Online Buck RC Snubber Calculator

Calculate snubber components to reduce ringing and improve EMC performance

Biricha Buck Snubber Design Tool

Enter the required parameters and this online calculator will calculate the snubber R and C values for the Buck converter.

V
Hz
e.g for 100kHz you can type 100000 or 100e3

Low Side Switch (D2/Q2) Snubber Calculations (R_snub2 & C_snub2)
Hz
e.g. for 27MHz you can type 27e6. Note: this is the ringing frequency on the rising edge of the voltage measured at point X in the diagram with respect to ground.
F
e.g. for 100pF please type in 100e-12
F
Select a capacitor value close to this. After selecting this first pass snubber capacitor value solder this capacitor in place of C_snub2 and temporarily short R_snub2 with a 0R resistor. Then please follow the instructions below.
F
e.g. for 400pF please type in 400e-12
Note: If snubber capacitance is too big, power dissipation will be large; if it is too small the circuit will not work well Start with a low value (typically ~4 x Coss or 4 x CT) and iterate until the snubber power loss is acceptable. This power will be lost when you solder a snubber resistor.
W
For reference typical maximum dissipation for 1 oz FR4 PCB with minimal pad size (check manufacturer datasheet) 0603 package ~ 0.050W to 0.100W 0805 package ~ 0.050W to 0.125W 1206 package ~ 0.125W to 0.250W 1210 package ~ 0.25W to 0.500W
Hz
F
H
ohms
Note 1: Use as close a value as possible Note 2: To finalize your design, look at the ringing again. Ideally there should be only 1 or no undershoot. If this is the case, you may be able to reduce C_snub2 and check to see if you can reduce your losses
High Side Switch (Q1) Snubber Calculations (R_snub1 & C_snub1) Note: Often you do not need this after soldering the low side snubber. Make sure the low side snubber is in the circuit and functioning before adding this high side snubber.
Hz
e.g. for 90MHz you can type 90e6. Note: this is the ringing frequency on the falling edge of the voltage measured at point X in the diagram with respect to ground.
F
F
Select a capacitor value close to this. After selecting this first pass snubber capacitor value solder this capacitor in place of C_snub1 and temporarily short R_snub1 with a 0R resistor. Then please follow the instructions below.
F
Note: If snubber capacitance is too big, power dissipation will be large; if it is too small the circuit will not work well Start with a low value (typically ~4 x Coss or 4 x CT) and iterate until the snubber power loss is acceptable. This power will be lost when you solder a snubber resistor.
W
For reference typical maximum dissipation for 1 oz FR4 PCB with minimal pad size (check manufacturer datasheet) 0603 package ~ 0.050W to 0.100W 0805 package ~ 0.050W to 0.125W 1206 package ~ 0.125W to 0.250W 1210 package ~ 0.25W to 0.500W
Hz
F
H
ohms
Note 1: Use as close a value as possible Note 2: To finalize your design, look at the ringing again. Ideally there should be only 1 or no undershoot. If this is the case, you may be able to reduce C_snub2 and check to see if you can reduce your losses
Your design is complete! 🙂

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