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Technical content
Features
Wide supply voltage Vcc: 2.7V to 24V Low Drive Current: 3mA Open-Collector Output TTL compatible Compact SO-5, SO-8, stretched SO-6 and stretched SO-8 package 15 kV/s High Common-Mode Rejection at VCM = 1500 V Guaranteed performance from Temperature Range: -40°C to +105°C Low Propagation Delay: 1s max at 5V Worldwide Safety Approval: (Pending except ACPL-M50L) – UL1577 recognized, 3750Vrms/1min for ACPL-M50L/054L, 5000Vrms/1min for ACPL-W50L/K54L, – CSA Approval – IEC 60747-5-5, IEC/EN/DIN EN 60747-5-2
Applications
Communications Interface Digital Signal Isolation Micro-controller Interface Feedback Elements in Switching Power Supplies Digital isolation for A/D, D/A conversion Digital fi eld Lead (Pb) Free RoHS 6 fully compliant RoHS 6 fully compliant options available; -xxxE denotes a lead-free product The connection of a 0.1 F bypass capacitor between pins 4 and 6 for ACPL-M50L/W50L and between pins 5 and 8 for ACPL-054L/K54L is recommended. Truth Table LED Vo ON LOW OFF HIGH 4 5 ACPL-054L/K54L ACPL-M50L ACPL-W50L VO Anode Cathode GND VCC VO GND VCC NC Cathode Anode VO1 GND VO2 VCC Cathode1 Anode2 Cathode2 Anode1
Ordering Information
ACPL-M50L and ACPL-054L are UL Recognized with 3750 Vrms for 1 minute per UL1577. ACPL-W50L and ACPL-K54L are UL Recognized with 5000 Vrms for 1 minute per UL1577 Part Number Options Package Surface Mount Tape & Reel IEC 60747-5-5, IEC/EN/DIN EN 60747-5-2 QuantityRoHS Compliant ACPL-M50L -000E SO-5 X 100 per tube -060E X X 100 per tube -500E X X 1500 per reel -560E X X X 1500 per reel ACPL-054L -000E SO-8 X 100 per tube -060E X X 100 per tube -500E X X 1500 per reel -560E X X X 1500 per reel ACPL-W50L -000E Stretched SO-6 X 100 per tube -060E X X 100 per tube -500E X X 1000 per reel -560E X X X 1000 per reel ACPL-K54L -000E Stretched SO-8 X 80 per tube -060E X X 80 per tube -500E X X 1000 per reel -560E X X X 1000 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-M50L-500E to order product of Mini-fl at Surface Mount 5-pin package in Tape and Reel packaging with RoHS compliant. Option datasheets are available. Contact your Avago sales representative or authorized distributor for information.
ACPL-M50L Small Outline SO-5 Package (JEDEC MO-155) M50L YWW 7.0 ± 0.2 (0.276 ± 0.008) 2.5 ± 0.1 (0.098 ± 0.004) 0.102 ± 0.102 (0.004 ± 0.004) 4.4 ± 0.1 (0.173 ± 0.004) 1.27 (0.050) BSC 0.216 ± 0.038 (0.0085 ± 0.0015) 0.71 (0.028) MIN 0.4 ± 0.05 (0.016 ± 0.002) 3.6 ± 0.1* (0.142 ± 0.004) Dimensions in Millimeters (Inches) * Maximum mold flash on each side is 0.15 mm (0.006) Note: Floating lead protrusion is 0.15 mm (6 mils) max. 7° MAX. MAX. LEAD COPLANARITY = 0.102 (0.004)
1 VCC
8.27 (0.325) 1.8 (0.072) 2.5 (0.10) 1.3 (0.05) 0.64 (0.025) 4.4 (0.17) Dimension in Millimeters (Inches) Land Pattern Recommendation
