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X-/γ-Ray Detection Instrument for the HERMES Nano-Satellites Based on SDDs Read-Out by the LYRA Mixed-Signal ASIC Chipset

机译:基于SDDS读出LyrA混合信号ASIC芯片的SDDS的Hermes纳米卫星X-/γ射线检测仪

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This paper presents the front-end section of the X-/γ-ray detection instrument of the HERMES mission, whose goal is to observe and localize γ-ray bursts, through a constellation of more than one hundred nano-satellites. Considering the severe volume and power consumption constraints of the nano-satellites, in the HERMES X-/γ-ray detection instrument, silicon drift detectors are read out through a mixed-signal ASIC chipset, called LYRA, based on a peculiar architecture. In particular, a small front-end ASIC (LYRA-FE), placed close to each silicon drift detector, is connected, through a current-mode link, to a multi-channel back-end ASIC (LYRA-BE). The LYRA ASIC chipset, implemented in a 0.35 μm CMOS technology, achieves less than 22e_(rms)~- of equivalent noise charge, with a power consumption lower than 600 μW/channel from a 3.3 V power supply. Thanks to the current-mode link between the LYRA-FE and the LYRA-BE ASICs, no significant crosstalk among channels can be observed, in spite of the length of the interconnection wires as large as 12 cm.
机译:本文介绍了爱马仕任务的X-/γ射线检测仪的前端部分,其目标是观察和定位γ射线突发,通过一百多纳米卫星的星座。考虑到纳米卫星的严重体积和功耗约束,在Hermes X-/γ射线检测仪器中,通过混合信号ASIC芯片组读出硅漂移探测器,该芯片通过特殊的架构被称为Lyra的混合信号ASIC芯片组。特别地,靠近每个硅漂移探测器的小前端ASIC(Lyra-Fe)通过电流模式链路连接到多通道后端ASIC(Lyra-Be)。 Lyra AsiC芯片组在0.35μmCMOS技术中实现,实现了小于22E_(RMS)〜 - 等效噪声电荷,功耗低于600μW/频道,来自3.3 V电源。由于Lyra-Fe和Lyra的当前模式链路,可以观察到通道之间的显着串扰,尽管互连线的长度大至12厘米。

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