SA CHONGQING | Alldatasheet
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TRANSIENT VOLTAGE SUPPRESSOR FEATURE .PlasticpackagehasUnderwritersLaboratoryFlammability Classification94V-0 .500Wsurgecapabilityat10×100uswaveform,Dutycycle:0.01% .Excellentclampingcapability .Lowzenerimpedance .Fastresponsetime:Typicallylessthen1.0psfrom0voltstoVBR forunidirectionaland5.0nsforbidirectional .TypicalIRlessthen1μΑabove10V .Hightemperaturesolderingguaranteed:260°C/10seconds /.375"leadlength/5lbstension MECHANICAL DATA .Terminal:PlatedaxialleadssolderableperMIL-STD202E, method208C .Case:MoldedwithUL-94ClassV-0recognizedFlameRetardant Epoxy .Polarity:colorbanddenotescathodeexceptbipolar VoltageRange5.0to170V 500WPeakPower 1.0WSteadyState DO-15 1.0(25.4) MIN. .300(7.6) .230(5.8) 1.0(25.4) MIN. .140(3.6) .104(2.6) DIA. .034(0.9) .028(0.7) DIA. Dimensions in inches and (millimeters) MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS Ratingat25°Cambienttemperatureunlessotherwisestated. Single-phase,half-wave,60HZ,resistiveorinductiveload. Forcapacotiveload,deratecurrentby20% Type Number SYMBOL Value units PeakPowerDissipationatTA=25°C,Tp=1ms(note1) PPPM Minimum500 W Steady State Power Dissipation .375"lead length at TL=75°C(note2) PD 1.0 W Peak Forward Surge Current 8.3ms Single Half Sine-wave Superimposed on Rated Load (JEDEC method)(note3) IFSM 60 A StorageTemperature TSTG -55to+150 °C OperatingJunctionTemperature TJ -55to+125 °C Note: 1.Non-repetitiveCurrentPulsePerFig.3andDeratedaboveTa=25°CPerFig.2. 3.8.3msSingleHalfSine-waveorEquivalentSquareWave,DutyCycle=4PulsesPerMinutesMaximum. Devices for BipolarApplications 1.ForBidirectionalUseCorCASuffixforTypesSA5.0thruTypesSA170. 2.ElectricalCharacteristicsApplyinBothDirections.
ELECTRICALCHARACTERISTICS(TA=25℃ unlessotherwisenoted) Device Nominal Voltage (V) Breakdown Voltage@IT VBR (V)(note1) Test Current IT (mA) Stand-Off Voltage VWM (V) Maximum Reverse Leakage @VWM ID (μΑ) Maximum PeakPulse Current IPPM (note2)(A) Maximum Clamping Voltage@IPPM VC(V) Maximum Temperature Coefficient ofVBR(%/°C)Min MaxUNI BI
(V) Breakdown Voltage@IT VBR (V)(note1) Test Current IT (mA) Stand-Off Voltage VWM (V) Maximum Reverse Leakage @VWM ID (μΑ) Maximum PeakPulse Current IPPM (note2)(A) Maximum Clamping Voltage@IPPM VC(V) Maximum Temperature Coefficient ofVBR(%/°C)Min MaxUNI BI SA90 SA90C 90.0 100 122 1.0 90 1 3.1 160 0.107 SA90A SA90CA 90.0 100 111 1.0 90 1 3.4 146 0.107 SA100 SA100C 100.0 111 136 1.0 100 1 2.8 179 0.107 SA100A SA100CA 100.0 111 123 1.0 100 1 3.1 162 0.107 SA110 SA110C 110.0 122 149 1.0 110 1 2.6 196 0.108 SA110A SA110CA 110.0 122 135 1.0 110 1 2.8 177 0.108 SA120 SA120C 120.0 133 163 1.0 120 1 2.3 214 0.108 SA120A SA120CA 120.0 133 147 1.0 120 1 2 193 0.108 SA130 SA130C 130.0 144 176 1.0 130 1 2.2 230 0.108 SA130A SA130CA 130.0 144 159 1.0 130 1 2.4 209 0.108 SA150 SA150C 150.0 167 204 1.0 150 1 1.9 268 0.108 SA150A SA150CA 150.0 167 185 1.0 150 1 2.1 243 0.108 SA160 SA160C 160.0 178 218 1.0 160 1 1.7 257 0.108 SA160A SA160CA 160.0 178 197 1.0 160 1 1.9 259 0.108 SA170 SA170C 170.0 189 231 1.0 170 1 1.6 304 0.108 SA170A SA170CA 170.0 189 209 1.0 170 1 1.8 275 0.108 Note: 1.VBR measuredafterIT appliedfor300us,IT=squarewavepulseorequivalent. 2.SurgecurrentwaveformperFigure3andderateperFigure2. 3.ForbipolartypeshavingVWM of10voltsandunder,theID limitisdoubled. 4.AlltermsandsymbolsareconsistentwithANSI/IEEEC62.35.