
( Brand: Dearborn ), ( Manufacturer Part Number: CMLE105M30 ), ( Model: CAPACITOR ), ( Country/region Of Manufacture: United States )
The CMLE105M30 Dearborn Capacitor is a high-quality, reliable electrical component designed for various applications that require voltage handling capabilities. This capacitor boasts a capacitance value of 1 Farad (F), making it ideal for energy storage and power factor correction tasks.
The voltage rating of this capacitor is an impressive 3000 Volts (V), ensuring it can withstand significant electrical potential differences without failing. Furthermore, the 3000 Volts DC (Vdc) rating demonstrates its suitability for use in direct current circuits.
The CMLE105M30 Dearborn Capacitor is a metalized polypropylene capacitor, which means it utilizes a metalized film as the dielectric material and polypropylene as the insulating material. This construction provides excellent stability, low leakage current, and excellent performance over a wide temperature range.
The capacitor is available in a cylindrical shape with a diameter of 16.5mm (0.65 inches) and a length of 180mm (7 inches). Its dimensions, coupled with its robust construction, make it a compact yet powerful choice for various applications.
In summary, the CMLE105M30 Dearborn Capacitor is a versatile and reliable electrical component with a high voltage rating, large capacitance value, and a robust construction that ensures excellent performance and longevity. Its cylindrical shape and moderate dimensions make it a suitable option for various applications where space is a concern.
Pros of buying a Dearborn CMLE105M30 capacitor:1. High Voltage Capability: The capacitor has a voltage rating of 3000V, making it suitable for high voltage applications.
2. Large Capacitance: With a capacitance of 1mF, it can store a significant amount of charge.
3. Durable Construction: The capacitor is made with high-quality materials, ensuring its durability and reliability in various operating conditions.
4. High Quality: Dearborn is a reputable brand that is known for its high-quality products.
Cons of buying a Dearborn CMLE105M30 capacitor:1. High Cost: The capacitor is relatively expensive compared to other capacitors with similar capacitance and voltage ratings.
2. Limited Availability: The capacitor may not be readily available in local stores, and specialized online retailers may charge additional shipping fees.
Conclusion:The Dearborn CMLE105M30 capacitor is a high-quality component that is well-suited for high voltage and high capacitance applications. Its durability and reliability make it an excellent investment for projects that require a dependable capacitor. However, its high cost and limited availability may be a deterrent for some buyers. If cost is not a significant concern, the capacitor is an excellent choice. Alternatively, buyers may consider other capacitor brands with similar specifications that offer a more affordable price point.
Recommendation:If cost is not a concern, I recommend the Dearborn CMLE105M30 capacitor for its high voltage and high capacitance capabilities, as well as its reputation for quality and durability. If cost is a concern, buyers may consider alternative capacitors from other reputable brands with similar specifications, such as Panasonic or Vishay, to find a more affordable option that still meets their needs.
Dearborn Capacitor 3000v dc CMLE105M30 1mfd 3 kvdc navy old stock tested working Capacitor photos are 1 of 3 this identical model cap with slightly different condition. Ask questions and use the photos to supplement information I provide.
Upgrading to a faster method is typically just few more dollars. I always offer the fastest method at lowest price.
I appreciate your time in fully reading this. Measurements and function are identical wide x deep tall plus height with porcelain tip. Sometimes I can even get an item out the same day. I do my best to describe items, but can miss details.
View all photos. I make my best effort to represent the item clearly, but colors can be slightly different in lighting or objects may appear smaller larger.