SF51 MCC | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 2

Technical content

Features

  • Superfast recovery times-epitaxial construction
  • Low forward voltage, high current capability
  • Low leakage
  • High surge capability Maximum Ratings
  • Operating Junction Temperature: -55°C to +150°C
  • Storage Temperature: -55°C to +150°C MCC Part Number Maximum Recurrent Peak Reverse Voltage Maximum RMS Voltage Maximum DC Blocking Voltage SF51 50V 35V 50V SF52 100V 70V 100V SF53 150V 105V 150V SF54 200V 140V 200V SF35 300V 210V 300V SF56 400V 280V 400V Electrical Characteristics @ 25°C Unless Otherwise Specified Average Forward Current I F(AV) 5.0A TA = 55°C Peak Forward Surge Current I FSM 150A 8.3ms, half sine Maximum Instantaneous Forward Voltage SF51-SF54 SF55-SF56 V F 0.95V 1.25V Maximum DC Reverse Current At Rated DC Blocking Voltage I R 5.0uA 300uA TA = 25°C TA = 125°C Typical Junction Capacitance C J 45pF Measured at 1.0MHz, V R=4.0V Maximum Reverse Recovery Time T RR 35nS IF=0.5A, IR=1.0A, IRR=0.25A Pulse Test: Pulse width 300 usec, Duty cycle 1%. A B C D D Cathode Mark DIMENSIONS INCHES MM DIM MIN MAX MIN MAX NOTE C .048 .052 1.20 1.30 DO-201AD www.mccsemi.com /G01/G02/G03/G04/G05/G06/G07/G05/G08/G08/G09/G04/G03/G02 /G0A/G0B/G06/G07omponents

21201 Itasca Street Chatsworth

/G07/G18/G06/G19/G0F/G1A/G0F/G0F /G1B/G15/G05/G1C/G09/G1D/G06/G1E/G1F/G0F/G1F/G20/G06/G21/G10/G0F/G22/G23/G19/G1A/G1A /G24/G0A/G25/G1D/G06/G06 /G06/G1E/G1F/G0F/G1F/G20/G06/G21/G10/G0F/G22/G23/G19/G1A/G19 MCC IFM = 5.0A; TA = 25°C

  • Maximum Thermal Resistance; 25°C/W Junction To Ambient SF57 600V 420V 600V SF57 1.70V

www.mccsemi.com MCCSF51 thru SF57 N O T E :1 .R is e T im e = 7 n s m a x . In p u t Im p e d a n c e = 1 m e g o h m . 2 2 p F 2 .R is e T im e = 1 0 n s m a x . S o u r c e Im p e d a n c e = 5 0 O h m s tr r +0.5A -0.25 -1.0 S E T T IM E 1 c m B A S E F O R 5 0 n s /c m 8 .0 6 .0 4 .0 2 .0 50 75 100 125 150 175 200 O N H E A T S IN K O N P C B A M B IE N T T E M P E R A T U R E , ¢J F ig . 1 - R EVE R SE R E C O VE R Y T IM E CH A R A C T E R IS T IC A ND T ES T C IRCU IT D IA G R A M F ig . 2 - M AX IM U M AVE R A G E F O R W A RD CURR E N T R A T IN G 5.0 4.0 3.0 2.0 1.0 0 50 100 150 C A S E T E M P E R A T U R E , ¢J 100 0 .1 0 .01 SF57 SF51-54 SF55-56 IN S T A N T A N E O U S F O R W A R D V O L T A G E , V O L T S F ig . 3 - M AX IM U M A VE R A G E F O R W A RD CCURR E N T R A T IN G F ig . 4 -F O R W A RD CURR E N T D E R A T IN G CUR VE 200 150 125 1 5 10 50 100 8 .3 m s S IN G L E H A L F S IN E W A V E J E D E C M E T H O D N U M B E R O F C Y C L E S A T 6 0 H z 100 1 10 100 T J = 2 5 ¢J f = 1 .0 M H z V s ig = 5 0 m V p - p R E V E R S E V O L T A G E , V O L T S F ig . 5 - M AX IM U M N O N - R EPE T IT IVE S UR G E CURR E N T F ig . 6 - T Y P IC A L J UNC T IO N C APA C IT A NC E A VERAGE FORWARD CURRENT (10)-AMP (10)-AAV P E AK FORWARD SURGE CURRENT , AMPERES JUNCTION CAP ACIT ANCE, pF A V ERAGE FORWARD CURRENT , AMPERES IN S T ANT ANEOUS FORWARD CURRENT AMPERES