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MOC3043MDB - 6-Pin DIP Zero-Cross Triac Driver Output ...

DATA Semiconductor Components Industries, LLC, 2005 September, 2022 Rev. 41 Publication Order Number:MOC3043M/D6-Pin DIP Zero-Cross TriacDriver Output Optocoupler(250/400 Volt Peak)MOC3031M, MOC3032M,MOC3033M, MOC3041M,MOC3042M, MOC3043 MDescriptionThe MOC303XM and MOC304XM devices consist of a GaAsinfrared emitting diode optically coupled to a monolithic silicondetector performing the function of a zero voltage crossing bilateraltriac are designed for use with a Triac in the interface of logicsystems to equipment powered from 115 VAC lines, such asteletypewriters, CRTs, solid state relays, industrial controls, printers,motors, solenoids and consumer appliances, Simplifies Logic Control of 115 VAC Power Zero Voltage Crossing to Minimize Conducted and Radiated LineNoise dv/dt of 2000 V/ms Typical.

2. This is static dv/dt. Commutating dv/dt is a function of the load−driving thyristor(s) only. 3. All devices are guaranteed to trigger at an IF value less than or equal to max IFT. Therefore, recommended operating IF lies between max IFT (15 mA for MOC3031M and MOC3041M, 10 mA for MOC3032M and MOC3042M, 5 mA for MOC3033M and MOC3043M) and ...

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Transcription of MOC3043MDB - 6-Pin DIP Zero-Cross Triac Driver Output ...

1 DATA Semiconductor Components Industries, LLC, 2005 September, 2022 Rev. 41 Publication Order Number:MOC3043M/D6-Pin DIP Zero-Cross TriacDriver Output Optocoupler(250/400 Volt Peak)MOC3031M, MOC3032M,MOC3033M, MOC3041M,MOC3042M, MOC3043 MDescriptionThe MOC303XM and MOC304XM devices consist of a GaAsinfrared emitting diode optically coupled to a monolithic silicondetector performing the function of a zero voltage crossing bilateraltriac are designed for use with a Triac in the interface of logicsystems to equipment powered from 115 VAC lines, such asteletypewriters, CRTs, solid state relays, industrial controls, printers,motors, solenoids and consumer appliances, Simplifies Logic Control of 115 VAC Power Zero Voltage Crossing to Minimize Conducted and Radiated LineNoise dv/dt of 2000 V/ms Typical.

2 1000 V/ms Guaranteed Peak Blocking Voltage 250 V, MOC306xM 400 V, MOC304xM Safety and Regulatory Approvals UL1577, 4,170 VACRMS for 1 Minute DIN EN/IEC60747 5 5 These are Pb Free DevicesApplications Solenoid/Valve Controls Lighting Controls Static Power Switches AC Motor Drives Temperature Controls Contactors AC Motor Starters Solid State RelaysPDIP6 , 646 BYMARKING DIAGRAMSCHEMATICONMOC3031V XYYQMOC3031 = Device NumberV= DIN EN/IEC60747 5 5 Option (only appears on component ordered with this option)X= One Digit Year Code, , 5 YY= Two Digit Work Week, Ranging from 01 to 53 Q= Assembly Package CodeSee detailed ordering and shipping information on page 8 ofthis data INFORMATION161616 PDIP6 , 646 BZPDIP6 , 646 BXMAIN *N/C123 ANODECATHODE456 CIRCUITMAIN TERM.

3 *DO NOT CONNECT ( Triac SUBSTRATE)CROSSINGZEROMOC3031M, MOC3032M, MOC3033M, MOC3041M, MOC3042M, AND INSULATION RATINGS (As per DIN EN/IEC 60747 5 5, this optocoupler is suitable for safe electrical insulation only within the safety limit data. Compliance with the safety ratings shall be ensured by means of protective circuits.)ParameterCharacteristicsInstal lation Classifications per DIN VDE 0110 Table 1, For Rated Mains Voltage<150 VRMSI IV<300 VRMSI IVClimatic Classification40/85/21 Pollution Degree (DIN VDE 0110 )2 Comparative Tracking Index175 SymbolParameterValueUnitVPRI nput to Output Test Voltage, Method A, VIORM x = VPR, Type and Sample Test with tm = 10 s, Partial Discharge < 5 pC1275 VpeakInput to Output Test Voltage, Method B, VIORM x = VPR, 100% Production Test with tm = 1 s, Partial Discharge < 5 pC1594 VpeakVIORMM aximum Working Insulation Voltage850 VpeakVIOTMH ighest Allowable Over Voltage6000 VpeakExternal Creepage 7mmExternal Clearance 7mmExternal Clearance (for Option TV, Lead Spacing) 10mmDTID istance Through Insulation (Insulation Thickness) Resistance at TS, VIO = 500 V>109 WABSOLUTE MAXIMUM RATINGS (TA = 25 C unless otherwise noted)

