首页> 外文会议>International Symposium on Photoelectronic Detection and Imaging >The research of digital circuit system for high accuracy CCD of portable Raman spectrometer
【24h】

The research of digital circuit system for high accuracy CCD of portable Raman spectrometer

机译:用于便携式拉曼光谱仪高精度CCD数字电路系统的研究

获取原文

摘要

The Raman spectrum technology is widely used for it can identify various types of molecular structure and material. The portable Raman spectrometer has become a hot direction of the spectrometer development nowadays for its convenience in handheld operation and real-time detection which is superior to traditional Raman spectrometer with heavy weight and bulky size. But there is still a gap for its measurement sensitivity between portable and traditional devices. However, portable Raman Spectrometer with Shell-Isolated Nanoparticle-Enhanced Raman Spectroscopy (SHINERS) technology can enhance the Raman signal significantly by several orders of magnitude, giving consideration in both measurement sensitivity and mobility. This paper proposed a design and implementation of driver and digital circuit for high accuracy CCD sensor, which is core part of portable spectrometer. The main target of the whole design is to reduce the dark current generation rate and increase signal sensitivity during the long integration time, and in the weak signal environment. In this case, we use back-thinned CCD image sensor from Hamamatsu Corporation with high sensitivity, low noise and large dynamic range. In order to maximize this CCD sensor's performance and minimize the whole size of the device simultaneously to achieve the project indicators, we delicately designed a peripheral circuit for the CCD sensor. The design is mainly composed with multi-voltage circuit, sequential generation circuit, driving circuit and A/D transition parts. As the most important power supply circuit, the multi-voltage circuits with 12 independent voltages are designed with reference power supply IC and set to specified voltage value by the amplifier making up the low-pass filter, which allows the user to obtain a highly stable and accurate voltage with low noise. What's more, to make our design easy to debug, CPLD is selected to generate sequential signal. The A/D converter chip consists of a correlated double sampler; a digitally controlled variable gain amplifier and a 16-bit A/D converter which can help improve the data quality. And the acquired digital signals are transmitted into the computer via USB 2.0 data port. Our spectrometer with SHINERS technology can acquire the Raman spectrum signals efficiently in long time integration and weak signal environment, and the size of our system is well controlled for portable application.
机译:拉曼光谱技术广泛用于它可以识别各种类型的分子结构和材料。便携式拉曼光谱仪现在已成为光谱仪开发的热方向,即在手持式运行和实时检测方面,优于传统的拉曼光谱仪,重量和庞大的尺寸。但是在便携式和传统设备之间的测量敏感性仍然存在缺口。然而,具有壳隔离的纳米颗粒增强拉曼光谱(闪塞)技术的便携式拉曼光谱仪可以通过几个数量级显着提高拉曼信号,在测量灵敏度和移动性中考虑。本文提出了一种用于高精度CCD传感器的驱动器和数字电路的设计和实现,这是便携式光谱仪的核心部分。整个设计的主要目标是降低暗电流产生速率并在长集成时间和弱信号环境中提高信号灵敏度。在这种情况下,我们使用Hamamatsu Corporation的后退CCD图像传感器具有高灵敏度,低噪音和大动态范围。为了使该CCD传感器的性能最大化并使设备的整个尺寸最小化同时实现项目指示器,我们精致设计了CCD传感器的外围电路。该设计主要由多电压电路,顺序发电电路,驱动电路和A / D转换部件组成。作为最重要的电源电路,具有12个独立电压的多电压电路采用参考电源IC设计,并由构成低通滤波器的放大器设定为指定电压值,允许用户获得高度稳定的噪音低的电压和精确的电压。更重要的是,使我们的设计易于调试,选择CPLD以生成顺序信号。 A / D转换器芯片由相关的双相器组成;数字控制可变增益放大器和16位A / D转换器,可以帮助提高数据质量。所获得的数字信号通过USB 2.0数据端口传输到计算机中。我们的带闪闪发光仪技术的光谱仪可以在长时间集成和弱信号环境中有效地获取拉曼频谱信号,并且我们的系统大小适用于便携式应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号