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- Belt-driven centrifugal suction charging pump. 皮带传动喷淋泵。
- In this paper, a charge pumping effect in CCD with floating diffusion region is introduced, which will lead to a voltage shift and a special charge transfer loss. 本文提出了一种CCD(电荷耦合器件)中的电荷泵效应。 这种效应会引起FDR(浮置扩散区)的电位漂移,并带来一种特殊的电荷转移损失。
- A novel passive soft-switching technology equipped with a charge pump regeneration (CPR) network is presented. 由此提出一种加入电荷泵能量再生(CPR)网络的无源软开关新技术。
- The proposed approach adds a comparator and a charge pump in the traditional column driver buffer structure. 此架构是在传统的行驱动器缓冲器上加上一个比较器和充电帮浦。
- The slew rate of the circuit is determined by the charge pump but not the op amp. 此电路的充电时间是决定于充电帮浦而非传统的放大器。
- The nonlinearities, such as the “dead zone” of PFD and charge sharing effect of charge pump, are overcome carefully. 该锁相环采用三阶电荷泵结构,解决了鉴相鉴频器的死区、电荷泵的电荷共享等问题。
- The new charge pump is area-efficient and with the PMOS device prevents from Latch-up. 该电荷泵经过面积优化,并且加入防Latch-up效应的PMOS管。
- Finally the thesis discusses a fourfold voltage charge pump only has 8 MOS devices, even 7 MOS. 本文在6管交叉耦合电荷泵的基础上提出了一种8(7)管4倍电荷泵。
- Charge Pump circuits are used to generate higher voltages from low voltage inputs, using capacitors as storage elements. 电荷泵电路通常利用电容器作为储能元件从低电压输入产生提高的电压输出。
- The A8435 high efficiency charge pump IC offer a simple, low-cost white LED driver solution for portable electronics display applications. A8435高效充电泵IC可为便携式电子显示应用提供简单且低成本的白光LED驱动器解决方案。
- The ADM8845 charge pump is designed for driving up to six white LEDs in parallel while ensuring uniform brightness of a backlit LCD display. ADM8845电荷泵适合用于驱动高达6只并联的白色LED,同时能够保证背光照明液晶显示的亮度均匀。
- The ADM8845 is also designed to maximize power efficiency by switching automatically between three charge pump modes based on the input voltage. ADM8845可以在3种电荷泵工作模式之间根据输入电压自动切换,所以它还用来最大化功率效率。
- The commutated power of charge pump type was put forward, combined with the technical control demands of electromagnetic forming machine. 结合电磁成形机工艺控制要求,提出了以稳流整流为主,并最终稳压的“电荷泵”式整流电源。
- Actually, due to the large stray capacitance of an on-chip capacitor, a large portion of power is consumed by the charge pump in an EEPROM circuit. 如何减小升压电荷泵的功耗一直是研究的重点。
- We introduce a symmetric feedback circuit onto a “bootstrapping” charge pump with a typical second order loop filter to improve jitter performance. 首先在此锁相迴路运用一个对称式回授电路在一“提靴架构”电荷帮浦,搭配一个典型的二阶低通滤波器来增进相位抖动的特性。
- A 10% service charge is added on to the bill. 帐单上包括了百分之十的服务费。
- Finally, employing the equivalent electricity quantity approach, the steady state output voltage expression of charge pump is derived. 紧接着采用等效电量关系法详细地推导了电荷泵的稳态输出电压表达式。
- It is the basis of computing the size of switch transistors to derive the model of the power dissipation and efficiency of charge pump. 推导了电荷泵的损耗和效率模型,为电路设计中确定电荷泵开关管的尺寸奠定基础。
- An adaptive Phase-Locked Loop (PLL) with a fast settling time and its key blocks including Phase-Frequency Detector (PFD) and charge pump are then proposed and analyzed. 提出并分析了一种自适应的具有快速建立时间的锁相环结构及其关键模块(鉴相鉴频器和电荷泵)。