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This complete series Watt Zener diodes with limits excellent operating


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3EZ4.3D5 Series Watt DO-41 SurmeticE Zener Voltage Regulators
This complete series Watt Zener diodes with limits excellent operating characteristics that reflect superior capabilities silicon-oxide passivated junctions. this axial-lead, transfer-molded plastic package that offers protection common environmental conditions.
Cathode
Anode
Zener Voltage Range Rating Class (>16 Human Body Model Surge Rating Maximum Limits Guaranteed Electrical Parameters Package Larger than Conventional Watt Package
AXIAL LEAD CASE PLASTIC
Mechanical Characteristics: CASE: Void free, transfer-molded, thermosetting plastic FINISH: external surfaces corrosion resistant leads
readily solderable
MAXIMUM LEAD TEMPERATURE SOLDERING PURPOSES:
230°C, 1/16 from case seconds POLARITY: Cathode indicated polarity band MOUNTING POSITION:
MAXIMUM RATINGS
Rating Max. Steady State Power Dissipation 75°C, Lead Length Derate above 75°C Steady State Power Dissipation 50°C Derate above 50°C Operating Storage Temperature Range Symbol Value 6.67 Tstg +200 Unit mW/°C mW/°C
MARKING DIAGRAM
3EZx xxD5 YYWW
Assembly Location 3EZxxxD5 Device Code (See Table Next Page) Year Work Week
ORDERING INFORMATION
Device 3EZxxxD5 3EZxxxD5RL* 3EZxxxD5RR1
Package Axial Lead Axial Lead Axial Lead Axial Lead
Shipping 2000 Units/Box 6000/Tape Reel 2000/Tape Reel 2000/Tape Reel
3EZxxxD5RR2
Polarity band with cathode lead first Polarity band down with cathode lead first *3EZ8.2D5 3EZ220D5 Available 6000/Tape Reel
Semiconductor Components Industries, LLC, 2002
June, 2002 Rev.
Publication Order Number: 3EZ4.3D5/D
3EZ4.3D5 Series
ELECTRICAL CHARACTERISTICS 25°C unless
otherwise noted, types) Symbol Parameter Reverse Zener Voltage Reverse Current Maximum Zener Impedance Reverse Current Maximum Zener Impedance Reverse Leakage Current Breakdown Voltage Forward Current Forward Voltage Maximum Zener Current Surge Current 25°C
Zener Voltage Regulator
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3EZ4.3D5 Series
ELECTRICAL CHARACTERISTICS 25°C unless otherwise noted, types)
Zener Voltage (Note Device (Note 3EZ4.3D5 3EZ6.2D5 3EZ8.2D5* 3EZ10D5 3EZ13D5 3EZ15D5 3EZ16D5 3EZ18D5 3EZ24D5 3EZ36D5 3EZ39D5 3EZ220D5* 3EZ240D5 3EZ330D5 Device Marking 3EZ4.3D5 3EZ6.2D5 3EZ8.2D5* 3EZ10D5 3EZ13D5 3EZ15D5 3EZ16D5 3EZ18D5 3EZ24D5 3EZ36D5 3EZ39D5 3EZ220D5* 3EZ240D5 3EZ330D5 (Volts) 4.09 5.89 7.79 9.50 12.35 14.25 15.2 17.1 22.8 34.2 37.05 313.5 4.52 6.51 8.61 10.5 13.65 15.75 16.8 18.9 25.2 37.8 40.95 346.5 Zener Impedance (Note 1600 1700 2200 1000 1000 9000 9000 9000 0.25 0.25 0.25 0.25 0.25 0.25 0.25 0.25 0.25 0.25 0.25 Leakage Current Volts 11.4 12.2 13.7 18.2 27.4 29.7 (Note 2.44 1.54 1.33 1.25 1.11 0.83 0.56 0.51 0.09 0.09 0.06
TOLERANCE TYPE NUMBER DESIGNATION Tolerance designation device tolerance indicated suffix. ZENER VOLTAGE (VZ) MEASUREMENT Semiconductor guarantees zener voltage when measured from diode body. ambient temperature 25°C (+8°C, -2°C) ZENER IMPEDANCE (ZZ) DERIVATION zener impedance derived from seconds voltage, which results when current having value equal zener current (IZT IZK) superimposed IZK. SURGE CURRENT (IR) NON-REPETITIVE rating listed electrical characteristics table maximum peak, non-repetitive, reverse surge current square wave equivalent sine wave pulse 1/120 second duration superimposed test current, IZT, JEDEC standards. However, actual device capability described Figure General Data sheet Surmetic 30s. *Not Available 6000/Tape Reel. STEADY STATE POWER DISSIPATION (WATTS)
LEAD LENGTH HEAT SINK
LEAD TEMPERATURE (°C)
Figure Power Temperature Derating Curve
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3EZ4.3D5 Series
JL(t, TRANSIENT THERMAL RESISTANCE JUNCTION LEAD (°C/W) =0.5 0.05 0.02 0.01 0.0005 0.001 0.002 0.005 NOTE: BELOW SECOND, THERMAL RESPONSE CURVE APPLICABLE LEAD LENGTH (L). 0.01 0.02 0.05 TIME (SECONDS) DUTY CYCLE, =t1/t2
SINGLE PULSE DTJL (t)PPK REPETITIVE PULSES DTJL (t,D)PPK
0.0001 0.0002
Figure Typical Thermal Response Lead Length Inch
PEAK SURGE POWER (WATTS) PULSE WIDTH (ms) 0.05 0.02 0.01 0.005 125°C
RECTANGULAR NONREPETITIVE WAVEFORM 25°C PRIOR INITIAL PULSE
REVERSE LEAKAGE Adc) SPECIFIED ELEC. CHAR. TABLE
125°C
0.002 0.001 0.0005 0.0003
NOMINAL (VOLTS)
1000
Figure Maximum Surge Power
Figure Typical Reverse Leakage
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3EZ4.3D5 Series
APPLICATION NOTE Since actual voltage available from given zener diode temperature dependent, necessary determine junction temperature under operating conditions order calculate value. following procedure recommended: Lead Temperature, should determined from:
DTJL increase junction temperature above lead temperature found from Figure train power pulses inch) from Figure power.
