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1 ACPL-4 High CMR Intelligent Power Module and Gate Drive Interface Optocoupler Data Sheet Lead (Pb) Free RoHS fully compliant RoHS fully compliant options available; -xxxe denotes a lead-free product Description The ACPL-4 fast speed optocoupler contains a GaAsP LED and photo detector with built-in Schmitt trigger to provide logic-compatible waveforms, eliminating the need for additional wave shaping. The totem pole output eliminates the need for a pull up resistor and allows for direct drive Intelligent Power Module or gate drive. Functional Diagram Schematic ANODE CATHODE NC 1 NC NC 4 5 GND SHIELD TRUTH TABLE (POSITIVE LOGIC) LED V O ON HIGH OFF LOW V CC V O Note: The connection of a.1 µf bypass capacitor between pins 5 & is recommended. Features Performance Specified for Fast IPM Applications over Industrial Temperature Range: -4 C to 1 C Wide Operating V CC Range: 4.5 to Volts Typical Propagation Delays 15 ns Maximum Pulse Width Distortion PWD = 5 ns Propagation Delay Difference Min. 1 ns, Max. 5 ns kv/µs Minimum Common Mode Transient Immunity at V CM = 1 V Hysteresis Totem Pole Output (No Pull-up Resistor Required) Safety Approval: UL 15, 5 V rms / 1 minute CSA File CA4, Notice #5 IEC/EN/DIN EN 4-5-, V IORM = V peak Applications IPM Interface Isolation Isolated IGBT/MOSFET Gate Drive AC and Brushless DC Servo Motor Drives Low Power Inverters General Digital Isolation I CC V CC + V F - I F I O V O SHIELD GND 5 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.
2 UR Ordering Information ACPL-4 is UL Recognized with 5 Vrms for 1 minute per UL15 and is approved under CSA Component Acceptance Notice #5, File CA 4. Part number ACPL-4 Option RoHS Compliant -E Package Surface Mount Gull Wing Tape& Reel IEC/EN/DIN EN 4-5- Quantity 5 per tube -E X X 5 per tube -5E X X X 1 per reel mil DIP- -E X 5 per tube -E X X X 5 per tube -5E X X X X 1 per reel To order, choose a part number from the part number column and combine with the desired option from the option column to form an order entry. Example 1: ACPL-4-5E to order product of mil DIP Gull Wing Surface Mount package in Tape and Reel packaging with IEC/EN/DIN EN 4-5- Safety Approval in RoHS compliant. Example : ACPL-4-E to order product of mil DIP package in tube packaging and RoHS compliant. Option datasheets are available. Contact your Avago sales representative or authorized distributor for information. Package Outline Drawings DIP- Package 9.5 ±.5 (. ±.1). ±.5 (. ±.1) TYPE NUMBER A XXXXZ 5 OPTION CODE* DATE CODE.5 ±.5 (.5 ±.1) YYWW 1 4 UL RECOGNITION 1.19 (.4) MAX..5 ±.1 (.14 ±.5) 1. (.) MAX. 4. (.15) MAX. 5 TYP (.1 +.) -.).9 (.115) MIN..51 (.) MIN. 1. ±. (.4 ±.1).5 (.5) MAX..54 ±.5 (.1 ±.1) DIMENSIONS IN MILLIMETERS AND (INCHES). * MARKING CODE LETTER FOR OPTION NUMBERS "V" = OPTION OPTION NUMBERS AND 5 NOT MARKED.
3 DIP- Package with Gull Wing Surface Mount Option 9.5 ±.5 (. ±.1) LAND PATTERN RECOMMENDATION 1.1 (.4) 5.5 ±.5 (.5 ±.1) 1.9 (.4) (.5). (.) 1.19 (.4) MAX. 1. (.) MAX..5 ±.1 (.14 ±.5) 9.5 ±.5 (. ±.1). ±.5 (. ±.1) (.1 +.) -.) 1. ±. (.4 ±.1).54.5 ±.1 (.1) (.5 ±.5) BSC DIMENSIONS IN MILLIMETERS (INCHES). LEAD COPLANARITY =.1 mm (.4 INCHES). NOTE: FLOATING LEAD PROTRUSION IS.5 mm (1 mils) MAX..5 ±.5 (.5 ±.1) 1 NOM.
