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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 Rev A. 02-21-2013 Pg. 1 of 5

53274 Solid State Relay

SPST, 90VDC – 10A Mii MICROCIRCUITS DIVISION Features:  Hermetically Sealed in Surface Mount Package  Low On-resistance  10A Continuous Output Current  Performance over -55°C to +125°C  Optically Coupled  Input/Output Isolation Tested to 1000 VDC  Shock and Vibration Resistant Applications:  Military/High Reliability Systems  Power Distribution/Switching  Solenoid Driver  Stepper Motor Driver  Heater Switching

DESCRIPTION

The 53274 is a Power MOSFET Optocoupler designed for m ilitary applications. This light-weight device is resistant to damage from severe shock and vibration, and is i mmune to contact related problems inherent in electro- mechanical relays. The device is enclos ed in a hermetic metal package to en sure reliability in harsh environments. Effective isolation of 1000 VDC between control and load circuits is achieved through the use of optical coupling. Functionally, the device operates as a single-pole single-throw, normally open (1 Form A) DC solid-state relay. The SSR is actuated by an input current of 5 to 15 mA, which can be supplied from standard logic types such as open- collector TTL. Output is provided by a power MOSFET exhibiting very low R DS(ON) and capable of carrying a continuous current of 10 amperes. The bas ic data sheet part is environmentally screened to H level in accordance with Table C-IX of MIL-PRF-38534. ABSOLUTE MAXIMUM RATINGS

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 Rev A. 02-21-2013 Pg. 2 of 5

53274 Solid State Relay SPST, 90VDC – 10A

RECOMMENDED OPERATING CONDITIONS: Parameter Symbol Min. Max. Units Output Voltage V O (OFF) 90 VDC Continuous Output Current I O (ON) 10 A Input Current (on) I F (ON) 5 20 mA Input Voltage (off) V F (OFF) 0 1 VDC Operating Case Temperature T C -55 125 °C ELECTRICAL SPECIFICATIONS (Pre-Irradiation) TC= -55°C to +125°C unless otherwise specified Parameter Sym. Min. Typ.* Max. Units Test Conditions Notes Output On-Resistance R (ON)  0.055 0.100  IF = 10 mA IO = 10 A Pulse width = 15 ms Duty cycle  1% Output Leakage Current I O (OFF)  1 250 A VF = 1 VDC VO = 90 VDC Input Forward Voltage V F 2.20 3.70 4.00 VDC I F = 10 mA Input Reverse Breakdown Voltage V R 6 40  VDC IR = 10 A Input-Output Leakage I I-O   1 A RH  45%, t = 5 s VI-O = 1000 VDC TC = 25°C 4, 5 Turn-On Time t ON  1.0 8.0 ms IF = 10 mA IO = 10 A Pulse width = 15 ms Duty cycle  1% Figures 3, Turn-Off time t OFF  0.35 2 ms Figures 3, Rise Time t R  2.5 6.0 ms 6, Figure 3 Fall Time t F  0.19 1.0 ms Thermal Resistance (junction-case) JC  4  °C/W Output Off-Capacitance C O (OFF)  1.7  nF VO = 28 VDC f = 1 MHz Input Capacitance C IN  27  pF VF = 0 V f = 1 MHz Input-Output Capacitance C I-O  2.6  pF VI-O = 0 V f = 1 MHz 4 * All typical values are at TC = 25°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.

  1. Non-repetitive, pulse width  10ms, TC = 25°C (see Figure 6).
  2. Non-repetitive, pulse width  100s, TC = 25°C.
  3. Case Temperature T C = 25°C (see Figure 7).
  4. Input pins shorted together and output pins shorted together.
  5. Input-output potential applied mome ntarily, not an operating condition.
  6. Rise time is measured from 10% to 90% of load current (90% to 10% of VO). Fall time is measured from 90% to

10% of load current (10% to 90% of VO). when repetitively switching loads. Figure 1. Truth Table Figure 1. Terminal Connections Figure 2. Terminal Connections

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 3. Switching Waveforms and Test Circuits Figure 4. Turn-on Time vs. Case Temperature Figure 5. Turn-off Time vs. Case Temperature for Different Values of IF (typical data). with IF = 5 to 15 mA (typical data).

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 6. Maximum Non-repetitive Output Current Figure 7. Maximum Average Output Power vs. Case Temperature (pulse width  10 ms). Dissipation vs. Case Temperature.