
( Brand: Itt ), ( Manufacturer Part Number: ECS-8-17.5N487 ), ( Tolerance Rating: 2 ), ( Minimum Operating Voltage: 17 V ), ( Type: Variable Capacitor ), ( Capacitor Construction: Glass ), ( Termination Style: Connector ), ( Capacitance Rating: 8 Pf ), ( Maximum Operating Voltage: 17, 500vdc )
The ITT ECS-8-17.5N487 Jennings 2-8pf 17.5kV Capacitor is a high-performance electrical component designed for various applications in power systems. This capacitor is a key component in power factor correction, voltage stabilization, and filtering systems, among others.
The ECS-8-17.5N487 is an 8mm diameter, 17.5kV capacitor with a 2-8 picofarad (pF) capacity. It is manufactured by ITT Corporation, a renowned name in the field of advanced electrical components and systems. The Jennings series of capacitors is known for its superior quality and reliability.
This capacitor is constructed using high-quality N487 paper dielectric, which is renowned for its excellent electrical properties and long-term stability. The paper dielectric is impregnated with a special oil to ensure protection against moisture and other environmental factors. The capacitor is also equipped with a rugged aluminum can to provide mechanical protection and enhance its overall performance.
The ITT ECS-8-17.5N487 Jennings 2-8pf 17.5kV Capacitor is designed to operate at temperatures ranging from -40 C to 125 C, making it suitable for use in a wide range of environments. It has a high voltage rating of 17.5kV, making it an ideal choice for high voltage applications.
In terms of electrical performance, the capacitor has a low AC impedance, which enables it to respond quickly to voltage changes, thereby providing excellent reactive power support. It also has a low leakage current, ensuring stable operation over a long period.
The ITT ECS-8-17.5N487 Jennings 2-8pf 17.5kV Capacitor is a versatile and reliable electrical component that is designed to meet the highest standards of performance and safety. It is an excellent choice for applications where high voltage, low capacitance, and long-term reliability are crucial.
Pros of buying a ITT ECS-8-17.5N487 Jennings 2-8PF 17.5kV capacitor:1. High Voltage Rating: This capacitor has a voltage rating of 17.5kV, making it suitable for high-voltage applications.
2. High Capacitance: With a capacitance of 2-8PF, it can store a significant amount of electrical energy.
3. Quality Manufacturer: ITT is a well-known and reputable manufacturer, known for producing high-quality capacitors.
4. Durable: The capacitor is designed to withstand harsh environments, making it suitable for industrial applications.
Cons of buying a ITT ECS-8-17.5N487 Jennings 2-8PF 17.5kV capacitor:1. High Cost: The high voltage and capacitance rating of this capacitor make it more expensive than lower-rated capacitors.
2. Limited Availability: Due to its high voltage rating, this capacitor may not be as widely available as lower-rated capacitors, making it more difficult to find replacements if needed.
3. Requires Special Handling: Due to its high voltage rating, this capacitor requires special handling and care to avoid electrical hazards.
Conclusion:The ITT ECS-8-17.5N487 Jennings 2-8PF 17.5kV capacitor is a high-quality capacitor that is suitable for high-voltage applications. Its high capacitance and voltage rating make it a valuable component in many industries. However, its high cost and limited availability may make it less accessible to some buyers. If you have a need for a high-voltage capacitor and can afford the cost, this capacitor is a good choice. If cost is a concern, you may want to consider a lower-rated capacitor.
Recommendation:If you require a high-voltage capacitor with a high capacitance rating, the ITT ECS-8-17.5N487 Jennings 2-8PF 17.5kV capacitor is a good choice. Its high quality and durability make it a reliable component for many industrial applications. However, if cost is a concern, you may want to consider a lower-rated capacitor that can meet your needs at a lower price point.
This was used as part of the neutralizing circuit. I tested capacitance.