4 Solder Reflow Temperature Profile (Gull Wing Surface Mount Option Parts) TEMPERATURE ( C) 1 PREHEATING RATE C + 1 C/-.5 C/SEC. REFLOW HEATING RATE.5 C ±.5 C/SEC. 1 C 15 C 14 C C + 1 C/-.5 C.5 C ±.5 C/SEC. PREHEATING TIME 15 C, 9 + SEC. PEAK TEMP. 45 C SEC. SEC. SOLDERING TIME C 5 SEC. PEAK TEMP. 4 C PEAK TEMP. C ROOM TEMPERATURE TIME (SECONDS) TIGHT TYPICAL LOOSE Note: Non-halide flux should be used Recommended Pb-Free IR Profile TEMPERATURE ( C) T p T L T smax T smin +/-5 C 1 C RAMP-UP C/SEC. MAX C t s PREHEAT to 1 SEC. t p t L TIME WITHIN 5 C of ACTUAL PEAK TEMPERATURE -4 SEC. RAMP-DOWN C/SEC. MAX. to 15 SEC. 5 t 5 C to PEAK TIME (SECONDS) NOTES: THE TIME FROM 5 C to PEAK TEMPERATURE = MINUTES MAX. T smax = C, T smin = 15 C Note: Non-halide flux should be used 4
5 Insulation and Safety Related Specifications Parameter Symbol -Pin DIP Unit Conditions Minimum External Air Gap(External Clearance) Minimum External Tracking (External Creepage) Minimum Internal Plastic Gap (Internal Clearance) Minimum Internal Tracking (Internal Creepage) Tracking Resistance (Comparative Tracking Index) L(11).1 mm Measured from input terminals to output terminals, shortest distance through air. L(1).4 mm Measured from input terminals to output terminals, shortest distance path along body.. Through insulation distance, conductor to conductor, usually the direct distance between the photo emitter and photo detector inside the optocoupler cavity. NA mm Measured from input terminals to output terminals, along internal cavity. CTI mm DIN IEC 11/VDE Part 1 Isolation Group IIIa Material Group (DIN VDE 11, 1/9, Table 1) Option - surface mount classification is Class A in accordance with CECC. IEC/EN/DIN EN 4-5- Insulation Characteristics (Option ) Description Symbol Characteristic Unit Installation classification per DIN VDE 11/1.9, Table 1 for rated mains voltage V rms I-IV for rated mains voltage 45 V rms I-III Climatic Classification 55/5/1 Pollution Degree (DIN VDE 11/1.9) Maximum Working Insulation Voltage V IORM V peak Input to Output Test Voltage, Method b* V IORM x 1.5=V PR,1% Production Test with t m =1 sec, Partial discharge < 5 pc Input to Output Test Voltage, Method a* V IORM x 1.5=V PR, Type and Sample Test, t m = sec, Partial discharge < 5 pc V PR 111 V peak V PR 945 V peak Highest Allowable Over-voltage(Transient Over-voltage t ini = 1 sec) V IOTM V peak Safety-limiting values - maximum values allowed in the event of a failure. Case Temperature T S 15 C Input Current I S, INPUT ma Output Power (refer to Thermal Derating Curve) P S, OUT- mw PUT Insulation Resistance at T S, V IO = 5 V R S >1 9 W * Refer to the optocoupler section of the Isolation and Control Components Designer s Catalog, under Product Safety Regulations section, (IEC/EN/DIN EN 4-5-) for a detailed description of Method a and Method b partial discharge test profiles. Note: Isolation characteristics are guaranteed only within the safety maximum ratings which must be ensured by protective circuits in application. 5
