T8M35T-B SERIES TRIACS 8 AMPERES RMS 600 VOLTS. Triacs Sillicon Bidirectional Thyristors TO-220AB FEATURES MECHANICAL DATA

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1 LITE-ON SEMICONDUCTOR Triacs Sillicon Bidirectional Thyristors TRIACS 8 AMPERES RMS 600 VOLTS FEATURES Blocking Voltage to 600 Volts On-State Current Rating of 8.0 Amperes RMS at 0 Uniform Gate Trigger Currents in Three Quadrants High Immunity to dv/dt V/ms minimum at 25 Minimizes Snubber Networks for ProtectionIndustry Standard TO-220AB Package High Commutating di/dt A/ms minimum at 25 Pb-Free Package MECHANICAL DATA Case: Molded plastic Weight: 0.07 ounces, 2.0 grams C K O I H B PIN 2 3 H L D E F J N TO-220AB A G M TO-220AB DIM. MIN. MAX. A B C D E F - 6. G H I J K L M.4.40 N O.7.37 All Dimensions in millimeter PIN ASSIGNMENT Main Terminal 2 Main Terminal 2 3 Gate 4 Main Terminal 2 MAXIMUM RATINGS (Tj= 25 unless otherwise noticed) Rating Symbol Value Unit Peak Repetitive Off State Voltage () (TJ= -40 to 25, Sine Wave, 50 to 60 Hz; Gate Open) T8MT600B VDRM, VRRM 600 Volts On-State RMS Current (TC = 0 ) Full Cycle Sine Wave 50 to 60 Hz IT(RMS) 8.0 Amp Peak Non-Repetitive Surge Current (One Full Cycle Sine Wave, 60 Hz, Tj = 25 ) ITSM 80 Amps 2 2 Circuit Fusing Consideration ( t = 8.3 ms) I t 26 A s Peak Gate Power (Tc = 80, Tp.0 us) PGM 6 Watt Average Gate Power (Tc = 80, t = 8.3 ms) PG(AV) 0. Watt Operating Junction Temperature Range TJ -40 to +25 Storage Temperature Range Tstg -40 to +50 Notice: () VDRM and VRRM for all types can be applied on a continuous basis. Blocking voltages shall not be tested with a constant current source such that the voltage ratings of the devices are exceeded. REV. 8, Oct-20, KTXC

2 THERMAL CHARACTERISTICS Characteristic Symbol Value Unit Thermal Resistance - Junction to Case - Junction to Ambient RthJC RthJA /W Maximum Lead Temperature for Soldering Purposes /8" from Case for Seconds TL 260 ELECTRICAL CHARACTERISTICS (Tj =25 unless otherwise noted, Electrical apply in both directions) Characteristics Symbol Min Typ Max Unit OFF CHARACTERISTICS Peak Reptitive Forward or Reverse Blocking Current (VD=Rated VDRM, VRRM; Gate Open) TJ=25 TJ=25 IDRM IRRM 2.0 ua ma ON CHARACTERISTICS Peak On-State Voltage (ITM=± A 2.0 ms, Duty Cycle 2%) VTM.2.6 Volts Gate Trigger Current (VD = 2V; RL = 0 Ohms) IGT IGT2 IGT ma Gate Trigger Voltage (VD = 2 V; RL =0 Ohms) VGT VGT2 VGT Volts Latching Current (VD = 24 V, IG = ma) I L I L2 I L ma Holding Current (VD = 2 V, Initiating Current = ± 50 ma, Gate Open) Gate Non - Trigger Voltage (Main Terminal Voltage=2 V, RL =0 Ohms, TJ=25 ) I H ma VGD 0.2 Volts DYNAMIC CHARACTERISTICS Critical Rate of Rise of Off-State Voltage (VD=67% Rated VDRM, Exponential Waveform, Gate Open, Tj=25 ) dv/dt 400 V/us Critical Rate of Rise of Commutation Current (VD = 400V, ITM = 4.4 A, Commutating di/dt = 8 V/us, Gate Open, Tj= 25, f=250hz, CL= uf, L L =40 mh, No Snubber) C L = uf L L = 40 mh (di/dt)c 6.5 A/ms

3 Quadrant Definitions All polarities are referenced to MT Whith in -phase signal (using standard AC lines) quadrants I and III are used

4 Figure. RMS Current Derating Figure 2. On-State Power Dissipation 25 2 DC Tc, CASE TEMPERATURE ( o C ) α =80 DC α =20,90,60,30 P(AV), AVERAGE POWER (WATTS) α = IT(RMS), RMS ON-STATE CURRENT (AMPS) IT(RMS), RMS ON-STATE CURRENT (AMPS) Figure 3. On-State Characteristics Figure 4. Thermal Response IT, INSTANTANEOUS ON-STATE CURRENT (AMPS) 0 TYPICAL AT TJ = 25 TJ = 25 TJ = 25 r(t), TRANSIENT THERMAL RESISTANCE (NORMALIZED) IH, HOLDING CURRENT (ma) t, TIME (ms) Figure 5. Holding Current Variation MT2 NEGATIVE MT2 POSITIVE VT, INSTANTANEOUS ON-STATE VOLTAGE(VOLTS) TJ, JUNCTION TEMPERATURE ( o C)

5 Figure 6. Gate Trigger Current Variation Figure 7. Gate Trigger Voltage Variation IGT, GATE TRIGGER CURRENT (ma) 0 Q Q Q3 TJ, JUNCTION TEMPERATURE ( o C) VGT, GATE TRIGGER VOLTAGE (VOLTS) Q2 Q Q TJ, JUNCTION TEMPERATURE ( o C) dv/dt, CRITCAL RATE OF RISE OF OFF-STATE VOLATGE (V/us) 5.0k 4.5k 4.0k 3.5k 3.0k 2.5k 2.0k.5k.0k Figure 8. Critical Rate of Rise of Off-State Voltage (Exponential) MT2 POSITIVE MT2 NEGATIVE RG, GATE MAIN TERMINAL RESISTANCE (OHMS) (dv/dt)c, CRITICAL RATE OF RISE OF COMMUTATING VOLTAGE (V/us) 0 Tj=25 Figure 9.Critical Rate of Rise of Commutating Voltage (dt/dt)x, RATE OF CHANGE OF COMMUTATING CURRENT (A/ms)

6 Legal Disclaimer Notice Important Notice and Disclaimer LSC reserves the right to make changes to this document and its products and specifications at any time without notice. Customers should obtain and confirm the latest product information and specifications before final design, purchase or use. LSC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does LSC assume any liability for application assistance or customer product design. LSC does not warrant or accept any liability with products which are purchased or used for any unintended or unauthorized application. No license is granted by implication or otherwise under any intellectual property rights of LSC. LSC products are not authorized for use as critical components in life support devices or systems without express written approval of LSC.

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