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BCR16KM-12LC Datasheet(PDF) 2 Page - Renesas Technology Corp |
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BCR16KM-12LC Datasheet(HTML) 2 Page - Renesas Technology Corp |
2 / 8 page BCR16KM-12LC Rev.2.00, Dec.17.2004, page 2 of 7 Parameter Symbol Ratings Unit Conditions RMS on-state current IT (RMS) 16 A Commercial frequency, sine full wave 360° conduction, Tc = 75 °C Surge on-state current ITSM 96 A 60Hz sinewave 1 full cycle, peak value, non-repetitive I 2t for fusing I 2t 38 A 2s Value corresponding to 1 cycle of half wave 60Hz, surge on-state current Peak gate power dissipation PGM 5 W Average gate power dissipation PG (AV) 0.5 W Peak gate voltage VGM 10 V Peak gate current IGM 2 A Junction temperature Tj – 40 to +150 °C Storage temperature Tstg – 40 to +150 °C Mass — 2.0 g Typical value Isolation voltage Viso 2000 V Ta = 25 °C, AC 1 minute, T1·T2·G terminal to case Notes: 1. Gate open. Electrical Characteristics Parameter Symbol Min. Typ. Max. Unit Test conditions Repetitive peak off-state current IDRM — — 2.0 mA Tj = 125 °C, VDRM applied On-state voltage VTM — — 1.75 V Tc = 25 °C, ITM = 25 A, Instantaneous measurement Ι VFGTΙ — — 1.5 V ΙΙ VRGTΙ — — 1.5 V Gate trigger voltage Note2 ΙΙΙ VRGTΙΙΙ — — 1.5 V Tj = 25 °C, VD = 6 V, RL = 6 Ω, RG = 330 Ω Ι IFGTΙ — — 50 mA ΙΙ IRGTΙ — — 50 mA Gate trigger current Note2 ΙΙΙ IRGTΙΙΙ — — 50 mA Tj = 25 °C, VD = 6 V, RL = 6 Ω, RG = 330 Ω Gate non-trigger voltage VGD 0.2 — — V Tj = 125 °C, VD = 1/2 VDRM Thermal resistance Rth (j-c) — — 3.4 °C/W Junction to case Note3 Critical-rate of rise of off-state commutating voltage Note4 (dv/dt)c 10 — — V/ µs Tj = 125 °C Notes: 2. Measurement using the gate trigger characteristics measurement circuit. 3. The contact thermal resistance Rth (c-f) in case of greasing is 0.5°C/W. 4. Test conditions of the critical-rate of rise of off-state commutating voltage is shown in the table below. Test conditions Commutating voltage and current waveforms (inductive load) 1. Junction temperature Tj = 125 °C 2. Rate of decay of on-state commutating current (di/dt)c = – 8 A/ms 3. Peak off-state voltage VD = 400 V Supply Voltage Time Time Time Main Current Main Voltage (di/dt)c VD (dv/dt)c |
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