Control method and control circuit of output light power and extinction ratio of light transmitter
A technology of optical transmitter and control method, which is applied in the direction of electrical components, transmission systems, electromagnetic wave transmission systems, etc., can solve the problems of injury to users, inability to solve individual differences in laser performance, low frequency response of backlight photocells, etc., and achieve extended The effect of longevity
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Embodiment 1
[0038] Example 1. A method for controlling output optical power and extinction ratio of an optical transmitter. It adopts APC circuit for automatic control, monitors the change of the average luminous power through the backlight photocell, and adjusts the average output light power Pav by changing the Ibias bias current. It includes the following steps:
[0039] ①Set the average output optical power Pav of the initial working point of the light source at room temperature 0 , bias current Ibias 0 , drive current threshold Ith 0 , Optical Modulation Amplitude OMA 0 , Extinction ratio ER 0 and modulation current Imod 0 , Calculate the slope of the luminescence curve SE at room temperature 0 =OMA 0 / I mod 0 ;
[0040] ②Set the variable ranges of Pav, Ibias, Ith, OMA, ER, and Imod variables allowed by the optical transmitter to Pav±Δ 1 、Ibias±Δ 2 、Ith±Δ 3 、OMA±Δ 4 、ER±Δ 5 、Imod±Δ 6 , where Δ 1 ,Δ 2 ,Δ 3 ,Δ 4 ,Δ 5 ,Δ 6 They are the maximum allowable change valu...
Embodiment 2
[0045] Example 2. A control circuit of a method for controlling output optical power and extinction ratio of an optical transmitter, as shown in FIG. 2 . It includes a driver (1), a digital potentiometer (2), a microprocessor (3), a laser (4), and a backlight photoelectric tube (5). The reverse modulation current output pin of the driver (1) is connected to the positive pole of the power supply and the laser (4) and the negative pole of the backlight photocell through a resistor, and its laser bias current output pin is connected to the negative pole of the laser (4) through an inductance coil , and its monitoring diode input pin is connected to the anode of the backlight photoelectric cell (5). The driver (1), digital potentiometer (2) and microprocessor (3) are interconnected with each other.
[0046] The model of the driver (1) is MAX3735, the model of the digital potentiometer (2) is AD5243, and the model of the microprocessor (3) is F330.
[0047] Embodiment 1 and Embo...
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