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Digital control of diode laser for atmospheric spectroscopy

机译:用于大气光谱的二极管激光器的数字控制

摘要

A system for remote absorption spectroscopy of trace species using a diode laser (14) tunable over a useful spectral region of 50 to 200 cm. sup.-1 by control of diode laser temperature over range from 15° K. to 100° K., and tunable over a smaller region of typically 0.1 to 10 cm.sup.-1 by control of the diode laser current over a range from 0 to 2 amps. Diode laser temperature and current set points are transmitted to the instrument in digital form and stored in memory (32) for retrieval under control of a microprocessor (28) during measurements. The laser diode current is determined by a digital-to-analog converter (62) through a field-effect transistor (Q.sub.1) for a high degree of ambient temperature stability, while the laser diode temperature is determined by set points entered into a digital-to-analog converter (64) under control of the microprocessor. Temperature of the laser diode is sensed by a sensor diode (18) to provide negative feedback to the temperature control circuit that responds to the temperature control digital-to-analog converter (64).
机译:一种使用二极管激光器(14)对痕量物质进行远程吸收光谱的系统,该激光器可在50至200 cm的有用光谱区域上进行可调。通过在15°K到100°K的范围内控制二极管激光器的温度进行sup-1调整,并且通过在一定范围内控制二极管激光器的电流可在通常为0.1到10 cm.sup.-1的较小区域内进行可调从0到2安培。二极管激光器的温度和电流设定点以数字形式传输到仪器,并存储在存储器(32)中,以便在测量过程中在微处理器(28)的控制下进行检索。激光二极管电流由数模转换器(62)通过场效应晶体管(Q.sub.1)确定,以实现较高的环境温度稳定性,而激光二极管温度由输入的设定点确定在微处理器的控制下,将其转换为数模转换器(64)。激光二极管的温度由传感器二极管(18)感测,以向温度控制电路提供负反馈,该温度控制电路响应于温度控制数模转换器(64)。

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