HCPL-270L/070L/273L/073L

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1 Low Input Current, High Gain, LVTTL/LVCMOS Compatible Optocouplers Description These high gain series couplers use a Light Emitting Diode and an integrated high gain photodetector to provide extremely high current transfer ratio between input and output. Separate pins for the photodiode and output stage result in LVTTL compatible saturation voltages and high speed operation. Where desired, the V CC and terminals may be tied together to achieve conventional photo-darlington operation. A base access terminal allows a gain bandwidth adjustment to be made. These optocouplers are for use in LVTTL/LVCMOS or other low power applications. A 400% minimum current transfer ratio is guaranteed over 0 to +0 C operating range for only 0. ma of LED current. The HCPL-00L and HCPL-0L are surface-mount devices packaged in an industry-standard SOIC- footprint. The SOIC- does not require through holes in a PCB. This package occupies approximately one-third the footprint area of the standard dual-in-line package. The lead profile is designed to be compatible with standard surface-mount processes. Features. V/ V dual supply voltages Low power consumption High current transfer ratio Low input current requirements: 0. ma LVTTL/LVCMOS compatible output Performance guaranteed over temperature 0 C to +0 C Base access allows gain bandwidth adjustment High output current: 0 ma Safety approval, UL, IEC/EN/DIN EN 04--, CSA Applications Ground isolate most logic families: LVTTL/LVCMOS Low input current line receiver High voltage insulation EIA RS-C line receiver Telephone ring detector V AC line voltage status indicator: low input power dissipation Low power systems: ground isolation Functional Diagram HCPL-0L/00L HCPL-L/0L NC V CC ANODE V CC TRUTH TABLE ANODE CATHODE V B CATHODE CATHODE LED ON OFF LOW HIGH NC 4 GND ANODE 4 GND Note: A 0. μf bypass capacitor connected between pins and is recommended. SHIELD 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 Ordering Information Ordering Information HCPL-0L, HCPL-L, HCPL-00L and HCPL-0L are UL Recognized with 0 Vrms for minute per UL and are approved under CSA Component Acceptance Notice #, File CA 4. Part Number HCPL-0L HCPL-L HCPL-00L HCPL-0L RoHS Compliant Option Non-RoHS Compliant Package Surface Mount Gull Wing Tape & Reel UL 000 Vrms/ Minute Rating IEC/EN/DIN EN 04-- Quantity -000E no option 00 mil DIP- 0 per tube -00E -00 X X 0 per tube -00E -00 X X X 000 per tube -00E -00 X 00 per tube -0E -0 X X X X 00 per tube -000E no option SO- X 00 per tube -00E -00 X X 00 per tube -00E -00 X X 00 per tube -0E -0 X X X 00 per tube 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 : HCPL-L-00E to order product of 00 mil DIP Gull Wing Surface Mount package in Tape and Reel packaging with IEC/EN/DIN EN 04-- Safety Approval and RoHS compliant. Example : HCPL-L to order product of 00 mil DIP package in Tube packaging and non RoHS compliant. Option data sheets are available. Contact your Avago sales representative or authorized distributor for information. Remarks: The notation #XXX is used for existing products, while (new) products launched since July, 00 and RoHS compliant will use XXXE. - -

3 Selection Guide Selection Guide Single Channel Package HCPL- -Pin DIP (00 Mil) Dual Channel Package HCPL- Single Channel Package HCPL- Small Outline SO- Dual Channel Package HCPL- Minimum Input ON Current ( ) Minimum CTR 0L L 00L 0L 0. ma 400% Schematic + I CC V CC V F V CC I CC - I O ANODE + V F - CATHODE I O - V F I O + GND 4 SHIELD I B V B SHIELD GND USE OF A 0. μf BYPASS CAPACITOR CONNECTED BETWEEN PINS AND IS RECOMMENDED HCPL-0L/HCPL-00L HCPL-L/HCPL-0L - -

