H11G1 MOTOROLA | Alldatasheet

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Technical content

1Motorola Optoelectronics Device Data /C0054/C0045/C0080/C0105/C0110 /C0068/C0073/C0080 /C0079/C0112/C0116/C0111/C0105/C0115/C0111/C0108/C0097/C0116/C0111/C0114/C0115 /C0068/C0097/C0114/C0108/C0105/C0110/C0103/C0116/C0111/C0110 /C0079/C0117/C0116/C0112/C0117/C0116 /C0040/C0079/C0110/C0045/C0067/C0104/C0105/C0112 /C0082/C0101/C0115/C0105/C0115/C0116/C0111/C0114/C0115/C0041 The H11G1, H11G2 and H11G3 devices consist of gallium arsenide IREDs optically coupled to silicon photodarlington detectors which have integral base–emitter resistors. The on–chip resistors improve higher temperature leakage characteristics. Designed with high isolation, high CTR, high voltage and low leakage, they provide excellent performance.

  • High CTR, H11G1 & H11G2 — 1000% (@ IF = 10 mA), 500% (@ IF = 1 mA)
  • High V(BR)CEO , H11G1 — 100 Volts, H11G2 — 80 Volts
  • To order devices that are tested and marked per VDE 0884 requirements, the suffix ”V” must be included at end of part number. VDE 0884 is a test option.

Applications

  • Interfacing and coupling systems of different potentials and impedances
  • Phase and Feedback Controls
  • General Purpose Switching Circuits
  • Solid State Relays MAXIMUM RATINGS (TA = 25°C unless otherwise noted) Rating Symbol Value Unit INPUT LED Reverse Voltage VR 6 Volts Forward Current — Continuous IF 60 mA Forward Current — Peak Pulse Width = 300 µs, 2% Duty Cycle IF 3 Amps LED Power Dissipation @ TA = 25°C Derate above 25°C PD 120 1.41 mW mW/ °C OUTPUT DETECTOR Collector–Emitter Voltage H11G1 H11G2 H11G3 VCEO 100 Volts Emitter–Base Voltage VEBO 7 Volts Collector Current — Continuous IC 150 mA Detector Power Dissipation @ TA = 25°C Derate above 25°C PD 150 1.76 mW mW/ °C TOTAL DEVICE Total Device Power Dissipation @ TA = 25°C Derate above 25°C PD 250 2.94 mW mW/ °C Operating Junction T emperature Range(2) TA –55 to +100 °C Storage Temperature Range(2) Tstg –55 to +150 °C Soldering T emperature (10 s) TL 260 °C Isolation Surge Voltage(1) (Peak ac Voltage, 60 Hz, 1 sec Duration) VISO 7500 Vac(pk) 1. Isolation surge voltage is an internal device dielectric breakdown rating. 1. For this test, Pins 1 and 2 are common, and Pins 4, 5 and 6 are common. 2. Refer to Quality and Reliability Section in Opto Data Book for information on test conditions. Preferred devices are Motorola recommended choices for future use and best overall value. GlobalOptoisolator is a trademark of Motorola, Inc. Order this document by H11G1/D /C0077/C0079/C0084/C0079/C0082/C0079/C0076/C0065 SEMICONDUCTOR TECHNICAL DATA GlobalOptoisolator  Motorola, Inc. 1995 /C0072/C0049/C0049/C0071/C0049 /C0072/C0049/C0049/C0071/C0050 /C0072/C0049/C0049/C0071/C0051 *Motorola Preferred Devices /C0042 SCHEMATIC [CTR = 1000% Min] STANDARD THRU HOLE CASE 730A–04 STYLE 1 PLASTIC /C0042 [CTR = 1000% Min] [CTR = 200% Min] PIN 1. ANODE 2. CATHODE 3. N.C. 4. EMITTER 5. COLLECTOR 6. BASE 6 1 REV 1

