Integrated electronic device with reference voltage signal generation module and UVLO logic signal generation module
    71.
    发明授权
    Integrated electronic device with reference voltage signal generation module and UVLO logic signal generation module 有权
    具有参考电压信号发生模块和UVLO逻辑信号发生模块的集成电子设备

    公开(公告)号:US08354878B2

    公开(公告)日:2013-01-15

    申请号:US12976587

    申请日:2010-12-22

    Applicant: Sandor Petenyi

    Inventor: Sandor Petenyi

    CPC classification number: G05F3/30

    Abstract: An electronic integrated device may include a signal generation stage arranged to generate a first signal representative of an under voltage lockout logic signal. The signal generation stage may include a voltage divider block arranged to provide an internal reference voltage signal to a bandgap core group based upon a reference signal. The bandgap core group may generate the first signal based upon the internal reference voltage signal. The bandgap core group may further include a first generation module arranged to generate a output regulated reference voltage signal based upon the internal reference voltage signal, and a second generation module arranged to generate the first signal based upon the internal reference voltage signal and a driving signal obtained by a preliminary processing of the internal reference voltage signal by a bandgap core module included within the band gap core group.

    Abstract translation: 电子集成装置可以包括信号产生级,被配置为产生表示欠压锁定逻辑信号的第一信号。 信号产生级可以包括分压器块,其被布置为基于参考信号向带隙核心组提供内部参考电压信号。 带隙核心组可以基于内部参考电压信号产生第一信号。 带隙核心组还可以包括第一生成模块,其被布置为基于内部参考电压信号产生输出调节参考电压信号;以及第二生成模块,被布置为基于内部参考电压信号和驱动信号产生第一信号 通过由带隙核心组中包括的带隙核心模块对内部参考电压信号进行预处理获得。

    Control device for a flyback converter
    72.
    发明授权
    Control device for a flyback converter 有权
    反激式转换器的控制装置

    公开(公告)号:US08213194B2

    公开(公告)日:2012-07-03

    申请号:US12782467

    申请日:2010-05-18

    Inventor: Pavel Koutensky

    CPC classification number: H05B33/0815 H02M3/33523

    Abstract: A control device for regulating the constant output current of a flyback converter, the control device adapted to control the on time period and the off time period of a primary winding switch and including a first circuit adapted to multiply a first signal representative of current flowing through the primary winding and a second signal representative of an input voltage and outputting a signal representative of the multiplication, a second circuit adapted to compare the output signal of the first circuit and a third signal representative of the direct output voltage, the control device determining, on the basis of the output signal of the second circuit, the on time period and the off time period of the switch so that the output signal of the first circuit is equal to the signal representative of the direct output signal to have the output current of the flyback converter constant.

    Abstract translation: 一种用于调节反激式转换器的恒定输出电流的控制装置,所述控制装置适于控制初级绕组开关的导通时间段和关闭时间段,并且包括适于乘以表示流过的电流的第一信号的第一电路 初级绕组和表示输入电压的第二信号,并输出表示乘法的信号,第二电路,适于比较第一电路的输出信号和代表直接输出电压的第三信号, 基于第二电路的输出信号,开关的接通时间段和关断时间段,使得第一电路的输出信号等于表示直接输出信号的信号,使输出电流为 反激转换器常数。

    CAPACITIVE LOAD DRIVING AMPLIFIER
    73.
    发明申请
    CAPACITIVE LOAD DRIVING AMPLIFIER 有权
    电容负载驱动放大器

    公开(公告)号:US20110150245A1

    公开(公告)日:2011-06-23

    申请号:US12976624

    申请日:2010-12-22

    CPC classification number: H03F3/45183 H03F3/45475

    Abstract: An electronic amplifier for driving a capacitive load may include first and second differential input terminals to receive an input signal, and first and second differential output terminals to provide a differential output signal. The amplifier may further include a first operational device having first and second differential inputs connected to the first and second differential input terminals, respectively, and an output connected to the first differential output terminal, and a second operational device having first and second differential inputs connected to the first and second differential input terminals, respectively, and an output connected to the second differential output terminal. The first and second operational devices may be operatively configured so that both the first and the second output terminals are at a same reference potential during periods in which a module of differential output signal amplitude decrease.

    Abstract translation: 用于驱动电容性负载的电子放大器可以包括用于接收输入信号的第一和第二差分输入端子,以及用于提供差分输出信号的第一和第二差分输出端子。 放大器还可以包括具有分别连接到第一和第二差分输入端子的第一和第二差分输入的第一操作装置和连接到第一差分输出端子的输出端以及连接有第一和第二差分输入的第二操作装置 分别连接到第一和第二差分输入端子,以及连接到第二差分输出端子的输出端。 第一和第二操作装置可以是可操作地配置的,使得在差分输出信号幅度的模块减小的周期期间,第一和第二输出端子都处于相同的参考电位。

    Amplifier having an output protection, in particular operational amplifier for audio application
    74.
    发明授权
    Amplifier having an output protection, in particular operational amplifier for audio application 有权
    具有输出保护的放大器,特别是用于音频应用的运算放大器

    公开(公告)号:US07825734B2

    公开(公告)日:2010-11-02

    申请号:US12062576

    申请日:2008-04-04

    Abstract: An amplifier with an output protection having an input stage defining a feedback node, an output stage connected to the feedback node and defining an output node supplying an output voltage, and a feedback stage connected between the output and the feedback nodes. A mirror stage is connected to the feedback node and has the same structure as the output stage, the mirror stage defining a reference node connected to the feedback stage for generating a reference voltage to be compared to the output voltage by the feedback stage. The feedback stage generates a current limitation signal fed to the feedback node when a difference between the output and the reference voltages is higher than a threshold.