4 UR HCPL-0L/00L/L/0L Package Outline Drawings Package Outline Drawings -Pin DIP Package 9. ± 0. (0.0 ± 0.00). ± 0. (0.00 ± 0.00) TYPE NUMBER A XXXXZ OPTION CODE* DATE CODE. ± 0. (0.0 ± 0.00) YYWW 4 UL RECOGNITION.9 (0.04) MAX.. ± 0. (0.40 ± 0.00). (0.00) MAX. 4.0 (0.) MAX TYP ( ) ).00 ± 0.0 (0.04 ± 0.0).9 (0.) MIN. 0. (0.0) MAX..4 ± 0. (0.00 ± 0.00) 0. (0.00) MIN. DIMENSIONS IN MILLIMETERS AND (INCHES). * MARKING CODE LETTER FOR OPTION NUMBERS "L" = OPTION 00 "V" = OPTION 00 OPTION NUMBERS 00 AND 00 NOT MARKED. NOTE: FLOATING LEAD PROTRUSION IS 0. mm (0 mils) MAX. Small Outline SO- Package TYPE NUMBER (LAST DIGITS) OPTION 00 CODE LAND PATTERN RECOMMENDATION.9 ± 0. (0. ± 0.00) XXXV YWW.994 ± 0.0 (0. ± 0.00) DATE CODE.49 (0.9) PIN ONE 4 * 0.40 ± 0.0 (0.0 ± 0.00).0 (0.00) BSC. ± 0. (0. ± 0.00).00 ± 0. (0.00 ± 0.00) TOTAL PACKAGE LENGTH (INCLUSIVE OF MOLD FLASH).0 ± 0.4 (0.0 ± 0.00) DIMENSIONS IN MILLIMETERS (INCHES). LEAD COPLANARITY = 0.0 mm (0.004 INCHES) MAX. OPTION NUMBER 00 NOT MARKED. * NOTE: FLOATING LEAD PROTRUSION IS 0. mm ( mils) MAX..4 (0.00) 0 ~ 0.0 (0.0) MIN. 4 X 0.4 (0.0) 0.0 ± 0.0 (0.00 ± 0.004) 0.4 (0.0) 0. ± 0.0 (0.009 ± 0.00).9 (0.0) - 4 -

5 Solder Reflow Temperature Profile Solder Reflow Temperature Profile TEMPERATURE ( C) PREHEATING RATE C + C/-0. C/SEC. REFLOW HEATING RATE. C ± 0. C/SEC. 0 C 0 C 40 C C + C/-0. C. C ± 0. C/SEC. PEAK TEMP. 4 C 0 SEC. 0 SEC. SOLDERING TIME 00 C PEAK TEMP. 40 C PEAK TEMP. 0 C 00 PREHEATING TIME 0 C, SEC. 0 SEC. ROOM TEMPERATURE TIME (SECONDS) TIGHT TYPICAL LOOSE Note: Non-halide flux should be used. Recommended Pb-Free IR Profile TEMPERATURE T p T L T smax T smin C 0-00 C RAMP-UP C/SEC. MAX. 0 +0/- C t p TIME WITHIN C of ACTUAL PEAK TEMPERATURE 0-40 SEC. RAMP-DOWN C/SEC. MAX. t s PREHEAT 0 to 0 SEC. t L 0 to 0 SEC. t C to PEAK TIME NOTES: THE TIME FROM C to PEAK TEMPERATURE = MINUTES MAX. T smax = 00 C, T smin = 0 C Note: Non-halide flux should be used. Regulatory Information The devices contained in this data sheet have been approved by the following organizations: UL Approval under UL, Component Recognition Program, File E. CSA Approval under CSA Component Acceptance Notice #, File CA 4. IEC/EN/DIN EN 04-- Approved under: IEC 04--:99 + A:00 EN 04--:00 + A:00 DIN EN 04-- (VDE 04 Teil ):00-0 (Option 00 only) - -

