Agilent HCPL-250L/ 050L/253L/053L LVTTL/LVCMOS Compatible 3.3 V Optocouplers (1 Mb/s)
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1 Agilent HCPL-50L/ 050L/5L/05L LVTTL/LVCMOS Compatible. V Optocouplers ( Mb/s) Data Sheet Description These diode-transistor optocouplers use an insulating layer between a LED and an integrated photodetector to provide electrical insulation between input and output. Separate connections for the photodiode bias and outputtransistor collector increase the speed up to a hundred times that of a conventional phototransistor coupler by reducing the basecollector capacitance. Functional Diagram NC ANODE CATHODE HCPL 50L/HCPL 050L V CC V B NC 5 GND These optocouplers are available in an -pin DIP and in an industry standard SO- package. The following is a cross reference table listing the -pin DIP part number and the electrically equivalent SO- part number. The SO- does not require "through holes" in a PCB. This package occupies approximately one-third the footprint area of the ANODE CATHODE CATHODE ANODE HCPL 5L/HCPL 05L 5 V CC GND Features Low power consumption High speed: Mb/s LVTTL/LVCMOS compatible Available in -pin DIP, SO- Open collector output Guaranteed performance from temperature: 0 C to +0 C Safety approval, UL, CSA, IEC/EN/DIN EN 0-5- Applications High voltage insulation Video signal isolation Power translator isolation in motor drives Line receivers Feedback element in switched mode power supplies High speed logic ground isolation LVTTL/LVCMOS Replaces pulse transformers Replaces slow phototransistor isolators Analog signal ground isolation TRUTH TABLE (POSITIVE LOGIC) LED ON LOW OFF HIGH A 0. µf bypass capacitor must be connected between pins 5 and. 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 standard dual-in-line package. The lead profile is designed to be compatible with standard surface mount processes. These optocouplers can be used in LVTTL/LVCMOS or wide bandwidth analog applications. The common mode transient immunity of 000 V/µs minimum to typical at V CM = 0 V guaranteed for these optocouplers. -Pin DIP HCPL-50L HCPL-5L SO- Package HCPL-050L HCPL-05L Ordering Information Specify Part Number followed by Option Number (if desired). Example: HCPL-50L #XXXX 00 = IEC/EN/DIN EN 0-5- V IORM 500 = Tape and Reel Packaging Option XXXE = Lead Free Option Option data sheets available. Contact Agilent sales representative or authorized distributor for information. Remarks: The notation # is used for existing products, while (new) products launched since 5th July 00 and lead free option will use - Schematic HCPL-50L/HCPL-050L HCPL-5L/HCPL-05L I CC V CC + I F I CC V CC ANODE CATHODE + V F I F I O V F I O SHIELD I B * V B 5 GND I F V F + I O 5 GND SHIELD
3 Package Outline Drawings -Pin DIP Package 9.5 ± 0.5 (0.0 ± 0.00). ± 0.5 (0.00 ± 0.00) TYPE NUMBER A XXXXZ YYWW UR 5 OPTION CODE* DATE CODE.5 ± 0.5 (0.50 ± 0.00) UL RECOGNITION.9 (0.0) MAX..5 ± 0. (0.0 ± 0.005). (0.00) MAX..0 (0.5) MAX. 5 TYP ( ) ).9 (0.5) MIN. 0.5 (0.00) MIN..00 ± 0.0 (0.0 ± 0.0) 0.5 (0.05) MAX..5 ± 0.5 (0.00 ± 0.00) DIMENSIONS IN MILLIMETERS AND (INCHES). * MARKING CODE LETTER FOR OPTION NUMBERS "V" = OPTION 00 OPTION NUMBERS 00 AND 500 NOT MARKED. NOTE: FLOATING LEAD PROTRUSION IS 0.5 mm (0 mils) MAX. Small Outline SO- Package LAND PATTERN RECOMMENDATION.9 ± 0. (0.55 ± 0.005) PIN ONE 5 XXXV YWW 0.0 ± 0.0 (0.0 ± 0.00).0 (0.050) BSC 5.99 ± 0.0 (0. ± 0.00) TYPE NUMBER (LAST DIGITS) DATE CODE 0. (0.05).9 (0.05).9 (0.95) * 5.00 ± 0. (0.00 ± 0.005) 5 X 0. (0.0).5 ± 0. (0.5 ± 0.005).5 (0.00) 0 ~ 0. ± 0.05 (0.009 ± 0.00) 0.0 ± 0.0 (0.00 ± 0.00) * TOTAL PACKAGE LENGTH (INCLUSIVE OF MOLD FLASH) ± 0.5 (0.05 ± 0.00) (0.0) MIN. DIMENSIONS IN MILLIMETERS (INCHES). LEAD COPLANARITY = 0.0 mm (0.00 INCHES) MAX. OPTION NUMBER 500 NOT MARKED. NOTE: FLOATING LEAD PROTRUSION IS 0.5 mm ( mils) MAX.
