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FOD3180TV Datasheet(PDF) 5 Page - Fairchild Semiconductor |
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FOD3180TV Datasheet(HTML) 5 Page - Fairchild Semiconductor |
5 / 13 page 5 www.fairchildsemi.com FOD3180 Rev. 1.0.3 Notes: 1. Derate linearly above +70°C free air temperature at a rate of 0.3mA/°C. 2. The output currents IOH and IOL are specified with a capacitive current limited load = (3 x 0.01µF) + 0.5Ω, frequency = 8kHz, 50% DF. The maximum pulse width of the output current is 300ns, maximum duty cycle = 0.48%. Output currents specified for different values of VDS for VCC – VEE = 20V with the formula: VOH = (VCC – VEE) – (IOH x RDS(ON)). This guarantees operation at IO peak minimum = 2.0A for -40°C to +100°C operating temperature range. 3. The output currents IOH and IOL are specified with a capacitive current limited load = (3 x 0.01µF) + 8.5Ω, frequency = 8kHz, 50% DF. The maximum pulse width of the output current is 1.5µs, maximum duty cycle = 2.4%. Output currents specified for different values of VDS for VCC – VEE = 20V with the formula: VOL = (VCC – VEE) – (IOL x RDS(ON)). This guarantees operation at IO peak minimum = 0.5A for -40°C to +100°C operating temperature range. 4. Derate linearly above +87°C, free air temperature at the rate of 0.77mW/°C. Refer to Figure 12. 5. No derating required across operating temperature range. 6. In this test, VOH is measured with a dc load current. When driving capacitive load VOH will approach VCC as IOH approaches zero amps. 7. Maximum pulse width = 1ms, maximum duty cycle = 20%. 8. tPHL propagation delay is measured from the 50% level on the falling edge of the input pulse to the 50% level of the falling edge of the VO signal. tPLH propagation delay is measured from the 50% level on the rising edge of the input pulse to the 50% level of the rising edge of the VO signal. 9. PWD is defined as | tPHL – tPLH | for any given device. 10. The difference between tPHL and tPLH between any two FOD3180 parts under same test conditions. 11. Pin 1 and 4 need to be connected to LED common. 12. Common mode transient immunity in the high state is the maximum tolerable dVCM/dt of the common mode pulse VCM to assure that the output will remain in the high state (i.e. VO > 10.0V). 13. Common mode transient immunity in a low state is the maximum tolerable dVCM/dt of the common mode pulse, VCM, to assure that the output will remain in a low state (i.e. VO < 1.0V). 14. In accordance with UL 1577, each optocoupler is proof tested by applying an insulation test voltage > 6000Vrms for 1 second (leakage detection current limit II-O < 5µA). 15. Device considered a two-terminal device: pins on input side shorted together and pins on output side shorted together. |
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