• Semiduken DKMT110-16-M13 Thyristor Module | 110A 1600V Dual SCR
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  • Semiduken DKMT110-16-M13 Thyristor Module | 110A 1600V Dual SCR

    Semiduken DKMT110-16-M13 is a high-performance thyristor module rated at 110A and 1600V. It features isolated mounting, pressure contact design, and high power cycling endurance, making it ideal for AC/DC motor drives, rectifiers, and PWM inverter DC supplies.
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Description
Semiduken DKMT110-16-M13 is a high-performance thyristor module rated at 110A and 1600V. It features isolated mounting, pressure contact design, and high power cycling endurance, making it ideal for AC/DC motor drives, rectifiers, and PWM inverter DC supplies.

Semiduken DKMT110-16-M13 Thyristor Module

  • Model: DKMT110-16-M13
  • Brand: Semiduken
  • Type: Dual Thyristor Module
  • Average On-state Current (IT(AV)): 110 A @ Tc = 85°C
  • RMS On-state Current (IT(RMS)): 173 A
  • Surge Current (ITSM): 2500 A (10 ms half sine)
  • I²t for Fusing Coordination: 31.2 kA²s
  • Repetitive Peak Off-state Voltage (VDRM): 1600 V
  • Repetitive Peak Reverse Voltage (VRRM): 1600 V
  • Repetitive Peak Current (IDRM / IRRM): Max. 12 mA
  • Threshold Voltage (VTO): Max. 0.8 V
  • Peak On-state Voltage (VTM): Max. 1.83 V @ ITM = 330 A
  • On-state Slope Resistance (rT): Max. 2.29 mΩ
  • Holding Current (IH): 10–150 mA
  • Critical dv/dt: Max. 800 V/μs
  • Critical di/dt: Max. 100 A/μs
  • Gate Trigger Current (IGT): 30–150 mA
  • Gate Trigger Voltage (VGT): 0.7–2.5 V
  • Non-trigger Gate Voltage (VGD): Min. 0.2 V
  • Thermal Resistance Junction to Case (Rth(j-c)): Max. 0.25 °C/W
  • Thermal Resistance Case to Heatsink (Rth(c-h)): Max. 0.15 °C/W
  • Isolation Voltage: Min. 2500 V AC
  • Terminal Torque (M5): Typ. 4 N·m
  • Mounting Torque (M6): Typ. 6 N·m
  • Storage Temperature: -40°C to +125°C
  • Weight: 110 g
  • Typical Applications: AC/DC motor drives, rectifiers, DC supply for PWM inverter
  • Case Dimensions: 80 × 30 × 30 mm
  • Mounting Base: Isolated
  • Design: Pressure contact with enhanced power cycling
  • Conduction Angle Performance: Refer to Page 3 Graphs (Fig. 3–6)
  • Thermal Impedance: See Fig. 2 (Page 3)
  • Surge Current vs Cycles: See Fig. 7 (Page 4)
  • Gate Trigger Curves: See Fig. 10 (Page 4)
  • Baseplate: Ceramic isolated, optimized for heatsink contact
  • Connection: M13 Type Terminals
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