静态电流
- 名quiescent current
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其次利用TTL关断功能,保证在待机时的静态电流只有30μA;
Secondly , with TTL shutdown capability the standby quiescent current of the device can be reduced to 30 μ A.
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芯片在工作期间静态电流仅为10μA,而在关断模式下则降到1μA;
The quiescent current of this chip is only 10 μ A during operation , and drops below 1 μ A in shutdown mode ;
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CMOSIC漏极静态电流测试技术的现状与发展
Progress of Drain Static Current Test Method for CMOS IC 's
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具有快速瞬态响应和低静态电流的CMOS低漏失稳压器设计
A Fast-Transient Response and Low-Quiescent Current CMOS Low-Dropout Regulator
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低静态电流低压降CMOS线性稳压器
A Low Quiescent-Current CMOS Low-Dropout Regulator
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双极晶体管导通状态对功率纵向双扩散MOSFET静态电流-电压特性的影响
Effect of Bipolar Turn-On on the Static Current-Voltage Characteristics of Power Vertical Double Diffused MOSFET
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一种低静态电流、高稳定性的LDO线性稳压器
A Low-dropout Regulator with Low Quiescent Current and High Stability
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但在一些应用条件下,比如工作在轻载状况下或是给RF供电时,DC/DC的静态电流及开关噪声就显得比较大了。
Conditions in some applications , such as work in the light load conditions or when to RF power , DC_DC quiescent current and switching noise becomes greater .
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要提高效率,必须降低输入输出压差V(Dropout)和静态电流Iq。
In order to improve the efficiency , low dropout voltage V_ ( Dropout ) and low quiescent current Error Amplifiers are used in LDO design .
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设计了一种100mA低静态电流、低压降CMOS线性稳压器。
A 100-mA CMOS low-dropout regulator ( LDO ) with low quiescent-current is designed .
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VCO电路在1.5V电压下工作,静态电流为6mA。
The static current is 6 mA at 1.5 V.
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新型BCD工艺的DC-DC转换器更以其高效率、低噪声、微功耗、高精度、低静态电流等优势得到了广泛的应用。
The BCD process finds extensive application because of its high efficiency , low noise , high precision and low quiescent current .
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电路在3.3V电源电压下工作,静态电流为18mA。
The circuit consumes 18 mA current under 3.3 V supply .
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基于0.34CMOS工艺,设计了一个Rail-to-Rail输入,静态电流小于3,工作在亚阈区的极低功耗运算放大器。
A operational amplifier in weak inversion with rail-to-rail input stage is presented in the paper , which is based on 0.34 - CMOS technology .
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CMOS低功耗、低噪声频域放大器是热电式红外传感器中的核心部分,其在5V电源下静态电流必须小于100μA,且对低频噪声,尤其是50Hz噪声有较强的抑制能力。
A CMOS low power , low noise frequency limited amplifier is presented , which is the key part of thermoelectric infrared sensors . Under the concentration of 50 ?
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在电路理论中,本课题提出了一种新型PFM控制型电荷泵,与传统电荷泵相比,在芯片轻负载时,它具有更高的转换效率、更低的静态电流等优点。
Compared with the conventional linear control charge pump , the PFM control charge pump offers lower quiescent current , higher efficiency and low output ripple , especially in low load condition .
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超低漏失电压和超低静态电流特性及与外接电容无关的频率补偿技术已成为LDO稳压器的主要研究方向。
The characteristic of super low dropout voltage and super low consumption as well as the output capacitor free frequency compensation have become the main research direction of LDO technology .
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电路采用多列像素共享容式跨阻放大器(CTIA)和DAC,用补偿暗像元扣除静态电流,校正数据经DAC转换送至MOS管的栅极以控制偏置电流达到温度补偿目的。
It includes column-shared CTIA , DAC , and dummy pixel for static current reduction . Correction data are transferred by DAC to the gates of MOS transistors , to control the bias voltage .
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结果表明该比较器在电源电压为3.3V时,增益达117dB,总静态电流仅15μA.CMOS求和比较器在PWM开关电源控制中的应用
The simulation and test results show that under the power supply of 3.3 V , the circuit has the gain of 117 dB and low quiescent current of 15 μ A. Application of CMOS Sum-Comparator in PWM Control in SMPS
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经模拟,文中设计的电路在5V~2.5V电源电压下均能正常工作,且在5V下的总静态电流为82.1μA。
It can operate well under a supply voltage ranged from 2.5 V to 5 V , and has a total static current below 82.1 μ A for 5 V supply voltage .
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目前,LDO朝着低功耗,低静态电流,快速瞬态响应,大输出电流等方向发展,其中,大输出电流是LDO发展的一个重要方向,但是大的输出电流对LDO环路稳定性有重要影响。
Currently , LDO is developing towards low power , low quiescent current , fast transient response , large output current , and many other directions among which Large output current is an important one . but the large output current can cause the stability problem of the LDO loop .
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汽车电子系统要求低静态电流
Automotive Power Supplies Demand Low Quiescent Currents for " Always-On " Systems
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一种将静态电流与动态电流相结合的集成电路故障定位算法
Fault localization algorithm combining quiescent current and transient current
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超低静态电流放大器的设计
Design of Amplifier with Ultra - Low Quiescent Current
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静态电流电压继电器的设计方案
Design scheme of static current and voltage relays
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DO线性稳压器的低漏失电压、低静态电流特性使电池使用具有高效率和长寿命。
Low dropout and low quiescent current are important for long battery life in LDO linear regulators .
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此外,分布式系统结构还降低了单板的静态电流,增加了单板的稳定性。
In addition the distributed system also reduces the static current , and increase of the stability of modules .
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结果表明,该电路的功耗低(静态电流约0.5μA);
The results show that the circuit has ultra-low power consumption ( the static current is about 0.5 μ A );
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当输出电压恢复稳定,该动态偏置电流随即消失,从而保证了低静态电流的需求。
When the output is stable , this dynamic bias current disappears , which guarantees the low quiescent current design .
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的运算跨导放大器电路,并已经成功地应用于一款超低静态电流的新一代低压差线性稳压器芯片中。
An operational transconductance amplifier ( OTA ), which has been successfully applied to the chip of ultra-low power low-dropout ( LDO ) voltage regulator is presented .