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FOD8342R2 Datasheet(PDF) 7 Page - ON Semiconductor |
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FOD8342R2 Datasheet(HTML) 7 Page - ON Semiconductor |
7 / 21 page ©2015 Fairchild Semiconductor Corporation www.fairchildsemi.com FOD8342, FOD8342T Rev. 1.1 6 Switching Characteristics Apply over all recommended conditions, typical value is measured at VDD = 30V, VSS = Ground, TA = 25°C unless otherwise specified. Notes: 9. Propagation delay tPHL 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. 10. Propagation delay tPLH 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. 11. PWD is defined as | tPHL – tPLH | for any given device. 12. The difference between tPHL and tPLH between any two FOD8342 parts under the same operating conditions, with equal loads. 13. Common mode transient immunity at output high is the maximum tolerable negative dVcm/dt on the trailing edge of the common mode impulse signal, VCM, to ensure that the output remains high (i.e., VO > 15.0 V). 14. Common mode transient immunity at output low is the maximum tolerable positive dVcm/dt on the leading edge of the common pulse signal, VCM, to ensure that the output remains low (i.e., VO < 1.0 V). Symbol Parameter Conditions Min. Typ. Max. Unit tPHL Propagation Delay Time to Logic Low Output(9) IF =10 mA, Rg = 10 , Cg = 10 nF, f = 250 kHz, Duty Cycle = 50% 50 145 210 ns tPLH Propagation Delay Time to Logic High Output(10) 50 120 210 ns PWD Pulse Width Distortion(11) | tPHL – tPLH | 35 65 ns PDD (Skew) Propagation Delay Difference Between Any Two Parts(12) -90 90 tR Output Rise Time (10% to 90%) 38 ns tF Output Fall Time (90% to 10%) 24 ns tULVO ON ULVO Turn On Delay IF = 10 mA, VO > 5 V 2.0 s tULVO OFF ULVO Turn Off Delay IF = 10 mA, VO < 5 V 0.3 s | CMH | Common Mode Transient Immunity at Output High VDD = 30 V, IF = 10 mA to 16 mA, VCM = 2000 V, TA = 25°C (13) 20 50 kV/ s | CML | Common Mode Transient Immunity at Output Low VDD = 30 V, VF = 0 V, VCM = 2000 V, TA = 25°C (14) 20 50 kV/ s |
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