SL material high-voltage ceramic disc capacitors provide stable capacitance, excellent insulation, and reliable performance in high-voltage applications. Engineered for durability and minimal dielectric loss, they are ideal for power electronics, industrial circuits, and voltage regulation systems.
Product Overview
The SL Material High-Voltage Ceramic Disc Capacitor is made from high-quality SL ceramic material, offering low loss, high-frequency capability, high voltage withstand ability, and excellent insulation performance. It is widely used in high-voltage power supplies, laser pulse systems, and smart grid applications. Its design ensures long-term stable operation in high-voltage environments, making it particularly suitable for electrical equipment that requires high-frequency operation and high-voltage support. This capacitor provides excellent electrical performance, making it an ideal choice for various high-voltage electrical systems.
Features
- Low Loss: With a loss factor as low as 0.06% at 1 kHz, ensuring high efficiency in high-frequency environments.
- Excellent High-Frequency Characteristics: Suitable for operating conditions with frequencies ≥100 kHz, meeting the demands of high-frequency power supplies and systems.
- Superior High-Voltage Performance: Capable of withstanding up to twice the rated voltage, providing strong voltage support.
- High Insulation Resistance: Insulation resistance greater than 1,000,000 MΩ, ensuring electrical safety and stability in high-voltage environments.
Applications
- High-Voltage Power Supplies: Used in high-voltage power systems, providing stable power output.
- Laser Pulse Systems: Widely used in gas lasers and high-voltage pulse generators, ensuring precise pulse output.
- Smart Grid: Suitable for smart grid systems, providing reliable support for power transmission and distribution.
Parameter | Range |
Ceramic Dielectric | SL |
Operating Temperature | -25~+85 ℃ |
Insulation Resistance | ≥1000000 MΩ |
Dielectric Loss | ≤0.06% |
Temperature Characteristics | ±650 PPM/℃ |