    Abstract translation: 具有输出保护的放大器具有限定反馈节点的输入级,连接到反馈节点的输出级并且定义提供输出电压的输出节点以及连接在输出和反馈节点之间的反馈级。 反射级连接到反馈节点并且具有与输出级相同的结构,镜级定义连接到反馈级的参考节点,用于产生与反馈级与输出电压进行比较的参考电压。 当输出和参考电压之间的差高于阈值时,反馈级产生馈送到反馈节点的电流限制信号。

    COMPRESSOR CONTROL DEVICE AND METHOD FOR CONTROLLING A COMPRESSOR
    75.
    发明申请
    COMPRESSOR CONTROL DEVICE AND METHOD FOR CONTROLLING A COMPRESSOR 有权
    压缩机控制装置和控制压缩机的方法

    公开(公告)号:US20080175718A1

    公开(公告)日:2008-07-24

    申请号:US12016287

    申请日:2008-01-18

    Inventor: Albert Boscarato

    Abstract: A compressor control device includes a driving circuit, for controllably supplying a coil of an electric motor of a compressor. A temperature sensor is thermally coupled to the driving circuit and provides a temperature sensing signal correlated to a temperature in the driving circuit. A control stage, coupled to the driving circuit and to the temperature sensor, selectively prevents the driving circuit from supplying the coil, in response to a minimum temperature increment being detected by the temperature sensor within a pre-determined control time window.

    Abstract translation: 压缩机控制装置包括用于可控地供应压缩机的电动机的线圈的驱动电路。 温度传感器热耦合到驱动电路并且提供与驱动电路中的温度相关的温度感测信号。 响应于温度传感器在预定的控制时间窗口内检测到的最小温度增量,耦合到驱动电路和温度传感器的控制级选择性地防止驱动电路供应线圈。

    APPARATUS AND METHODS FOR ENHANCED OPERATION IN A WIRELESS CHARGING RECEIVER

    公开(公告)号:US20220200344A1

    公开(公告)日:2022-06-23

    申请号:US17124915

    申请日:2020-12-17

    Inventor: Michal Toula

    Abstract: A method implemented by a wireless charging receiver (RX) includes detecting, by the wireless charging RX, that a voltage potential of an output of a rectifier of the wireless charging RX has met a boost mode threshold; placing, by the wireless charging RX, the rectifier into a boost mode; and detecting, by the wireless charging RX, that the voltage potential of the output of the rectifier of the wireless charging RX has met a specified threshold, and based thereon, negotiating, by the wireless charging RX with a wireless charging transmitter (TX), to initiate a power transfer.

    METHOD AND APPARATUS FOR QUICK PROTOTYPING OF EMBEDDED PERIPHERALS

    公开(公告)号:US20210011689A1

    公开(公告)日:2021-01-14

    申请号:US16941407

    申请日:2020-07-28

    Abstract: The disclosure describes methods and apparatus for quickly prototyping of a solution developed using one or more sensing devices (e.g., sensors), functional blocks, algorithm libraries, and customized logic. The methods produce firmware executable by a processor (e.g., a microcontroller) on an embedded device such as a development board, expansion board, or the like. By performing these methods on the apparatus described, a user is able to create a function prototype without having deep knowledge of the particular sensing device or any particular programming language. Prototypes developed as described herein enable the user to rapidly test ideas and develop sensing device proofs-of-concept. The solutions produced by the methods and apparatus improve the functioning of the sensor being prototyped and the operation of the embedded device where the sensor is integrated.

    CIRCUIT EMPLOYING MOSFETS AND CORRESPONDING METHOD

    公开(公告)号:US20200259473A1

    公开(公告)日:2020-08-13

    申请号:US16786182

    申请日:2020-02-10

    Inventor: Sandor PETENYI

    Abstract: A MOSFET has a current conduction path between source and drain terminals. A gate terminal of the MOSFET receives an input signal to facilitate current conduction in the current conduction path as a result of a gate-to-source voltage reaching a threshold voltage. A body terminal of the MOSFET is coupled to body voltage control circuitry that is sensitive to the voltage at the gate terminal of the MOSFET. The body voltage control circuitry responds to a reduction in the voltage at the gate terminal of the MOSFET by increasing the body voltage of the MOSFET at the body terminal of the MOSFET. As a result, there is reduction in the threshold voltage. The circuit configuration is applicable to amplifier circuits, comparator circuits and current mirror circuits.

    Method and apparatus for quick prototyping of embedded peripherals

    公开(公告)号:US10725746B2

    公开(公告)日:2020-07-28

    申请号:US16281040

    申请日:2019-02-20

    Abstract: The disclosure describes methods and apparatus for quickly prototyping of a solution developed using one or more sensing devices (e.g., sensors), functional blocks, algorithm libraries, and customized logic. The methods produce firmware executable by a processor (e.g., a microcontroller) on an embedded device such as a development board, expansion board, or the like. By performing these methods on the apparatus described, a user is able to create a function prototype without having deep knowledge of the particular sensing device or any particular programming language. Prototypes developed as described herein enable the user to rapidly test ideas and develop sensing device proofs-of-concept. The solutions produced by the methods and apparatus improve the functioning of the sensor being prototyped and the operation of the embedded device where the sensor is integrated.

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