 
                                              Ceramic Bipolar Capacitor (100pf=101pf) 0.0001µF = 0.1nF = 100pF = 101pF
                
                
                
                
                                    - Stock: In Stock
- Brand: TECHDELIVERS
- Model: TD-CC100PF
- Weight: 0.50g
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0.0001µF = 0.1nF = 100pF = 101pF Ceramic Bipolar Capacitor (100pf)
Ceramic capacitors have a capacitance range (pf = picofarads) from 1pF to 100nF. They're widely used in electronic circuits for filtering, coupling, and decoupling applications.
For example, 101 represents 100 pF: the digits 10 followed by one additional zero. If there are only two digits listed, the number is simply the capacitance in pF. Thus, the digits 22 indicate a 22 pF capacitor.
Formula:
0.0001µF = 0.1nF = 100pF = 101pF
General Calculation:
The value of this unit is considered too basic, so the unit farad is reduced again to the units as follows:
microfarads (µF) nanoFarads (nF) picoFarads (pF)
0.000001µF = 0.001nF = 1pF
0.00001µF = 0.01nF = 10pF
0.0001µF = 0.1nF = 100pF
0.001µF = 1nF = 1000pF
0.01µF = 10nF = 10,000pF
0.1µF = 100nF = 100,000pF
1µF = 1000nF = 1,000,000pF
10µF = 10,000nF = 10,000,000pF
100µF = 100,000nF = 100,000,000pF
0.000001µF = 0.001nF = 1pF
0.00001µF = 0.01nF = 10pF
0.0001µF = 0.1nF = 100pF
0.001µF = 1nF = 1000pF
0.01µF = 10nF = 10,000pF
0.1µF = 100nF = 100,000pF
1µF = 1000nF = 1,000,000pF
10µF = 10,000nF = 10,000,000pF
100µF = 100,000nF = 100,000,000pF
 1 F = 1 Farad = 1,000,000 Micro Farad
1 uF = 1000 nF = 100 KpF
1 uF = 1,000,000 pico Farad
1 uF = 1000 nF = 100 KpF
1 uF = 1,000,000 pico Farad
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        Tags:
                  Ceramic Capacitor
          ,                  100
          ,                  ceramic capacitor
          ,                  0.0001µF
          ,                  0.1nF
          ,                  100pF
          ,                  101pf
          ,                  101
          ,                  100
          ,                  ceramic capacitor
          ,                  0.0001µF
          ,                  0.1nF
          ,                  100pF
                        
             
          








 
                   
                   
                   
                   
                   
                   
                   
                   
                   
                   
                   
                   
              
                                                 
                                           
              
                                                 
                                           
                   
                   
                   
                   
              
                           
              
                                                 
                                           
              
                           
              
                                                 
                                           
              
                                                 
                                           
              
                                                 
                                           
              
                           
              
                           
              
                                                