4 SymbolParameterDeviceValueUnitTOTAL DEVICETSTGS torage TemperatureAll 40 to +125 CTOPRO perating TemperatureAll 40 to +85 CTJJ unction Temperature RangeAll 40 to +100 CTSOLLead Solder TemperatureAll260 for10 seconds CPDT otal Device Power Dissipation at 25 C AmbientAll250mWDerate Above 25 CEMITTERIFC ontinuous Forward CurrentAll60mAVRR everse VoltageAll6 VPDT otal Power Dissipation at 25 C AmbientAll120mWDerate Above 25 CDETECTORVDRMOff State Output Terminal VoltageMOC3031 MMOC3032 MMOC3033M250 VMOC3041 MMOC3042 MMOC3043M400 VITSMPeak Non Repetitive Surge Current (Surge Cycle 60 Hz Sine Wave)All1 ApeakITMPeak Repetitive On State CurrentAll100mApeakPDTotal Power Dissipation at 25 C AmbientAll150mWDerate Above 25 CStresses exceeding those listed in the Maximum Ratings table may damage the device.

5 If any of these limits are exceeded, device functionalityshould not be assumed, damage may occur and reliability may be , MOC3032M, MOC3033M, MOC3041M, MOC3042M, CHARACTERISTICS (TA = 25 C, unless otherwise noted)SymbolParameterTest ConditionsDeviceMinTypMaxUnitINDIVIDUAL COMPONENT CHARACTERISTICSEMITTERVFI nput Forward VoltageIF = 30 mAAll Leakage CurrentVR = 6 VAll Blocking Current, Either DirectionVDRM = 600 V, IF = 0 (Note 1)All 100nAVTMPeak On State Voltage, Either DirectionITM = 100 mA peak, IF = 0 All Rate of Rise of Off State VoltageIF = 0 (Note 2)All10002000 V/msTRANSFER CHARACTERISTICSIFTLED Trigger CurrentMain Terminal Voltage = 3 V (Note 3)MOC3031 MMOC3041M 15mAMOC3032 MMOC3042M 10 MOC3033 MMOC3043M 5 IHHolding Current, Either DirectionAll 400 mAZERO CROSSING CHARACTERISTICSVIHI nhibit VoltageIF = rated IFT, MT1 MT2 voltageabove which device will not triggeroff stateAll 20 VIDRM2 Leakage in Inhibited StateIF = rated IFT, rated VDRM off stateAll 2mAISOLATION CHARACTERISTICSVISOI solation Voltage (Note 4)t = 1 MinuteAll4170 VACRMSP roduct parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted.

6 Productperformance may not be indicated by the Electrical Characteristics if operated under different Test voltage must be applied within dv/dt This is static dv/dt. Commutating dv/dt is a function of the load driving thyristor (s) All devices are guaranteed to trigger at an IF value less than or equal to max IFT. Therefore, recommended operating IF lies between max IFT(15 mA for MOC3031M and MOC3041M, 10 mA for MOC3032M and MOC3042M, 5 mA for MOC3033M and MOC3043M) and absolutemaximum IF (60 mA).4. Isolation voltage, VISO, is an internal device dielectric breakdown rating. For this test, pins 1 and 2 are common, and pins 4, 5 and 6 , MOC3032M, MOC3033M, MOC3041M, MOC3042M, PERFORMANCE CURVESF igure 1.

