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omponents 20736 Marilla Street Chatsworth LLZ2V4 THRU LLZ56
Top Searches for this datasheetomponents 20736 Marilla Street Chatsworth LLZ2V4 THRU LLZ56 500mW Silicon Zener Diodes MINIMELF Cathode Mark Features Hermetically Sealed Glass Package Zener Voltage 2.4V Surface Mount Applications Mechanical Data Case: hermetically sealed glass Polarity: Cathode indicated polarity band Junction ambient thJA :500 (Note:2) Maximum Ratings (Note:1) Symbol Max. Steady State Power Dissipation Junction Temperature Storage Temperature Range TSTG Value Units INCHES .134 .008 .055 DIMENSIONS 3.40 1.40 Electrical Characteristics Unless Otherwise Specified Symbol Max. Forward Voltage IF=200mA Value Unit .142 .016 .059 3.60 1.50 NOTE SUGGESTED SOLDER LAYOUT 0.105 NOTE: 1.Some part number series have lower JEDEC registered ratings. 2.On Board 0.075" 0.030" Revision: www.mccsemi.com 2005/12/22 LLZ2V4-LLZ56 Electrical Characteristics (TL= 30OC Unless Otherwise Noted, Partnumbergroup Partnumber Marking Code Zener Voltage Dynamic Resistance Test Current Reverse Leakage Current 0.04 0.04 0.04 0.04 0.04 0.04 0.04 6.73 6.93 7.15 7.39 7.63 7.88 8.14 8.39 8.66 8.94 9.22 9.44 2.52 2.63 2.75 2.91 3.07 3.22 3.38 3.53 3.695 3.845 4.01 4.16 4.29 4.43 4.57 4.68 4.93 5.07 5.37 5.55 5.73 5.91 6.09 6.27 6.44 6.63 6.83 7.01 7.22 7.45 7.67 7.92 8.19 8.45 8.73 9.01 9.59 10.2 10.44 2000 2000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 1000 LLZ2V4 LLZ2V7 LLZ3V0 LLZ3V3 LLZ3V6 LLZ3V9 LLZ4V3 LLZ2V4A LLZ2V4B LLZ2V7A LLZ2V7B LLZ3V0A LLZ3V0B LLZ3V3A LLZ3V3B LLZ3V6A LLZ3V6B LLZ3V9A LLZ3V9B LLZ4V3A LLZ4V3B LLZ4V3C 2.33 2.43 2.54 2.69 2.85 3.01 3.16 3.32 3.455 3.74 3.89 4.04 4.17 4.44 4.55 4.68 4.81 4.94 5.09 5.28 5.45 5.61 5.78 5.96 6.12 6.29 6.49 6.66 6.85 7.07 7.29 7.53 7.78 8.03 8.29 8.57 8.83 9.12 9.41 9.94 LLZ4V7 LLZ4V7A LLZ4V7B LLZ4V7C LLZ5V1 LLZ5V1A LLZ5V1B LLZ5V1C LLZ5V6 LLZ5V6A LLZ5V6B LLZ5V6C LLZ6V2 LLZ6V2A LLZ6V2B LLZ6V2C LLZ6V8 LLZ6V8A LLZ6V8B LLZ6V8C LLZ7V5 LLZ7V5A LLZ7V5B LLZ7V5C LLZ8V2 LLZ8V2A LLZ8V2B LLZ8V2C LLZ9V1 LLZ9V1A LLZ9V1B LLZ9V1C LLZ10 LLZ10A LLZ10B LLZ10C LLZ10D Revision: www.mccsemi.com 2005/12/22 LLZ2V4-LLZ56 Zener Voltage Dynamic Resistance Test Current Reverse Leakage Current 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 9.67 9.98 10.28 10.6 10.9 11.2 11.5 11.9 12.3 12.8 13.2 13.6 14.1 14.5 14.9 15.4 16.5 17.1 17.7 18.3 18.7 19.1 19.6 20.4 20.9 21.5 22.4 23.7 24.3 25.6 26.3 26.9 27.6 28.2 28.8 29.4 29.9 30.5 31.2 31.7 32.3 10.71 11.05 11.38 11.71 12.03 12.35 12.75 13.21 13.66 14.13 14.62 15.09 15.57 16.04 16.51 17.06 17.7 18.33 18.96 19.59 20.22 20.72 21.2 