ACPL-054L (Small Outline S0-8 Package) ACPL-W50L Stretched SO-6 Package 4.480±0.254 (0.0180±0.010) 45° 0.381±0.127 (0.015±0.005) 1.27 (0.050) BSG 0.20±0.10 (0.008±0.004) 0.45 (0.018) 0.750±0.250 (0.453±0.010) 6.807 0.268 Dimensions in Millimeters (Inches). Lead coplanarity = 0.1 mm (0.004 inches). 12.65 (0.498) LAND PATTERN RECOMMENDATION 3.180±0.127 (0.125±0.005) 1.590±0.127 (0.063±0.005)7° 1.91 (0.075) 321 456 0.76 (0.030) +0.127 +0.005 - 0.000 )( W50L YWW PART NUMBER DATE CODE ROHS-COMPLIANCE INDICATOR x54LV YWW 8765 4321 5.994 ± 0.203 (0.236 ± 0.008) 3.937 ± 0.127 (0.155 ± 0.005) 0.406 ± 0.076 (0.050) BSC 5.080 ± 0.127 (0.200 ± 0.005) 3.175 ± 0.127 (0.060) 45° X 0.432 (0.017) 0.228 ± 0.025 (0.009 ± 0.001) TYPE NUMBER (‘V’ for OPTION 060) DATE CODE LEAD FREE 0.305 (0.012) MIN. 0.203 ± 0.102 (0.008 ± 0.004) PIN ONE 0 ~ 7° Total package length (inclusive of mold flash) Dimensions in Millimeters (Inches). Lead coplanarity = 0.10 mm (0.004 inches) max. Option number 500 not marked. Note: Floating lead protrusion is 0.15 mm (6 mils) max. 7.49 (0.295) 1.9 (0.075) 0.64 (0.025) LAND PATTERN RECOMMENDATION
ACPL-K54L Stretched SO-8 Package Solder Refl ow Profi le Recommended refl ow condition as per JEDEC Standard, J-STD-020 (latest revision). Non-Halide Flux should be used. Regulatory Information The ACPL-M50L/054L/W50L/K54L will be approved by the following organizations: UL Approval under UL 1577, component recognition program up to VISO = 3750 VRMS for ACPL-M50L/054L and VISO = 5000 VRMS for ACPL-W50L/K54L. CSA Approval under CSA Component Acceptance Notice #5. IEC 60747-5-5, IEC/EN/DIN EN 60747-5-2 (Option 060E only) 0.381±0.13 (0.015±0.005) 1.270 (0.050) BSG 12.650 (0.5) 1.905 (0.1) 321 5678 5.850±0.254 (0.230±0.010) LAND PATTERN RECOMMENDATION Dimensions in Millimeters (Inches). Lead coplanarity = 0.1 mm (0.004 inches). 7° 45° 0.200±0.100 (0.008±0.004) 0.450 (0.018) 0.750±0.250 (0.453±0.010) 6.807±0.127 (0.268±0.005) 3.180±0.127 (0.125±0.005) 1.590±0.127 (0.063±0.005) K54L YWW PART NUMBER DATE CODE ROHS-COMPLIANCE INDICATOR
Insulation and Safety Related Specifi cations Parameter Symbol ACPL-M50L ACPL-054L ACPL-W50L ACPL-K54L Units Conditions Minimum External Air Gap (Clearance) L(101) 5 4.9 8 mm Measured from input terminals to output terminals, shortest distance through air. Minimum External Tracking (Creepage) L(102) 5 4.8 8 mm Measured from input terminals to output terminals, shortest distance path along body. Minimum Internal Plastic Gap (Internal Clearance) 0.08 0.08 0.08 mm Through insulation distance conductor to conductor, usually the straight line distance thickness between the emitter and detector. Tracking Resistance (Comparative Tracking Index) CTI 175 175 175 Volts DIN IEC 112/VDE 0303 Part 1 Isolation Group IIIa IIIa IIIa Material Group (DIN VDE 0110, 1/89, Table 1) IEC 60747-5-5, IEC/EN/DIN EN 60747-5-2 Insulation Characteristics* (Option 060E)
Description
Symbol Characteristic Unit ACPL-M50L/ 054L ACPL-W50L/ K54L Installation classifi cation per DIN VDE 0110/39, Table 1 for rated mains voltage ≤ 150 Vrms for rated mains voltage ≤ 300 Vrms for rated mains voltage ≤ 600 Vrms for rated mains voltage ≤ 1000 Vrms I – IV I – III I – II I – IV I – IV I – III I – III Climatic Classifi cation 55/105/21 55/105/21 Pollution Degree (DIN VDE 0110/39) 2 2 Maximum Working Insulation Voltage V IORM 560 1140 Vpeak Input to Output Test Voltage, Method b* VIORM x 1.875 = VPR, 100% Production Test