
( Brand: Sprague ), ( Manufacturer Part Number: 5GA-047 ), ( Part Type: Disc Capacitor ), ( Unit Type: Unit ), ( Country Of Origin: United States )
The Sprague 5GA-047 is a high-performance ceramic disc capacitor designed for various electronic applications. This capacitor features a capacitance value of 0.00047 microfarads (47 pF) and a maximum operating voltage of 1000 volts.
The ceramic material used in this capacitor provides excellent stability and reliability, even in high-frequency applications. The ceramic disc is hermetically sealed in a solid epoxy case, which ensures the capacitor's durability and protection against external moisture and contaminants.
The 5GA-047 capacitor has a low equivalent series resistance (ESR) and a low equivalent series inductance (ESL), making it suitable for use in high-frequency circuits where low impedance is essential. Its tight tolerance and low temperature coefficient ensure precise capacitance values in various operating conditions.
This capacitor's high voltage rating of 1000 volts allows it to be used in high-voltage applications, such as power supplies, radio frequency (RF) circuits, and filtering applications. The 5GA-047 is also RoHS compliant, ensuring that it meets the latest environmental regulations.
In summary, the Sprague 5GA-047 is a versatile and high-performance ceramic disc capacitor that offers excellent stability, reliability, and low impedance. Its compact size, high voltage rating, and tight tolerance make it an ideal solution for various electronic applications where precision and reliability are crucial.
The Sprague 5GA-047 is a ceramic disc capacitor with a capacitance value of 0.00047 microfarads (47 pF) and a voltage rating of 1000 volts. Here are some potential pros and cons of buying this capacitor:
Pros:1. High Voltage Rating: With a voltage rating of 1000 volts, this capacitor can handle high voltage applications, making it suitable for use in various electronic circuits.
2. Ceramic Construction: Ceramic capacitors have several advantages over other types of capacitors. They are generally smaller in size, have a wider range of available capacitance values, and are more stable over temperature than electrolytic capacitors.
3. Low Equivalent Series Resistance (ESR): Ceramic capacitors typically have low ESR, which means they can deliver more current and have lower power loss compared to other types of capacitors.
4. Wide Temperature Range: The Sprague 5GA-047 can operate over a wide temperature range (-55 C to 125 C), making it suitable for use in various environments.
Cons:1. Limited Capacitance Value: With a capacitance value of only 0.00047 microfarads, this capacitor may not be suitable for all applications.
2. Higher Cost: Ceramic capacitors, especially those with high voltage ratings, can be more expensive than other types of capacitors.
3. Lower Capacitance Tolerance: Ceramic capacitors have a lower capacitance tolerance compared to electrolytic capacitors, which may make them less suitable for applications that require high accuracy.
In conclusion, the Sprague 5GA-047 ceramic disc capacitor can be a useful component for various electronic applications that require a high voltage rating and low ESR. However, its limited capacitance value and higher cost may make it less suitable for some applications. Ultimately, the decision to buy this capacitor will depend on the specific requirements of your project.
If you need a capacitor with a higher capacitance value or a lower cost, you may want to consider other types of capacitors, such as electrolytic or film capacitors. However, if you require a high voltage rating and low ESR, the Sprague 5GA-047 may be a good choice for your application.
Included Items. Overall this item is in 100% new cosmetic, excellent condition. The pictures are taken from the actual item on sale.: Vintage Sprague 5GA-047 GA Type Ceramic Disc Capacitor .000047uF 1000V NIB, 3.
Brand: Sprague, Included: Comes with all the items attached on photo. Suggested Retail Price: $, condition: This product is in NEW condition. Not Included: 5.