DTJL
lead-to-ambient thermal resistance (°C/W) power dissipation. value will vary depends device mounting method. generally 30-40°C/W various clips points common printed circuit board wiring. temperature lead also measured using thermocouple placed lead close possible point. thermal mass connected point normally large enough that will significantly respond heat surges generated diode result pulsed operation once steady-state conditions achieved. Using measured value junction temperature determined
DTJL
worst-case design, using expected limits limits extremes (DTJ) estimated. Changes voltage, then found from:
qVZ, zener voltage temperature coefficient, found from Figures Under high power-pulse operation, zener voltage will vary with time also affected significantly zener resistance. best regulation, keep current excursions possible. Data Figure should used compute surge capability. Surge limitations given Figure They lower than would expected considering only junction temperature, current crowding effects cause temperatures extremely high small spots resulting device degradation should limits Figure exceeded.
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3EZ4.3D5 Series
TEMPERATURE COEFFICIENT RANGES
(90% Units Ranges Indicated)
TEMPERATURE COEFFICIENT (mV/ TEMPERATURE COEFFICIENT (mV/ ZENER VOLTAGE (VOLTS) RANGE 1000 ZENER VOLTAGE (VOLTS) 1000
Figure Units Volts
Figure Units Volts
ZENER VOLTAGE versus ZENER CURRENT
(Figures
ZENER VOLTAGE (VOLTS) ZENER VOLTAGE (VOLTS)
ZENER CURRENT (mA)
Figure thru Volts
JUNCTION LEAD THERMAL RESISTANCE C/W) ZENER CURRENT (mA) ZENER VOLTAGE (VOLTS)
ZENER CURRENT (mA)
Figure thru Volts
PRIMARY PATH CONDUCTION THROUGH CATHODE LEAD LEAD LENGTH HEAT SINK (INCH)
Figure thru Volts
Figure Typical Thermal Resistance
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3EZ4.3D5 Series
OUTLINE DIMENSIONS
Zener Voltage Regulators Axial Leaded
Watt DO-41 SurmeticE
PLASTIC DO-41 CASE 59-10 ISSUE
NOTES: DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. CONTROLLING DIMENSION: INCH. 59-04 OBSOLETE, STANDARD 59-09. 59-03 OBSOLETE, STANDARD 59-10. RULES NOTES ASSOCIATED WITH JEDEC DO-41 OUTLINE SHALL APPLY POLARITY DENOTED CATHODE BAND. LEAD DIAMETER CONTROLLED WITHIN DIMENSION. INCHES 0.161 0.205 0.079 0.106 0.028 0.034 -0.050 1.000 -MILLIMETERS 4.10 5.20 2.00 2.70 0.71 0.86 -1.27 25.40
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3EZ4.3D5 Series
Surmetic trademark Semiconductor Components Industries, LLC.
Semiconductor registered trademarks Semiconductor Components Industries, (SCILLC). SCILLC reserves right make changes without further notice products herein. SCILLC makes warranty, representation guarantee regarding suitability products particular purpose, does SCILLC assume liability arising application product circuit, specifically disclaims liability, including without limitation special, consequential incidental damages. "Typical" parameters which provided SCILLC data sheets and/or specifications vary different applications actual performance vary over time. operating parameters, including "Typicals" must validated each customer application customer's technical experts. SCILLC does convey license under patent rights rights others. SCILLC products designed, intended, authorized components systems intended surgical implant into body, other applications intended support sustain life, other application which failure SCILLC product could create situation where personal injury death occur. Should Buyer purchase SCILLC products such unintended unauthorized application, Buyer shall indemnify hold SCILLC officers, employees, subsidiaries, affiliates, distributors harmless against claims, costs, damages, expenses, reasonable attorney fees arising directly indirectly, claim personal injury death associated with such unintended unauthorized use, even such claim alleges that SCILLC negligent regarding design manufacture part. SCILLC Equal Opportunity/Affirmative Action Employer.
PUBLICATION ORDERING INFORMATION
Literature Fulfillment: Literature Distribution Center Semiconductor P.O. 5163, Denver, Colorado 80217 Phone: 303-675-2175 800-344-3860 Toll Free USA/Canada Fax: 303-675-2176 800-344-3867 Toll Free USA/Canada Email: ONlit@hibbertco.com American Technical Support: 800-282-9855 Toll Free USA/Canada JAPAN: Semiconductor, Japan Customer Focus Center 4-32-1 Nishi-Gotanda, Shinagawa-ku, Tokyo, Japan 141-0031 Phone: 81-3-5740-2700 Email: r14525@onsemi.com Semiconductor Website: http://onsemi.com additional information, please contact your local Sales Representative.
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3EZ4.3D5/D

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