Rev. 02

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1 PRIMARY CHARACTERISTICS SMB(DO-214AA) PACKAGE P PP V BR I PP V C 600W 6.8V~600V 57.14A~0.72A 10.5V~828V Body Marking :Please See Page 3 EX : SM 12A EX : SM 12CA T J,Max A 12 C UNI- POLAR BI-POLAR V:Product Line Code Y:Last digital of year, Ex : , M:Month Code, Ex : 1-1,2-2,---10-O,11-N,12-D FEATURES Glass passivated chip 600 W peak pulse power capability witha 10/1000 μs waveform, repetitive rate(duty cycle):0.01 % Low leakage Uni and Bidirectional unit Excellent clamping capability Very fast response time Moisture Sensitivity Level 1 MECHANICAL DATA Case:Molded plastic, SMB(DO-214AA) Polarity: Color band denotes cathode end except Bipolar Lead :Plated terminals, solderable per MIL-STD-750,Method 2026 Epoxy : UL94-V0 rated flame retardant Mounting position: Any Maximum Ratings(TA=25 unless otherwise noted) Parameter Peak power dissipation with a 10/1000μs waveform (1) Peak pulse current wih a 10/1000μs waveform Power dissipation on infinite heatsink at T L = 75 C Peak forward surge current, 8.3 ms single half sinewave unidirectional only (2) Maximum instantaneous forward voltage at 25 A for unidirectional only (3) Operating junction and storage temperature range Symbol P PP I PP I FSM V F T J, T STG Value 600 See Next Table / to +150 Note: (1)Non-repetitive current pulse per Fig.5 and derated above TA= 25 per Fig.1 (2) Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum. (3)VF<3.5V for devices Of VBR<200V and VF<5.0V for devices of VBR>201V (1) P D UNIT W A W A V C P 1

2 Ratings and Characteristics Curves (T A =25 unless otherwise noted) Peak Pulse Derating in Percentage of Peak Power or Current, (%) 100 AMBIENAVERAGE FORWARD CURRENT, (A) T J = T J max. 8.3 ms Single Half Sine-Wave Peak Forward Surge Current, (A) Ambient Temperature,T A ( ) Number of Cycles at 60 Hz Fig. 1 - Pulse Derating Curve Fig. 2 - Maximum Non-Repetitive Surge Current Steady State Power Dissipation, (W) ## Peak Power (kw) Lead Temperature, T L ( ) Fig. 3 - Steady State Power Derating Curve Pulse Width,t d ( s) Fig. 4 - Peak Pulse Power Rating Curve Peak Pulse Current, (% ) td Tr=10 s Peak Value (Ipp) T J = 25 C Pulse Width (td) is defined as the point where the peak current decays 0 to 50 % 0of Ipp /1000 sec. Waveform 2as defined 23by R.E.A Half Value = Ipp Time, (ms) Junction Capacitance,C J (pf) 1 RWM T J =25 C f=1.0mhz bias RWM Reverse Breakdown,V BR (V) bias Fig. 5 - Pulse Waveform Fig. 6 - Typical Junction Capacitance P 2

