SURFACE MOUNT GPP TRANSIENT VOLTAGE SUPPRESSOR 1500 WATT PEAK POWER 6.5 WATTS STEADY STATE
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1 SURFACE MOUNT GPP TRANSIENT VOLTAGE SUPPRESSOR 15 WATT PEAK POWER 6.5 WATTS STEADY STATE TVS TFMCJ SERIES FEATURES * Plastic package has underwriters laboratory * Glass passivated chip construction * 15 watt surage capability at 1ms * Excellent clamping capability * Low zener impedance * Fast response time DO-214AB.125 (3.17).115 (2.92).245 (6.22).22 (5.59).28 (7.11).26 (6.6) MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS Ratings at 25 o C ambient temperature unless otherwise specified..13 (2.62).79 (2.6).6 (1.52).3 (.76).32 (8.13).35 (7.75).12 (.35).6 (.152).8 (.23).4 (.12) Dimensions in inches and (millimeters) MAXIMUM RATINGS (At TA = 25 o C unless otherwise noted) DEVICES FOR BIPOLAR APPLICATIONS For Bidirectional use C or CA suffix for types TFMCJ5. thru TFMCJ17 RATINGS Peak Pulse Current with a 1/1uS waveform ( Note 1, Fig.3 ) Steady State Power Dissipation at TL = 75 o C (Note 2) Instantaneous Forward at 1A for unidirectional only Electrical characteristics apply in both direction SYMBOL Peak Power Dissipation with a 1/1uS (Note 1,2, Fig.1) PPPM Minimum 15 Peak Forward Surge Current 8.3mS single half sine-wave superimposed on rated load (JEDEC method) (Note 3,4) unidirectional only Operating and Storage Temperature Range Thermal Resistance Junction to Ambient Air Thermal Resistance Junction to Leads IFSM V F TJ, TSTG VALUE SEE TABLE 1 2 SEE NOTE 5 UNITS Watts Amps PM(AV) 6.5 Watts R q JA R q JL Amps Volts -55 to + 15 C C/W C/W NOTES : 1. Non-repetitive current pulse, per Fig.3 and derated above TA = 25 o C per Fig Mounted on.31 X.31 ( 8. X 8.mm) copper pad to each terminal. 3. Lead temperature at TL = 25 o C 4. Measured on 8.3mS single half sine-wave duty cycle = 4 pules per minute maximum. 5. VF = 3.5V on TFMCJ-5. thru TFMCJ-9 devices and VF = 5.V on TFMCJ-1 thru TFMCJ-17 devices. 6 Fully ROHS compliant, 1% Sn plating(pb-free) REV:B
2 RATING AND CHARACTERISTIC CURVES ( TFMCJ5. THRU TFMCJ17CA ) PPPM, PEAK PULSE POWER, KW, PEAK PULSE CURRENT,% FIG. 1 - PEAK PULSE POWER RATING CURVE.31X.31"(8.X8.mm) copper pad areas.1.1us 1.uS 1uS 1uS 1.mS 1mS TP, PULSE WIDTH, sec FIG. 3 - PULSE WAVEFORM tr = 1usec. Peak Value Non-Repetitive Pulse Waveform Shown in Fig.3 TA = 25 Pulse Width (td) is Defined as the Point Where the Peak Current Decays to 5% of HALF VALUE - 2 1/1usec. Waveform as Defined by R.E.A. PEAK PULSE POWER (PPP) OR CURRENT (IPP) DERATING IN PERCENTAGE,% CJ, JUNCTION CAPACITANCE,pF FIG. 2 - PULSE DERATING CURVE TA, AMBIENT TEMPERATURE,( ) FIG. 4 - TYPICAL JUNCTION CAPACITANCE UNIDIRECTIONAL 1,VWM f = 1. MHz Vsig = 5mVp-p TJ = 25 Zero Bias CJ, JUNCTION CAPACITANCE,pF td t, TIME,mS FIG. 5 - TYPICAL JUNCTION CAPACITANCE BIDIRECTIONAL,VWM Zero Bias f = 1. MHz Vsig = 5mVp-p TJ = V(WM), BREAKDOWN VOLTACE, VOLTS IFSM, PEAK FORWARD SURGE CURRENT AMPERES V(WM), BREAKDOWN VOLTACE, VOLTS FIG. 6 - MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT UNIDIRECTIONAL ms Single Half Sine-Wave (JEDED Method) Unidirectional only NUMBER OF CYCLES AT 6 Hz