4 Solder Reflow Temperature Profile TEMPERATURE ( C) ROOM TEMPERATURE PREHEATING RATE C + C/ 0.5 C/SEC. REFLOW HEATING RATE.5 C ± 0.5 C/SEC. 0 C 50 C 0 C C + C/ 0.5 C.5 C ± 0.5 C/SEC. PREHEATING TIME 50 C, SEC. PEAK TEMP. 5 C 0 SEC. 0 SEC. 50 SEC. PEAK TEMP. 0 C SOLDERING TIME 00 C PEAK TEMP. 0 C TIGHT TYPICAL LOOSE TIME (SECONDS) Regulatory Information The devices contained in this data sheet have been approved by the following organizations: UL Approval under UL 5, Component Recognition Program, File E55. CSA Approval under CSA Component Acceptance Notice #5, File CA. IEC/EN/DIN EN 0-5- Approved under: IEC 0-5-:99 + A:00 EN 0-5-:00 + A:00 DIN EN 0-5- (VDE 0 Teil ):00-0 Pb-Free IR Profile TEMPERATURE T p 0 +0/-5 C T L C RAMP-UP C/SEC. MAX. T smax C T smin t s PREHEAT 0 to 0 SEC. t p t L TIME WITHIN 5 C of ACTUAL PEAK TEMPERATURE 5 SEC. RAMP-DOWN C/SEC. MAX. 0 to 50 SEC. 5 t 5 C to PEAK TIME NOTES: THE TIME FROM 5 C to PEAK TEMPERATURE = MINUTES MAX. T smax = 00 C, T smin = 50 C
5 Insulation and Safety Related Specifications -Pin DIP (00 Mil) SO- Parameter Symbol Value Value Units Conditions Minimum External Air L (0)..9 mm Measured from input terminals to output Gap (External Clearance) terminals, shortest distance through air. Minimum External Tracking L (0).. mm Measured from input terminals to output (External Creepage) terminals, shortest distance path along body. Minimum Internal Plastic mm Through insulation distance, conductor to Gap (Internal Clearance) 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 0-5-Insulation Related Characteristics Description Symbol PDIP Option 00 SO- Option 0 Units Installation classification per DIN VDE 00/.9, Table for rated mains voltage 50 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 55/5/ 55/5/ Pollution Degree (DIN VDE 00/.9) Maximum Working Insulation Voltage V IORM 0 5 V peak Input to Output Test Voltage, Method b* V IORM x.5 = V PR, 00% Production Test V PR 0 V peak with t m = sec, Partial Discharge < 5 pc Input to Output Test Voltage, Method a* V IORM x.5 = V PR, Type and Sample Test, V PR 95 9 V peak t m = 0 sec, Partial Discharge < 5 pc Highest Allowable Overvoltage* V IOTM V peak (Transient Overvoltage, t ini = 0 sec) Safety Limiting Values (Maximum values allowed in the event of a failure, also see Figure, Thermal Derating curve.) Case Temperature T S 5 50 C Input Current I S,INPUT 0 50 ma Output Power P S,OUTPUT mw Insulation Resistance at T S, V IO = 500 V R S Ω *Refer to the front of the optocoupler section of the current catalog, under Product Safety Regulations section, IEC/EN/DIN EN 0-5-, for a detailed description. Note: Isolation characteristics are guaranteed only within the safety maximum ratings which must be ensured by protective circuits in application. 5
6 Absolute Maximum Ratings Parameter Symbol Min. Max. Units Note Storage Temperature T S 55 5 C Operating Temperature T A C 55 5 Average Forward Input Current I F(AVG) 5 ma Peak Forward Input Current I F(PEAK) (50% duty cycle, ms pulse width) 50 ma (50% duty cycle, ms pulse width) 0 Peak Transient Input Current I F(TRANS) A ( µs pulse width, 00 pps) 0. Reverse LED Input Voltage (Pin -) V R 5 V Input Power Dissipation P IN 5 mw Average Output Current (Pin ) I O(AVG) ma Peak Output Current I O(PEAK) ma Emitter-Base Reverse Voltage