• Part: MTC90A
  • Description: Thyristor/Diode Module
  • Category: Diode
  • Manufacturer: Santry
  • Size: 234.25 KB
Download MTC90A Datasheet PDF
Santry
MTC90A
MTC90A is Thyristor/Diode Module manufactured by Santry.
Thyristor/Thyristor Module Thyristor/Diode Module MECHANICAL DESCRIPTION The MTC, MFC module, bines the excellent thermal performances obtained by the usage of exposed direct bonded copper substrate, with advanced pact simple package solution and simplified internal structure with minimized number of interfaces. Features - High voltage - Industrial standard package - Low thermal resistance - Designed and qualified for industrial level - Excellent thermal performances obtained by the usage of exposed direct bonded copper substrate - High surge capability - Easy mounting on heatsink MTC90A/110A MFC90A/110A APPLICATIONS These modules are intended for general purpose high voltage applications such as high voltage regulated power supplies, lighting circuits, temperature and motor speed control circuits, UPS and battery charger. MAJOR RATINGS AND CHARACTERISTICS SYMBOL IT(AV) or IF(AV) ITSM ,IFSM 50 Hz TJm 60 Hz TJm 50 Hz TJm 60 Hz TJm VRRM TStg TJ Range CHARACTERISTICS 90A 90 2,000 2,132 20.40 19.24 600 to 2000 -40 to 125 110A 110 2,400 2,558 29.30 27.63 600 to 2000 -40 to 125 V A UNITS Wenzhou Zhongbao Electric & Electronic Factory .santry..cn T: 86-577-86928695 F:86-577-86926737 Thyristor/Thyristor Module Thyristor/Diode Module ON-STATE CONDUCTION PARAMETER Maximum average on-state current (thyristors) Maximum average forward current (diodes) Maximum peak, one-cycle non-repetitive on-state or forward current SYMBOL TEST CONDITIONS IT(AV) IF(AV) ITSM or IFSM MTC90A/110A MFC90A/110A 90A 90 110A UNITS 110 2,400 2,558 29.30 27.63 V mΩ V A 180?conduction, half sine wave, T C t = 10 ms t = 8.3 ms t = 10 ms t = 8.3 ms 80 % VRRM Sinusoidal half wave, 2,000 initial TJ = TJ reapplied 2,132 maximum 20.40 Initial TJ = TJ No voltage reapplied maximum 19.24 TJ = TJ maximum TJ = TJ maximum 1.26 1.30 Maximum value or threshold voltage Maximum value of on-state slope resistance Maximum peak on-state or forward voltage VT(TO) rt VTM VFM ITM = π x IT(AV)...