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UAA4713DP датащи(PDF) 9 Page - STMicroelectronics |
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UAA4713DP датащи(HTML) 9 Page - STMicroelectronics |
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9 / 14 page ![]() APPLICATION INFORMATION 1. HOW TO CHOOSE THE TRIAC ASSOCIATED TO THE MOTION DETECTOR UAA4713 Analysis of the Triac Associated to the Motion Detector UAA4713 Associated with the UAA4713, the Triac is de- fined by the driver output stage (Triac output pin 5) and the characteristics of the load. The Triac is consequently defined by: 1) The gate sensitivity 2) The surge current capability 3) The RMS Triac current 4) The blocking voltage capability 1) The gate sensitivity The ”Triggering gate current” is the parameter to be taken into consideration. The IGT is given at 25 °C. as a maximum value required to trigger the Triac. ex. BTA06-600CW = IGT max (mA) = 35mA The UAA4713 Triac output provides a current of 65mA typical. ITout = 65mA(Typ) = IG In order to control the Triac properly IG should be greater than 1.5 x IGT or ITout > 1.5 IGT For this reason it is suggested to use a snubber- less Triac of the CW series (IGT < 35mA). 2) The surge current capability In the Triac databook the surge current capability of the Triac is given by the non repetitive surge peak current: ITSM ex. BTA06-600CW ITSM at TJ initial =25 °C t = 8.3mA: 63A t = 10ms: 60A The choice of the Triac is defined by the following application parameters: a)The starting performance, and the ratio of the nominal resistance to the cold resis- tance, KR Imax >KR x Inominal x √2 b)The thermal fast fuse behaviour during short-circuit condition. (I 2t) (Triac) > (I2t) (fuse) To select the ITsm (given as a minimum value) the following table is suggested. Mains: VAC (V) 240V 110V Power (W) 600 1000 >1000 ITsm (min) 50 80 >100 ITsm (min) 80 120 >150 3) RMS Triac Current The RMS Triac current ITRMS is defined by the light power P: ITRMS >1. 25 x P x VAC It depends also on the heat sink which has to limit the junction temperature in the worse case condi- tions (Tamb max and ITRMS). With the snubberless triac ITRMS ranges from 6A to 25A. 4) Blocking Voltage Capability The maximum blocking voltage VDRM is defined by the mains: Country Mains Voltage (V) VAC VDRM (V) EUROPE 240 600 USA 110 400 5) Conclusion: Selector guide with the above parameters the op- timal device selection for a given power to be controlled is given in the following table: LIGHT POWER (W) MAINS VOLTAGE VAC (V) 240 110 600 BTA 06 600 CW BTA 08 400 CW 1,000 BTA 08 600 CW BTA 12 400 CW > 1,000 BTA X 600 CW X= 10 X= 12 X= 16 BTA X 400 CW X= 12 X = 16 (A) Ref: High Performance Triacs that need no snub- ber (DSTRIACBK/1088) UAA4713 9/14 |
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