6 Insulation and Safety Related Specifications Insulation and Safety Related Specifications Parameter Symbol -Pin DIP (00 Mil) Value SO- Value Unit Conditions Minimum External Air Gap (External Clearance) Minimum External Tracking (External Creepage) Minimum Internal Plastic Gap (Internal Clearance) L (0). 4.9 mm Measured from input terminals to output terminals, shortest distance through air. L (0).4 4. mm Measured from input terminals to output terminals, shortest distance path along body mm Through insulation distance, conductor to conductor, usually the direct distance between the photoemitter and photodetector inside the optocoupler cavity. Tracking Resistance CTI Volts DIN IEC /VDE 00 Part. (Comparative Tracking Index) Isolation Group IIIa IIIa Material Group (DIN VDE 00, /9, Table ). IEC/EN/DIN EN 04-- Insulation Related Characteristics Description Symbol -Pin DIP (00 Mil) SO- Unit Installation classification per DIN VDE 00/.9, Table For rated mains voltage 0 V rms I-IV For rated mains voltage 00 V rms I-IV I-III For rated mains voltage 00 V rms I-III I-II Climatic Classification /00/ /00/ Pollution Degree (DIN VDE 00/.9) Maximum Working Insulation Voltage V IORM 0 V peak Input to Output Test Voltage, Method b a V PR =. x V IORM, 00% Production Test with t P = sec, Partial Discharge < pc Input to Output Test Voltage, Method a a V PR =. x V IORM, Type and Sample Test, t P = 0 sec, Partial Discharge < pc V PR 0 V peak V PR V peak Highest Allowable Overvoltage (Transient Overvoltage, t ini = 0 sec) V IOTM V peak Safety Limiting Values (Maximum values allowed in the event of a failure.) Case Temperature T S 0 C Current (Input Current, P S = 0) I S,INPUT ma Output Power P S,OUTPUT mw Insulation Resistance at T S, V IO = 00 V R S Ω a. Refer to the front of the optocoupler section of the current catalog, under Product Safety Regulations section, IEC/EN/DIN EN 04--, for a detailed description. NOTE Isolation characteristics are guaranteed only within the safety maximum ratings which must be ensured by protective circuits in application. - -

7 Absolute Maximum Ratings (No Derating Required up to + C) Absolute Maximum Ratings (No Derating Required up to + C) Parameter Symbol Min Max Unit Storage Temperature T S C Operating Temperature T A 40 C Average Forward Input Current (AVG) 0 ma Peak Forward Input Current (PEAK) 40 ma (0% Duty Cycle, ms Pulse Width) Peak Transient Input Current (TRAN).0 A (< μs Pulse Width, 00 pps) Reverse Input Voltage V R V Input Power Dissipation P I mw Output Current (Pin ) I O 0 ma Emitter Base Reverse Voltage (Pin -) V EB 0. V Supply Voltage and Output Voltage V CC 0. V Output Power Dissipation P O 00 mw Total Power Dissipation P T mw Lead Solder Temperature 0 C for 0 sec,. mm below seating plane. (for Through Hole Devices) Reflow Temperature Profile See Package Outline Drawings section. (for SOIC- and Option #00) Recommended Operating Conditions Parameter Symbol Min Max Unit Power Supply Voltage V CC..0 V Forward Input Current (ON) (ON) 0..0 ma Forward Input Voltage (OFF) V F(OFF) 0 0. V Operating Temperature T A 0 0 C - -

8 Electrical Specifications Electrical Specifications 0 C T A +0 C,. V V CC. V, 0. ma (ON) ma, 0 V V F(OFF) 0. V, unless otherwise specified. All typicals at T A = C. (See Note.) Parameter Symbol Device HCPL- Min Typ a Max Unit Test Conditions Fig Note Current Transfer Ratio CTR % = 0. ma V CC =. V,, = 0.4 V Logic Low Output Voltage Logic High Output Current Logic Low Supply Current L V =. ma, I O = ma a. All typical values at T A = C and V CC =. V, unless otherwise noted V =.0 ma, I O = ma V CC =. V I OH μa = V CC =. V = 0 ma I CCL 0L/00L 0.4. ma V CC =. V = =. ma L/0L 0.. ma = = Open Logic High I CCH 0L/00L 0.00 μa V CC =. V = = 0 ma Supply Current L/0L 0.00 μa = = Open Input Forward Voltage V F.. V T A = C =. ma, 4 Input Reverse Breakdown Voltage BV R.0 V I R = 0 μa, T A = C Temperature Coefficient ΔVF/ΔTA. mv/ C =. ma of Forward Voltage Input Capacitance C IN 0 pf f = MHz, V F = 0 Electrical Specifications 0 C T A +0 C, 4. V V CC V, 0. ma (ON) ma, 0 V V F(OFF) 0. V, unless otherwise specified. All typicals at T A = C. (See Note.) Parameter Symbol Device HCPL- Min Typ a Max Unit Test Conditions Fig Note Current Transfer Ratio CTR % =. ma, V CC = 4. V, = 0. V, Logic Low Output Voltage L V =. ma, I O = 4. ma, V CC = 4. V Logic High Output Current I OH 0. 0 μa = V CC = V, = 0 ma Logic Low Supply Current I CCL 0.9 ma V CC = V, = =. ma, V 0 = V 0 = Open Logic High Supply Current I CCH μa V CC = V, = = 0 ma, V 0 = V 0 = Open Input Forward Voltage V F.4. V T A = C 4. V =. ma - -

