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ATLS1A103DEV1.0 Datasheet(PDF) 8 Page - Analog Technologies, Inc.

Part # ATLS1A103DEV1.0
Description  Low Noise Constant Current Laser Controller
PDF  12 Pages
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Manufacturer  ANALOGTECHNOLOGIES [Analog Technologies, Inc.]
Direct Link  https://www.analogtechnologies.com/
Logo ANALOGTECHNOLOGIES - Analog Technologies, Inc.

ATLS1A103DEV1.0 Datasheet(HTML) 8 Page - Analog Technologies, Inc.

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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 1/17/2022
Email: staff@analogti.com/sales@analogti.com
8
Analog Technologies
ATLS100MA103
Low Noise Constant Current Laser Controller
The TMPO pin can also be used as an input control pin: when
forcing the TMPO voltage to below 0.4V, the laser controller
will be shutdown.
Controller Power Consumption
The power consumption of the controller can be calculated by:
PDRIVER = IOUT
× (VVPS – VLDA) + VVPS × 0.02,
where IOUT is the output current;
VVPS is the power supply voltage;
VLDA is the voltage across the laser diode.
When the PDRIVER exceeds 1W, a heat sink might be needed.
Under this situation, if prefer not to use the heat sink, this is
an option: lowering the controller power consumption by
reducing the power supply voltage VVPS. Please make sure:
VVPS
≥ VLDMAX + 1V,
where VLDMAX is the maximum possible laser diode voltage.
First Time Power Up
Laser is a high value and vulnerable device. Faults in
connections and damages done to the controller during
soldering process may damage the laser permanently.
To protect the laser, it is highly recommend to use 3 to 4
regular diodes of >100mA to form a “dummy laser” and insert
it in the place of the real laser diode, when powering up the
controller for the first time. Use an oscilloscope to monitor
the LDA voltage at times of power-up and power-down, make
sure that there is not over-shoot in voltage. At the same time,
use an ammeter in series with the dummy laser, to make sure
that the output current is correct.
After thorough checking free of faults, disconnect the dummy
laser and connect the real laser in place.
The controller output voltage range for the laser is between
0.4V to VVPS − 1V when powered by a 5V power supply.
Figure 15. Driving High Voltage Laser Diodes
Driving High Voltage Laser Diodes
Some laser diodes have high forward voltage, such as 7V,
while the laser driver ATLS100MA103D has a maximum
output voltage of 4V. This section tells a way to drive such
laser diodes by using this laser driver.
The schematic is shown in Figure 15, where Power Supply 1
is the power supply for the laser driver, Power Supply 2 is for
increasing the laser driver's maximum output voltage.
Please notice that the power on sequence has to be in this way:
turn on Power Supply 1, turn on Power Supply 2, then turn on
the laser driver by driving SDN (Shutdown) pin to logic high.
The sequence for turning off the laser circuit is: turn off the
SDN pin by pulling it down to the logic low, turn off Power
Supply 1, then, turn off Power Supply 2.
To make sure the circuit works ok: turn on the laser, measure
LDA voltage, it should be between 1V to 3V, at room
temperature, the ideal LDA voltage is around 2V.
VLDMAX = VVPS2 + 0.5VVPS
Where, VLDMAX is the maximum possible laser diode voltage;
VVPS2 is the voltage of Power Supply 2; VVPS is the voltage of
Power Supply 1.



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