52464
Micro (Pick and Place) Photovoltaic Hi Voltage Output Optocoupler
Mii
HYBRID MICROELECTRONICS PRODUCTS DIVISION
Features: • • • • • 12V min. / 14V typical output at 25°C Input/Output Isolation Tested to 1000 VDC Mil Temp Range Pick and Place mounting Solderable terminations
Applications: • FET and IGBT drivers
DESCRIPTION The 52464 Photovoltaic Optocoupler is designed for Pick and Place applications using solder or conductive epoxy attachment. It is a single channel optocoupler consisting of optically coupled LED light to photovoltaic detector. Each microcoupler is 100% DC tested at 25°C. (+125°C testing or 100% element evaluation available upon request). All couplers are designed to operate over the full military temperature range. The 52464 is optimized for gate drive of FETs and IGBTs requiring full modulation. ABSOLUTE MAXIMUM RATINGS Continuous Input Current ......................................................................................................................................... 30mA Storage Temperature Range ................................................................................................................. -65ºC to +125ºC Operating Temperature ..........................................................................................................................-55ºC to +125ºC Solder Temperature for 10 seconds ...................................................................................................................... 300ºC Reverse Input Voltage .............................................................................................................................................6 VDC
RECOMMENDED OPERATING CONDITIONS: Parameter Input Current Operating Case Temperature Symbol IF (ON) TC Min. 1 -55 Max. 20 +125 Units mA °C
52464
Micro Photovoltaic Optocoupler
Micropac Industries cannot assume any responsibility for any circuits shown or represent that they are free from patent infringement. Micropac reserves the right to make changes at any time in order to improve design and to supply the best product possible.
MICROPAC INDUSTRIES, INC. MICROCIRCUITS PRODUCTS DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 E-MAIL: microsales@micropac.com 1/23/04 www.micropac.com Page 1 of 3
ELECTRICAL SPECIFICATIONS TC= 25°C to +125°C unless otherwise specified Parameter
Input Forward Voltage Input Reverse Breakdown Voltage Input-to-Output Capacitance Output open circuit Voltage Output Voltage Temperature change Output short circuit Current Input-Output Leakage
Sym.
VF VR CIO Vopen Vtemp Ishort II-O
Min.
2.2 6
Typ.*
Max.
3.0
Units
VDC VDC pF V mV/°C µA
Test Conditions
IF = 10 mA IR = 100 µA Inputs and Outputs shorted IF= 10mA IF=10 IF=10mA RH ≤ 45%, t = 5 s VI-O = 1000 VDC TC = 25°C
Notes
40 4
7
12 10
14 -2.2 15 1
µA
1
Notes: 1. This parameter is measured between both Output terminals shorted together and both Input terminals shorted together. 2. Dot on top of package indicates LED Anode, Pin 1. 3. LED Anode pad Pin 1 is .022±.003” X .025±.003”. Remaining pads are .025±.003” X .025±.003”.
Schematic Diagram
52464
Micro Photovoltaic Optocoupler
Micropac Industries cannot assume any responsibility for any circuits shown or represent that they are free from patent infringement. Micropac reserves the right to make changes at any time in order to improve design and to supply the best product possible. MICROPAC INDUSTRIES, INC. MICROCIRCUITS PRODUCTS DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 E-MAIL: microsales@micropac.com 1/23/04 www.micropac.com Page 2 of 3
Micropac Industries cannot assume any responsibility for any circuits shown or represent that they are free from patent infringement. Micropac reserves the right to make changes at any time in order to improve design and to supply the best product possible. MICROPAC INDUSTRIES, INC. MICROCIRCUITS PRODUCTS DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 E-MAIL: microsales@micropac.com 1/23/04 www.micropac.com Page 3 of 3
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