with tm = 1 sec, Partial discharge < 5 pC VPR 1050 2137 Vpeak Input to Output Test Voltage, Method a* VIORM x 1.6 = VPR, Type and Sample Test, tm = 10 sec, Partial discharge < 5 pC VPR 896 1824 Vpeak Highest Allowable Overvoltage (Transient Overvoltage tini = 60 sec) V IOTM 6000 8000 Vpeak Safety-limiting values – maximum values allowed in the event of a failure. Case Temperature Input Current Output Power T S IS, INPUT PS, OUTPUT 150 150 600 175 230 600 mA mW Insulation Resistance at TS, V IO = 500 V R S >109 >109 * Refer to the optocoupler section of the Isolation and Control Components Designer’s Catalog, under Product Safety Regulations section, (IEC 60747-5-5, IEC/EN/DIN EN 60747-5-2) for a detailed description of Method a and Method b partial discharge test profi les. ** Refer to the following fi gure for dependence of PS and IS on ambient temperature.
Parameter Symbol Min. Max. Units Storage Temperature T S -55 125 °C Operating Temperature T A -40 105 °C Lead Soldering Cycle Temperature 260 °C Time 10 s Average Forward Input Current[1] IF(avg) 20 mA Peak Forward Input Current[2] (50% duty cycle, 1ms pulse width) IF(peak) 40 mA Peak Transient Input Current (≤1s pulse width, 300ps) IF(trans) 1A Reversed Input Voltage V R 5V Input Power Dissipation[3] PIN 36 mW Output Power Dissipation[4] PO 45 mW Average Output Current I O(AVG) 8m A Peak Output Current I O(PEAK) 16 mA Supply Voltage V CC -0.5 30 V Output Voltage V O -0.5 24 V Solder Refl ow Temperature Profi le See Package Outline Drawings section Notes: 1. Derate linearly above 85°C free-air temperature at a rate of 0.5 mA/°C. 2. Derate linearly above 85°C free-air temperature at a rate of 1.0 mA/°C. 3. Derate linearly above 85°C free-air temperature at a rate of 0.9 mW/°C. 4. Derate linearly above 85°C free-air temperature at a rate of 1.2 mW/°C. Recommended Operating Conditions Parameter Symbol Min. Max. Units Supply Voltage V CC 2.7 24 V Input Current, High Level I FH 31 0 m A Operating Temperature T A -40 105 °C Forward Input Voltage (OFF) V F(OFF) 0.8 V
Electrical Specifi cations (DC) Over recommended operating TA = -40°C to 105°C, supply voltage (2.7V ≤ VCC ≤ 24V) and unless otherwise specifi ed. All typicals are at TA=25°C Current Transfer Ratio CTR[1] ACPL-M50L 100 140 200 % T A = 25°C V O=0.4V V CC=3.3V or 5V IF=3mA 2,3 80 % V O=0.5V ACPL-054L ACPL-W50L ACPL-K54L 93 130 200 % T A = 25°C V O=0.4V V CC=3.3V or 5V IF=3mA 2,3 53 % V O=0.5V Logic Low Output Voltage VOL 0.2 0.4 V T A = 25°C I O=3mA V CC=3.3V or 5V IF=3mA0.2 0.5 V I O=1.6mA Logic High Output Current IOH 0.003 0.5 A TA = 25°C V O=VCC=5.5V I F=0mA 4,5 0.01 1 V O=VCC=24V
80 V O=VCC=24V
I CCL 36 100 A IF=3mA, VO=open, VCC=24V Logic High Supply Current per Channel I CCH 0.02 2 A IF=0mA, VO=open, VCC=24V Input Forward Voltage VF 1.5 1.8 V T A=25°C I F=3mA 1 1.5 1.95 V I F=3mA Input Reversed Breakdown Voltage BVR 5V IR=10A Temperature Coeffi cient of Forward Voltage VF/ TA -1.6 mV/°C I F=3mA Input Capacitance C IN 77 pF F = 1MHz, VF = 0 Notes: 1. CURRENT TRANSFER RATIO in percent is defi ned as the ratio of output collector current, I O, to the forward LED input current, IF, times 100%.
