• Part: BYM357X
  • Description: Damper-Modulator fast/ high-voltage
  • Manufacturer: NXP Semiconductors
  • Size: 50.79 KB
Download BYM357X Datasheet PDF
NXP Semiconductors
BYM357X
BYM357X is Damper-Modulator fast/ high-voltage manufactured by NXP Semiconductors.
FEATURES - Low forward volt drop - Fast switching - Soft recovery characteristic - High thermal cycling performance - Isolated mounting tab SYMBOL damper modulator QUICK REFERENCE DATA DAMPER VR=1500 V VF ≤ 1.3 V IF(peak) =7 A MODULATOR VR=600 V VF ≤ 1.03 V IF(peak) = 7 A IFSM ≤ 70 A trr ≤ 60 ns IFSM ≤ 60 A trr ≤ 300 ns GENERAL DESCRIPTION bined damper and modulator diodes in an isolated plastic envelope for horizontal deflection in colour TV and PC monitors. The BYM357X contains diodes with performance characteristics designed specifically for applications from 16k Hz to 70k Hz The BYM357X series is supplied in the conventional leaded SOT186A package. PINNING PIN 1 2 3 DESCRIPTION damper cathode mon anode/cathode modulator anode. SOT186A case 1 2 3 LIMITING VALUES Tj = 25 ˚C unless otherwise stated DAMPER SYMBOL VRSM VRRM VRWM IF(peak) IF(RMS) IFSM PARAMETER Peak non-repetitive reverse voltage. Peak repetitive reverse voltage Crest working reverse voltage Peak forward current RMS forward current Peak non-repetitive forward current 31-70 k Hz monitor. sinusoidal;a=1.57 t = 10 ms t = 8.3 ms sinusoidal;with reapplied VRWM(MAX) CONDITIONS MIN MAX 1500 1500 1300 7 15.7 60 66 MODULATOR MIN MAX 600 600 600 7 14.1 70 77 UNIT V V V A A A A Tstg TJ Storage temperature Operating junction temperature -40 - 150 150 -40 - 150 150 ˚C ˚C February 2000 Rev 1.100 Philips Semiconductors Product specification Damper-Modulator fast, high-voltage ISOLATION LIMITING VALUE & CHARACTERISTIC Ths = 25 ˚C unless otherwise specified SYMBOL Visol PARAMETER R.M.S. isolation voltage from all three terminals to external heatsink CONDITIONS f = 50-60 Hz; sinusoidal waveform; R.H. ≤ 65% ; clean and dustfree MIN. TYP. - BYM357X MAX. 2500 UNIT V Cisol Capacitance from T2 to external f = 1 MHz...