/C0072/C0049/C0049/C0071/C0049 /C0072/C0049/C0049/C0071/C0050 /C0072/C0049/C0049/C0071/C0051

2 Motorola Optoelectronics Device Data

ELECTRICAL CHARACTERISTICS (TA = 25°C unless otherwise noted)(1) Characteristic Symbol Min Typ(1) Max Unit INPUT LED Reverse Leakage Current (VR = 3 V) IR — 0.05 10 µA Forward Voltage IF = 10 mA) VF — 1.1 1.5 Volts Capacitance (V = 0 V, f = 1 MHz) C J — 18 — pF DARLINGTON OUTPUT (TA = 25°C and IF = 0 unless otherwise noted) Collector–Emitter Breakdown Current (IC = 1 mA, IF = 0) H11G1 H11G2 H11G3 V(BR)CEO 100 Volts Collector–Base Breakdown Voltage (IC = 100 µA, IF = 0) H11G1 H11G2 H11G3 V(BR)CBO 100 Volts Emitter–Base Breakdown Voltage (IE = 100 µA, IF = 0) V(BR)EBO 7 — — Volts Collector–Emitter Dark Current (VCE = 80 V) H11G1 (VCE = 80 V, TA = 80°C) H11G1 (VCE = 60 V) H11G2 (VCE = 60 V, TA = 80°C) H11G2 (VCE = 30 V) H11G3 ICEO 100 100 100 100 100 nA µA nA µA nA Capacitance (VCB = 10 V, f = 1 MHz) C CB — 6 — pF COUPLED (TA = 25°C unless otherwise noted) Collector Output Current (VCE = 1 V, IF = 10 mA) H11G1, 2 (VCE = 5 V, IF = 1 mA) H11G1, 2 (VCE = 5 V, IF = 1 mA) H11G3 IC (CTR)(2) 100 (1000) 5 (500) 2 (200) mA (%) Collector–Emitter Saturation Voltage (IF = 1 mA, IC = 1 mA) H11G1, 2 (IF = 16 mA, IC = 50 mA) H11G1, 2 (IF = 20 mA, IC = 50 mA) H11G3 VCE(sat) 0.75 0.85 0.85 1.2 Volts Isolation Surge Voltage(3,4) (60 Hz ac Peak, 1 Second) VISO 7500 — — Vac(pk) Isolation Resistance(3) (V = 500 Vdc) — 1011 — Ohms Isolation Capacitance(3) (V = 0 V, f = 1 MHz) C IO — 2 — pF SWITCHING (TA = 25°C) Turn–On Time (IF = 10 mA, VCC = 5 V, RL = 100 Ω , Pulse Width /C0112 300 µs, f = 30 Hz) ton — 5 — µs Turn–Off Time (IF = 10 mA, VCC = 5 V, RL = 100 Ω , Pulse Width /C0112 300 µs, f = 30 Hz) toff — 100 — 1.Always design to the specified minimum/maximum electrical limits (where applicable). 2. Current Transfer Ratio (CTR) = IC /IF x 100%. 3.For this test, Pins 1 and 2 are common, and Photodarlington Pins 4 and 5 are common. 4. Isolation Surge Voltage, VISO, is an internal device dielectric breakdown rating.

/C0072/C0049/C0049/C0071/C0049 /C0072/C0049/C0049/C0071/C0050 /C0072/C0049/C0049/C0071/C0051

4 Motorola Optoelectronics Device Data

R CMOS VDD TO 1 TO 2 180 Ω 1/4 W TTL 5 V 3 4 1000 Ω –50 V 1N4004 50 mA H11Gx INTERFACING TTL OR CMOS LOGIC TO 50–VOLT, 1000–OHMS RELAY FOR TELEPHONY APPLICATIONS In order to interface positive logic to negative–powered electromechanical relays, a change in voltage level and polarity plus electrical isolation are required. The H11Gx can provide this interface and eliminate the external amplifiers and voltage divider networks previously required. The circuit below shows a typical approach for the interface.

