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Preserving test program set (TPS) performance after legacy automated test equipment (ATE) upgrade

机译:在传统自动化测试设备(ATE)升级后,保留测试程序集(TPS)性能

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Legacy ATE typically requires economical obsolescence upgrades ranging from minor to major at various points during its life cycle, due to availability and viability of repair assets. System level replacement costs are generally prohibitive. For mature systems where significant investments in TPS software and hardware have been made, there is substantial incentive to maintain compatibility with legacy operation in order to preserve the cumulative investment in Test Program Set (TPS) assets. The ATE assets may be obsolete for many reasons, but shifts in microcircuit level technology seem to be a recurrent theme. Therefore, the replacement asset may operate significantly different internally than the legacy asset even though it may be advertised as a plug and play replacement. We will follow a major obsolescence upgrade for the Avionics Intermediate Shop (AIS), where three automated stations are being upgraded after more than thirty years in the field. While TPS changes are allowed where absolutely required, we determined that the lowest risk and lowest cost approach was to preserve legacy performance at the asset level where possible. Assets to be replaced include the computer, display, printer, digital multimeter, frequency counter, waveform digitizer, spectrum analyzer, waveform generators, synchro generator, synchro receiver, digitizer calibrator, pneumatic controller and pneumatic pump. The legacy computer precedes the microprocessor era and does not employ standardized word sizes, which presents some interesting design challenges. The computer communicates via custom designed buses, mostly clocked serial although parallel direct memory address (DMA) buses were used for critical high throughput instruments. The test programs are written in F-15 Adapted PLACE ATLAS (FAPA), which the offline compiler converts into assembly language then machine code for the legacy computer. Aspects of the test programs are timing critical, so an approach using indeterminate softwa- e emulation of the legacy computer was not completely compatible with the existing TPSs due to instabilities. The original AIS instruments were largely custom designed for military usage before commercial instruments with extended operating ranges were available. These legacy instruments preceded many of the modern standard building block performance envelopes, so unusual features required innovative modern instrument selections. This paper describes the Boeing determinate hardware based design approach which preserves the legacy computer timing. Modern instrument selection examples to match legacy instrument performance are discussed as space permits.
机译:传统ATE通常需要经济报废升级其生命周期内从轻微到在不同点主要,由于可用性和修复资产的可行性。系统级别的替换成本通常令人望而却步。对于那些在TPS软件和硬件显著投资额已经成熟的系统,有大量的激励以维持为了保持测试程序集(TPS)的资产累计投资与传统操作的兼容性。 ATE的资产可能已过时的原因有很多,但在微电路技术水平的变化似乎是一个反复出现的主题。因此,置换资产可能比即使它可能将被作为一个即插即用更换遗留资产运营显著不同的内部。我们将遵循航空电子中级店(AIS),其中三条自动化站正在经过三十多年的现场升级的重大过时升级。虽然被允许TPS的变化在绝对需要的,我们认为风险最低,成本最低的方法是在资产水平保持原有的性能在可能的情况。要被替换资产包括计算机,显示器,打印机,数字万用表,频率计数器,波形数据采集,频谱分析仪,波形发生器,同步发生器,同步接收机,数字转换器校准器,气动控制器和气动泵。传统的计算机先于微处理器时代,不使用规范字的大小,其中提出了一些有趣的设计挑战。通过定制设计的总线,主要是定时串行与计算机通信虽然并行的直接存储器地址(DMA)总线被用于关键高通量仪器。该测试程序是用F-15改编PLACE ATLAS(FAPA),其离线编译器转换成汇编语言用于传统计算机然后机器代码。测试程序的各方面,由于不稳定性关键时序,因此,使用传统计算机的不确定softwa-ë仿真的方法并不完全与现有的TPS兼容。原来AIS仪器在很大程度上定制设计用于军事用途具有扩展工作范围的商业文书可用之前。这些传统乐器之前许多现代化的标准构建模块的性能信封的,所以需要创新的现代仪器选择不同寻常的特点。本文描述了确定的波音基于硬件的设计方法,其保留了传统计算机的定时。现代仪器的选择实例以匹配遗留仪器性能空间允许讨论。

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