ACPL-P314_V01 AVAGO | Alldatasheet

Document overview

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Technical content

Features

  • High speed response.
  • Ultra high CMR.
  • Bootstrappable supply current.
  • Available in Stretched SO-6 package
  • Package Clearance/Creepage at 8mm (ACPL-W314)
  • Safety Approval: UL Recognized with 3750 V rms for 1 minute per UL1577. CSA Approved. IEC/EN/DIN EN 60747-5-2 Approved with V IORM = 630VPEAK for option 060. Specifications
  • 0.6 A maximum peak output current.
  • 0.4 A minimum peak output current.
  • 0.7 µs maximum propagation delay over temperature range.
  • ICC(max) = 3 mA maximum supply current.
  • 10 kV/µs minimum common mode rejection (CMR) at VCM = 1000 V.
  • Wide V CC operating range: 10 V to 30 V over temperature range.
  • Wide operating temperature range: –40°C to 100°C.

Applications

  • Isolated IGBT/Power MOSFET gate drive
  • AC and brushless DC motor drives
  • Industrial inverters
  • Inverter for home appliances
  • Induction cooker
  • Switching Power Supplies (SPS) Note: A 0.1 µF bypass capacitor must be connected between pins VCC and VEE. ANODE N.C. CATHODE VCC VO VEESHIELD Truth Table LED VO OFF LOW ON HIGH CAUTION: It is advised that normal static precautions be taken in handling and assembly of this component to prevent damage and/or degradation which may be induced by ESD.

Ordering Information

Specify part number followed by option number (if desired). Example: Package Outline Drawings ACPL-P314 Stretched SO-6 Package, 7 mm clearance Option data sheets available. Contact Avago Technologies sales representative, authorized distributor, or visit our WEB site at http://www.avagotech.com/optocouplers. ACPL-W314-XXXE No option = Standard SS0-6 package, 100 per tube. 500 = Tape and Reel Packaging Option, 1000 per reel. 060 = IEC/EN/DIN EN 60747-5-2, VIORM = 630 VPEAK XXXE = Lead Free Option. Dimensions in Millimeters [Inches] Coplanarity = 0.1mm [0.004 inches] 0.38±0.127 4.580 +0.254 .180 +.010 - .000 0.45 .018 7.62 6.81 .300 .268 [.063±.005] 1.590±0.127 A 3.180±0.127 7.00 45.00 7.00 7.00 7.00 [.040±.010] 1±.0.250 0.20±0.10 [.008±.004] 0.20[.008] 2.16[.085] 10.7[.421] [.125±.005] Land Pattern Recommendation

ACPL-W314 Stretched SO-6 Package Recommended Solder Reflow Temperature Profile Note: Use of non chlorine-activated fluxes is highly recommended.

Recommended Pb-Free IR Profile Regulatory Information The ACPL-P314/W314 is pending approval by the following organizations: Note: Use of non chlorine-activated fluxes is highly recommended. IEC/EN/DIN EN 60747-5-2 (Option 060 only) Approval under: IEC 60747-5-2 :1997 + A1:2002 EN 60747-5-2:2001 + A1:2002 DIN EN 60747-5-2 (VDE 0884 Teil 2):2003-01 UL Approval under UL 1577, component recognition program up to V ISO = 3750 V RMS. File E55361. CSA Approval under CSA Component Acceptance Notice #5, File CA 88324.

**Table 1. IEC/EN/DIN EN 60747-5-2 Insulation Characteristics* (ACPL-P314/W314 Option 060)** Table 2. Insulation and Safety Related Specifications Safety-limiting values - maximum values allowed in the event of a failure. terminals, shortest distance through air. terminals, shortest distance path along body. thickness between the emitter and detector. terminals, along internal cavity.

Table 5. Electrical Specifications (DC) Over recommended operating conditions unless otherwise specified. Table 3. Absolute Maximum Ratings Table 4. Recommended Operating Conditions

Table 6. Switching Specifications (AC) Over recommended operating conditions unless otherwise specified. Table 7. Package Characteristics

  1. Derate linearly above 70°C free air temperature at a rate of 0.3 mA/°C.
  2. Maximum pulse width = 10 µs, maximum duty cycle = 0.2%. This value is intended to allow for component tolerances for designs with I O

peak minimum = 0.4 A. See Application section for additional details on limiting I OL peak.

  1. Derate linearly above 85°C, free air temperature at the rate of 4.0 mW/°C.
  2. Input power dissipation does not require derating.
  3. Maximum pulse width = 50 µs, maximum duty cycle = 0.5%.

OH is measured with a DC load current. When driving capacitive load V OH will approach V CC as IOH approaches zero amps.

  1. Maximum pulse width = 1 ms, maximum duty cycle = 20%.
  2. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage > 4500 V

EN/DIN EN 60747-5-2 Insulation Characteristics Table, if applicable.

  1. Device considered a two-terminal device: pins on input side shorted together and pins on output side shorted together.
  2. PDD is the difference between t PHL and tPLH between any two parts or channels under the same test conditions.
  3. Common mode transient immunity in the high state is the maximum tolerable |dV CM/dt| of the common mode pulse V CM to assure that

the output will remain in the high state (i.e. V O > 6.0 V).

  1. Common mode transient immunity in a low state is the maximum tolerable |dV CM/dt| of the common mode pulse, V CM, to assure that the

output will remain in a low state (i.e. V O < 1.0 V).

  1. This load condition approximates the gate load of a 1200 V/25 A IGBT.
  2. The power supply current increases when operating frequency and Q g of the driven IGBT increases.

10 KHz

Figure 17. Propagation Delay Test Circuit and Waveforms. Figure 18. CMR Test Circuit and Waveforms.

minimizing component complexity. discussed in the next two sections. Figure 21. Optocoupler Input to Output Capacitance Model for Figure 22. Optocoupler Input to Output Capacitance Model for

43 SHIELD

43 SH IE L D

  • THE ARROWS INDICATE THE DIRECTION
  • OF CURRENT FLOW DURING - dVCM/dt +5 V VSAT VCM ILEDP

Figure 23. Equivalent Circuit for Figure 17 During Common Mode applications requiring ultra high CMR1 performance. Figure 24. Not Recommended Open Collector Drive Circuit.

43 SHIELDILEDN

Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited, in the United States and other countri es. temperature range of -40° to 100°C. Figure 26. Minimum LED Skew for Zero Dead Time. Figure 27. Waveforms for Dead Time. Figure 25. Recommended LED Drive Circuit for Ultra-High CMR Dead Time and Propagation Delay Specifications. to each other and are switching identical IGBTs.