IT (AV) A VDRM V JEDEC : TO-92. Conditions A IT (AV) Commercial frequency, sine half wave, 180 conduction, Ta=30 C A ITSM
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1 CRM-8 GLSS PSSITION TYPE CRM-8 OUTLINE DRWING φ. MX. Dimensions in mm T TERMINL T TERMINL GTE TERMINL OLTGE CLSS TYPE NME. MX. MIN CIRCUMSCRIBE CIRCLE φ MX IT ().... DRM... IGT...µ JEDEC : TO-9 PPLICTION Strobe flasher MXIMUM RTINGS RRM Repetitive peak reverse voltage oltage class 8 RSM R () DRM D () Non-repetitive peak reverse voltage reverse voltage Repetitive peak off-state voltage off-state voltage IT (RMS) RMS on-state current Conditions Ratings. IT () verage on-state current Commercial frequency, sine half wave, 8 conduction, Ta= C. ITSM Surge on-state current Hz sine half wave full cycle, peak value, non-repetitive I t I t for fusing alue corresponding to cycle of half wave Hz, surge on-state current. s PGM Peak gate power dissipation. W PG () FGM verage gate power dissipation Peak gate forward voltage. W RGM IFGM Peak gate reverse voltage Peak gate forward current. Tj Junction temperature ~ + C Tstg Storage temperature Weight Typical value ~ +. C g. With gate to cathode resistance RGK=kΩ.
2 CRM-8 GLSS PSSITION TYPE ELECTRICL CHRCTERISTICS Test conditions Min. Limits Typ. Max. IRRM IDRM TM GT GD IGT IH Rth (j-a) Repetitive peak reverse current Repetitive peak off-state current On-state voltage Gate trigger voltage Gate non-trigger voltage Gate trigger current Holding current Thermal resistance Tj= C, RRM applied Tj= C, DRM applied, RGK=kΩ Tc= C, ITM=., instantaneous value Tj= C, D=, IT=. Tj= C, D=/DRM, RGK=kΩ Tj= C, D=, IT=. Tj= C, D=, RGK=Ω Junction to ambient m m µ m C/W. If special values of IGT are required, choose at least two items from those listed in the table below. (Example: B, BC) Item B C IGT (µ) ~ ~ ~ The above values do not include the current flowing through the kω resistance between the gate and cathode.. IGT, GT measurement circuit. IGS IGT RGK kω GT SWITCH TUT Ω SWITCH : IGT measurement SWITCH : GT measurement (Inner resistance of voltage meter is about kω) PERFORMNCE CURES ON-STTE CURRENT () MXIMUM ON-STTE CHRCTERISTICS Ta = C SURGE ON-STTE CURRENT () RTED SURGE ON-STTE CURRENT 9 8 ON-STTE OLTGE () CONDUCTION TIME (CYCLES T Hz)
3 CRM-8 GLSS PSSITION TYPE GTE OLTGE () GTE CHRCTERISTICS FGM = PGM =.W PG() =.W GT =.8 IGT = µ (Tj = C) GD =. IFGM =. (%) GTE TRIGGER CURRENT (Tj = t C) GTE TRIGGER CURRENT (Tj = C) GTE TRIGGER CURRENT S. 8 GTE CURRENT (m) (%) GTE CURRENT (Tj=t C) GTE CURRENT (Tj= C) 8 8 GTE CURRENT S. # IGT ( C) µ # 9µ See 8 GTE TRIGGER OLTGE () GTE TRIGGER OLTGE S.,,,,,,,,, DISTRIBUTION TYPICL EXMPLE,,,,,,. 8 TRNSIENT THERML IMPEDNCE ( C/W) MXIMUM TRNSIENT THERML IMPEDNCE CHRCTERISTICS (JUNCTION TO MBIENT) 8 8 ERGE POWER DISSIPTION (W) MXIMUM ERGE POWER DISSIPTION (SINGLE-PHSE HLF WE) = 8. RESISTIE,. INDUCTIE LODS.... TIME (s) ERGE ON-STTE CURRENT ()
4 CRM-8 GLSS PSSITION TYPE MBIENT TEMPERTURE ( C) LLOWBLE MBIENT TEMPERTURE S. ERGE ON-STTE CURRENT (SINGLE-PHSE HLF WE) 8 = RESISTIE, INDUCTIE LODS NTURL CONECTION. ERGE POWER DISSIPTION (W) MXIMUM ERGE POWER DISSIPTION (SINGLE-PHSE FULL WE) =... RESISTIE LODS..... ERGE ON-STTE CURRENT () ERGE ON-STTE CURRENT () MBIENT TEMPERTURE ( C) LLOWBLE MBIENT TEMPERTURE S. ERGE ON-STTE CURRENT (SINGLE-PHSE FULL WE) 8 = RESISTIE LODS NTURL CONECTION. ERGE POWER DISSIPTION (W) MXIMUM ERGE POWER DISSIPTION (RECTNGULR WE) = 9 8. RESISTIE,. INDUCTIE LODS..... ERGE ON-STTE CURRENT () ERGE ON-STTE CURRENT () MBIENT TEMPERTURE ( C) LLOWBLE MBIENT TEMPERTURE S. ERGE ON-STTE CURRENT (RECTNGULR WE) 8 RESISTIE, INDUCTIE LODS NTURL CONECTION.... = 9 8. (%) BREKOER OLTGE (Tj = t C) BREKOER OLTGE (Tj = C) 8 BREKOER OLTGE S. RGK = kω 8 ERGE ON-STTE CURRENT ()
5 CRM-8 GLSS PSSITION TYPE (%) BREKOER OLTGE (RGK = rkω) BREKOER OLTGE (RGK = kω) 8 BREKOER OLTGE S. GTE TO CTHODE RESISTNCE Tj = C (%) BREKOER OLTGE (dv/dt = v/µs) BREKOER OLTGE (dv/dt = /µs) BREKOER OLTGE S. RTE OF RISE OF OFF-STTE OLTGE 8 IGT ( C) = µ # IGT ( C) = µ Tj = C, RGK = kω # GTE TO CTHODE RESISTNCE (kω) RTE OF RISE OF OFF-STTE OLTGE (/µs) HOLDING CURRENT (m) HOLDING CURRENT S. DISTRIBUTION Tj = C IH ( C) = m IGT ( C) = µ,,,,,,,,,,,,, 8 (%) HOLDING CURRENT (RGK = rkω) HOLDING CURRENT (RGK = kω) HOLDING CURRENT S. GTE TO CTHODE RESISTNCE IGT ( C) IH (kω) µ.m # 9µ.8m # Tj = C GTE TO CTHODE RESISTNCE (kω) (%) REPETITIE PEK REERSE OLTGE (Tj=t C) REPETITIE PEK REERSE OLTGE (Tj= C) REPETITIE PEK REERSE OLTGE S. 8 8 (%) GTE TRIGGER CURRENT (tw) GTE TRIGGER CURRENT () GTE TRIGGER CURRENT S. GTE CURRENT PULSE WIDTH IGT ( C) # # µ µ Tj = C GTE CURRENT PULSE WIDTH (µs)
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