/C0072/C0049/C0049/C0071/C0049 /C0072/C0049/C0049/C0071/C0050 /C0072/C0049/C0049/C0071/C0051 5Motorola Optoelectronics Device Data PACKAGE DIMENSIONS CASE 730A–04 ISSUE G NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. DIMENSION L TO CENTER OF LEAD WHEN FORMED PARALLEL. STYLE 1: PIN 1. ANODE 2. CATHODE 3. NC 4. EMITTER 5. COLLECTOR 6. BASE 6 4 1 3 –A– –B– SEATING PLANE –T–

4 PLF

K CN G

6 PLD

6 PLE

MAM0.13 (0.005) B MT L M

6 PLJ

MBM0.13 (0.005) A MT DIM MIN MAX MIN MAX MILLIMETERSINCHES A 0.320 0.350 8.13 8.89 B 0.240 0.260 6.10 6.60 C 0.115 0.200 2.93 5.08 D 0.016 0.020 0.41 0.50 E 0.040 0.070 1.02 1.77 F 0.010 0.014 0.25 0.36 G 0.100 BSC 2.54 BSC J 0.008 0.012 0.21 0.30 K 0.100 0.150 2.54 3.81 L 0.300 BSC 7.62 BSC M 0 15 0 15 N 0.015 0.100 0.38 2.54 /C0095 /C0095 /C0095 /C0095 CASE 730C–04 ISSUE D –A– –B– /C0083 SEATING PLANE –T– J K L 6 PL MBM0.13 (0.005) A MT C D 6 PL MAM0.13 (0.005) B MT H G E 6 PL F 4 PL NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. DIM MIN MAX MIN MAX MILLIMETERSINCHES A 0.320 0.350 8.13 8.89 B 0.240 0.260 6.10 6.60 C 0.115 0.200 2.93 5.08 D 0.016 0.020 0.41 0.50 E 0.040 0.070 1.02 1.77 F 0.010 0.014 0.25 0.36 G 0.100 BSC 2.54 BSC H 0.020 0.025 0.51 0.63 J 0.008 0.012 0.20 0.30 K 0.006 0.035 0.16 0.88 L 0.320 BSC 8.13 BSC S 0.332 0.390 8.43 9.90 *Consult factory for leadform option availability

/C0072/C0049/C0049/C0071/C0049 /C0072/C0049/C0049/C0071/C0050 /C0072/C0049/C0049/C0071/C0051

6 Motorola Optoelectronics Device Data

*Consult factory for leadform option availability NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. DIMENSION L TO CENTER OF LEAD WHEN FORMED PARALLEL. CASE 730D–05 ISSUE D 6 4 1 3 –A– –B– N C KG F 4 PL SEATING D 6 PL E 6 PL PLANE –T– MAM0.13 (0.005) B MT L J DIM MIN MAX MIN MAX MILLIMETERSINCHES A 0.320 0.350 8.13 8.89 B 0.240 0.260 6.10 6.60 C 0.115 0.200 2.93 5.08 D 0.016 0.020 0.41 0.50 E 0.040 0.070 1.02 1.77 F 0.010 0.014 0.25 0.36 G 0.100 BSC 2.54 BSC J 0.008 0.012 0.21 0.30 K 0.100 0.150 2.54 3.81 L 0.400 0.425 10.16 10.80 N 0.015 0.040 0.38 1.02 Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters can and do vary in different applications. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should Buyer purchase or use Motorola products for any such unintended or unauthorized application, Buyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/Affirmative Action Employer. How to reach us: USA / EUROPE : Motorola Literature Distribution; JAPAN : Nippon Motorola Ltd.; T atsumi–SPD–JLDC, T oshikatsu Otsuki, P .O. Box 20912; Phoenix, Arizona 85036. 1–800–441–2447 6F Seibu–Butsuryu–Center, 3–14–2 T atsumi Koto–Ku, T okyo 135, Japan. 03–3521–8315 INTERNET : http://Design–NET .com 51 Ting Kok Road, T ai Po, N.T ., Hong Kong. 852–26629298 H11G1/D /C0042/C0072/C0049/C0049/C0071/C0049/C0047/C0068/C0042