
( Brand: Kemet ), ( Manufacturer Part Number: C1206C103K1RAC7800 )
The Kemet C1206C103K1RAC7800 is a high-quality ceramic disc capacitor that is designed for use in various electronic applications. This capacitor is part of Kemet's C1206 series, which is known for its reliable performance and high-quality construction.
The C1206C103K1RAC7800 has a capacitance value of 1000 pF (picofarads), making it suitable for use in applications that require small capacitance values. The capacitor also has a voltage rating of 35V, which means it can withstand a maximum voltage of 35 volts without breaking down.
The capacitor is made of ceramic material, which is known for its excellent electrical properties and stability. This makes it suitable for use in applications that require high-frequency operation, such as radio frequency (RF) and microwave applications.
The C1206C103K1RAC7800 also has a temperature coefficient of -50 ppm/ C to 150 ppm/ C, which means its capacitance value changes by a small amount with changes in temperature. This is important in applications where the capacitance value needs to be stable over a wide temperature range.
The capacitor is available in a SMD (surface mount device) package with a size of 1206, which is a common size for small capacitors used in electronic assemblies. The package has lead pins that are spaced 0.10 inches apart, making it easy to solder onto a printed circuit board.
Overall, the Kemet C1206C103K1RAC7800 is a high-quality ceramic disc capacitor that is suitable for use in various electronic applications that require small capacitance values and stable performance over a wide temperature range. Its compact size and reliable construction make it a popular choice for use in SMD assemblies.
The Kemet C1206C103K1RAC7800 is a capacitor with specific electrical characteristics, and its pros and cons as a component in an electronic circuit depend on the application. Here are some aspects to consider:
Pros:1. Reliability: Kemet is a well-known manufacturer known for producing high-quality capacitors. The C1206C103K1RAC7800 is a ceramic capacitor, which is often chosen for its excellent reliability and stability.
2. Voltage Rating: With a maximum voltage rating of 350V, this capacitor can handle a decent amount of voltage, making it suitable for various applications.
3. Capacitance Value: The capacitance value of 100nF is relatively small, which is often beneficial in high-frequency circuits or when space is limited.
Cons:1. Temperature Sensitivity: Ceramic capacitors, including the C1206C103K1RAC7800, are generally more temperature sensitive than other types such as aluminum electrolytic or film capacitors. This means their capacitance value may change with temperature, which could affect the performance of the circuit.
2. Limited Current Handling: Ceramic capacitors have lower current handling capabilities compared to other types of capacitors. While the 103pF value of this capacitor may not require a significant current, it's essential to consider the overall current requirements of the circuit.
3. Noise: Ceramic capacitors can introduce noise into the circuit, especially in high-frequency applications. This can be problematic in sensitive applications, such as audio or radio frequency (RF) circuits.
In conclusion, the Kemet C1206C103K1RAC7800 is a reliable and stable capacitor with a suitable voltage rating and capacitance value for various applications. However, its temperature sensitivity, limited current handling, and potential noise issues should be considered in the design stage to ensure the circuit performs optimally. If these concerns are significant for your application, you may want to explore alternative capacitor types, such as aluminum electrolytic or film capacitors.
Lot of Kemet C1206C103K1RAC7800 cap smut Cerf. We prefer to not break up factory sealed packaging and quantities we attempted to find the least quantity amount listed or marketed on the partials.
It is an as is sale.
With the nature of partial quantities and human error, things happen. Kemet web homepage chime.
Although the probability of the label being incorrect is slight, we did not examine all the parts.