9 Switching Specifications (AC) Parameter Symbol Device HCPL- Input Reverse BV R V I R = 0 μa, T A = C Breakdown Voltage Temperature Coefficient of ΔVF/ΔTA. mv/ C =. ma Forward Voltage Input Capacitance C IN 0 pf f = MHz, V F = 0 a. All typical values at T A = C and V CC = V, unless otherwise noted. Min Typ a Max Unit Test Conditions Fig Note Switching Specifications (AC) Over recommended operating conditions (T A = 0 C to +0 C), V CC =. V, unless otherwise specified. (See Note.) Parameter Symbol Min Typ a Max Unit Test Conditions Fig Note Propagation Delay Time to Logic Low at Output Propagation Delay Time to Logic High at Output Common Mode Transient Immunity at Logic High Level Output Common Mode Transient Immunity at Logic Low Level Output t PHL 0 μs = 0. ma, R L = 4. kω t PLH 90 μs = 0. ma, R L = 4. kω CM H V/μs = 0 ma, T A = C, R L =. kω, V CM = 0 V p-p,, CM L V/μs =. ma, T A = C, R L =. kω, V CM = 0 V p-p,, a. All typical values at T A = C and V CC =. V, unless otherwise noted. Switching Specifications (AC) Over recommended operating conditions (T A = 0 C to +0 C), V CC = V, unless otherwise specified. (See Note.) Parameter Symbol Min Typ a Max Unit Test Conditions Fig Note Propagation Delay Time to Logic Low at Output Propagation Delay Time to Logic High at Output Common Mode Transient Immunity at Logic High Level Output Common Mode Transient Immunity at Logic Low Level Output t PHL μs =. ma, R L =. kω,,, 9 t PLH 0 μs =. ma, R L =. kω,, 9 CM H V/μs = 0 ma, T A = C, R L =. kω, V CM = 0 V p-p 0,, CM L V/μs =. ma, T A = C, R L =. kω, V CM = 0 V p-p 0,, a. All typical values at T A = C and V CC = V, unless otherwise noted

