• CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS

CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS

Products Main features:
1、Axial leaded connection.
2、High thermal conductivity epoxy compound molding.
3、Quick connect terminals can be installed.
4、Special high temperature resistant chip protective glue.
5、Excellent discharge characteristics.
6、High speed switch response characteristics.
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • CL08-15 Fast Recovery High Voltage Diode 15KV 300mA 100nS
  • Desciption

  • data sheet

  • Installation Guide

Functional Role in High-Voltage Rectification Systems

The CL08-15 fast recovery high voltage diode is engineered for precise use in fast-switching rectifier circuits operating up to 15 kV. Targeted mainly at electrical engineers and system integrators, this diode supports compact, axial-leaded designs for straightforward incorporation into high-voltage assemblies. Its configuration and thermal resilience enable it to meet rigorous operational demands in pulsed power supplies and high-voltage rectifier modules. This product suits users requiring consistent, reproducible performance in applications that prioritize fast recovery and minimal switching losses, providing a dependable wholesale high voltage diode solution for industrial manufacturing and R&D environments.


Advanced Features and Technical Specifications

Featuring a repetitive peak reverse voltage rating of 15 kV and a rapid recovery time near 100 ns, the CL08-15 facilitates high-efficiency switching with minimal reverse recovery current. The epoxy-molded casing with axial leads ensures mechanical durability and improved thermal conduction, supporting operational temperatures from -40 °C to +150 °C. With an average forward current of 50 mA and surge tolerance up to 10 mA, it provides stable electrical characteristics for small-signal rectification in high-voltage circuits. These meticulously measured parameters enable engineers to optimize circuit designs with confidence, making the recovery high voltage diode ideal for integration into high-speed, high-voltage applications requiring compact form factors.


Applications in Specialized High-Voltage Systems

The CL08-15 diode’s high peak voltage tolerance and fast recovery enable deployment in diverse industries such as power electronics, oil and gas equipment, medical imaging, and pulsed HV generation. It supports the development of efficient high-voltage rectifier bridges, enabling compact, reliable designs in space-constrained environments. This diode complements other recovery high voltage diodes and silicon stacks in critical system architectures, where reducing energy loss and thermal stress enhances overall device longevity. By meeting exacting engineering standards, this diode serves as a vital component in high-voltage test labs, industrial modules, and emerging high-efficiency power supply designs demanding premium performance and compliance.




Product Advantages


Structural and Design Merits for System Integration

The CL08-15’s axial-leaded, epoxy-encapsulated design provides both mechanical stability and efficient heat dissipation, critical for high-voltage applications requiring compact assemblies. Its optional quick-connect terminals streamline system installation and maintenance, facilitating solderless connections in modular high-voltage assemblies. The robust chip-protective glue enhances reliability in thermal cycling and prolonged storage, addressing environmental stresses often encountered in industrial and research contexts. These structural aspects position the CL08-15 as a preferred wholesale high voltage diode choice for equipment manufacturers seeking scalable, reliable components optimized for fast rectification circuits.


Performance Reliability and Operational Efficiency

This high voltage diode achieves low switching losses through its fast recovery time (~100 ns), contributing to superior energy efficiency in pulsed and continuous high-voltage systems. Its broad temperature range and stable peak voltage ratings support consistent performance under varying load and environmental conditions. The diode’s low surge current capability emphasizes precision in sensitive high-voltage designs, where controlled current handling is mandatory. Together, these features deliver enhanced system uptime and extended component life, benefiting engineers requiring durable, high-precision recovery high voltage diodes for advanced power supply designs and critical application deployments.




CL08-15 Fast Recovery High Voltage Diode  Data Sheet
 Parameter Symbol Unit Test Conditions Value
 Repetitive Peak Backward Voltage Vrrm KV Ta=25℃  Ir=2.0μA 15
 Peak Working Backward Voltage Vrwm KV Ta=25℃  Ir=2.0μA 15
 Average Forward Current If(AV) mA 50Hz Half-sine Wave , Resistance load @Tbreak=50℃ 300
 Backward Recovery Time Trr nS   100
 Surge Forward Current Ifsm A 0.01S @ Half-Sine wave  50Hz 20
 Junction Temperature(MAX) Ta   -40~+150
 Storage Temperature Tstg   -40~+125
 Forward Peak Voltage Vfm V   ≥22.0
 Backward Peak  Current Irrm1 μA @ Ta=25℃ VRM=VRRM 2
Irrm2 μA @ Ta=100℃ VRM=VRRM 20.0
 Absolute Maximum Ratings & Electrical Characteristics




Use Scenarios


Integration in High-Voltage Power Supply Manufacturing

In the industrial production of high-voltage power supplies, the CL08-15 functions as a key fast recovery rectifier diode to improve circuit switching response and reduce energy dissipation. Its compact form factor and robust peak voltage capabilities enable seamless integration into multi-stage rectification assemblies. This diode’s reliable recovery time supports compliance with stringent efficiency and electromagnetic interference standards in manufacturing environments. It reduces thermal loading on downstream components, facilitating improved module lifespan and performance consistency critical to heavy-duty, high-voltage power systems widely used in utilities and industrial automation sectors. Its adoption reflects industry trends toward efficiency and system miniaturization via dependable high voltage diodes.


Use in Pulsed High-Voltage Diagnostic and Research Equipment

The CL08-15 serves a pivotal role in pulsed high-voltage circuits within laboratory and diagnostic equipment, including X-ray generators and HV test benches. Its fast recovery minimizes signal distortion and switching noise, ensuring precise operation during rapid voltage transitions. The diode’s high repetitive peak reverse voltage withstands demanding transient conditions, vital for research environments where component integrity under stress is tested rigorously. Integration of this diode into experimental setups improves measurement accuracy and protects sensitive electronics through reliable switching dynamics. This makes it a favored recovery high voltage diode for engineers developing advanced testing applications requiring high precision and robust electrical performance.




FAQ 


What is the maximum repetitive reverse voltage of the CL08-15 diode?

Our CL08-15 diode supports a repetitive peak backward voltage (Vrrm) and peak working backward voltage (Vrwm) of up to 15 kV. This high voltage rating ensures reliable operation in demanding high voltage diode applications requiring fast recovery and stability.


Can you customize recovery high voltage diodes for different voltage or current requirements?

Yes, we offer OEM and ODM services to adapt our recovery high voltage diode models to your specific voltage and current needs. Our R&D team works closely with customers to deliver tailored solutions that meet precise industrial requirements.


How do the axial leaded design and epoxy molding benefit installation?

Our CL08-15 features an axial leaded configuration and compact epoxy molding, facilitating straightforward integration into your HV circuits. This design supports robust mechanical stability and thermal performance, reducing downtime during assembly or replacement.


What quality certifications and testing protocols back your high voltage diode products?

We hold ISO9001 and RoHS certifications and apply rigorous testing procedures using national metrology-grade equipment. This includes verifying parameters such as recovery time, leakage current, and surge capability to guarantee trustworthy performance in wholesale high voltage diode offerings.

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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