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DISCRETE SEMICONDUCTORS DATA SHEET book, halfpage M3D181 BYX90G High-voltage soft-recovery controlled avalanche rectifier Product specification Supersedes data of June 1996 1996 Sep 26 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier FEATURES * Glass passivated * High maximum operating temperature * Low leakage current * Excellent stability * Soft-recovery switching characteristics * Guaranteed avalanche energy absorption capability. APPLICATIONS * High-voltage rectification at high frequencies * Sub-component for very high voltage rectifiers, for example, in X-ray and radar equipment. DESCRIPTION Rugged glass package, using a high temperature alloyed construction. This package is hermetically sealed and fatigue free as coefficients of expansion of all used parts are matched. BYX90G The package is designed to be used in an insulating medium such as resin, oil or SF6 gas. handbook, halfpage The cathode is marked by a black band on the body. Fig.1 Simplified outline (SOD83A) and symbol. k a MSA480 LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL VRRM VRWM IF(AV) PARAMETER repetitive peak reverse voltage crest working reverse voltage average forward current averaged over any 20 ms period; Toil = 45 C; see Fig.2; see also Fig.3 t = 10 ms half sinewave; Tj = Tj max prior to surge; VR = VRWMmax; see Fig.4 t = 10 s; triangular pulse; Tj = Tj max prior to surge CONDITIONS MIN. - - - MAX. 7.5 6 550 UNIT kV kV mA IFRM IFSM repetitive peak forward current non-repetitive peak forward current - - 5 20 A A PRSM Tstg Tj non-repetitive peak reverse power dissipation storage temperature junction temperature - -65 -65 5 +165 +165 kW C C 1996 Sep 26 2 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier ELECTRICAL CHARACTERISTICS Tj = 25 C; unless otherwise specified. SYMBOL VF V(BR)R IR trr PARAMETER forward voltage reverse avalanche breakdown voltage reverse current reverse recovery time IR = 0.1 mA VR = VRWMmax; Tj = Tj max when switched from IF = 0.5 A to IR = 1 A; measured at IR = 0.25 A; see Fig.7 CONDITIONS IF = 2 A; see Fig.5 MIN. - 8 - - TYP. - - - - BYX90G MAX. 14.5 - 50 350 V UNIT kV A ns THERMAL CHARACTERISTICS SYMBOL Rth j-o Note 1. For more information please refer to the "General Part of associated Handbook". PARAMETER thermal resistance from junction to oil CONDITIONS note 1; see also Fig.6 VALUE 20 UNIT K/W 1996 Sep 26 3 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier GRAPHICAL DATA handbook, halfpage BYX90G 600 MBH403 IF(AV) (mA) 400 handbook, halfpage 6 MBH404 P (W) 4 a=3 2.5 2 1.57 1.42 200 2 0 0 100 Toil (C) 200 0 0 200 400 IF(AV) (mA) 600 a = 1.57; = 0.5; VR = VRWMmax. a = IF(RMS)/IF(AV); = 0.5; VR = VRWMmax. Fig.2 Maximum permissible average forward current as a function of oil temperature (including losses due to reverse leakage). Fig.3 Maximum steady state power dissipation (forward plus leakage losses) as a function of average forward current. handbook, halfpage 20 MBH405 handbook, halfpage 6 MBH406 IFSM (A) IF (A) 4 10 2 1 10-2 10-1 1 10 102 duration (s) 0 0 8 16 VF (V) 24 50 Hz half sinewave current burst. Tj = 165 C prior to surge. VR = VRWMmax. Dotted lines: Tj = 165 C. Solid line: Tj = 25 C. Fig.4 Maximum non-repetitive peak forward current as a function of burst duration. Fig.5 Forward current as a function of maximum forward voltage. 1996 Sep 26 4 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier BYX90G 102 handbook, halfpage MBH391 Zth (K/W) 10 1 10-2 10-1 1 10 time (s) 102 Fig.6 Thermal impedance in oil as a function of time. handbook, full pagewidth DUT + IF (A) 0.5 1 t rr 10 25 V 50 0 0.25 0.5 IR (A) 1.0 t MAM057 Input impedance oscilloscope: 1 M, 22 pF; tr 7 ns. Source impedance: 50 ; tr 15 ns. Fig.7 Test circuit and reverse recovery time waveform and definition. 1996 Sep 26 5 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier APPLICATION INFORMATION Typical 3-phase bridge application information BYX90G handbook, halfpage 6 MBH414 Ibridge (A) handbook, halfpage 4 Ibridge 2 T MBH415 0 101 102 103 T (ms) 104 Fig.8 Maximum permissible output current in a 3-phase rectifier bridge with a minimum time between exposures of 20 s; Toil = 50 C. 1996 Sep 26 6 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier BYX90G handbook, full pagewidth 5 MBH416 Ibridge (IFRM) (A) 4 = 10% 20% 3 40% 60% 80% 2 100% 1 0 0 0.25 0.5 0.75 1 1.25 tp (s) 1.5 handbook, halfpage Ibridge tp trep exposure time (T) = tp/trep x 100% time between exposures >20 s MBH417 Fig.9 Maximum current through a 3-phase bridge rectifier versus pulse duration; exposure time T = 1 s; Toil = 50 C. 7 1996 Sep 26 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier BYX90G handbook, full pagewidth 5 MBH418 Ibridge (IFRM) (A) 4 3 = 10% 20% 40% 2 60% 80% 100% 1 0 0 0.5 1 1.5 tp (s) 2 handbook, halfpage Ibridge tp trep exposure time (T) = tp/trep x 100% time between exposures >20 s MBH417 Fig.10 Maximum current through a 3-phase bridge rectifier versus pulse duration; exposure time T = 3 s; Toil = 50 C. 1996 Sep 26 8 Philips Semiconductors Product specification High-voltage soft-recovery controlled avalanche rectifier PACKAGE OUTLINE BYX90G 1/1 page = 296 mm (Datasheet) 4.5 max 30.7 min Dimensions in mm. The marking band indicates the cathode. , 7.5 max 1.35 max 27 mm 30.7 min MSA219 - 2 Fig.11 SOD83A. DEFINITIONS Data Sheet Status Objective specification Preliminary specification Product specification Limiting values Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the Characteristics sections of the specification is not implied. Exposure to limiting values for extended periods may affect device reliability. Application information Where application information is given, it is advisory and does not form part of the specification. LIFE SUPPORT APPLICATIONS These products are not designed for use in life support appliances, devices, or systems where malfunction of these products can reasonably be expected to result in personal injury. Philips customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such improper use or sale. This data sheet contains target or goal specifications for product development. This data sheet contains preliminary data; supplementary data may be published later. This data sheet contains final product specifications. 1996 Sep 26 9 |
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