K15-R
AI

The **K15-R** typically refers to a high-voltage, ceramic disc capacitor frequently used in pulse power, X-ray equipment, and high-voltage power supplies. It is designed to handle high peak currents and high frequencies.
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### ## Technical Specifications
Below are the typical electronic characteristics of a K15-R series capacitor:
| Feature | Specification |
| :--- | :--- |
| **Material** | Ceramic (High Permittivity) |
| **Rated Voltage** | 10kV to 50kV (Standard) |
| **Capacitance Range** | 100pF to 10,000pF (varies by size) |
| **Dielectric Type** | Usually Y5T, Y5U, or N4700 |
| **Operating Temperature** | -25°C to +85°C |
| **Tolerance** | ±10% or ±20% |
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### ### Key Electronic Components & Construction
1. **Ceramic Dielectric:**
The core is a ceramic puck (often N4700 class) which provides high stability and low dissipation factors. This allows the part to withstand extreme electrical stress without breaking down.
2. **Electrodes:**
Silver electrodes are fired onto the ceramic disc. These provide the conductive surface area required to store the electric charge.
3. **Encapsulation:**
The part is coated in a flame-retardant epoxy resin. This protects the internal ceramic from moisture and prevents "arcing" (electrical jumping) between the leads across the surface of the component.
4. **Terminal Leads:**
Heavy-duty copper or brass leads (often silver-plated) are used to ensure low resistance and high mechanical strength, as these parts are often physically large.
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### ### Typical Applications
* **Marx Generators:** Used in high-voltage pulse generation.
* **X-Ray Machines:** Filtering and doubling circuits in medical or industrial imaging.
* **Laser Power Supplies:** Providing the high-energy pulse required for CO2 or Excimer lasers.
* **Smart Grids:** High voltage sensors and coupling devices.
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- ⤷
What is the difference between N4700 and Y5T dielectric materials in K15-R capacitors?
- ⤷ How do I calculate the discharge time for a K15-R capacitor in a pulse circuit?
- ⤷ What are the common failure modes for high-voltage ceramic capacitors?