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53258 数据表(PDF) 2 Page - Micropac Industries |
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53258 数据表(HTML) 2 Page - Micropac Industries |
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2 / 4 page ![]() 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. HYBRID MICROELECTRONICS PRODUCTS DIVISION • 905 E. Walnut St., Garland, TX 75040 • (972) 272-3571 • Fax (972) 494-2281 www.micropac.com E-MAIL: hybridsales@micropac.com 02/15/01 Preliminary Data Sheet 53258 Radiation Tolerant 120VDC - 5A Solid State Relay _______________________________________________________________________ RECOMMENDED OPERATING CONDITIONS: Parameter Symbol Min. Max. Units Output Voltage (5) VO (OFF) 120 VDC Continuous Output Current IO (ON) 5A Input Current (on) IF (ON) 515 mA Input Voltage (off) VF (OFF) 01 VDC Operating Case Temperature TC -55 125 °C ELECTRICAL SPECIFICATIONS (Pre-Irradiation) TC= -55°C to +125°C unless otherwise specified Parameter Symbol Min. Typ.* Max. Unit s Test Conditions Notes Output On-Resistance R (ON) .110 .220 Ω IF = 15 mA IO = 2A Pulse width = 10 ms Duty cycle ≤ 10% Output Leakage Current IO (OFF) 250 µA VF = 1 VDC VO = 150 VDC Input Forward Voltage VF 4.20 VDC IF = 15 mA Input Reverse Breakdown Voltage VR 640 VDC IR = 10 µA Input-Output Leakage Current II-O 1 µA RH ≤ 45%, t = 5 s VI-O = 1000 VDC TC = 25°C 2, 3 Turn-On Time tON 8 ms Figure 3 Turn-Off time tOFF 2 ms Figure 3 Rise Time tR 6ms Fall Time tF 1ms IF = 15 mA IO = 2A Pulse width = 10 ms Duty cycle ≤ 10% 4, Figure 3 Thermal Resistance (junction-case) θJC 4 °C/W * All typical values are at TC = 25°C Notes: 1. Non-repetitive, pulse width ≤ 100 µs, TC = 25°C. 2. Input pins shorted together and output pins shorted together. 3. Input-output potential applied momentarily, not a steady state operating condition. 4. 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). 5. The user should apply the appropriate transient suppression technique to the output terminals of the relay when the loads are inductive enough to generate voltage spikes. |
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