Total Power Calculator – Parallel Resistors
This tool calculates the total power for a set of any number of resistors in parallel. Enter the Formula Rtotal = (1/R1 + 1/R2 + 1/R3 +…. + 1/Rn)-1 P …
This tool calculates the total power for a set of any number of resistors in parallel. Enter the Formula Rtotal = (1/R1 + 1/R2 + 1/R3 +…. + 1/Rn)-1 P …
This tool converts Noise Figure to Noise Temperature. Enter Select the unit for the resulting Noise Temperature. 🔁 Noise Temperature to Noise Figure Formula TNoise = TRef *(10NF/10 – 1) …
This tool converts Noise Temperature to Noise Figure. Enter along with appropriate units – Celsius or Kelvin. 🔁 Noise Figure to Noise Temperature Formula Noise Figure (dB) = 10*Log10(TNoise/TRef + …
Use this calculator to convert peak amplitude measured in one resolution bandwidth to another. Background The resolution bandwidth (RBW) setting is an important consideration when making spectrum analyzer measurements. Typically …
This tool converts dBm per Hz to nV per root(Hz) or nV/√(Hz). 🔁 nV/√(Hz) to dBm/Hz Formula The formula below shows how dBm/Hz can be converted to noise with units …
The percentage % of modulation is an indicator of the extent to which it is modulated. Here is a picture of an unmodulated sine wave. By comparison here is a …
LMR cables are manufactured by Times Microwave [1]. In this post we explore the differences between the two. Contents1 Cable Loss2 Cable Thickness3 Mechanical Specifications4 Cost5 Summary6 References Cable Loss …
This tool computes the attenuation loss of a user-specified length of LMR-200 RF coaxial cable [1]. To use the insertion loss calculator use the tool below. Enter Background LMR cables …
This tool computes the attenuation loss of a user-specified length of LMR-600 RF coaxial cable [1]. To use the insertion loss calculator use the tool below. Enter: Background LMR cables …
This tool computes the attenuation loss in dB of a user-specified length of LMR-400 RF coaxial cable [1]. To use the insertion loss calculator use the tool below. Enter Background …