Abstract:
A very high density field programmable memory is disclosed. An array is formed vertically above a substrate using several layers, each layer of which includes vertically fabricated memory cells. The cell in an N level array may be formed with N+1 masking steps plus masking steps needed for contacts. Maximum use of self alignment techniques minimizes photolithographic limitations. In one embodiment the peripheral circuits are formed in a silicon substrate and an N level array is fabricated above the substrate.
Abstract:
Systems and methods for implementing power management features while providing a wireless asymmetric network are disclosed herein. In one embodiment, a system includes a hub having a wireless control device that is configured to control communications and power consumption in the wireless asymmetric network architecture and sensor nodes each having at least one sensor and a wireless device with a transmitter and a receiver to enable bi-directional communications with the wireless control device of the hub. The wireless control device is configured to determine a scheduled timing of operating each sensor node during a first time period that is close in time with respect to a transmit window of the transmitter and during a second time period that is close in time with respect to a receive window of the receiver for each wireless device to reduce power consumption of the wireless devices of the sensor nodes.
Abstract:
The disclosure relates to a method of configuring end-to-end ODUj (lower order ODU) network trails across OTN (Optical Transport Network), in which the tributary port number (TPN) of the lower order ODUj inside higher order ODUk is specified. The time-slot value associated with the TPN is not to be specified by the user. The time-slots are dynamically allocated on the transmit side. On the receive side, there would be a capability in the ODUk adaptation sink function to find the set of time-slots associated with the TPN based on the received multiplex structure identifier (MSI). That is for an ODUj entity with a fixed TPN, the transmitted time-slots can change and the receive end can detect this change and based on that de-multiplex the ODUj from the ODUk.
Abstract translation:本发明涉及一种在OTN(Optical Transport Network,光传输网络)上配置端到端ODUj(低阶ODU)网络路径的方法,其中规定了高阶ODUk内的低阶ODUj的支路端口号(TPN)。 与TPN相关联的时隙值不被用户指定。 时隙在发送端动态分配。 在接收端,ODUk自适应接收功能将有能力基于所接收的多路复用结构标识符(MSI)找到与TPN相关联的时隙集合。 这是针对具有固定TPN的ODUj实体,所发送的时隙可以改变,并且接收端可以检测到该改变,并且基于从ODUk去除多路复用ODUj。
Abstract:
The disclosure relates to a method of configuring end-to-end ODUj (lower order ODU) network trails across OTN (Optical Transport Network), in which the tributary port number (TPN) of the lower order ODUj inside higher order ODUk is specified. The time-slot value associated with the TPN is not to be specified by the user. The time-slots are dynamically allocated on the transmit side. On the receive side, there would be a capability in the ODUk adaptation sink function to find the set of time-slots associated with the TPN based on the received multiplex structure identifier (MSI). That is for an ODUj entity with a fixed TPN, the transmitted time-slots can change and the receive end can detect this change and based on that de-multiplex the ODUj from the ODUk.
Abstract translation:本发明涉及一种在OTN(Optical Transport Network,光传输网络)上配置端到端ODUj(低阶ODU)网络路径的方法,其中规定了高阶ODUk内的低阶ODUj的支路端口号(TPN)。 与TPN相关联的时隙值不被用户指定。 时隙在发送端动态分配。 在接收端,ODUk自适应接收功能将有能力基于所接收的多路复用结构标识符(MSI)找到与TPN相关联的时隙集合。 这是针对具有固定TPN的ODUj实体,所发送的时隙可以改变,并且接收端可以检测到该改变,并且基于从ODUk去除多路复用ODUj。
Abstract:
A cosmetic composition is provided which includes a triglyceride, a castor oil, glycerin, and a polyglyceryl ricinoleate. The composition is a vegetable sourced alternative to petrolatum and has been found to be an excellent moisturizing composition and delivering good skinfeel properties and lustre to skin.
Abstract:
A memory cell is provided that includes a steering element, and a non-volatile state change element coupled in series with the steering element. The steering element and state change element are disposed in a vertically-oriented pillar. Other aspects are also provided.
Abstract:
The present invention relates to surveillance and/or identification devices having capacitors connected in parallel or in series, and methods of making and using such devices. Devices with capacitors connected in parallel, where one capacitor is fabricated with a relatively thick capacitor dielectric and another is fabricated with a relatively thin capacitor dielectric achieve both a high-precision capacitance and a low breakdown voltage for relatively easy surveillance tag deactivation. Devices with capacitors connected in series result in increased lateral dimensions of a small capacitor. This makes the capacitor easier to fabricate using techniques that may have relatively limited resolution capabilities.
Abstract:
A memory cell is provided that includes a steering element, and a non-volatile state change element coupled in series with the steering element. The steering element and state change element are disposed in a vertically-oriented pillar. Other aspects are also provided.
Abstract:
The present invention relates to methods of making capacitors for use in surveillance/identification tags or devices, and methods of using such surveillance/identification devices. The capacitors manufactured according to the methods of the present invention and used in the surveillance/identification devices described herein comprise printed conductive and dielectric layers. The methods and devices of the present invention improve the manufacturing tolerances associated with conventional metal-plastic-metal capacitor, as well as the deactivation reliability of the capacitor used in a surveillance/identification tag or device.
Abstract:
There is provided a monolithic three dimensional array of charge storage devices which includes a plurality of device levels, wherein at least one surface between two successive device levels is planarized by chemical mechanical polishing.