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    • 5. 发明申请
    • Folding of Input Data Values to a Transform Function
    • 将输入数据值折叠为变换函数
    • US20090254598A1
    • 2009-10-08
    • US12307351
    • 2007-07-06
    • Jim SvenssonThomas OlssonLeif Wilhelmsson
    • Jim SvenssonThomas OlssonLeif Wilhelmsson
    • G06F17/14
    • G06F17/142H04L27/263H04L27/265
    • A method of processing a set of input data values comprises the steps of providing said input data values serially to circuitry comprising a number of memory elements; and performing in said circuitry a transform function to obtain a set of transformed data values. The method further comprises the steps of delaying a subset of said set of input data values under use of said memory elements; providing a modified set of data values by adding individual delayed data values to individual non-delayed data values from said set of input data values; and performing said transform function on said modified set of data values. In this way a transform function can be evaluated at fewer output data values than available input data values without increasing the memory requirements considerably.
    • 一种处理一组输入数据值的方法包括以下步骤:将所述输入数据值串行提供给包括多个存储器元件的电路; 以及在所述电路中执行变换函数以获得一组经变换的数据值。 所述方法还包括以下步骤:在使用所述存储器元件的同时延迟所述一组输入数据值的子集; 通过将各个延迟数据值从所述输入数据值集合中的各个非延迟数据值增加来提供修改的数据值集合; 以及对所述修改的数据值集合执行所述变换函数。 以这种方式,可以以比可用输入数据值更少的输出数据值来评估变换函数,而不会显着增加内存需求。
    • 6. 发明授权
    • Method and communication device for power savings in chip-to-chip signalling
    • 用于芯片到芯片信号功率节省的方法和通信设备
    • US09094915B2
    • 2015-07-28
    • US14000616
    • 2012-02-16
    • Thomas OlssonAnders CarlssonBengt LindoffJohan Nilsson
    • Thomas OlssonAnders CarlssonBengt LindoffJohan Nilsson
    • H04W52/02H04L1/00
    • H04W52/0245H04L1/0001H04L1/0006H04W52/0209Y02D70/1222Y02D70/1244Y02D70/1262
    • A method in a communication device and a communication device (100) for adapting a transmission of data are provided. The transmission is transferred from a first chip (110) to a second chip (120) over a chip-to-chip interface (104, 304). The chip-to-chip-interface comprises a wired connection between the first chip and the second chip which is comprised in the communication device. The communication device receives (201) the radio signal (330), comprising the transmission of data from another communication device. The communication device determines (202), from the received radio signal (330), modulation and coding information, which is used for determining (203) a channel quality. Further, the communication device (100) adapts (204) the transmission of data based on the determined channel quality of the received radio signal (330) in such way that at least the determined channel quality is obtained when transferring (205) the transmission of data over the chip-to-chip interface to the second chip.
    • 提供了一种用于调整数据传输的通信设备和通信设备(100)中的方法。 传输通过芯片到芯片接口(104,304)从第一芯片(110)传送到第二芯片(120)。 芯片到芯片接口包括在通信设备中包括的第一芯片和第二芯片之间的有线连接。 通信设备接收(201)包括从另一通信设备传输数据的无线电信号(330)。 通信装置根据接收的无线电信号(330)确定(203)用于确定(203)信道质量的调制和编码信息。 此外,通信装置(100)基于所确定的所接收的无线电信号(330)的信道质量来适配(204)数据的传输,使得至少在传输(205)传输 数据通过芯片到芯片的接口连接到第二个芯片。
    • 7. 发明授权
    • Radio environment scanner
    • 无线电环境扫描仪
    • US08219056B2
    • 2012-07-10
    • US12553710
    • 2009-09-03
    • Lars SundströmThomas OlssonLeif WilhelmssonChester Park
    • Lars SundströmThomas OlssonLeif WilhelmssonChester Park
    • H04B17/00H04K3/00
    • H04W24/08H04B17/318H04B17/382
    • A device may include a measurement receiver, a communication receiver, and a transmitter. The measurement receiver may include a receiver (RX) down-conversion component to receive an amplified signal from a low-noise amplifier of the communication receiver, selectively receive a signal from a first local oscillator associated with the communication receiver or a second local oscillator associated with the transmitter, and down-convert the amplified signal to baseband using the received signal from the first local oscillator or the second local oscillator. The measurement receiver may further include a delta-sigma analog-to-digital converter (ADC) to provide low quantization noise only for a particular frequency range to be measured, and a control component to configure the delta-sigma ADC to provide the low quantization noise at the particular frequency range.
    • 设备可以包括测量接收器,通信接收器和发射器。 测量接收机可以包括接收器(RX)下变频部件,以从通信接收机的低噪声放大器接收放大的信号,选择性地接收来自与通信接收器相关联的第一本地振荡器的信号或与第二本地振荡器相关联的信号 并且使用来自第一本地振荡器或第二本地振荡器的接收信号将放大的信号下变频到基带。 测量接收机还可以包括仅用于要测量的特定频率范围的低量化噪声的delta-sigma模数转换器(ADC),以及配置Δ-ΣADC以提供低量化的控制部件 在特定频率范围内的噪声。
    • 8. 发明申请
    • SYSTEM AND METHOD OF SELECTIVELY VARYING SUPPLY VOLTAGE WITHOUT LEVEL SHIFTING DATA SIGNALS
    • 选择性改变电源电压的系统和方法,无需改变数据信号
    • US20110286289A1
    • 2011-11-24
    • US12783957
    • 2010-05-20
    • Anders CarlssonThomas Olsson
    • Anders CarlssonThomas Olsson
    • G11C7/00H03L5/00
    • G06F13/4004Y02D10/14Y02D10/151
    • An electronic system implements a plurality of voltage domains, at least one of which has a selectively variable supply voltage, without requiring the use of a large number of level shifters (e.g., for each data and/or address line). The supply voltage for a first domain is set equal or nearly equal to that of a second domain for a first duration, when the two domains are connected for data transfer across a system bus. When the first domain is isolated from the bus, its supply voltage is set differently from that of the second domain for a second duration. In the second duration, the first domain may have a higher supply voltage, e.g., to perform high-performance computational tasks. Alternatively, it may have a lower supply voltage, to conserve power, if its computational task is less demanding.
    • 电子系统实现多个电压域,其中至少一个具有选择性可变的电源电压,而不需要使用大量的电平移位器(例如,对于每个数据和/或地址线)。 当连接两个域用于通过系统总线的数据传输时,第一域的电源电压被设置为等于或几乎等于第二域的电源电压。 当第一域与总线隔离时,其供电电压设置与第二域的电源电压不同于第二持续时间。 在第二持续时间中,第一域可具有较高的电源电压,例如执行高性能计算任务。 或者,如果其计算任务要求较低,则可能具有较低的电源电压以节省功率。