Operating temperature range 25ºc to 85ºc.
Ceramic capacitance range.
To prevent confusion with large numbers of zeros attached to the values of the different capacitors the common prefixes pico 10 12 nano 10 9 and micro 10 6 are widely used.
10 0mmø unless otherwise states.
All capacitors have a tolerance rating that can range from 20 to as high as 80 for aluminium electrolytic s affecting its actual or real value.
Popular class 2 ceramic dielectrics include x7r which as a temperature range of 55 to 125 c with a δc c0 of 15 y5v which as a temperature range of 30 to 85 c with a δc c0 of 22 82 and z5u which has a temperature range of 10 to 85 c and a δc c0 22 56.
Tecate s ceramic capacitors are available from sizes that can barely be seen with the naked eye to very large configurations that have multiple agency certifications and can be used in safety sensitive applications.
To gain higher capacitances these devices can be made from multiple layers.
Ceramic capacitors are usually made with very small capacitance values typically between 1nf and 1µf although values up to 100µf are possible.
Class 3 ceramic capacitor dielectric.
Because the thickness of the ceramic dielectric layer can be easily controlled and produced by the desired application voltage ceramic capacitors are available with rated voltages up to the 30 kv range.
Ceramic capacitors which are available in the range of very small capacitance values pf and higher are already out of their smaller capacitance values suitable for higher frequencies up to several 100 mhz see formula above.
Tolerance 10 y5p 20 y5v voltage rating.
X7r dielectric chip usage covers the broad spectrum of industrial applications where known changes in capacitance due to applied voltages are acceptable.
When converting between these it is sometimes useful to have a capacitor conversion chart or capacitor conversion table for the different capacitor values.
Ceramic capacitors are also very small in size and have a low maximum rated voltage.
Ceramic capacitors are well suited for high frequencies and high current pulse loads.