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NIRCA ASIC for the readout of focal plane arrays

机译:NIRCA ASIC,用于读取焦平面阵列

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This work is a continuation of our preliminary tests on NIRCA - the Near Infrared Readout and Controller ASIC. The primary application for NIRCA is future astronomical science and Earth observation missions where NIRCA will be used with mercury cadmium telluride image sensors (HgCdTe, or MCT). Recently we have completed the ASIC tests in the cryogenic environment down to 77 K. We have verified that NIRCA provides to the readout integrated circuit (ROIC) regulated power, bias voltages, and fully programmable digital sequences with sample control of the analogue to digital converters (ADC). Both analog and digital output from the ROIC can be acquired and image data is 8b/10b-encoded and delivered via serial interface. The NIRCA also provides temperature measurement, and monitors several analog and digital input channels. The preliminary work confirms that NIRCA is latch-up immune and able to operate down to 77 K. We have tested the performance of the 12-bit ADC with pre-amplifier to have 10.8 equivalent number of bits (ENOB) at 1.4 Msps and maximum sampling speed at 2 Msps. The 1.8-V and 3.3-V output regulators and the 10-bit DACs show good linearity and work as expected. A programmable sequencer is implemented as a micro-controller with a custom instruction set. Here we describe the special operations of the sequencer with regards to the applications and a novel approach to parallel real-time hardware outputs. The test results of the working prototype ASIC show good functionality and performance from room temperature down to 77 K. The versatility of the chip makes the architecture a possible candidate for other research areas, defense or industrial applications that require analog and digital acquisition, voltage regulation, and digital signal generation.
机译:这项工作是我们对NIRCA进行初步测试(近红外读数和控制器ASIC)的延续。 NIRCA的主要应用是未来的天文科学和地球观测任务,其中NIRCA将与碲化汞镉图像传感器(HgCdTe或MCT)一起使用。最近,我们已经完成了在高达77 K的低温环境下的ASIC测试。我们已经验证了NIRCA可为读出集成电路(ROIC)提供调节的功率,偏置电压和完全可编程的数字序列,并具有模数转换器的采样控制(ADC)。 ROIC的模拟和数字输出均可获取,并且图像数据经过8b / 10b编码并通过串行接口传送。 NIRCA还提供温度测量,并监视多个模拟和数字输入通道。初步工作证实NIRCA具有闩锁免疫能力,并且能够在77 K的频率下运行。我们已经测试了带有前置放大器的12位ADC的性能,该性能在1.4 Msps和最大时具有10.8等效位数(ENOB)采样速度为2 Msps。 1.8V和3.3V输出稳压器以及10位DAC具有良好的线性度,并且可以按预期工作。可编程定序器被实现为具有定制指令集的微控制器。在这里,我们描述了与应用有关的定序器的特殊操作以及并行实时硬件输出的新颖方法。工作原型ASIC的测试结果显示了从室温到77 K的良好功能和性能。该芯片的多功能性使该架构成为其他研究领域,国防或需要模拟和数字采集,电压调节的工业应用的可能之选。 ,以及数字信号生成。

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