← 返回 JSSC 论文列表JSSC 2014第6期RF & Wireless0.18 µm BiCMOS
Design and Analysis of a W-band 9-Element Imaging Array Receiver Using Spatial-Overlapping Super-Pixels in
W波段9元素成像阵列接收器设计,采用空间重叠超像素技术提升毫米波成像性能。
峰值相干响应度1150 MV/W,非相干响应度1000 MV/W,最小NEP 0.28 fW/Hz,带宽87-108 GHz,每元素功耗225 mW
W波段毫米波成像空间重叠超像素阵列接收器BiCMOS工艺
▸空间重叠超像素技术减少溢出损失,提升信噪比
▸RF域2×2窗口平均功能,优化信号处理
▸补偿系统相位延迟和幅度变化,解决离焦效应和互耦问题
Abstract
A W-band direct-detection-based receiver array is presented using a new concept of spatial-overlapping super-pixels for millimeter-wave imaging applications in an advanced 0.18 µm BiCMOS process. The use of spat ial-overlapping super-pixels results in 1) improved SNR at the pixel level through a reduction of spillover losses, 2) partially correlated adjacent super-pixels, 3) a 2×2 window averaging function in the RF domain, 4) the ability to compensate for the systematic phase delay and ampli- tude variations due to the off-focal-point effect for antennas away from the focal point, and 5) the ability to compensate for mutual coupling effects among the array elements. The receiver chip achieves a measured peak coherent responsivity of 1,150 MV/W, an incoherent responsivity of 1,000 MV/W, a minimum NEP of 0.28 fW/Hz and a front-end 3-dB bandwidth from 87–108 GHz, while consuming 225 mW per receiver element. The measured N E T Do ft h eS i G er e c e i v e rc h i pi s0 . 4 5Kw i t ha2 0m si n t e g r a t i o n time.