PULSE GENERATOR CIRCUIT, RELATED LASER SYSTEM AND METHOD

    公开(公告)号:US20210218223A1

    公开(公告)日:2021-07-15

    申请号:US17123712

    申请日:2020-12-16

    Abstract: An embodiment pulse generator circuit is configured to apply a current pulse to two output terminals. The pulse generator circuit comprises an LC resonant circuit comprising an inductance and a capacitance connected in series between a first node and a negative input terminal. The pulse generator circuit comprises a charge circuit configured to charge the capacitance via a supply voltage, a first electronic switch configured to selectively short-circuit the two output terminals, a second electronic switch configured to selectively connect the two output terminals in parallel with the LC resonant circuit, and a control circuit configured to drive the first and the second electronic switch.

    Pulse generator circuit, related system and method

    公开(公告)号:US11894657B2

    公开(公告)日:2024-02-06

    申请号:US17360381

    申请日:2021-06-28

    CPC classification number: H01S5/06216 H01S5/0261 H03K5/07

    Abstract: An embodiment pulse generator circuit comprises a first electronic switch coupled between first and second nodes, and a second electronic switch coupled between the second node and a reference node. An LC resonant circuit comprising an inductance and a capacitance is coupled between the first and reference nodes along with charge circuitry comprises a further inductance in a current flow line between a supply node and an intermediate node in the LC resonant circuit. Drive circuitry of the electronic switches repeats, during a sequence of switching cycles, charge time intervals, wherein the capacitance in the LC resonant circuit is charged via the charge circuit, and pulse generation time intervals, wherein a pulsed current is provided to the load via the first and second nodes. The charge and pulse generation time intervals are interleaved with oscillation time intervals where the LC resonant circuit oscillates at a resonance frequency.

    PHOTODETECTOR WITH INTEGRATED MICROFLUIDIC CHANNEL AND MANUFACTURING PROCESS THEREOF
    5.
    发明申请
    PHOTODETECTOR WITH INTEGRATED MICROFLUIDIC CHANNEL AND MANUFACTURING PROCESS THEREOF 有权
    具有集成微流通道的光电转换器及其制造工艺

    公开(公告)号:US20140021330A1

    公开(公告)日:2014-01-23

    申请号:US13925577

    申请日:2013-06-24

    Abstract: A photodetector including: a photodiode having a body made of semiconductor material delimited by a first surface, the body forming a first electrode region; a dielectric region, set on top of the first surface and delimited by a second surface; at least one channel extending within the dielectric region, starting from the second surface; and a first metallization, which is set on top of the second surface and is in electrical contact with the first electrode region.

    Abstract translation: 一种光检测器,包括:光电二极管,具有由第一表面限定的半导体材料制成的主体,所述主体形成第一电极区; 介电区域,设置在第一表面的顶部并由第二表面限定; 从所述第二表面开始的至少一个在所述电介质区域内延伸的通道; 以及第一金属化,其被设置在第二表面的顶部并与第一电极区域电接触。

    OSCILLATION FREQUENCY MEASURING SYSTEM AND METHOD FOR A MEMS SENSOR
    6.
    发明申请
    OSCILLATION FREQUENCY MEASURING SYSTEM AND METHOD FOR A MEMS SENSOR 有权
    振动频率测量系统和MEMS传感器的方法

    公开(公告)号:US20150000402A1

    公开(公告)日:2015-01-01

    申请号:US14303522

    申请日:2014-06-12

    CPC classification number: B81C1/0015 B81C2203/075 G01H3/06 G01H9/00

    Abstract: A MEMS sensor has at least a movable element designed to oscillate at an oscillation frequency, and an integrated measuring system coupled to the movable element to provide a measure of the oscillation frequency. The measuring system has a light source to emit a light beam towards the movable element and a light detector to receive the light beam reflected back from the movable element, including a semiconductor photodiode array. In particular, the light detector is an integrated photomultiplier having an array of single photon avalanche diodes.

    Abstract translation: MEMS传感器至少具有设计成以振荡频率振荡的可移动元件,以及耦合到可移动元件的集成测量系统,以提供振荡频率的测量。 测量系统具有向可动元件发射光束的光源和用于接收从包括半导体光电二极管阵列的可移动元件反射回的光束的光检测器。 特别地,光检测器是具有单光子雪崩二极管阵列的集成光电倍增管。

    DETECTOR OF GRAVITATIONAL WAVES AND METHOD OF DETECTING GRAVITATIONAL WAVES
    7.
    发明申请
    DETECTOR OF GRAVITATIONAL WAVES AND METHOD OF DETECTING GRAVITATIONAL WAVES 审中-公开
    雷射波检测器和检测波形波的方法

