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Universal sensor interface module (USIM)

机译:通用传感器接口模块(USIM)

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Abstract: A universal sensor interface model (USIM) is being developed by the Raytheon-TI Systems Company for use with fields of unattended distributed sensors. In its production configuration, the USIM will be a multichip module consisting of a set of common modules. The common module USIM set consists of (1) a sensor adapter interface (SAI) module, (2) digital signal processor (DSP) and associated memory module, and (3) a RF transceiver model. The multispectral sensor interface is designed around a low- power A/D converted, whose input/output interface consists of: -8 buffered, sampled inputs from various devices including environmental, acoustic seismic and magnetic sensors. The eight sensor inputs are each high-impedance, low-capacitance, differential amplifiers. The inputs are ideally suited for interface with discrete or MEMS sensors, since the differential input will allow direct connection with high-impedance bridge sensors and capacitance voltage sources. Each amplifier is connected to a 22-bit $Delta$Sigma A/D converter to enable simultaneous samples. The low power $Delta$Sigma converter provides 22-bit resolution at sample frequencies up to 142 hertz (used for magnetic sensors) and 16-bit resolution at frequencies up to 1168 hertz (used for acoustic and seismic sensors). The video interface module is based around the TMS320C5410 DSP. It can provide sensor array addressing, video data input, data calibration and correction. The processor module is based upon a MPC555. It will be used for mode control, synchronization of complex sensors, sensor signal processing, array processing, target classification and tracking. Many functions of the A/D, DSP and transceiver can be powered down by using variable clock speeds under software command or chip power switches. They can be returned to intermediate or full operation by DSP command. Power management may be based on the USIM's internal timer, command from the USIM transceiver, or by sleep mode processing management. The low power detection mode is implemented by monitoring any of the sensor analog outputs at lower sample rates for detection over a software controllable threshold.!2
机译:摘要:Raytheon-TI系统公司正在开发一种通用传感器接口模型(USIM),用于无人值守的分布式传感器领域。在其生产配置中,USIM将是由一组通用模块组成的多芯片模块。通用模块USIM集包括(1)传感器适配器接口(SAI)模块,(2)数字信号处理器(DSP)和关联的内存模块,以及(3)RF收发器模型。多光谱传感器接口是围绕低功率A / D转换而设计的,其输入/输出接口包括:-8个缓冲的采样输入,来自各种设备,包括环境,声学地震和磁传感器。八个传感器输入均为高阻抗,低电容,差分放大器。这些输入非常适合与离散或MEMS传感器接口,因为差分输入将允许直接与高阻抗电桥传感器和电容电压源连接。每个放大器都连接到22位DeltaSigma模数转换器,以实现同步采样。低功耗Delta $ Sigma转换器在高达142赫兹的采样频率下提供22位分辨率(用于磁性传感器),在高达1168赫兹的采样频率下提供16位分辨率(用于声学和地震传感器)。视频接口模块基于TMS320C5410 DSP。它可以提供传感器阵列寻址,视频数据输入,数据校准和校正。处理器模块基于MPC555。它将用于模式控制,复杂传感器的同步,传感器信号处理,阵列处理,目标分类和跟踪。通过在软件命令或芯片电源开关下使用可变的时钟速度,可以关闭A / D,DSP和收发器的许多功能。它们可以通过DSP命令返回到中间或完全操作状态。电源管理可以基于USIM的内部计时器,来自USIM收发器的命令,也可以基于睡眠模式处理管理。低功耗检测模式是通过以较低的采样率监视任何传感器模拟输出以在软件可控阈值之上进行检测来实现的!2

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