UTC MC34118 LINEAR INTEGRATED CIRCUIT
... A supply voltage of +2.8V to +6.5V is required at 5mA. As Vcc falls from 3.5V to 2.8V, an AGC circuit reduces the receive attenuator gain by 25dB( when in the receive mode). Output of the second hybrid amplifier. The gain is internally set at -1 to provide a differential output, in conjunction with ...
... A supply voltage of +2.8V to +6.5V is required at 5mA. As Vcc falls from 3.5V to 2.8V, an AGC circuit reduces the receive attenuator gain by 25dB( when in the receive mode). Output of the second hybrid amplifier. The gain is internally set at -1 to provide a differential output, in conjunction with ...
Physics 15b PSI Week 1: Introduction to Circuits and Equipment
... Goals: Practice creative problem-solving using circuits In many homes or buildings, there are situations where you want to be able to control a single device using either of two switches. A simple example is a staircase light, which can be turned on or off by toggling either a switch at the top of t ...
... Goals: Practice creative problem-solving using circuits In many homes or buildings, there are situations where you want to be able to control a single device using either of two switches. A simple example is a staircase light, which can be turned on or off by toggling either a switch at the top of t ...
A 10-BIT 1.2-GS/s NYQUIST CURRENT
... UNARY DECODED ARCHITECTURE Current-steering architectures differ from current dividing architectures in that they replicate a reference current source rather than divide it. As shown in Figure 2, the reference source is simply replicated in each branch of the DAC, and each branch current is switched ...
... UNARY DECODED ARCHITECTURE Current-steering architectures differ from current dividing architectures in that they replicate a reference current source rather than divide it. As shown in Figure 2, the reference source is simply replicated in each branch of the DAC, and each branch current is switched ...
FAN6756— mWSaver™ PWM Controller Features
... Deep Burst Mode is defined as a special operational mode to minimize power consumption at extremely lightload or no-load condition where, not only the switching loss, but also power consumption of the FAN6756 itself, are reduced further than in Green Mode. Deep Burst Mode is initiated when the non-s ...
... Deep Burst Mode is defined as a special operational mode to minimize power consumption at extremely lightload or no-load condition where, not only the switching loss, but also power consumption of the FAN6756 itself, are reduced further than in Green Mode. Deep Burst Mode is initiated when the non-s ...
Different Types of Bearing Currents – The Fundamentals - Flow-Tech
... Inverters on AC Motor Bearing Currents and Shaft Voltages,” IEEE Transactions on Industry Applications, Vol.32, ...
... Inverters on AC Motor Bearing Currents and Shaft Voltages,” IEEE Transactions on Industry Applications, Vol.32, ...
Ohm`s Law
... across an electrical component of resistance R that has a current I through it is given by V=IR. In this lab current will be varied through a resistor R, and the resulting voltage drop will be measured across the resistor. Materials: various resistors, wires with alligator clips, digital multimeters ...
... across an electrical component of resistance R that has a current I through it is given by V=IR. In this lab current will be varied through a resistor R, and the resulting voltage drop will be measured across the resistor. Materials: various resistors, wires with alligator clips, digital multimeters ...
EE-339 - Analog Devices
... The voltage on the VRout pins of the Blackfin processor is a PWM voltage with a duty cycle D[1]. After passing this through the low-pass filter, the generated DC voltage (Vcntrl) can be expressed as: Vcntrl = D * Vin Equation 3. Voltage generated by on-chip regulator ...
... The voltage on the VRout pins of the Blackfin processor is a PWM voltage with a duty cycle D[1]. After passing this through the low-pass filter, the generated DC voltage (Vcntrl) can be expressed as: Vcntrl = D * Vin Equation 3. Voltage generated by on-chip regulator ...
Reducing Power Factor Cost
... Be mindful that if harmonic distortion is significant in your power system, DPF analysis techniques will understate your true reactive power and overstate your true power factor. DPF analysis may accurately reflect the power factor metered and billed by your utility, but it will understate your in-p ...
... Be mindful that if harmonic distortion is significant in your power system, DPF analysis techniques will understate your true reactive power and overstate your true power factor. DPF analysis may accurately reflect the power factor metered and billed by your utility, but it will understate your in-p ...
docx
... GND and the POWER pins, respectively. Currents are considered positive when their direction is into the component. Usage Rules: In each of these sections, the first column contains the voltage value, and the three remaining columns hold the typical, minimum, and maximum current values. The four entr ...
... GND and the POWER pins, respectively. Currents are considered positive when their direction is into the component. Usage Rules: In each of these sections, the first column contains the voltage value, and the three remaining columns hold the typical, minimum, and maximum current values. The four entr ...
TGA4832 数据资料DataSheet下载
... Assure Vd - Vctrl ≤ 8 V. Compute Vd as follows, Vd = V+ - Id*40 Combinations of supply voltage, supply current, input power, and output power shall not exceed PD. When operated at this power dissipation with a base plate temperature of 70 °C, the median life is 3.8E5 hours. Assure Vctrl never exceed ...
... Assure Vd - Vctrl ≤ 8 V. Compute Vd as follows, Vd = V+ - Id*40 Combinations of supply voltage, supply current, input power, and output power shall not exceed PD. When operated at this power dissipation with a base plate temperature of 70 °C, the median life is 3.8E5 hours. Assure Vctrl never exceed ...
apparent power - McGraw Hill Higher Education
... • Theta is the angle by which the current leads or lags the voltage. • Trigonometric functions can be used to find the resistive and reactive parts of a phasor. ...
... • Theta is the angle by which the current leads or lags the voltage. • Trigonometric functions can be used to find the resistive and reactive parts of a phasor. ...