6 Thermal Derating Curve OUTPUT POWER - PS, INPUT CURRENT - I S P S (mw) I S (ma) T A - CASE TEMPERATURE - o C Absolute Maximum Rating Parameter Symbol Min. Max. Units Note Storage Temperature T S C Operating Temperature T A -4 1 C Average Forward Input Current I F(AVG) 1 ma Peak Transient Input Current I F(TRAN) ( 1 ms Pulse Width, pps) 1. A ( ms Pulse Width, < 1% Duty Cycle) 4 ma Reverse Input Voltage V R 5 V Average Output Current I O 5 ma Supply Voltage V CC 5 V Output Voltage V O V Total Package Power Dissipation P T 1 mw 1 Lead Solder Temperature (Through Hole Parts Only) Solder Reflow Temperature Profile (Surface Mount Parts Only) C for 1 sec., 1. mm below seating plane See Package Outline Drawings section Recommended Operating Conditions Parameter Symbol Min. Max. Units Power Supply Voltage V CC 4.5 V Forward Input Current (ON) I F(ON) 1 ma Forward Input Voltage (OFF) V F(OFF) -. V Operating Temperature T A -4 1 C
7 Electrical Specification -4 C T A 1 C, 4.5V V CC V, ma I F(ON) 1 ma, V V F(OFF). V, unless otherwise specified. All Typicals at T A = 5 C. Parameter Sym. Min. Typ. Max. Units Test Conditions Fig. Note Logic Low Output Voltage Logic High Output Voltage Output Leakage Current(V OUT = V CC +.5V) Logic Low Supply Current Logic High Supply Current Logic Low Short Circuit Output Current Logic High Short Circuit Output Current V OL.5 V I OL =.4 ma 1, V OH.4 V CC - 1.1V V I OH = -. ma,,. I OH = -.4 ma I OHH 1 ma Vcc = 5 V I F = 1mA 5 Vcc = V I CCL 1.9. ma Vcc = 5.5 V V F = V.. Vcc = V I O = Open I CCH ma Vcc = 5.5 V I F = 1 ma 1..5 Vcc = V I O = Open I OSL 5 ma V O = Vcc = 5.5 V V F =V 5 V O = Vcc = V I OSH -5 ma V CC = 5.5 V I F =ma -5 V CC = V V O =GND Input Forward Voltage V F V T A = 5 C I F =ma 4 Input Reverse Breakdown Voltage Input Diode Temperature Coefficient 1.5 BV R 5 V I R = 1 ma DV F -1. mv/ DT A C I F = ma Input Capacitance C IN pf f = 1 MHz, V F = V
8 Switching Specifications (AC) -4 C T A 1 C, 4.5V V CC V, ma I F(ON) 1 ma, V V F(OFF).V. All Typicals at T A = 5 C, I F(ON) = ma unless otherwise specified. Parameter Sym. Min. Typ. Max. Units Test Conditions Fig. Note Propagation Delay Time to Logic Low Output Leve Propagation Delay Time to Logic High Output Level t PHL 15 5 ns With Peaking Capacitor 5, 5 t PLH 11 5 ns With Peaking Capacitor 5, 5 Pulse Width Distortion PWD 5 ns t PHL - t PLH Propagation Delay Difference Between Any Parts Output Rise Time (1-9%) Output Fall Time (9-1%) Logic High Common Mode Transient Immunity Logic Low Common Mode Transient Immunity Package Characteristics PDD -1 5 ns 1 t r 1 ns 5, t f ns 5, CM H - V/ms V CM = 1 V, I F =. ma, V CC = 5 V, T A = 5 C CM L V/ms V CM = 1 V, V F = V, V CC = 5 V, T A = 5 C 9 9 Parameter Sym. Min. Typ. Max. Units Test Conditions Fig. Note Input-Output Momentary Withstand Voltage* V ISO 5 V rms RH < 5%, t = 1 min.t A = 5 C Input-Output Resistance R I-O 1 1 W V I-O = 5 Vdc 4 Input-Output Capacitance C I-O. pf f = 1 MHz, V I-O = Vdc 4 * The Input-Output Momentary Withstand Voltage is a dielectric voltage rating that should not be interpreted as an input-output continuous voltage rating. For the continuous voltage rating refer to the IEC/EN/DIN EN 4-5- Insulation Characteristics Table (if applicable), your equipment level safety specification or Avago Application Note 14 entitled Optocoupler Input-Output Endurance Voltage, publication number 59-E. Notes: 1. Derate total package power dissipation, P T, linearly above C free-air temperature at a rate of 4.5 mw/ C.. Duration of output short circuit time should not exceed 1 ms.. Input capacitance is measured between pin and pin. 4. Device considered a two-terminal device: pins 1,,, and 4 shorted together and pins 5,,, and shorted together. 