Switching Specifi cations (ACPL-M50L) Over recommended operating (TA = -40°C to 105°C), IF = 3mA, (2.7V ≤ VCC ≤ 24V), unless otherwise specifi ed. Parameter Symbol Min Typ Max Units Test Conditions Fig. Propagation Delay Time to Logic Low at Output TPHL 0.2 0.5 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=3.3 V, RL=1.2k, CL=15pF, VTHHL=1.5V 0.2 1 s 6a, 14 0.22 0.5 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=5.0 V, RL=1.9k, CL=15pF, VTHHL=1.5V 0.22 1 s 7a, 14 0.33 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=24V, RL=10k, CL=15pF, VTHHL=1.5V 0.33 1.3 s 8a, 14 Propagation Delay Time to Logic High at Output TPLH 0.38 0.8 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=3.3 V, RL=1.2k, CL=15pF, VTHHL=2.0V 0.38 1.2 s 6a, 14 0.31 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=5.0 V, RL=1.9k, CL=15pF, VTHHL=2.0V 0.31 1 s 7a, 14 0.3 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=24V, RL=10k, CL=15pF, VTHHL=2.0V 0.3 1 s 8a, 14 Pulse Width Distortion[1] PWD 0.18 0.8 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=3.3 V, RL=1.2k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.18 1.2 s 14 0.1 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=5.0V, RL=1.9k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 1 s 14 0.1 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=24V, RL=10k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 1 s 14 Propagation Delay Diff erence Between Any two Parts[2] tpsk 0.18 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=3.3 V , RL=1.2k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 0.6 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=5.0V, RL=1.9k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 0.6 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF= 3mA, VCC=24V, RL=10k, CL=15pF, VTHHL=2.0V Common Mode Transient Immunity at Logic High Output [3] |CMH| 1 52 5 kV/s V CM=1500V, IF=0mA, TA=25°C, RL=1.2k or 1.9k, VCC=3.3 V or 5V Common Mode Transient Immunity at Logic Low Output [4] |CML| 1 52 0 kV/s V CM=1500V, IF=3mA, TA=25°C, RL=1.2k, VCC=5V 10 15 kV/s V CM=1500V, IF=3mA, TA=25°C, RL=1.2k, VCC=3.3 V
Switching Specifi cations (ACPL-054L/W50L/K54L) Over recommended operating (TA = -40°C to 105°C), IF = 3mA, (2.7V ≤ VCC ≤ 24V), unless otherwise specifi ed. Parameter Symbol Min Typ Max Units Test Conditions Fig. Propagation Delay Time to Logic Low at Output TPHL 0.2 0.5 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=3.3 V, RL= 1.8k, CL=15pF, VTHHL=1.5V 0.2 1 s 6b, 14 0.22 0.5 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=5.0 V, RL= 2.9k, CL=15pF, VTHHL=1.5V 0.22 1 s 7b, 14 0.33 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=24V, RL=14.8k, CL=15pF, VTHHL=1.5V 0.33 1.3 s 8b, 14 Propagation Delay Time to Logic High at Output TPLH 0.38 0.8 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=3.3 V, RL=1.8k, CL=15pF, VTHHL=2.0V 0.38 1.4 s 6b, 14 0.31 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=5.0 V, RL=2.9k, CL=15pF, VTHHL=2.0V 0.31 1 s 7b, 14 0.3 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=24V, RL=14.8k, CL=15pF, VTHHL=2.0V 0.3 1 s 8b, 14 Pulse Width Distortion[1] PWD 0.18 0.8 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=3.3 