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Automated Multi-Channel DC-Biased Burn-in Test System using Hall Effect Current Sensor

机译:使用霍尔效应电流传感器的自动化多通道直流偏置老化测试系统

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This manuscript reports on a fast, accurate, and cost-effective current sensing technique for multi-channel DC-biased burn-in test systems. Hybrid microwave modules designed for military and space platforms must be undergone electrical burn-in and life tests according to the production-level military and space qualification standards. These tests require prolonged test durations on the order of hundreds of hours and multi-channel test setups along with the continuous current monitoring and recording for each device under test (DUT). Current monitoring for a single channel setup is quite straightforward. However, for multi-channel test scenario, using the conventional test methods with specific power supply for each DUT may lead to costly and bulky systems. Precision Hall-effect current sensor is a good alternative monitoring the current of DUTs using a common power supply. For such a current sensor, as the current flows through the copper conduction path, it creates a magnetic field that is sensed by the integrated Hall integrated circuit (IC) and converted into a linearly proportional voltage. To digitize the output voltage of the sensor, a precision analog-to-digital converter (ADC) with SPI or I2C communication interface is used. One advantage of using the Hall sensor structure for measuring the target current will result in minimal power loss due to the non-contact inductive detection. In addition to the utilization of Hall-effect current sensor, we implemented single-pole-single-throw (SPST) switch and fast acting fuse for each DUT line in order to protect the system, in case of an early failure in the DUTs. As a result, using the abovementioned configuration we conducted DC burn-in and life tests on various radio frequency (RF) and microwave (MW) high power hybrid modules.
机译:该手稿报告了一种用于多通道直流偏置老化测试系统的快速,准确且经济高效的电流检测技术。设计用于军事和太空平台的混合微波模块必须根据生产级别的军事和太空鉴定标准进行电老化和寿命测试。这些测试要求延长测试时间,长达数百小时,并且需要多通道测试设置以及对每个被测设备(DUT)进行连续电流监视和记录。单通道设置的电流监控非常简单。但是,对于多通道测试方案,将常规测试方法与每个DUT的特定电源配合使用可能会导致系统昂贵且笨重。精密霍尔效应电流传感器是使用通用电源监视DUT电流的良好选择。对于这种电流传感器,当电流流过铜导电路径时,它会产生一个磁场,该磁场由集成霍尔集成电路(IC)感测并转换为线性比例电压。为了数字化传感器的输出电压,使用了具有SPI或I2C通信接口的精密模数转换器(ADC)。使用霍尔传感器结构来测量目标电流的一个优点是,由于非接触式感应检测,因此可将功率损耗降至最低。除了利用霍尔效应电流传感器之外,我们还为每条DUT线路实施了单刀单掷(SPST)开关和快速熔断器,以便在DUT早期故障的情况下保护系统。结果,使用上述配置,我们对各种射频(RF)和微波(MW)高功率混合模块进行了DC老化和寿命测试。

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