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TIL3009 Datasheet(PDF) 2 Page - Texas Instruments |
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TIL3009 Datasheet(HTML) 2 Page - Texas Instruments |
2 / 7 page TIL3009, TIL3010, TIL3011, TIL3012 OPTOCOUPLERS/OPTOISOLATORS SOES027A – DECEMBER 1987 – REVISED APRIL 1998 2 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics 25 °C free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT IR Static reverse current VR = 3 V 0.05 100 µA VF Static forward voltage IF = 10 mA 1.2 1.5 V IDRM Repetitive off-state current, either direction VDRM = 250 V, See Note 5 10 100 nA dv/dt Critical rate of rise of off-state voltage See Figure 1 12 V/ µs dv/dt(c) Critical rate of rise of commutating voltage IO = 15 mA, See Figure 1 0.15 V/ µs TIL3009 15 30 IFT Input trigger current either direction TIL3010 Output supply voltage=3V 8 15 mA IFT Input trigger current either direction TIL3011 Output supply voltage = 3 V 5 10 mA TIL3012 5 VTM Peak on-state voltage, either direction ITM = 100 mA 1.8 3 V IH Holding current, either direction 100 µA NOTE 5: Test voltage must be applied within dv/dt rating. PARAMETER MEASUREMENT INFORMATION NOTE A. The critical rate of rise of off-state voltage, dv/dt, is measured with the input set at 0 volts. The frequency of Vin is increased until the phototriac turns on. This frequency is then used to calculate the dv/dt according to the following formula: The critical rate of rise of commutating voltage, dv/dt(c), is measured by applying occasional 5-volt pulses to the input and increasing the frequency of Vin until the phototriac remains on (latches) after the input pulse has ceased. With no further input pulses, the frequency of Vin is then gradually decreased until the phototriac turns off. The frequency at which turn-off occurs can then be used to calculate the dv/dt(c) according to the formula shown above. dv dt + 22 p fV in 1 2 4 6 RL Vin = 30 V rms 10 k Ω VCC Input (see Note A) 2N3904 Figure 1. Critical Rate of Rise Test Circuit |
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