Abstract:
An integrated circuit can include a processor system configured to execute program code. The processor system can be hard-wired and include a processor hardware resource. The IC also can include a programmable circuitry configurable to implement different physical circuits. The programmable circuitry can be coupled to the processor system. The programmable circuitry can be configurable to share usage of the processor hardware resource of the processor system. The processor system further can control aspects of the programmable circuitry such as power on and/or off and also configuration of the programmable circuitry to implement one or more different physical circuits therein.
Abstract:
A color-adjustable luminescent powder is provided, the chemical general formula of which is (YaGdbEuc)2O3·xZn(1-m)AlmO, wherein 0≦a≦0.99, 0≦b≦0.99, 0.01≦c≦0.08, provided that a+b+c=1 and a and b are not 0 simultaneously; x is the molar ratio between Zn(1-m)AlmO and (YaGdbEuc)2O3, 0.01≦x≦0.20, and 0.001≦m≦0.05. A preparation method of the above luminescent powder is also provided, which comprises the following steps: adding an aqueous alcohol solution containing a complexing agent, and a surfactant to a mixed solution containing needed components to obtain a precursor solution, then aging the precursor solution, undergoing calcination treatment and cooling to obtain the said luminescent powder.
Abstract translation:提供可调色发光粉,其化学通式为(YaGdbEuc)2O3·xZn(1-m)AlmO,其中0 @ a @ 0.99,0 @ b @ 0.99,0.01 @ c @ 0.08,条件是 a + b + c = 1,a和b同时不为0; x是Zn(1-m)AlmO和(YaGdbEuc)2 O 3,0.01 @ x @ 0.20和0.001 @ m @ 0.05之间的摩尔比。 还提供了上述发光粉末的制备方法,其包括以下步骤:向含有所需组分的混合溶液中加入含有络合剂的醇水溶液和表面活性剂,得到前体溶液,然后使前体溶液老化, 进行煅烧处理和冷却以获得所述发光粉末。
Abstract:
The disclosure provides a system, end and method for transmitting 1x messages. The method comprises: when a sending terminal needs to send a plurality of 1x messages to a receiving terminal through a non-1x network, carrying the plurality of 1x messages in one message. With the technical solution of the disclosure, the problem that it is unable to ensure that a plurality of 1x Layer3 messages is transmitted synchronously under the related inter-working situation and the problem of the processing time sequence of messages are solved.
Abstract:
Fluorescent materials used in field emission and preparation methods thereof are provided. The said fluorescent materials are a mixture consisting of Zn1-xAlxO, europium yttrium oxide or terbium yttrium oxide, wherein 0
Abstract:
A time to current conversion apparatus and methods. An impedance having an input for selectively receiving a time varying periodic signal or a known voltage signal is provided; and a current output is coupled to the impedance. By observing the average current through the impedance for the known voltage signal over a time period, and by observing the average current through the impedance for a time varying periodic signal, the duty cycle of the time varying periodic signal may be determined by evaluating a ratio of a first average current observed at the current output while the time varying periodic signal is coupled to the impedance to a second average current observed at the current output while the known voltage signal is coupled to the impedance. An embodiment time to current converter circuit is disclosed. Method embodiments for determining the duty cycle of a time varying periodic signal are provided.
Abstract:
It is an objective of the present invention to provide a mobile communication device and a reception suppressing method which can preferably perform communication even if a plurality of antennas is provided and a frequency bandwidth of a transmission signal or a reception signal of each antenna is in a close range with each other.
Abstract:
The present invention discloses a method for a terminal to negotiate application support ability with a base station. The method comprises identifying application subtypes using different subtype values during session negotiation between the terminal and base station. The present invention further discloses a system for a terminal to negotiate application support ability with a base station, wherein the terminal is configured to identify the terminal supported application subtypes using different subtype values during session negotiation with the base station, and/or recognize the base station supported application subtypes identified using different subtype values by the bases station; and the base station is configured to recognize the terminal supported application subtypes identified using different subtype values by the terminal during session negotiation with the terminal, and/or identify the base station supported application subtypes using different subtype values. Regardless of versions of the terminal and base station, the base station can accurately recognize the terminal supported application subtypes and its ability from the application subtypes reported by the terminal, and further select correctly application subtypes bound to service flows.
Abstract:
An integrated circuit can include a processor system configured to execute program code, wherein the processor system is hard-wired. The IC also can include programmable circuitry configurable to implement different physical circuits. The programmable circuitry can be coupled to the processor system and can be configured to implement a power off procedure under the control of the processor system.
Abstract:
The present invention provides a terminal and method for an idle handoff based on a High Rate Packet Data (HRPD) system. The method includes, when the terminal switches from the HRPD system to a non-HRPD radio access technology system, an HRPD protocol stack of the terminal migrating from a non-tunnel state to a tunnel state. When the terminal is in a handoff area, and performs the idle handoff from the HRPD system to the non-HRPD radio access technology system, the terminal after the handoff is in the tunnel state, and the HRPD session information of the terminal is reserved. Thus, when the terminal switches back to the HRPD system, it is not necessary to perform the HRPD session negotiation again, thereby effectively avoiding the waste of air interface resources and system processing capabilities, and improving efficiency of interconnection and intercommunication between the HRPD system and other radio access technology system.
Abstract:
A light concentrator assembly includes a Fresnel lens, a plano-concave lens, and a CPC. The CPC is aligned with the Fresnel lens and the plano-concave lens. The Fresnel lens unit is configured for converging parallel light transmitted the Fresnel lens. The plano-concave lens is configured for further concentrating the light from the Fresnel lens before the light converged at a point. The CPC is configured for reflecting and directing the light beams from the plano-concave lens to exit through a light output opening of the CPC. The light concentrator assembly has a large incident acceptance angle.