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A Cold Focal Plane Chopper for the PACS Instrument of the FIRST satellite - Tests of an Advanced Prototype

机译:用于第一颗卫星的PACS仪器的冷焦平面斩波器-先进原型的测试

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The imaging photometer and spectroscopic camera PACS, one of the three scientific instruments aboard the European 3.5 m infrared space telescope FIRST, will apply a tilting mirror mechanism for optical beam switching. The development of this focal plane chopper, capable of operation under cryovacuum conditions, is reported here. In order to meet the stringent requirements with respect to power dissipation and positional accuracy, special drive coils and a new position sensor had to be develoepd. A simulation model including electromagnetic analysis by the 3D code MAFIA, verified by extensive cold testing of the prototype hardware, was used for the optimization of the system and led to the advanced prototype of the chopper. Closed loop control of the mirror deflection allows square wave modulation in the frequency range 0-15 Hz (80 percent duty cycle) with amplitudes of +/- 9 deg with high positional accuracy of less than 30". The power dissipation at operating temperature of 4 K is below 500 muW.
机译:成像光度计和光谱相机PACS是欧洲3.5 m红外太空望远镜FIRST上的三项科学仪器之一,将采用倾斜镜机构进行光束切换。本文报道了这种能够在冷冻真空条件下运行的焦平面斩波器的开发。为了满足有关功耗和位置精度的严格要求,必须开发特殊的驱动线圈和新的位置传感器。仿真模型包括通过3D代码MAFIA进行的电磁分析,并通过对原型硬件进行广泛的冷测试进行了验证,该仿真模型用于优化系统,并导致了斩波器的高级原型。镜面偏转的闭环控制允许方波调制在0-15 Hz的频率范围内(占空比为80%),幅度为+/- 9度,位置精度低于30英寸。 4 K低于500兆瓦。

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