10 Package Characteristics Package Characteristics Parameter Symbol Device HCPL- Min Typ a Max Unit Test Conditions Fig Note Input-Output Momentary Withstand Voltage b V ISO 0 Vrms RH 0%, t = min, T A = C 4, 9 Resistance (Input-Output) R I-O 0 Ω V I-O = 00 Vdc, RH 4% 4 Capacitance (Input-Output) C I-O 0. pf f = MHz Input-Input Insulation Leakage Current I I-I 0.00 μa RH 4%, V I-I = 00 Vdc Input-Input Insulation R I-I 0 Ω Resistance Capacitance (Input-Input) C I-I 0L 0.0 pf L pf 00L 0. pf 0L pf a. All typical values at T A = C, unless otherwise noted. b. 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 04-- Insulation Characteristics Table (if applicable), your equipment level safety specification, or Avago Application Note 04, Optocoupler Input-Output Endurance Voltage. Notes:. Pin should be the most negative voltage at the detector side.. Each channel.. DC Current Transfer Ratio (CTR) is defined as the ratio of output collector current, I O, to the forward LED input current,, times 00%. 4. Device considered a two-terminal device: pins,,, and 4 shorted together, and pins,,, and shorted together.. Measured between pins and shorted together, and pins and 4 shorted together.. Common mode transient immunity in a Logic High level is the maximum tolerable (positive) dv CM /dt of the common mode pulse, V CM, to assure that the output will remain in a Logic High state (i.e., >.0 V). Common mode transient immunity in a Logic Low level is the maximum tolerable (negative) dv CM /dt of the common mode pulse, V CM, to assure that the output will remain in a Logic Low state (i.e., < 0. V).. In applications where dv/dt may exceed 0,000 V/μs (such as static discharge) a series resistor, R CC, should be included to protect the detector IC from destructively high surge currents. The recommended value is R CC = 0 Ω.. Use of a 0. μf bypass capacitor connected between pins and adjacent to the device is recommended. 9. In accordance with UL, each optocoupler is proof tested by applying an insulation test voltage > 400 Vrms for second (leakage detection current limit, I I-O < μa). 0. In accordance with UL, each optocoupler is proof tested by applying an insulation test voltage > 000 Vrms for second (leakage detection current limit, I I-O < μa).. Measured between the LED anode and cathode shorted together and pins through shorted together

11 Package Characteristics Figure Current Transfer Ratio vs. Forward Current Figure Current Transfer Ratio vs. Forward Current CTR - CURRENT TRANSFER RATIO - % C V CC =. V = 0.4 V 0 C C 0 C -40 C CTR - CURRENT TRANSFER RATIO - % V CC =.0 V = 0.4 V T A = C T A = 0 C T A = C T A = 0 C T A = -40 C FORWARD CURRENT - ma FORWARD CURRENT - ma Figure Output Current vs. Input Diode Forward Current Figure 4 Output Current vs. Input Diode Forward Current V CC =.0 V = 0.4 V I O - OUTPUT CURRENT - ma T A = C T A = 0 C T A = C T A = 0 C T A = -40 C I O - OUTPUT CURRENT - ma 0.0 T A = C T A = C T A = -40 C INPUT DIODE FORWARD CURRENT - ma INPUT DIODE FORWARD CURRENT - ma Figure Input Diode Forward Current vs. Forward Voltage Figure Forward Voltage vs. Temperature - FORWARD CURRENT - ma V F - T A = C T A = 0 C T A = C T A = 0 C V F - FORWARD VOLTAGE - V...4. =. ma T A = -40 C V F - FORWARD VOLTAGE - V T A - TEMPERATURE - C - -

12 Package Characteristics Figure Switching Test Circuit 0. V PULSE GEN. Z O= 0 W t r= ns R L. V (SATURATED RESPONSE) t PHL 0% 0% L t PLH 0% DUTY CYCLE I/f < 00 μs MONITOR 4 0. μf C L = pf* R M (NON-SATURATED RESPONSE) 90% 0% 0% 90%. V * INCLUDES PROBE AND FIXTURE CAPACITANCE t f t r Figure Switching Test Circuit V t PHL 0. V V L PULSE GEN. Z O = 0 W t r = ns I MONITOR F R M 4 0.μF R L + V C = pf L. V t PLH L - -

13 Package Characteristics Figure 9 Test Circuit for Transient Immunity and Typical Waveforms V CM 0 V 0 V 0% t r 90% 90% t r, t f = ns 0% t f A B R CC (SEE NOTE ) R L +. V SWITCH AT A: I = 0 ma F. V V FF 4 SWITCH AT B: I =. ma F L V CM + - PULSE GEN. Figure 0 Test Circuit for Transient Immunity and Typical Waveforms t r, t f= ns V CM 0 V 0% 90% 90% 0% 0 V t r t f V FF B A R CC (SEE NOTE ) 0 W 0. μf R L + V SWITCH AT A: I = 0 ma F V 4 SWITCH AT B: I =. ma F L V CM + - PULSE GEN. - -

14 For product information and a complete list of distributors, please go to our web site: and the A logo are trademarks of in the United States and other countries. All other brand and product names may be trademarks of their respective companies. Data subject to change. Copyright 0-0. All Rights Reserved. AV0-04EN March 9, 0

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