66012 MICROPAC | Alldatasheet
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Technical content
MICROPAC INDUSTRIES, INC. OPTOELECTRONIC PRODUCTS DIVISION • 725 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 487-6918 www.micropac.com E-MAIL: optosales@micropac.com 3 - 26
66012 FOUR CHANNEL, HERMETICALLY SEALED, LOW-INPUT
CURRENT, 6N140 OPTOCOUPLER Mii OPTOELECTRONIC PRODUCTS DIVISION Features:
- DSCC Approved 8302401EX
- High current transfer ratio: 1000% typical
- 1500 Vdc isolation test voltage
- Low input current requirement: 0.5mA Applications:
- Military and Space
- High reliability systems
- Voltage Level Shifting
- Isolated Receiver Input
- Communication systems
DESCRIPTION
The 66012 optocoupler contains four infrared LEDs optically coupled to four corresponding high gain photon detectors. This unique quad optocoupler provides high CTR and low leakage currents over the full military temperature range (-55 ° to +125°C). The 66012 is a 16 pin dual-in-line, hermetically sealed package and is available in standard and MIL-PRF-38534 screened versions or tested to customer specifications. ABSOLUTE MAXIMUM RATINGS Package Dimensions Schematic Diagram .290 [7.37] .310 [7.87] PIN 1 XXXX Mii 6N140 .790 [20.06] .820 [20.83] 0.170 [4.32 MAX] 0.150 [3.81] .320 [8.13] MAX .020 [0.51] ALL DIMENSIONS ARE IN INCHES [MILLIMETERS] DATE CODE 8 K A A K GND V04 V03 K A A 2 K
14 V01
0.20 [0.51] MAX .090 [2.29] .110 [2.79] .007 [0.18] 0.13 [0.33] Notes: 1. Derate I F at 0.05 mA/°C above 25°C. 2. Collector output power plus one fourth of the total supply power is total output power. Derate at 0.46mW/°C above 25°C. 3. The lowest total I OH over temperature is developed by keeping V CC as low as possible, but greater that 2 volts. The negative voltage at the detector side should be applied to Pin 10.
MICROPAC INDUSTRIES, INC. OPTOELECTRONIC PRODUCTS DIVISION • 725 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 487-6918 www.micropac.com E-MAIL: optosales@micropac.com 3 - 28
66012 FOUR CHANNEL, HERMETICALLY SEALED, LOW-INPUT CURRENT, 6N140 OPTOCOUPLER
ELECTRICAL CHARACTERISTICS
Ta = -55°C to 125°C unless otherwise specified. PARAMETER SYMBOL MIN TYP MAX UNI TS TEST CONDITIONS NOTE Current Transfer Ratio CTR 300 300 200 1000 750 400 I F = 0.5mA, VO = 0.4V, VCC = 4.5V IF = 1.6mA, VO = 0.4V, VCC = 4.5V IF = 5.0mA, VO = 0.4V, VCC = 4.5V 1,2 1,2 1,2 Logic Low Output Voltage V OL 0.1 0.2 0.4 0.4 V V I F = 0.5mA, IOL = 1.5mA, VCC = 4.5V IF = 5.0mA, IOL = 10mA, VCC = 4.5V Logic High Output Current I OH .005 250 µAI F = 2µA, VO = VCC = 18V 1,3 High Level Output Current I CCH .010 40 µAI F1 =IF2 =IF3 =IF4 = 0mA, VCC = 18V Low Level Supply Current I CCL 24 m A I F1= IF2 = IF3 = IF4=1.6mA, VCC = 18V Input Forward Voltage V F 1.4 1.8 V I F = 1.6mA 1 Input Reverse Breakdown Voltage BV R 5V I R = 10µA 1 Input-Output Insulation Leakage Current II—O 1.0 µA V I—0 = 1500Vdc, Relative Humidity = 45% tA = 25°C, t = 5s Propagation Delay Time To High Output Level tPLH 5 µs µs IF = 0.5mA, VCC = 5.0V, RL = 4.7kΩ IF = 5mA, VCC = 5.0V, RL = 680kΩ Propagation Delay Time To Low Output Level t PHL 8 100 µs µs IF = 0.5mA, VCC = 5.0V, RL = 4.7kΩ IF = 5mA, VCC = 5.0V, RL = 680kΩ TYPICAL CHARACTERISTICS Ta = 25°C, VCC = 5V Each Channel PARAMETER SYMBOL MIN TYP MAX UNITS TEST CONDITIONS NOTE Input Capacitance C IN 60 pF V F = 0, f = MHz, ta = 25°C1 Capacitance (Input-Output) C I-O 1.5 pF f = 1MHz, t a = 25°C1 , 5 Input Diode Temperature Coefficient ∆vF ∆TA -1.8 mV/ °CI F = 1.6mA 1 Resistance (Input-Output) R I-0 1012 Ω VI—O = 500V, ta = 25°C1 , 5 Resistance (Input-Input) R I-I 10 12 Ω VI—I = 500V, ta = 25°C6 Input-Input Insulation Leakage Current I I-I 0.5 nA Relative Humidity = 45% VI—I = 500V, t = 5s Common Mode Transient immunity at High Output Level CMH 500 1000 V/ µsV CM = 50V P-P ,VCC = 5.0V, RL = 1.5kΩ, IF = OmA 7,9 Common Mode Transient Immunity at Low Output Level CML 500 1000 V/ µsV CM = 50V P-P ,VCC = 5.0V, RL = 1.5kΩ, IF = 1.6mA 8,9 NOTES: 1. Each channel. 2. CURRENT TRANSFER RATIO is defined as the ratio of output collector current, IO, to the forward LED input current., IF , times 100%. 3. I F = 2µA for channel under test. For all other channels, IF = 10mA. 4. Device considered a two-terminal device. Pins 1-6 and 16 are shorted together and pins 7-14 are shorted together. 5. Measured between each input pair shorted together. 6. Measured between adjacent pairs shorted together, i.e. between pins 1 and 2 shorted together and pins 3 and 4 shorted together, etc. 7. CM H is the maximum tolerable common mode transient to assure that the output will remain in a high logic state (ie. VO > @.0V). 8. CM L is the maximum tolerable common mode transient to assure that the output will remain in a low logic state (ie. VO < 0.8V). 9. In applications where dv/dt may exceed 50,000 V/ µs (such as static discharge) a series resistor, RCC , should be included to protect the detector IC”s from destructively high surge currents. The recommended value is RCC = 1V = kΩ 0.6IF (mA) RECOMMENDED OPERATING CONDITIONS: PARAMETER SYMBOL MIN MAX UNITS Input Current, Low Level I FL 02 µA Input Current, High Level I FH 0.5 5 mA Supply Voltage V CC 2.0 18 V SELECTION GUIDE PART NUMBER PART DESCRIPTION 66012-001 DSCC Dwg 8302401EX Quad Channel Optocoupler 66012-002 Quad Channel optocoupler, commercial, tested over full military temperature range (-55°C to +125°C) 66012-003 Quad Channel optocoupler, commercial (0° to +70°C) 66012-004 Quad Channel optocoupler, commercial (-40°C to +85°C)