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IC-WKPSO8-TP Datasheet(PDF) 6 Page - IC-Haus GmbH |
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IC-WKPSO8-TP Datasheet(HTML) 6 Page - IC-Haus GmbH |
6 / 10 page iC-WKP 15 V CW P-TYPE LASER DIODE DRIVER Rev A6, Page 6/10 SAFETY INSTRUCTIONS Laser light can damage the human eye and the eyes of animals! Do not look at any laser light di- rectly or through any optical lens. When handling a laser diode, do not look directly at the light generated by it. Wear appropriate safety glasses to prevent light from entering the eye even by reflection. FUNCTION DESCRIPTION Setting the output power The output power is simply set by RM = Vref(MDK) / I(MD), where Vref(MDK) = Item No. 101 and I(MD) = the monitor current of the laser diode at the desired operating point. RM should be combined from a fixed resistor (max. output power) and a trimmer (calibra- tion). Turn-on behaviour After switching the supply voltage on, the output stage remains disabled until the internal enabling flip-flop is set by a sufficiently high voltage at VCC. A quick soft start follows; the transition to controlled CW operation is gradual and primarily determined by the values of CI and RM. CI is properly dimensioned when the voltage undershoot at MDK is at a minimum. 0 50us 100us 150us 200us 250us Time 0 100mA 200mA V(CI) I(LD) 0 1V 2V V(LDA) 0 500mV 1.0V 1.5V V(MDK) VCC − 1.5V VCC − 1V VCC − 0.5V VCC Figure 1: Turn-on behaviour Turn-off behaviour iC-WKP works without a fixed undervoltage lockout, thus the laser diode forward voltage is the prime fac- tor determining the lowest possible supply voltage. If the voltage drops below this value, the output stage is forcibly saturated and the laser current decreases. iC-WKP simultaneously discharges control capacitor CI so that no excessive laser diode currents occur when the supply voltage again rises. I(LD) 1ms 1,01ms 1,02ms Time 0 100mA 200mA V(CI) 0 1V 2V V(LDA) 0 500mV 1.0V 1.5V V(MDK) VCC − 1V VCC − 0.5V VCC Figure 2: Turn-off behaviour Disruptions in operation The power control is shut down with excessive driver temperature or when the laser current reaches the overcurrent shutdown threshold, for example when the feedback path is interrupted. If the monitor diode or bias resistor RM fail, the device is shut down in less than 600 µs, provided that the supply voltage applied is high enough. When modulating the laser current via pin MDA, low voltage occurring at pin MDK may also cause a shut- down. |
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