3 Part No. Marking Code UNI-POLAR BI-POLAR UNI-POLAR BI-POLAR Reverse Stand- Off V RWM (V) Breakdown V BR (V) I T Breakdown V BR (V) I T Test Current I T (ma) Max Clamping V C I PP Peak Pulse Current I PP (A) Reverse Leakage I R V RWM P6SMB6.8A P6SMB6.8CA 6V8A 6V8C P6SMB7.5A P6SMB7.5CA 7V5A 7V5C P6SMB8.2A P6SMB8.2CA 8V2A 8V2C P6SMB9.1A P6SMB9.1CA 9V1A 9V1C P6SMB10A P6SMB10CA 10A 10C P6SMB11A P6SMB11CA 11A 11C P6SMB12A P6SMB12CA 12A 12C P6SMB13A P6SMB13CA 13A 13C P6SMB15A P6SMB15CA 15A 15C P6SMB16A P6SMB16CA 16A 16C P6SMB18A P6SMB18CA 18A 18C P6SMB20A P6SMB20CA 20A 20C P6SMB22A P6SMB22CA 22A 22C P6SMB24A P6SMB24CA 24A 24C P6SMB27A P6SMB27CA 27A 27C P6SMB30A P6SMB30CA 30A 30C P6SMB33A P6SMB33CA 33A 33C P6SMB36A P6SMB36CA 36A 36C P6SMB39A P6SMB39CA 39A 39C P6SMB43A P6SMB43CA 43A 43C P6SMB47A P6SMB47CA 47A 47C P6SMB51A P6SMB51CA 51A 51C P6SMB56A P6SMB56CA 56A 56C P6SMB62A P6SMB62CA 62A 62C P6SMB68A P6SMB68CA 68A 68C P6SMB75A P6SMB75CA 75A 75C P6SMB82A P6SMB82CA 82A 82C P6SMB91A P6SMB91CA 91A 91C P6SMB100A P6SMB100CA 100A 100C P6SMB110A P6SMB110CA 110A 110C P6SMB120A P6SMB120CA 120A 120C P6SMB130A P6SMB130CA 130A 130C P6SMB150A P6SMB150CA 150A 150C P6SMB160A P6SMB160CA 160A 160C P6SMB170A P6SMB170CA 170A 170C P6SMB180A P6SMB180CA 180A 180C P6SMB200A P6SMB200CA 200A 200C P6SMB220A P6SMB220CA 220A 220C P6SMB250A P6SMB250CA 250A 250C P 3

4 Part No. Marking Code UNI-POLAR BI-POLAR UNI-POLAR BI-POLAR Reverse Stand- Off V RWM (V) Breakdown V BR (V) I T Breakdown V BR (V) I T Test Current I T (ma) Max Clamping V C I PP Peak Pulse Current I PP (A) Reverse Leakage I R V RWM P6SMB300A P6SMB300CA 300A 300C P6SMB350A P6SMB350CA 350A 350C P6SMB380A P6SMB380CA 380A 380C P6SMB400A P6SMB400CA 400A 400C P6SMB440A P6SMB440CA 440A 440C P6SMB500A P6SMB500CA 500A 500C P6SMB520A 520A 520C P6SMB550A 550A 550C P6SMB600A 600A 600C Note: 1. Add suffix "CA" after Part number to specify Bi-directional devices. 2. For Bi-directional devices having VRWM of 10 voltages and under, the IR limit is doubled. P 4

5 Outline Drawing SMB(DO-214AA).191(4.85).160(4.06).086(2.20).075(1.91).115(3.94).130(3.30).012(0.30).096(2.44).006(0.15).083(2.13).060(1.52).029(0.75).008(0.20).001(0.02).220(5.59).199(5.05) Dimensions in inches and (millimeters) Rev.E P 5

6 Suggested Soldering Pad Layout SMB.071(1.80).090(2.30).098(2.50) Dimensions in inches and (millimeters) RevA P 6

7 Reel Taping Sepecification - Surface Mount Device Reel Packing PACKAGE PER REEL REEL DIA BOX SIZE PER BOX CARTION PER CARTION GROSS WEIGHT EA (m/m) (m/m) EA (m/m) EA (Kg) SMA 5, *340*40 10, *360*350 80, SMB 3, *340*40 6, *360*350 48, SMC 3, *340*40 6, *360*350 48, P 7

8 Ordering Information: Device PN Packing Part Number -T (1) G (2) -WS Tape & Reel Packing :3000pcs/Reel Note: 1. Packing code, T: Tape & 13 Reel Packing; 2. RoHS product for packing code suffix G, Halogen free product for packing code suffix "H". ***Disclaimer*** WILLAS reserves the right to make changes without notice to any product specification herein, to make corrections, modifications, enhancements or other changes. WILLAS or anyone on its behalf assumes no responsibility or liability for any errors or inaccuracies. Data sheet specifications and its information contained are intended to provide a product description only. "Typical" parameters which may be included on WILLAS data sheets and/ or specifications can and do vary in different applications and actual performance may vary over time. WILLAS does not assume any liability arising out of the application or use of any product or circuit. WILLAS products are not designed, intended or authorized for use in medical, life-saving implant or other applications intended for life-sustaining or other related applications where a failure or malfunction of component or circuitry may directly or indirectly cause injury or threaten a life without expressed written approval of WILLAS. Customers using or selling WILLAS components for use in such applications do so at their own risk and shall agree to fully indemnify WILLAS Inc and its subsidiaries harmless against all claims, damages and expenditures. P 8

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