53272 MICROPAC | Alldatasheet
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Technical content
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 1 of 9
53272 POWER MOSFET OPTOCOUPLER
± 90V – 2.0A Mii MICROPAC INDUSTRIES MICROCIRCUITS PRODUCTS DIVISION Features:
- Performance over –55°C to +125°C
- Compact Solid State Bi-directional Switch
- AC/DC Power Switching
- Maximum Average Current AC/DC: 1.0 A (1) DC only: 2.0 A (1)
- Optically Coupled
- Input/Output Isolation Tested to 1000 VDC
- High Level of Transient Immunity
- 3 A Output Surge Current
- Shock and Vibration Resistant
- MIL-PRF-38534
- Electrically Similar to the 53124 Applications:
- Satellite/Space systems
- Military/High Reliability Systems
- Standard 28 VDC and 48 VDC Load Driver
- Standard 24 VAC Load Driver
- Aircraft Controls
- AC/DC Electromechanical and Solid State Relay Replacement
- I/O Modules
- Switching Heaters
DESCRIPTION
The 53272 is a single channel power MOSFET optocoupler expanding upon the electrical performance of Mii P/N 53124 with reduced RDS(ON) and increased current capability. Performance is specified over the full military temperature range. Functionally, the device operates as a single-pole, normally open (1 Form A) solid-state relay. The device is actuated by an input current, which can be supplied from standard logic types such as open-collector TTL. The input current biases a light emitti ng diode that is optically coupled to an integrated photovoltaic di ode array. The photovoltaic array powers control circuitry that operates the output MOSFETs. Optimum switching of either AC or DC loads is provided by a configurable output. For AC loads, Connection A in Figure 1 must be used. Connection A will al so switch DC loads but Connection B, in Figure 1, provides DC-only operation with the advantages of substantial reduction in on-resistance and twice the output current capability as that obtained with Connection A.
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 2 of 9 ABSOLUTE MAXIMUM RATINGS: (1.6 mm below seating plane) (Pulse width < 100 ms; duty cycle < 50%) (Pulse width < 0.2 ms; duty cycle < 0.1%) Average Output Current Average Output Current, derated per Figure 3 Single Shot Output Current - Figure 4 Output Voltage RECOMMENDED OPERATING CONDITIONS: Parameter Symbol Min. Max. Units Input Current (ON) I F (ON) 5 20 mA Input Voltage (OFF) V F (OFF) 0 0.6 VDC Operating Temperature TA -55 +125 °C
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 3 of 9 ELECTRICAL SPECIFICATIONS TA = -55°C to +125°C, unless otherwise specified. Parameter Symbol Min. Typ.* Max. Unit s Test Conditions Notes Output Withstand Voltage V O(OFF) 90 110 V VF = 0.6 V IO = 10 µA Output On-Resistance (Connection A) .40 .68 Ω IF = 10 mA IO = 1 A (pulse duration ≤ 30 ms) Output On-Resistance (Connection B) R(ON) 0.10 0.18 Ω IF = 10 mA IO = 1 A (pulse duration ≤ 30 ms) Figure Output Leakage Current I O (OFF) 10 -4 10 µA VF = 0.6 V VO = 90 V Input Forward Voltage V F 1.0 1.7 2.1 V I F = 10 mA Input Reverse Breakdown Voltage VR 5 V IF = 10 µA Input-Output Insulation I I-O 1 µA RH ≤ 45%, t = 5 s VI-O = 1000 VDC TA = 25°C 5, 6 Turn-On Time t ON 2.0 8 ms IF = 10 mA VDD = 28 V IO = 800 mA Figure Turn-Off time t OFF 0.3 ms I F = 10 mA VDD = 28 V IO = 800 mA Figure * All typical values are at T A = 25°C, IF (ON) = 10 mA, VF (OFF) = 0.6 V unless otherwise specified.
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 4 of 9 All typical values are at T A = 25°C, IF (ON) = 10 mA, VF (OFF) = 0.6 V unless otherwise specified. Parameter Symbol Test Conditions Typical Value Units Notes Output Off-Capacitance C O (OFF) VO = 28 V f = 1 MHz 145 pF Output Offset Voltage V OS IF = 10 mA IO = 0 mA 2 µV 7 Input Diode Temperature Coefficient ∆VF /∆TA IF = 10 mA -1.4 mV/°C Input Capacitance C IN VF = 0 V f = 1 MHz 20 pF 8 Input-Output Capacitance C I-O VI-O = 0 V f = 1 MHz 1.5 pF 5 Input-Output Resistance R I-O VI-O = 500 V t = 60 s 1013 Ω 5 Notes: 1. Maximum average current rating where the case temperature (T C) is maintained below 120°C. 2. Maximum junction to case thermal resistance for the device is 15°C/W, where case temperature (TC) is measured at the center of the package bottom. 3. For rating, see Figure 5. The output power P D rating curve is obtained when the part is handling the maximum average output current IO as shown in Figure 3. 4. During the pulsed R ON measurement (IO duration < 30 ms), ambient (TA) and case temperature (TC) are equal. 5. Pins 2 through 3 shorted together and pins 5 through 8 shorted together. 6. This is a momentary withstand test, not an operating condition. 7. V OS is a function of IF and is defined between pins 5 and 8, with pin 5 as the reference. VOS must be measured in a stable ambient (free of temperature gradients). 8. Zero-bias capacitance measured between the LED anode and cathode. CAUTION: Care should be taken not to exceed the maximum output power dissipation, maximum case temperature, and maximum junction temperature when repetitively switching loads.
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 5 of 9 CONNECTION A AC/DC CONNECTION F Figure 1 - Terminal Connections 54 5 CONNECTION B DC CONNECTION I FV OI OV FI FV VO OI Figure 2 - Truth Table ON ON OFF OFF INPUT OUTPUT Case Outlines P, X and Y Terminal number Terminal symbol Connection A (AC or DC load) Connection B (DC load only)
1 NC NC
2 VF+ VF+
3 VF- VF-
4 NC NC
5 VO- VO+
6 NC NC
7 NC NO-
8 VO+ NO+
NC = No Connection
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. Figure 4. Single Shot (non- Figure 5. Output Power Rating vs.
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.
- PULSE GENERATOR HAS THE FOLLOWING CHARACTERISTICS: OUTPUT IMPEDANCE = 50
- LOAD CAPACITANCE (C ) INCLUDES PROBE AND JIG CAPACITANCE.
Figure 6. Switching Test Circuit and Waveform.
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 8 of 9
- C INCLUDES PROBE AND FIXTURE CAPACITANCE. 2. R INCLUDES PROBE AND FIXTURE RESISTANCE. O (PEAK) OVERSHOOT ON V t Od V d r (0.8) V = t O (PEAK) IS TO BE < 10% (0.8) V OR f O (PEAK) t 90% M V 10% F V 90% 10% PULSE GENERATOR + - INPUT OPEN + IF MC RM MONITOR NODE MV fr O(PEAK)V NOTES: M M O(PEAK) V (MAX) < 5V tt
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 DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: microsales@micropac.com 5/19/06 Rev F Pg. 9 of 9 .005 .095 MAX. .800 MIN. .395 MAX. .100 .016±.002 XXXX 53272-XXX
31757 USA
.300 .645 MAX
Ordering Information
+ PIND 53272-XXX TBD