V EBR 5 V Supply Voltage (Pin -5) V CC 0.5 V Output Voltage (Pin -5) 0.5 V Base Current I B 5 ma Output Power Dissipation P O 00 mw Lead Solder Temperature (Through Hole Parts Only). mm below seating plane, 0 sec. T LS 0 C up to seating plane, 0 seconds 0 C Reflow Temperature Profile T RP See Package Outline Drawings section Recommended Operating Conditions Parameter Symbol Min. Max. Units Power Supply Voltage V CC.. V Forward Input Current I F(ON) 0 ma Forward Input Voltage V F(OFF) 0 0. V Operating Temperature T A 0 5 C
7 Electrical Specifications (DC) Over Recommended Temperature (T A = 0 C to +0 C), V CC =. V, I F = ma, unless otherwise specified. See Note. Parameter Sym. Device Min. Typ. Max. Units Test Conditions Fig. Note Current Transfer CTR % T A = 5 C = 0. V I F = ma, 5, Ratio V CC =. V Logic Low L V I F = ma, Output Voltage V CC =. V T A = 5 C I O =.0 ma Logic High I OH 0.00 µa T A = 5 C = V CC =. V I F = 0 ma Output Current Logic Low I CCL.0 00 µa I F = ma, = Open, V CC =. V Supply Current Dual 00 Logic High I CCH µa T A = 5 C I F = 0 ma, = Open, Supply Current Dual 0 V CC =. V Input Forward V F.5. V T A = 5 C I F = ma Voltage Input Reverse BV R 5 V I R = 0 µa Breakdown Voltage Input C IN 0 pf f = MHz, V F = 0 V Capacitance Switching Specifications (AC) Over Recommended Temperature (T A = 0 C to +0 C), V CC =. V, I F = ma unless otherwise specified. All typicals at V CC =. V, T A = 5 C. Parameter Sym. Device Min. Typ.* Max. Units Test Conditions Fig. Note Propagation t PHL 0.5 µs R L =.9 kω 5, 9 Delay Time to Logic Low at Output Propagation t PLH 0.5 µs R L =.9 kω 5, 9 Delay Time to Logic High at Output Common Mode CM H kv/µs R L =. kω I F = 0 ma, T A = 5 C,,, 9 Transient R L =.9 kω V CM = 0 V p-p Immunity at C L = 5 pf Logic High Level Output Common Mode CM L kv/µs R L =. kω I F = ma, T A = 5 C,,, 9 Transient R L =.9 kω V CM = 0 V p-p Immunity at C L = 5 pf Logic Low Level Output *All typicals at T A = 5 C
8 Package Characteristics Over Recommended Temperature (T A = 0 C to 0 C) unless otherwise specified. Parameter Sym. Device Min. Typ.* Max. Units Test Conditions Fig. Note Input-Output V ISO -Pin DIP 50 V rms RH < 50%,, Momentary SO- t = min., Withstand T A = 5 C Voltage** I I-O -Pin DIP µa 5% RH, t = 5 s,, V I-O = kvdc, T A = 5 C Input-Output R I-O -Pin DIP 0 Ω V I-O = 500 Vdc Resistance SO- Input-Output C I-O -Pin DIP 0. pf f = MHz Capacitance SO- *All typicals at T A = 5 C. **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 0-5- Insulation Related Characteristics Table (if applicable), your equipment level safety specification or Agilent Application Note 0 entitled "Optocoupler Input-Output Endurance Voltage," publication number 59-0E. Notes:. Derate linearly above 0 C free-air temperature at a rate of 0. ma/ C (-Pin DIP). Derate linearly above 5 C free-air temperature at a rate of 0.5 ma/ C (SO-).. Derate linearly above 0 C free-air temperature at a rate of. ma/ C (-Pin DIP). Derate linearly above 5 C free-air temperature at a rate of.0 ma/ C (SO-).. Derate linearly above 0 C free-air temperature at a rate of 0.9 mw/ C (-Pin DIP). Derate linearly above 5 C free-air temperature at a rate of. mw/ C (SO-).. Derate linearly above 0 C free-air temperature at a rate of.0 mw/ C (-Pin DIP). Derate linearly above 5 C free-air temperature at a rate of. mw/ C (SO-). 