V, RL=1.8k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.18 1.4 s 14 0.1 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=5.0V, RL = 2.9k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 1 s 14 0.1 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=24V, RL=14.8k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 1 s 14 Propagation Delay Diff erence Between Any two Parts[2] tpsk 0.18 0.7 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=3.3 V, RL=1.8k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 0.6 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=5.0V, RL=2.9k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V 0.1 0.6 s TA=25°C Pulse: f=10kHz, Duty cycle=50%, IF=3mA, VCC=24V, RL=14.8k, CL=15pF, VTHHL=1.5V, VTHLH=2.0V Common Mode Transient Immunity at Logic High Output [3] |CMH| 1 52 5 kV/s V CM=1500V, IF=0mA, TA=25°C, RL=1.8k or 2.9k, VCC=3.3 V or 5V Common Mode Transient Immunity at Logic Low Output [4] |CML| 1 52 0 kV/s V CM=1500V, IF=4mA, TA=25°C, RL=2.9k, VCC=5V 15 20 kV/s V CM=1500V, IF=3mA, TA=25°C, RL=1.8k, VCC=3.3 V Notes: 1. Pulse Width Distortion (PWD) is defi ned as |tPHL - tPLH| for any given device. 2. The diff erence between t PLH and t PHL between any two parts under the same test condition. (See IPM Dead Time and Propagation Delay Specifi cations section.) 3. Common transient immunity in a Logic High level is the maximum tolerable (positive) dVCM/dt on the rising edge of the common mode pulse, VCM, to assure that the output will remain in a Logic High state (i.e., VO > 2.0 V). 4. Common mode transient immunity in a Logic Low level is the maximum tolerable (negative) dV CM/dt on the falling edge of the common mode pulse signal, VCM to assure that the output will remain in a Logic Low state (i.e., VO < 0.8 V).
All Typical at TA = 25°C. Parameter Symbol Part Number Min. Typ. Max. Units Test Conditions Input-Output Momentary Withstand Voltage [1,2] VISO ACPL-M50L/054L 3750 V rms RH ≤ 50%, t = 1 min., T A = 25°C ACPL-W50L/K54L 5000 Input-Output Resistance [1] RI-O 1014 VI-O = 500 Vdc Input-Output Capacitance [1] CI-O 0.6 pF f = 1 MHz, T A = 25°C Input-Input Insulation Leakage Current[3] II-I 0.005 A RH ≤ 45%, t = 5 s VI-I = 500Vdc Input-Input Resistance [3] RI-I 1011 Input-Input Capacitance [3] CI-I 0.25 pF f = 1 MHz Notes: 1. Device considered a two terminal device: pins 1 and 3 shorted together and pins 4, 5 and 6 shorted together for ACPL-M50L, p ins 1, 2, 3 and 4 shorted together and pins 5, 6, 7 and 8 shorted together for ACPL-054L/K54L, pins 1, 2 and 3 shorted together and pins 4, 5 and 6 shorted together for ACPL-W50L. 2. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage ≥ 4500 VRMS for 1 second for ACPL-M50L/054L and ≥ 6000 VRMS for 1 second for ACPL-W50L/K54L (leakage detection current limit, II-O ≤ 5 A). 3. Measured between pins 1 and 2 shorted together and pins 3 and 4 shorted together for ACPL-054L/K54L.
0 V 10%
10 V IF
Figure 14. Switching Test Circuits Figure 15. Test Circuit for Transient Immunity and typical waveforms
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2011 Avago Technologies. All rights reserved. Figure 16. Current Transfer Ratio versus Input Current Figure 17. DC Pulse Transfer Characteristic