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    • 1. 发明授权
    • Electronic circuit for controlling a movement by a fuzzy cellular architecture
    • 用于通过模糊蜂窝架构来控制移动的电子电路
    • US06728687B2
    • 2004-04-27
    • US09727302
    • 2000-11-29
    • Paolo ArenaMarco BranciforteGiovanni Di BernardoLuigi Occhipinti
    • Paolo ArenaMarco BranciforteGiovanni Di BernardoLuigi Occhipinti
    • G06G700
    • B25J9/161G05B2219/34065G06N7/04
    • A method of controlling the movements of a multi-actuator electro-mechanical system having a matrix of locally interconnected analog cells associated therewith is provided. Each cell represents a hardware implementation of a model of fuzzy inference rules. The model includes a fuzzy circuit architecture which may be implemented in an integrated circuit with VLSI CMOS technology that generates and controls a reaction diffusion mechanism typical of auto-waves using a fuzzy neural network. The fuzzy neural network defines the functional relationships that may duplicate simultaneous reaction diffusion equations. The duplication of the simultaneous reaction diffusion equations is provided using two sets of fuzzy rules processing, in a linguistic manner, the state variables of the cells. An oscillatory type dynamic is imposed on each cell where two dynamic processes having different kinetic characteristics coexist.
    • 提供了一种控制具有与其相关联的局部互连的模拟单元的矩阵的多致动器机电系统的运动的方法。 每个单元代表模糊推理规则模型的硬件实现。 该模型包括模糊电路架构,其可以在VLSI CMOS技术的集成电路中实现,该技术生成并控制使用模糊神经网络的自动波的典型反应扩散机制。 模糊神经网络定义了可能重复同时反应扩散方程的功能关系。 使用两组模糊规则,以语言方式处理单元的状态变量来提供同时反应扩散方程的重复。 对具有不同动力特性的两个动态过程共存的每个单元施加振荡型动态。
    • 6. 发明授权
    • Method and apparatus for controlling power transfer in a flyback
converter by modulating the power switch off time during transient
conditions
    • 用于通过在瞬态条件下调制电源开关时间来控制反激式转换器中的功率传输的方法和装置
    • US6118675A
    • 2000-09-12
    • US413996
    • 1999-10-07
    • Antonio LionettoLuigi OcchipintiSergio Tommaso SpampinatoRiccardo Caponetto
    • Antonio LionettoLuigi OcchipintiSergio Tommaso SpampinatoRiccardo Caponetto
    • H02M3/28H02M1/00H02M1/36H02M3/335
    • H02M1/36H02M3/33523H02M2001/0032Y02B70/16
    • A method of controlling a flyback DC-DC converter includes using a primary control loop to monitor an auxiliary winding of a transformer for determining the amount of energy being transferred to a load. The voltage in the auxiliary winding is induced by current flowing in the secondary winding of the transformer. The primary control loop disables and enables the turning on of a power switch for driving the primary winding of the transformer, and detects the zero-crossing. The duration that the power switch is turned on is established by a secondary control loop using the output voltage for turning off the power switch for a new off phase. The flyback DC-DC converter further includes a fixed frequency oscillator having a frequency lower than the self-oscillating frequency of the converter. The power transferred from the primary circuit to the secondary circuit of the flyback transformer is controlled by introducing a delay on the turn-on instant of the power switch. This is with respect to a turn-on command generated during a self-oscillating functioning phase regardless of the mode of control of the converter. The turn-on command is based upon a zero crossing, a fixed frequency functioning phase, a rising edge of the signal generated by the oscillator, and as a function of the input variables of the primary and secondary control loops.
    • 控制回扫DC-DC转换器的方法包括使用主控制回路来监测变压器的辅助绕组,以确定正在传送到负载的能量的量。 辅助绕组中的电压由在变压器的次级绕组中流动的电流引起。 主控制回路禁用并启用用于驱动变压器初级绕组的电源开关,并检测过零点。 通过使用输出电压关闭电源开关进行新的关断阶段的次级控制回路来建立电源开关打开的持续时间。 反激式DC-DC转换器还包括频率低于转换器的自振频率的固定频率振荡器。 通过在电源开关的导通瞬间引入延迟来控制从回扫变压器的初级电路传递到次级电路的功率。 这是关于在自振荡功能阶段期间产生的开启命令,而不管转换器的控制方式如何。 开启命令基于过零点,固定频率功能相位,由振荡器产生的信号的上升沿,以及主控制回路和次控制回路的输入变量的函数。
    • 9. 发明授权
    • Method for realizing a thin film organic electronic device and corresponding device
    • 实现薄膜有机电子器件及其相应器件的方法
    • US08143091B2
    • 2012-03-27
    • US12625202
    • 2009-11-24
    • Giovanna SalzilloMaria Grazia MaglioneAnna MorraLuigi Occhipinti
    • Giovanna SalzilloMaria Grazia MaglioneAnna MorraLuigi Occhipinti
    • H01L51/40
    • H01L51/0023H01L51/0035H01L51/0541H01L2251/105
    • A method realizes a thin film organic electronic device integrated on a substrate and includes an organic material layer and an organic thin film transistor or OTFT transistor. The method comprises: depositing the organic material layer on the substrate, the organic material layer being a conductive organic polymer; patterning by a soft-lithographic procedure the organic material layer to create a reduced portion in order to make a channel area of the OTFT transistor; masking the organic material layer by covering with a cover mask a source area and a drain area of the OTFT transistor; irradiating by ultraviolet radiation to deactivate exposed portions of the organic material layer defining the source area, the drain area and the channel area; depositing on the organic material layer a semiconductor layer; and creating on the semiconductor layer a gate area of the OTFT transistor.
    • 一种实现集成在基板上的薄膜有机电子器件,包括有机材料层和有机薄膜晶体管或OTFT晶体管。 该方法包括:将有机材料层沉积在基底上,有机材料层为导电有机聚合物; 通过软光刻工艺图案化有机材料层以形成减小的部分,以便形成OTFT晶体管的沟道面积; 通过用覆盖掩模覆盖OTFT晶体管的源极区域和漏极区域来掩蔽有机材料层; 通过紫外线照射来去激活限定源极区域,漏极区域和沟道区域的有机材料层的暴露部分; 在有机材料层上沉积半导体层; 以及在所述半导体层上形成所述OTFT晶体管的栅极区域。