnetic interference and high operational frequency capabilities. The diode’s consistent electrical parameters and wide ambient temperature tolerance confer dependable behavior across varied environments, facilitating easier system validation and compliance testing. Additionally, its compatibility with standard SMT production lines results in reduced assembly complexity and cost savings, offering considerable value to users requiring streamlined sourcing from high voltage diode wholesale suppliers and precise high voltage diode manufacture outputs.



    FAQ

    What are the operating temperature limits of the PC3F high voltage diode?

    The PC3F diode operates reliably within an ambient temperature range of -55°C to +175°C, supporting demanding industrial environments. This range suits various applications requiring durable high voltage diode performance under stress.

    Can HVDIODE provide customization for the PC3F diode or other high voltage diodes?

    Yes, HVDIODE offers customization options through its professional R&D team. With extensive testing facilities and patent technology, the company can tailor diode specifications for specific high-voltage applications upon consultation.

    What packaging type and mounting method does the PC3F diode use?

    The PC3F model features surface mount diode (SMD) packaging with a J-Lead (Inner Bend) geometry. This ultra-small epoxy-molded package facilitates compact PCB layouts in SMT assemblies, ensuring ease of installation and efficient heat dissipation.

    How does HVDIODE ensure quality and reliability in its high voltage diode production?

    HVDIODE holds ISO9001 and RoHS certifications and employs advanced testing equipment like high-voltage test benches and recovery time testers. This rigorous quality control guarantees that every high voltage diode delivered meets industrial standards for performance and safety.

    PC series SMD high voltage diodes, due to the design of inner bend angle.

    During use, according to the actual working voltage level, it is necessary to pay attention to the insulation distance of the medium.

    If it is used completely exposed to the air, it is recommended to fill the two poles with insulating materials, or immerse in three-proof paint, which will achieve more reliable insulation.

    Of course, this will also affect the heat dissipation performance of the SMD high voltage diode.

    Therefore, according to the temperature rise, there are different solutions for selecting insulating glue with suitable insulation and thermal conductivity.

    Of course, this solution is not necessary, you just need to consider this aspect in your design plan.
    In most cases, the working medium of insulating oil and insulating gas does not need to consider this kind of solution.
    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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