会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 52. 发明申请
    • HYBRID OPTICAL AND ELECTRONIC ASSOCIATIVE MEMORY
    • 混合光学和电子相关记忆
    • WO1988010497A2
    • 1988-12-29
    • PCT/US1988001473
    • 1988-05-09
    • HUGHES AIRCRAFT COMPANY
    • HUGHES AIRCRAFT COMPANYOWECHKO, Yuri
    • G11C15/00
    • G11C15/00
    • An associative memory system is provided which is a hybrid of optical and electronic components. In the preferred embodiment, a Fourier transform hologram is used to convolve a reference beam with correlated input images and stored object images. An electronic iteration loop is provided which is used to derive an enhanced reference beam for use in matching and enhancing the associative memory of the hologram with the object input plane image. The iteration loop of electronic components comprises a vidicon which receives the correlation plane image and provides that image in the form of an electronic signal to an electronic thresholding device or image processor. The image processor is capable of viewing the data at the rate of 30 frames per second and is used in the preferred embodiment to threshold the data with reference to the greatest amplitude portion of the correlation spot provided to the vidicon. After the electronic threshold has processed the signal, an improved signal is provided to the cathode ray tube screen. This processed signal is used to phase-modulate a projection light readout beam through use of a liquid crystal light valve. A polarizing beam splitter converts the phase modulation of the readout beam to an amplitude modulation wherein an enhanced reference beam is derived which is processed back to the hologram for readout at the output plane of the system. In this manner a variable-gain fast response electronic and optical component hybrid is provided for use as an associative memory.
    • 55. 发明申请
    • CHARGE-COUPLED DEVICE WITH FOCUSED ION BEAM FABRICATION
    • 具有聚焦离子束制造的充电耦合器件
    • WO1988009059A1
    • 1988-11-17
    • PCT/US1988000938
    • 1988-03-25
    • HUGHES AIRCRAFT COMPANY
    • HUGHES AIRCRAFT COMPANYCLARK, William, M., Jr.WALDEN, Robert, H.UTLAUT, Mark, W.
    • H01L29/78
    • H01L29/1062
    • A charge-coupled device (CCD) is provided with a dopant implant gradient, lateral channel stops (12, 14) and blocking implants (16) by means of a focused ion beam (FIB). The FIB is repeatedly scanned across each cell of the CCD as a succession of overlapping but discrete implant scans. The doping levels of the FIB implants accumulate to a stepwise approximation of a desired dopant density profile, the widths of the steps being no greater than about half the widths of the discrete FIB implants. With a FIB pixel of about 750-1500 Angstroms, the widths of the steps are preferably about 250-500 Angstroms; the dimension of the cells in the dopant gradient direction can be made less than about 5 microns. The lateral channel stops and back blocking implants can be as narrow as single FIB pixel widths, thus freeing up more of the cell for charge carrying capacity.
    • 电荷耦合器件(CCD)具有掺杂剂注入梯度,通过聚焦离子束(FIB)的横向通道停止(12,14)和阻塞植入物(16)。 FIB被重复地扫描在CCD的每个单元上,作为一系列重叠但离散的植入物扫描。 FIB植入物的掺杂水平累积到期望掺杂剂密度分布的逐步近似,步长的宽度不大于离散FIB植入物的宽度的大约一半。 具有约750-1500埃的FIB像素,步长的宽度优选为约250-500埃; 可以使掺杂剂梯度方向上的单元的尺寸小于约5微米。 横向通道停止,背部阻挡植入物可以与单个FIB像素宽度一样窄,从而释放出更多的电池用于充电容量。
    • 57. 发明申请
    • MULTIFUNCTION ACTIVE ARRAY
    • 多功能活动阵列
    • WO1988008623A1
    • 1988-11-03
    • PCT/US1988001319
    • 1988-04-21
    • HUGHES AIRCRAFT COMPANY
    • HUGHES AIRCRAFT COMPANYMIGLIA, EGIDIO
    • H01Q25/00
    • H01Q3/24H01Q3/26H01Q25/00
    • A multifunction active array system is disclosed, wherein the array aperture may be partitioned into a plurality of arbitrary subapertures. The array system includes N radiative elements, each coupled to a corresponding active module. Each module is in turn connected to an aperture partition selector (40), which includes an M-way power divider/combiner device (42), having a module port (34) and M device ports. Each device port is coupled through an RF switch (46) to a partition port of the device. M N-way manifolds (52, 62, ....) are provided, having N manifold ports coupled to a respective one of said partition ports of each selector. The manifolds are coupled to a receiver (92) and an excitation source (90). Each partition may be formed by the desired connection of a particular module to a manifold by the respective positions of the RF switches. The array system provides the capabilities of partitioning the array into M or less subapertures to simultaneously generate sum patterns, difference patterns, guard patterns, and adaptive nullings. The partitions on receive and transmit are independent, and they may differ in an arbitrary manner. The subapertures may overlap.