21.71 22.17 22.63 23.18 23.77 24.31 24.85 25.52 26.26 26.95 27.64 28.39 29.13 29.82 30.51 31.22 31.88 32.5 33.11 33.79 34.49 35.13 35.77 Partnumbergroup Partnumber Marking Code LLZ11 LLZ11A LLZ11B LLZ11C 10.18 10.5 10.82 11.13 11.44 11.74 12.11 12.55 12.99 13.44 13.89 14.35 14.8 15.25 15.69 16.22 16.82 17.42 18.02 18.63 19.23 19.72 20.15 20.64 21.08 21.52 22.05 22.61 23.12 23.63 24.26 24.97 25.63 26.29 26.99 27.7 28.36 29.02 29.68 30.32 30.9 31.49 32.14 32.79 33.4 34.01 LLZ12 LLZ12A LLZ12B LLZ12C LLZ13 LLZ13A LLZ13B LLZ13C LLZ15 LLZ15A LLZ15B LLZ15C LLZ16 LLZ16A LLZ16B LLZ16C LLZ18 LLZ18A LLZ18B LLZ18C LLZ20 LLZ20A LLZ20B LLZ20C LLZ20D LLZ22 LLZ22A LLZ22B LLZ22C LLZ22D LLZ24 LLZ24A LLZ24B LLZ24C LLZ24D LLZ27 LLZ27A LLZ27B LLZ27C LLZ27D LLZ30 LLZ30A LLZ30B LLZ30C LLZ30D LLZ33 LLZ33A LLZ33B LLZ33C LLZ33D LLZ36 LLZ36A LLZ36B LLZ36C LLZ36D Revision: www.mccsemi.com 2005/12/22 LLZ2V4-LLZ56 Zener Voltage Dynamic Resistance Test Current Reverse Leakage Current 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 0.04 32.9 33.6 34.2 34.8 35.5 36.2 41.8 45.6 50.4 36.47 37.19 37.85 38.52 39.29 40.11 40.8 Partnumbergroup Partnumber Marking Code LLZ39 LLZ39A LLZ39B LLZ39C LLZ39D LLZ39E LLZ39F LLZ39G 34.68 35.36 36.63 37.36 38.14 38.94 LLZ43 LLZ47 LLZ51 LLZ56 LLZ43 LLZ47 LLZ51 LLZ56 Typical Characteristics (Tamb unless otherwise specified) -Total Power Dissipation VZtn Relative VoltageChange Ztn=V Zt/V Z(25°C) 10-4/K 10-4/K 10-4/K 10-4/K 10-4/K 10-4/K 10-4/K Tamb Ambient emperature(°C Junction Temperature Fig. Total Power Dissipation Ambient Temperature Fig. Typical Change Working Voltage Junction Temperature -Temperature Coefficient 10-4 1000 -VoltageChange =25°C Z=5mA Z=5mA Z-Voltage Z-Voltage Fig. Typical Change Working Voltage under Operating Conditions Tamb=25°C Fig. Temperature Coefficient Z-Voltage www.mccsemi.com Revision: 2005/12/22 LLZ2V4-LLZ56 R=2V Z-Current Diode Capacitance Ptot=500mW Tamb=25°C =25°C Z-Voltage Z-Voltage Fig. Diode Capacitance Z-Voltage Fig. Z-Current Z-Voltage Forward Current =25°C Differential Z-Resistance 1000 Z=1mA 10mA 0.01 0.001 Forward Voltage =25°C Z-Voltage Fig. Forward Current Forward Voltage Fig. Differential Z-Resistance Z-Voltage Z-Current Ptot=500mW Tamb=25°C Z-Voltage Fig. Z-Current Z-Voltage Revision: www.mccsemi.com 2005/12/22 LLZ2V4-LLZ56 Zthp -ThermalResistance PulseCond.(K/W) 1000 tp/T=0.5 tp/T=0.2 Single Pulse RthJA=300K/W T=Tjmax-Tamb tp/T=0.1 tp/T=0.02 tp/T=0.05 tp/T=0.01 =(-VZ+(V Z2+4rzj T/Zthp)1/2)/(2rzj) 10-1 Pulse Length Fig. Thermal Response Revision: www.mccsemi.com 2005/12/22 Other recent searchesSML50B30 - 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