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ATLS25A219GUI Datasheet(PDF) 9 Page - Analog Technologies, Inc. |
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ATLS25A219GUI Datasheet(HTML) 9 Page - Analog Technologies, Inc. |
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9 / 14 page ![]() 1161 Ringwood Ct, #110, San Jose, CA 95131, U. S. A. Tel.: (408) 748-9100, Fax: (408) 770-9187 www.analogtechnologies.com Copyrights 2000-2022, Analog Technologies, Inc. All Rights Reserved. Updated on 1/24/2022 Email: staff@analogti.com/sales@analogti.com 9 Analog Technologies ATLS25A219GUI 32V 25A Constant Current Laser Driver LASER DIODES ATLS25A219GUI VPS PGND LDC 3 2 1 LDA = 0.1*VVPS ~ 0.8*VVPS 12V ~ 40V POWER SUPPLY 4 LDA Type-C Mini USB Analog Circuit Setting SBDN Figure 11. Micro-Controller Based Application Schematic Figure 10 shows a typical stand-alone application circuit. Figure 11 shows a micro-controller based application schematic. Table 4 shows the relationship between Digital D1, D2, and laser driver state. Refer to Figure 11. Table 4. Digital Output D1 Digital Output D2 Laser Driver State 0 0 Shutdown 0 1 Standby 1 0 Note 1 1 Operation Note: For the input state D1=1 and D2=0, the controller's state is depending on the output voltage at SBDN pin: Where, VD is the logic1 output voltage for D1 & D2 signals. Digital signal V1 and V2 control the laser driver into Shutdown, Standby or Operation mode. The starting up time delay is about 20mS and the shut down time is about 20µS. It is worth mentioning that to achieve high speed and low distortion digital modulation, one can use the LISL pin to set a current that is a little lower than the threshold current of the laser diode to turn off the laser beam, such as half of its value, use the LISH pin to set the laser current when the laser diode is turned on. In this way, the laser beam is turned on and off, while the driver control loop is always kept on, so that the output stage is always under control, not distortion is caused by turning on/off the output stage. When no modulation is needed, one can leave PCN unconnected; LISL pin connects to GND, and use LISH to set the output current. In Figure 10, the LED is used to indicate laser diode status. When LDGD pin is high, > 2V, the laser diode control loop is |
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