BYV36 NJSEMI | Alldatasheet
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Technical content
£ii£t io aucti, One.. 20 STERN AVE. SPRINGFIELD, NEW JERSEY 07081 U.S.A. Fast soft-recovery controlled avalanche rectifiers TELEPHONE: (973) 376-2922 (212)227-6005 FAX: (973) 376-8960 BYV36 series
FEATURES
- Glass passivated
- High maximum operating temperature
- Low leakage current
- Excellent stability
- Guaranteed avalanche energy absorption capability
- Available in ammo-pack.
DESCRIPTION
Rugged glass SOD57 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. -M- Fig.1 Simplified outline (SOD57) and symbol. LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL VRRM VR Ip(AV) Ip(AV) PARAMETER repetitive peak reverse voltage BYV36A BYV36B BYV36C BYV36D BYV36E BYV36F BYV36G continuous reverse voltage BYV36A BYV36B BYV36C BYV36D BYV36E BYV36F BYV36G average forward current BYV36A to C BYV36D and E BYV36F and G average forward current BYV36A to C BYV36D and E BYV36F and G CONDITIONS Ttp = 60 °C; lead length = 10 mm; see Figs 2; 3 and 4 averaged over any 20 ms period; see also Figs 14; 15 and 16 Tamb = 60 °C; PCB mounting (see Fig. 25); see Figs 5; 6 and 7 averaged over any 20 ms period; see also Figs 14; 15 and 16 MIN. MAX. 200 400 600 800 1000 1200 1400 200 400 600 800 1000 1200 1400 1.6 1.5 1.5 0.87 0.81 0.81 UNIT V V V V V V V V V V V V V V A A A A A A NJ Semi-Cooductors reserves the right to change test conditions, parameter limits and package dimensions without notice. Information furnished by NJ Semi-Conductors is believed to be both accurate and reliable at the time of going to press. However, NJ Semi-Conductors assumes no responsibility for any errors or omissions discovered in its use. NJ Semi-Conductors encourages customers to verify that datasheets are current before placing orders. Quality Semi-Conductors
controlled avalanche rectifiers BYV36 series SYMBOL IFRM IFRM IFSM ERSM Tstg Tj PARAMETER repetitive peak forward current BYV36A to C BYV36D and E BYV36F and G repetitive peak forward current BYV36A to C BYV36D and E BYV36F and G non-repetitive peak forward current non-repetitive peak reverse avalanche energy storage temperature junction temperature CONDITIONS Ttp = 60 °C; see Figs 8; 9 and 10
- Tamb = 60 °C; see Figs 11; 12 and 13 t = 10 ms half sine wave; Tj = Tj max prior to surge; VR = VRRMmax L = 120 mH; Tj = Tj max prior to surge; inductive load switched off see Figs 17 and 18 MIN. -65 -65 MAX. +175 +175 UNIT A A A A A A A mj
ELECTRICAL CHARACTERISTICS
TJ = 25 °C unless otherwise specified. SYMBOL VF VF V(BR)R IR PARAMETER forward voltage BYV36A to C BYV36D and E BYV36F and G forward voltage BYV36A to C BYV36D and E BYV36F and G reverse avalanche breakdown voltage BYV36A BYV36B BYV36C BYV36D BYV36E BYV36F BYV36G reverse current CONDITIONS IF = 1 A; TJ = Tj max; see Figs 19; 20 and 21 IF = 1 A; see Figs 19; 20 and 21 IR = 0.1 mA VR = VRRMmax; see Fig.22 VR ~ VRRMrnaxl Tj= 1 65 °C; see Fig. 22 MIN. 300 500 700 900 1100 1300 1500 TYP. MAX. 1.00 1.05 1.05 1.35 1.45 1.45 150 UNIT V V V V V V V V V V V V V HA MA
controlled avalanche rectifiers BYV36 series SYMBOL trr cd diR dt PARAMETER reverse recovery time BYV36A to C BYV36D and E BYV36F and G diode capacitance BYV36A to C BYV36D and E BYV36F and G maximum slope of reverse recovery current BYV36A to C BYV36D and E BYV36F and G CONDITIONS when switched from !F = 0.5AtolR=1 A; measured at IR = 0.25 A; see Fig. 26 f = 1 MHz; VR = 0 V; see Figs 23 and 24 when switched from IF = 1 A to VR > 30 V and dlp/dt = -1 A/us; see Fig. 27 MIN. TYP. MAX. 100 150 250 UNIT ns ns ns pF pF pF A/us A/us A/us THERMAL CHARACTERISTICS SYMBOL Rth j-tp Rth j-a PARAMETER thermal resistance from junction to tie-point thermal resistance from junction to ambient CONDITIONS lead length = 10 mm note 1 VALUE 100 UNIT K/W K/W