5. CURRENT TRANSFER RATIO in percent is defined as the ratio of output collector current, I O, to the forward LED input current, I F, times 00.. Device considered a two-terminal device: Pins,,, and shorted together and Pins 5,,, and shorted together.. Common mode transient immunity in a Logic High level is the maximum tolerable (positive) dv CM /dt on the leading edge of the common mode pulse signal, 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 on the trailing edge of the common mode pulse signal, V CM, to assure that the output will remain in a Logic Low state (i.e., < 0. V).. The.9 kω load represents TTL unit load of. ma and the 5. ma kω pull-up resistor. 9. The. kω load represents LSTTL unit load of 0. ma and. kω pull-up resistor. 0. The frequency at which the AC output voltage is db below its mid-frequency value.. The JEDEC registration for the N specifies a minimum CTR of 5%. Agilent guarantees a minimum CTR of 5%.. See Option 00 data sheet for more information.. Use of a 0. µf bypass capacitor connected between pins 5 and is recommended.. In accordance with UL 5, each optocoupler is proof tested by applying an insulation test voltage 500 V rms for second (leakage detection current limit, I I-O 5 µa). This test is performed before the 00% Production test shown in the IEC/EN/DIN EN 0-5- Insulation Related Characteristics Table, if applicable. 5. In accordance with UL 5, each optocoupler is proof tested by applying an insulation test voltage 000 V rms for second (leakage detection current limit, I I-O 5 µa). This test is performed before the 00% Production test shown in the IEC/EN/DIN EN 0-5- Insulation Related Characteristics Table, if applicable.. This rating is equally validated by an equivalent AC proof test.
9 I F FORWARD CURRENT ma V F I F PIN DIP, SO T = 5 C A.5. NORMALIZED CURRENT TRANSFER RATIO PIN DIP, SO NORMALIZED I F = ma = 0. V 0. V CC =. V T A = 5 C I OH LOGIC HIGH OUTPUT CURRENT na PIN DIP, SO- 0 + I F = = V CC =. V V F FORWARD VOLTAGE VOLTS T A TEMPERATURE C T A TEMPERATURE C Figure. Input current vs. forward voltage. Figure. Current transfer ratio vs. temperature. Figure. Logic high output current vs. temperature. OUTPUT POWER P S, INPUT CURRENT I S P S (mw) I S (ma) T S CASE TEMPERATURE C Figure. Thermal derating curve, dependence of safety limiting value with case temperature per IEC/EN/DIN EN
10 I F 0 50% 50% L PULSE GEN. Z O = 50 Ω t r = 5 ns I F MONITOR I F 0% DUTY CYCLE /f < 00 µs 5 0.µF R L +. V C L =.5 µf t PHL t PLH R M Figure 5. Switching test circuit. IF +. V B V CM 0% 90% 90% 0% 0 V t r t f A * 0. µf R L. V SWITCH AT A: I = 0 ma F VFF 5 SWITCH AT B: I = ma F L V CM + PULSE GEN. Figure. Test circuit for transient immunity and typical waveforms. 0
11 For product information and a complete list of distributors, please go to our web site. For technical assistance call: Americas/Canada: + (00) 5-0 or (9) - Europe: +9 (0) 90 China: Hong Kong: (+5) 5 9 India, Australia, New Zealand: (+5) Japan: (+ ) 5-5 (Domestic/International), or (Domestic Only) Korea: (+5) Singapore, Malaysia, Vietnam, Thailand, Philippines, Indonesia: (+5) 55 0 Taiwan: (+5) 55 Data subject to change. Copyright 00 Agilent Technologies, Inc. Obsoletes 59-0EN January 5, EN
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