GZ3612511256
... obtained following the layout specification had been extremely adequate. The particular transformer-based has an effective output current as well as very well out of the way through the supply voltage, making it far better for higher current applications. The transformer less DC supply provides scal ...
... obtained following the layout specification had been extremely adequate. The particular transformer-based has an effective output current as well as very well out of the way through the supply voltage, making it far better for higher current applications. The transformer less DC supply provides scal ...
Linear Current Starved Delay Element
... M. Maymandi-Nejad, M. Sachdev, “A digitally Programmable Delay Element: Design and Analysis”, IEEE Trans. on VLSI Systems, vol. 11, No. 5, October 2003. G. Jovanović, M. Stojčev, “Voltage Controlled Delay Line for Digital Signal”, Facta Universitatis, Series: Electronics and Energetic, vol. 16. No. ...
... M. Maymandi-Nejad, M. Sachdev, “A digitally Programmable Delay Element: Design and Analysis”, IEEE Trans. on VLSI Systems, vol. 11, No. 5, October 2003. G. Jovanović, M. Stojčev, “Voltage Controlled Delay Line for Digital Signal”, Facta Universitatis, Series: Electronics and Energetic, vol. 16. No. ...
power - Deeteekay Community
... distributed from supply into circuit. • Negative power means that the power has been distributed from circuit into supply. • There are three type of power in AC circuit: i) Average power, P ii) Apparent Power, S iii) Reactive Power, Q ...
... distributed from supply into circuit. • Negative power means that the power has been distributed from circuit into supply. • There are three type of power in AC circuit: i) Average power, P ii) Apparent Power, S iii) Reactive Power, Q ...
radio-frequency (rf) system - Variable Energy Cyclotron Centre
... The 3-phase rf system of Superconducting (Sc) cyclotron has been developed in the frequency range 9 – 27 MHz with amplitude and phase stability of 100 ppm and ±0.5o respectively. Each dee along with half-wave coaxial cavity develops peak voltage of 100kV having fed with rf power (~80kW) from each of ...
... The 3-phase rf system of Superconducting (Sc) cyclotron has been developed in the frequency range 9 – 27 MHz with amplitude and phase stability of 100 ppm and ±0.5o respectively. Each dee along with half-wave coaxial cavity develops peak voltage of 100kV having fed with rf power (~80kW) from each of ...
LMX2315
... synthesizers with integrated prescalers designed for RF operation up to 2.5 GHz. They are fabricated using National’s ABiC IV BiCMOS process. A 64/65 or a 128/129 divide ratio can be selected for the LMX2315 and LMX2320 RF synthesizer at input frequencies of up to 1.2 GHz and 2.0 GHz, while 32/33 an ...
... synthesizers with integrated prescalers designed for RF operation up to 2.5 GHz. They are fabricated using National’s ABiC IV BiCMOS process. A 64/65 or a 128/129 divide ratio can be selected for the LMX2315 and LMX2320 RF synthesizer at input frequencies of up to 1.2 GHz and 2.0 GHz, while 32/33 an ...
Solving Harmonic Resonance Problems on the Medium
... some control of harmonic generation. However, the level of harmonic generation can still be significant and it becomes especially important when the distribution network can exhibit resonance conditions that magnify the harmonic currents and create high voltage distortion levels. When these resonanc ...
... some control of harmonic generation. However, the level of harmonic generation can still be significant and it becomes especially important when the distribution network can exhibit resonance conditions that magnify the harmonic currents and create high voltage distortion levels. When these resonanc ...
Generator Loading, Harmonics Monitoring and
... equipment, draw current from the power system that is not sinusoidal. The resulting non-linear current may be expressed as a series of sinusoidal waves with frequencies equal to integer multiples of the 60 Hz system frequency. The individual high-frequency waves are referred to as harmonics—the 3rd ...
... equipment, draw current from the power system that is not sinusoidal. The resulting non-linear current may be expressed as a series of sinusoidal waves with frequencies equal to integer multiples of the 60 Hz system frequency. The individual high-frequency waves are referred to as harmonics—the 3rd ...
Analog CMOS Circuit Design Prof.Hansraj Guhilot, Professor&Head
... Unfortunately Ideal OPAMP does not exist in reality! Further attempts to reach ideality with these parameters will have trade off with respect to speed, power, voltage swings etc We will treat OPAMP as a “high gain differential amplifier” designed with an adequate performance metrics for a given app ...
... Unfortunately Ideal OPAMP does not exist in reality! Further attempts to reach ideality with these parameters will have trade off with respect to speed, power, voltage swings etc We will treat OPAMP as a “high gain differential amplifier” designed with an adequate performance metrics for a given app ...
Power electronics
Power electronics is the application of solid-state electronics to the control and conversion of electric power. It also refers to a subject of research in electronic and electrical engineering which deals with the design, control, computation and integration of nonlinear, time-varying energy-processing electronic systems with fast dynamics.The first high power electronic devices were mercury-arc valves. In modern systems the conversion is performed with semiconductor switching devices such as diodes, thyristors and transistors, pioneered by R. D. Middlebrook and others beginning in the 1950s. In contrast to electronic systems concerned with transmission and processing of signals and data, in power electronics substantial amounts of electrical energy are processed. An AC/DC converter (rectifier) is the most typical power electronics device found in many consumer electronic devices, e.g. television sets, personal computers, battery chargers, etc. The power range is typically from tens of watts to several hundred watts. In industry a common application is the variable speed drive (VSD) that is used to control an induction motor. The power range of VSDs start from a few hundred watts and end at tens of megawatts.The power conversion systems can be classified according to the type of the input and output power AC to DC (rectifier) DC to AC (inverter) DC to DC (DC-to-DC converter) AC to AC (AC-to-AC converter)