    公开(公告)号:US20140096606A1

    公开(公告)日:2014-04-10

    申请号:US14041180

    申请日:2013-09-30

    CPC classification number: G01V7/08 G01V7/00 G01V7/04

    Abstract: A semiconductor detector of gravitational waves of a first frequency may include an oscillator having a metal coated oscillating member over a metal coated semiconductor substrate to be subjected to a Casimir attraction force towards the semiconductor substrate. The oscillator may be configured to exert a force to counterbalance the Casimir attraction force causing the oscillating member oscillates with a main harmonic resonance frequency equal to the first frequency. A displacement sensor may be coupled to the substrate and oscillating member and configured to sense oscillations and to generate corresponding sense signals. A pass-band filter may be tuned to the main harmonic resonance frequency and configured to generate band-pass replica signals of the sense signals, and an airtight package may be configured to keep a vacuum between the oscillating member and the semiconductor substrate. An array of semiconductor detectors and a method of detecting gravitational waves are also disclosed.

    Abstract translation: 第一频率的重力波的半导体检测器可以包括在金属涂覆的半导体衬底上具有金属涂覆的振荡元件的振荡器,以经受对半导体衬底的卡西米尔吸引力。 振荡器可以被配置为施加力以平衡卡西米尔吸引力,导致振荡部件以等于第一频率的主谐波谐振频率振荡。 位移传感器可以耦合到衬底和振荡构件并且被配置为感测振荡并产生相应的感测信号。 可以将通带滤波器调谐到主谐波谐振频率并被配置为产生感测信号的带通复制信号,并且气密封装可以被配置为在振荡构件和半导体衬底之间保持真空。 还公开了一种半导体检测器阵列和一种检测引力波的方法。

    Electronic device with short circuit protection element, fabrication method and design method

    公开(公告)号:US10818593B2

    公开(公告)日:2020-10-27

    申请号:US16389866

    申请日:2019-04-19

    Abstract: An electronic device includes: a control terminal, which extends on a first face of a substrate; a first conduction terminal, which extends in the substrate at the first face of the substrate; a first insulating layer interposed between the control terminal and the first conduction terminal; a conductive path, which can be biased at a biasing voltage; and a protection element, coupled to the control terminal and to the conductive path, which forms an electrical connection between the control terminal and the conductive path and is designed to melt, and thus interrupt electrical connection, in the presence of a leakage current higher than a critical threshold between the control terminal and the first conduction terminal through the first insulating layer.

    Oscillation frequency measuring system and method for a MEMS sensor

    公开(公告)号:US10479674B2

    公开(公告)日:2019-11-19

    申请号:US15639203

    申请日:2017-06-30

    Abstract: A MEMS sensor has at least a movable element designed to oscillate at an oscillation frequency, and an integrated measuring system coupled to the movable element to provide a measure of the oscillation frequency. The measuring system has a light source to emit a light beam towards the movable element and a light detector to receive the light beam reflected back from the movable element, including a semiconductor photodiode array. In particular, the light detector is an integrated photomultiplier having an array of single photon avalanche diodes.

    Proximity sensor having array of geiger mode avalanche photodiodes for estimating distance of an object to the array based on at least one of a dark current and a rate of current spikes generated in dark conditions
    10.
    发明授权
    Proximity sensor having array of geiger mode avalanche photodiodes for estimating distance of an object to the array based on at least one of a dark current and a rate of current spikes generated in dark conditions 有权
    接近传感器具有阵列的盖格模式雪崩光电二极管,用于基于暗电流和在黑暗条件下产生的电流尖峰率中的至少一种来估计物体与阵列的距离

    公开(公告)号:US09411049B2

    公开(公告)日:2016-08-09

    申请号:US14146175

    申请日:2014-01-02

    CPC classification number: G01S17/026 G01J1/44 G01S17/08

    Abstract: A proximity sensor may include an array of Geiger mode avalanche photodiodes, each including an anode contact and a cathode contact. A common cathode contact may be coupled to the cathode contacts of the array to define a first connection lead at a back side of the array. A common anode collecting grid contact may be coupled to the anode contacts of the array to define a second connection lead of the array. Circuitry may be coupled with the first and second connection leads and configured to sense at least one of a dark current and a rate of current spikes generated in dark conditions, and generate an output signal representing an estimated distance of an object from the array upon the sensing.

    Abstract translation: 接近传感器可以包括Geiger模式雪崩光电二极管阵列,每个包括阳极接触和阴极接触。 公共阴极接触件可以耦合到阵列的阴极触点,以在阵列的背面限定第一连接引线。 公共阳极集电栅极触点可以耦合到阵列的阳极触点以限定阵列的第二连接引线。 电路可以与第一和第二连接引线耦合并且被配置为感测暗电流和在黑暗条件下产生的电流尖峰的速率中的至少一个,并且产生表示物体在阵列上的估计距离的输出信号 感应。

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