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VOLTAGE TIME AC Waveform Terms:
VOLTAGE PEAK TIME Peak:  Maximum Positive or Negative  Voltage
VOLTAGE PEAK TO PEAK PEAK TIME Peak to Peak: 2 x peak value
VOLTAGE PEAK TO PEAK PERIOD PEAK TIME Period or Wavelength: length of one complete cycle
VOLTAGE PEAK TO PEAK PERIOD PEAK TIME RMS: (root mean square)  Peak Value  x  .707 ( 1/   ) RMS
VOLTAGE TIME Calculations: If we have 230v RMS @ 50 Hz  (NZ Supply) RMS 230v 50Hz
VOLTAGE TIME Calculations: If we have 230v RMS @ 50 Hz  (NZ Supply) Peak  = 230v / .707  =  325V RMS 230v 50Hz
VOLTAGE TIME Calculations: If we have 230v RMS @ 50 Hz  (NZ Supply) Peak  = 230v / .707  =  325V RMS 230v 50Hz 325v
VOLTAGE TIME Calculations: If we have 230v RMS @ 50 Hz  (NZ Supply) Peak  = 230v / .707  =  325V Peak to Peak = 325v + 325v =  650v RMS 230v 50Hz 325v
VOLTAGE TIME Calculations: 50 Hz , means we have 50 cycles per second So 1 cycle = 1sec/ 50Hz =  20ms RMS 230v 50Hz 325v 20ms
VOLTAGE TIME Calculations: Instantaneous Value What is the value after 13ms? RMS 230v 50Hz 325v 20ms
VOLTAGE TIME ,[object Object],[object Object],[object Object],RMS 230v 50Hz 325v 20ms
VOLTAGE TIME ,[object Object],[object Object],[object Object],[object Object],RMS 230v 50Hz 325v 20ms
VOLTAGE TIME ,[object Object],[object Object],[object Object],[object Object],[object Object],RMS 230v 50Hz 325v 20ms
VOLTAGE TIME Calculations: Instantaneous Value What is the value at 234 deg RMS 230v 50Hz 325v 20ms 13ms
VOLTAGE TIME Calculations: Instantaneous Value What is the value at 234 deg V = sin 234 x peak RMS 230v 50Hz 325v 20ms 13ms
VOLTAGE TIME Calculations: Instantaneous Value What is the value at 234 deg V = sin 234 x peak V = - .809 x 325v RMS 230v 50Hz 325v 20ms 13ms
VOLTAGE TIME Calculations: Instantaneous Value What is the value at 234 deg V = sin 234 x peak V = - .809 x 325v V = - 262v RMS 230v 50Hz 325v 20ms 13ms -262V

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