DISCRETE SEMICONDUCTORS DATA SHEET M3D350 BY8200 series Ultra fast high-voltage soft-recovery controlled avalanche rectifiers Product specification 1998 Jul 16 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series FEATURES DESCRIPTION • Plastic package Plastic package, using glass passivation and a high temperature alloyed construction. • Glass passivated • High maximum operating temperature • Low leakage current This package is hermetically sealed and fatigue free as coefficients of • Excellent stability • 40% overvoltage allowed during 5 sec expansion of all used parts are matched. The package should be used in an insulating medium such as resin, oil or SF6 gas. k halfpage handbook, • Guaranteed avalanche energy absorption capability • Very low reverse recovery time • Soft-recovery switching characteristics a MAM402 Fig.1 Simplified outline (SOD118A/B) and symbol. • Compact construction. MARKING APPLICATIONS Cathode band colour codes • For colour television and monitors up to 90 kHz (indication) TYPE NUMBER PACKAGE CODE • High-voltage applications for: BY8206 SOD118A green green BY8208 SOD118A red green BY8210 SOD118B violet green BY8212 SOD118B orange green – multipliers – diode-split-transformers (FBT’s). INNER BAND OUTER BAND LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL VRRM1 PARAMETER CONDITIONS 1998 Jul 16 MAX. UNIT repetitive peak reverse voltage − BY8206 VRRM2 MIN. 6 kV BY8208 − 8 kV BY8210 − 10 kV BY8212 − 12 kV repetitive peak reverse voltage max. 5 seconds BY8206 − 8.4 kV BY8208 − 11.2 kV BY8210 − 14.0 kV BY8212 − 16.8 kV 2 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers SYMBOL IF(AV) BY8200 series PARAMETER average forward current CONDITIONS averaged over any 20 ms period; see Figs 2 to 5 MIN. MAX. UNIT − 10 mA BY8208 − 5 mA BY8210 − 5 mA − 5 mA − 500 mA −65 +175 °C BY8206 −65 +160 °C BY8208 −65 +155 °C BY8210 −65 +150 °C BY8212 −65 +145 °C BY8206 BY8212 IFRM repetitive peak forward current Tstg storage temperature Tj junction temperature note 1 Note 1. Withstands peak currents during flash-over in a picture tube. ELECTRICAL CHARACTERISTICS Tj = 25 °C unless otherwise specified. SYMBOL VF PARAMETER MIN. TYP. MAX. BY8206 − − 19 V BY8208 − − 23 V forward voltage CONDITIONS UNIT IF = 10 mA; see Figs 6 to 9 BY8210 − − 29 V BY8212 − − 35 V 3 µA IR reverse current VR = VRRM1; Tj = 120 °C − − Qr recovery charge when switched from IF = 100 mA to VR ≥ 100 V and dIF/dt = −200 mA/µs; see Fig 10 − 0.2 − nC trr reverse recovery time when switched from IF = 2 mA to IR = 4 mA; measured at IR = 1 mA; see Fig 11 − − < 45 ns Cd diode capacitance VR = 0 V; f = 1 MHz BY8206 − 0.50 − pF BY8208 − 0.42 − pF BY8210 − 0.35 − pF BY8212 − 0.30 − pF 1998 Jul 16 3 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series GRAPHICAL DATA MBK207 10 MBK208 5 handbook, halfpage handbook, halfpage IF(AV) IF(AV) (mA) (mA) 4 8 3 6 a = 1.57 a = 1.57 2 4 a = 6.32 a = 6.32 1 2 0 0 0 40 80 120 0 160 200 Tamb (°C) 40 80 120 160 200 Tamb (°C) BY8206. a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W. a = 6.32: line output transformer application; see Fig 12. a = 1.57: half-sinewave. BY8208. a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W. a = 6.32: line output transformer application; see Fig 12. a = 1.57: half-sinewave. Fig.2 Fig.3 Maximum permissible average forward current as a function of ambient temperature. MDA815 5 Maximum permissible average forward current as a function of ambient temperature. MDA816 5 handbook, halfpage handbook, halfpage IF(AV) IF(AV) (A) a = 6.32 (A) a = 1.57 a = 6.32 4 4 3 3 2 2 1 1 0 a = 1.57 0 0 40 80 120 160 200 Tamb (°C) 0 40 80 120 160 200 Tamb (°C) BY8210. a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W. a = 6.32: line output transformer application; see Fig 12. a = 1.57: half-sinewave. BY8212. a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W. a = 6.32: line output transformer application; see Fig 12. a = 1.57: half-sinewave. Fig.4 Fig.5 Maximum permissible average forward current as a function of ambient temperature. 