7 LED Forward Voltage vs. Forward CurrentFigure 2. On State CharacteristicsFigure 3. Trigger Current Vs. TemperatureIFT, NORMALIZEDTA, AMBIENT TEMPERATURE ( C) 40 TO TA = 25 C 4 3 2 10 1 23 800 600 400 20002004006008004 ITM, ON STATE CURRENT (mA)VTM, ON STATE VOLTAGE (VOLTS)IF = 30 mATA = 25 CVF, FORWADR VOLTAGE (V) 40 = 40 CFigure 4. Leakage Current, IDRM vs. TemperatureTA = 25 CTA = 85 CTA, AMBIENT TEMPERATURE ( C)IF, LED FORWARD CURRENT (mA)IDRM, LEAKAGE CURRENT (nA)100 MOC3031M, MOC3032M, MOC3033M, MOC3041M, MOC3042M, PERFORMANCE CURVES (Continued)Figure 5. IDRM2 Leakage in Inhibit State , LED TRIGGER PULSE WIDTH (mS)1010010246810121416 Figure 6. LED Current Required to Trigger vs.

8 LEDP ulse WidthIFT, LED TRIGGER CURRENT (NORMALIZED)NORMALIZED TO PWIN >> 100 ms 40 20020406080100 40 20020406080100 40 7. Holding Current, IH vs. TemperatureFigure 8. Inhibit Voltage vs. Temperature100 IDRM2, NORMALIZEDTA, AMBIENT TEMPERATURE ( C)TA, AMBIENT TEMPERATURE ( C)TA, AMBIENT TEMPERATURE ( C)IH, HOLDING CURRENT (NORMALIZED)VINH, NORMALIZEDIF = RATED IFTNORMALIZED TO TA = 25 CMOC3031M, MOC3032M, MOC3033M, MOC3041M, MOC3042M, INFORMATIONT ypical circuit (Figure 9, 10) for use when hot lineswitching is required. In this circuit the hot side of the lineis switched and the load connected to the cold or neutral load may be connected to either the neutral or hot is calculated so that IF is equal to the rated IFT of thepart, 5 mA for the MOC3033M and MOC3043M, 10 mA forthe MOC3032M and MOC3042M, or 15 mA for theMOC3031M and MOC3041M.

9 The 39 ohm resistor mF capacitor are for snubbing of the Triac and may ormay not be necessary depending upon the particular triacand load VACHOTNEUTRALMOC3031 MMOC3032 MMOC3033 MLOADF igure 9. Hot Line Switching Application Circuit(MOC3031M, MOC3032M, MOC3033M)39 W* kW180 WVCCRin123654240 VACHOTNEUTRALMOC3041 MMOC3042 MMOC3043 MFigure 10. Hot Line Switching Application Circuit(MOC3041M, MOC3042M, MOC3043M)39 W* W360 W*For highly inductive loads (power factor < ), change this value to 360 ohms.*For highly inductive loads (power factor < ), change this value to 360 VACSCRR1D1 SCRR2D2 LOADMOC3031 MMOC3032 MMOC3033 MFigure 11. Inverse Parallel SCR Driver Circuit (MOC3031M, MOC3032M, MOC3033M)180 WSuggested method of firing two, back to back SCR s with a onsemi Triac Driver .

10 Diodes can be 1N4001; resistors, R1 andR2, are optional 1 , MOC3032M, MOC3033M, MOC3041M, MOC3042M, VACSCRR1D1 SCRR2D2 LOADMOC3041 MMOC3042 MMOC3043 MFigure 12. Inverse Parallel SCR Driver Circuit (MOC3041M, MOC3042M, MOC3043M)360 WSuggested method of firing two, back to back SCR s with a onsemi Triac Driver . Diodes can be 1N4001; resistors, R1 andR2, are optional : This optoisolator should not be used to drive a load directly. It is intended to be a trigger device 13. Reflow Profile0 Time (s)060180120270260_C>245 C = 42 SecTime above183 C = 90 Ramp up rate33 Sec C260240220200180160140120100806040203002 80 MOC3031M, MOC3032M, MOC3033M, MOC3041M, MOC3042M, INFORMATION (Note 5)Part NumberPackageShipping MOC3031 MDIP 6 Pin(Pb Free)50 Units / TubeMOC3031 SMSMT 6 Pin (Lead Bend)(Pb Free)50 Units / TubeMOC3031SR2 MSMT 6 Pin (Lead Bend)(Pb Free)1000 / Tape & ReelMOC3031 VMDIP 6 Pin, DIN EN/IEC60747 5 5 Option(Pb Free)50 Units / TubeMOC3031 SVMSMT 6 Pin (Lead Bend), DIN EN/IEC60747 5 5 Option(Pb Free)50 Units / TubeMOC3031SR2 VMSMT 6 Pin (Lead Bend), DIN EN/IEC60747 5 5 Option(Pb Free)


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