5. The t PLH propagation delay is measured from the 5% point on the leading edge of the input pulse to the 1. V point on the leading edge of the output pulse. The t PHL propagation delay is measured from the 5% point on the trailing edge of the input pulse to the 1. V point on the trailing edge of the output pulse.. C MH is the maximum slew rate of the common mode voltage that can be sustained with the output voltage in the logic high state, V O >. V. C ML is the maximum slew rate of the common mode voltage that can be sustained with the output voltage in the logic low state, V O <. V.. In accordance with UL 15, each optocoupler is proof tested by applying an insulation test voltage 45 V rms for one second (leakage detection current limit, II-O 5 µa). This test is performed before the 1% production test for partial discharge (Method b) shown in the IEC/EN/DIN EN 4-5- Insulation Characteristics Table, if applicable.. Pulse Width Distortion (PWD) is defined as t PHL - t PLH for any given device. 9. Use of a.1 µf bypass capacitor connected between pins 5 and is recommended. 1. The difference between t PLH and t PHL between any two devices under the same test condition. 4,
9 VOL - LOW LEVEL OUTPUT VOLTAGE - V V CC = 4.5/V V F = V I O =.4mA V CC = 4.5V V CC = V IOH - HIGH LEVEL OUTPUT CURRENT - ma V O =.V V O =.4V V CC = 4.5V I F = ma T A - TEMPERATURE - C Figure 1. Typical Logic Low Output Voltage vs. Temputer T A - TEMPERATURE - C Figure. Typical Logic High Output Current vs. Temputer Vo - OUTPUT VOLTAGE - V I O = -.ma T A = 5C 1 V CC = 4.5V.5 I O =.4mA I F - INPUT CURRENT - ma IF - FORWARD CURRENT - ma V F - I F V F - FORWARD VOLTAGE - V T A = 5 C 1.5 Figure. Typical Output Voltage vs. Forward Input Current Figure 4. Typical Input Diode Forward Characteristic PULSE GEN. t r = t f = 5 ns f = 1 khz 1 % DUTY CYCLE V O = 5 V Z O = 5Ω 1 *.1 µf BYPASS V CC * OUTPUT V O MONITORING NODE D1 5 V 19 Ω THE PROBE AND JIG CAPACITANCES ARE INCLUDED IN C1 AND C. R 1 I F (ON) 1.1 k Ω ma 1 Ω 5 ma Ω 1 ma ALL DIODES ARE 1N91 OR 1N4. INPUT MONITORING NODE R 1 C 1 = 1 pf 4 5 C = 15 pf 5 kω D D D 4 INPUT I F OUTPUT V O IF (ON) 5 % I F (ON) ma t PLH t PHL V OH 1. V VOL Figure 5. Test Circuit for tplh,tphl,tr,tf 9
10 5 1 Tp - PROPAGATION DELAY - ns t PHL t PLH V CC = V I F = 1mA Vo - OUTPUT VOLTAGE - V T A = 5 o C I O = -.ma T A - TEMPERATURE - C Figure. Typical Propagation Delays vs.temperature V CC - SUPPLY VOLTAGE - V Figure. Typical Logic High Output Voltage vs. Supply Voltage V CC TP - PROPAGTION DELAY - ns t PHL t PLH I F (ma) 1 I F (ma) 1 A 1 B R IN + V FF V CM PULSE GENERATOR µf BYPASS OUTPUT V O MONITORING NODE 4 T A = 5 o C V CC - SUPPLY VOLTAGE - V Figure. Typical Propogation Delay vs. Supply Voltage V CM V V OH OUTPUT V O V OL V CM (PEAK) SWITCH AT A: I F = 5 ma V O (MIN.) SWITCH AT B: V F = V V O (MAX.) Figure 9. Test Circuit for Common Mode Transient Immunity and Typical Waveforms For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies, Limited in the United States and other countries. Data subject to change. Copyright Avago Technologies Limited. All rights reserved. AV1-19EN - June 1,
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More informationDistributed by: www.jameco.com --- The content and copyrights of the attached material are the property of its owner. N, HCNW, HCNW, HCNW, HCPL-, HCPL-, HCPL-, HCPL-, HCPL-, HCPL-, HCPL-, HCPL-, HCPL-,
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HCPL-42 Optically Coupled 2 ma Current Loop Receiver Data Sheet Lead (Pb) Free RoHS 6 fully compliant RoHS 6 fully compliant options available; -xxxe denotes a lead-free product Description The HCPL-42
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