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UL497G-S16-R Datasheet(PDF) 2 Page - Unisonic Technologies |
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UL497G-S16-R Datasheet(HTML) 2 Page - Unisonic Technologies |
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2 / 8 page ![]() UL497 Preliminary LINEAR INTEGRATED CIRCUIT UNISONICTECHNOLOGIESCO.,LTD 2 of 8 www.unisonic.com.tw QW-R118-015.a PIN CONFIGURATION PIN DESCRIPTION (refer to APPLICATION CIRCUIT) PIN NO. PIN NAME DESCRIPTION 1 GND This pin must be connected to ground. 2 SIGNAL GND This pin must be connected to ground. 3 POWER SUPPLY The input of supply voltage. Its voltage will be limited by an 7.5V zener. The R5 inside will limit the current by the zener for high supply voltege. 4 N.C. Connected to ground or left open. 5 HALL-EFFECT INPUT The input of the hall-effect pickup signal. This input is dwell control circuit output to enable the current driving into the coil. 6 RPM OUTPUT As a open collector output, it’s at low level when current flows in the ignition coil. It should be connected pin7 zener for high volteges protection. Then R8 must limit the zener current, too, and R 1 limits pin 6 current if RPM module pad is accidentally connected to VS. 7 AUX. ZENER A 21V Zener whose current must be limited by an internal resistor. 8 RECOVERY TIME A capacitor connected between this pin and ground sets the slope of the dwell time variation as it rises from zero to the correct value. It occurs just following the detection of I coll≤94% I nom, only before the low transition of the hall-effect signal pulse. The duration is given : tsrc=12.9×R7src× Csrc (ms) PS: R7 (KΩ) is the biasing resistor at pin 12 and Csrc (μF) is the delay capacitor at pin 8. 9 MAX CONDUCTION TIME Between this pin and ground there’s a capacitor which determines the intervention delay of the permanent conduction protection. The coil current is slowly reduced to zero after the delay time. Delay Time TP is given by : tP=16×R7 CP (ms) PS: R7 (KΩ) is the biasing resistor at pin 12 and CP (μF) is the delay capacitor at pin 9. 10 DWELL CONTROL TIMER Connected between this pin and ground there’s a capacitor CT which is charged when the Hall effect output is High and is discharged at the High to Low transition of the Hall effect signal. When using a 62KΩ resistor at pin12 CT should be 100nF. |
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