1998 Jul 16 4 Maximum permissible average forward current as a function of ambient temperature. Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series MDA827 200 IF handbook, halfpage (mA) (mA) 160 160 120 120 80 80 40 40 0 0 20 40 VF (V) 0 60 0 BY8206. Dotted line: Tj = Tj max. Solid line: Tj = 25 °C. Fig.6 MDA828 200 IF handbook, halfpage 20 40 60 VF (V) 80 BY8208. Dotted line: Tj = Tj max. Solid line: Tj = 25 °C. Forward current as a function of forward voltage; typical values. Fig.7 MDA829 200 IF Forward current as a function of forward voltage; typical values. MDA830 200 IF handbook, halfpage handbook, halfpage (mA) 160 (mA) 160 120 120 80 80 40 40 0 0 0 20 40 60 80 100 VF (V) 0 40 BY8210. Dotted line: Tj = Tj max. Solid line: Tj = 25 °C. BY8212. Dotted line: Tj = Tj max. Solid line: Tj = 25 °C. Fig.8 Fig.9 Forward current as a function of forward voltage; typical values. 1998 Jul 16 5 80 120 160 200 VF (V) Forward current as a function of forward voltage; typical values. Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series handbook, halfpage I F dI F dt 10% t Qr 90% IR tf MRC129 - 1 Fig.10 Reverse recovery definitions. handbook, full pagewidth MBH420 IF (mA) 2 0.1 µF trr 2 mA 50 Ω 0 1 IR (mA) 4 Rise time oscilloscope: tr < 7 ns. Generator pulse width: 1.0 µs. Fig.11 Test circuit and reverse recovery time waveform and definition. 1998 Jul 16 6 t Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series APPLICATION INFORMATION VR handbook, full pagewidth DUT VI VR Io Vo V RW T nom Fig.12 Typical operation circuit and voltage waveform. 1998 Jul 16 7 VRRM t MAM105 - 1 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers PACKAGE OUTLINES BY8200 series Hermetically sealed plastic package; axial leaded; 2 leads SOD118A (1) k D a b G L L DIMENSIONS (mm are the original dimensions) UNIT mm b D G 0.5 2.6 2.4 6.7 6.3 L min. 31 0 2.5 5 mm scale Note 1. The marking bands indicate the cathode. OUTLINE VERSION REFERENCES IEC JEDEC EIAJ ISSUE DATE 98-05-28 SOD118A 1998 Jul 16 EUROPEAN PROJECTION 8 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series Hermetically sealed plastic package; axial leaded; 2 leads SOD118B (1) k D a b G L L DIMENSIONS (mm are the original dimensions) UNIT b D G L min. mm 0.5 2.6 2.4 10.5 9.5 29 Note 1. The marking bands indicate the cathode. OUTLINE VERSION SOD118B 1998 Jul 16 REFERENCES IEC JEDEC EIAJ 9 0 2.5 5 mm scale EUROPEAN PROJECTION ISSUE DATE 98-05-28 Philips Semiconductors Product specification Ultra fast high-voltage soft-recovery controlled avalanche rectifiers BY8200 series DEFINITIONS Data Sheet Status Objective specification This data sheet contains target or goal specifications for product development. Preliminary specification This data sheet contains preliminary data; supplementary data may be published later. Product specification This data sheet contains final product specifications. 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. 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