3 TRANSIENT VOLTAGE SUPPRESSORS 15W SERIES TVS DIODES/DO-214AB ( CASE 4 ) 15W Industry No. SMCJ5. SMCJ5.A SMCJ6. SMCJ6.A SMCJ6.5 SMCJ6.5A SMCJ7. SMCJ7.A SMCJ7.5 SMCJ7.5A SMCJ8. SMCJ8.A SMCJ8.5 SMCJ8.5A SMCJ9. SMCJ9.A SMCJ1 SMCJ1A SMCJ11 SMCJ11A SMCJ12 SMCJ12A SMCJ13 SMCJ13A SMCJ14 SMCJ14A SMCJ15 SMCJ15A SMCJ16 SMCJ16A SMCJ17 SMCJ17A SMCJ18 SMCJ18A SMCJ2 SMCJ2A SMCJ22 SMCJ22A SMCJ24 SMCJ24A SMCJ26 SMCJ26A SMCJ28 SMCJ28A SMCJ3 SMCJ3A SMCJ33 SMCJ33A SMCJ36 SMCJ36A House No. Breakdown MIN. VBR (Volts) MAX. TFMCJ TFMCJ5.A TFMCJ TFMCJ6.A TFMCJ TFMCJ6.5A TFMCJ TFMCJ7.A TFMCJ TFMCJ7.5A TFMCJ TFMCJ8.A TFMCJ TFMCJ8.5A TFMCJ TFMCJ9.A TFMCJ TFMCJ1A TFMCJ TFMCJ11A TFMCJ TFMCJ12A TFMCJ TFMCJ13A TFMCJ TFMCJ14A TFMCJ TFMCJ15A TFMCJ TFMCJ16A TFMCJ TFMCJ17A TFMCJ TFMCJ18A TFMCJ TFMCJ2A TFMCJ TFMCJ22A TFMCJ TFMCJ24A TFMCJ TFMCJ26A TFMCJ TFMCJ28A TFMCJ TFMCJ3A TFMCJ TFMCJ33A TFMCJ36 TFMCJ36A (ma) VWM (Volts) Leakage at VWM ID(uA) Peak Pulse Current (Amps) Clamping at VC (Volts)
4 TRANSIENT VOLTAGE SUPPRESSORS 15W SERIES TVS DIODES/DO-214AB ( CASE 4 ) 15W Industry No. House No. Breakdown VBR MIN. MAX. (ma) VWM (Volts) Leakage at VWM ID(uA) Peak Pulse Current (Amps) SMCJ4 TFMCJ SMCJ4A TFMCJ4A SMCJ43 TFMCJ SMCJ43A TFMCJ43A SMCJ45 TFMCJ SMCJ45A TFMCJ45A SMCJ48 TFMCJ SMCJ48A TFMCJ48A SMCJ51 TFMCJ SMCJ51A TFMCJ51A SMCJ54 TFMCJ SMCJ54A TFMCJ54A SMCJ58 TFMCJ SMCJ58A TFMCJ58A SMCJ6 TFMCJ SMCJ6A TFMCJ6A SMCJ64 TFMCJ SMCJ64A TFMCJ64A SMCJ7 TFMCJ SMCJ7A TFMCJ7A SMCJ75 TFMCJ SMCJ75A TFMCJ75A SMCJ78 TFMCJ SMCJ78A TFMCJ78A SMCJ85 TFMCJ SMCJ85A TFMCJ85A SMCJ9 TFMCJ SMCJ9A TFMCJ9A SMCJ1 TFMCJ SMCJ1A TFMCJ1A SMCJ11 TFMCJ SMCJ11A TFMCJ11A SMCJ12 TFMCJ SMCJ12A TFMCJ12A SMCJ13 TFMCJ SMCJ13A TFMCJ13A SMCJ15 TFMCJ SMCJ15A TFMCJ15A SMCJ16 TFMCJ SMCJ16A TFMCJ16A SMCJ17 TFMCJ SMCJ17A TFMCJ17A Notes : 1. V BR measured after I T applied for 3ms. I T = square pulse or equivalent. 2. For bidirectional use C or CA suffixs for all types (ex. SMCJ5.C,SMCJ17CA) electrical characteristics apply in both directions. 3. For bidirectional types having VWM of 1 volts and less, the ID limit is doubled. 4. All devices UL listed file# E Clamping at VC (Volts)
5 Mounting Pad Layout.185 MAX. (4.69 MAX.).121 MIN. (3.7 MIN.).6 MIN. (1.52 MIN.).32 REF Dimensions in inches and (millimeters)
6 DISCLAIMER NOTICE Inc reserves the right to make changes without notice to any product specification herein, to make corrections, modifications, enhancements or other changes. Inc 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 RECTRON data sheets and/ or specifications can and do vary in different applications and actual performance may vary over time. Inc does not assume any liability arising out of the application or use of any product or circuit. 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 Inc. Customers using or selling components for use in such applications do so at their own risk and shall agree to fully indemnify Inc and its subsidiaries harmless against all claims, damages and expenditures.
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