FAN3268 2A Low-Voltage PMOS-NMOS Bridge Driver FAN3268 —2A Low-Voltage PMOS-NMOS Bridge Driver Features
... To enable this IC to turn a device on quickly, a local high-frequency bypass capacitor CBYP with low ESR and ESL should be connected between the VDD and GND pins with minimal trace length. This capacitor is in addition to bulk electrolytic capacitance of 10µF to 47µF commonly found on driver and con ...
... To enable this IC to turn a device on quickly, a local high-frequency bypass capacitor CBYP with low ESR and ESL should be connected between the VDD and GND pins with minimal trace length. This capacitor is in addition to bulk electrolytic capacitance of 10µF to 47µF commonly found on driver and con ...
EC low-pressure axial fans - ebm
... consumption. While the fans can deliver full air performance during the day, at night they can all run at partial load due to lower demand – while retaining their high efficiency; all fans remain in operation. The result: considerable reduction of both noise and operating costs. ...
... consumption. While the fans can deliver full air performance during the day, at night they can all run at partial load due to lower demand – while retaining their high efficiency; all fans remain in operation. The result: considerable reduction of both noise and operating costs. ...
Very High Accuracy Instrumentation Amplifier
... The output is referred to the output Common terminal which is normally grounded. This must be a low-impedance connection to assure good common-mode rejection. A resistance greater than 0.1Ω in series with the Common pin will cause common-mode rejection to fall below 106dB. ...
... The output is referred to the output Common terminal which is normally grounded. This must be a low-impedance connection to assure good common-mode rejection. A resistance greater than 0.1Ω in series with the Common pin will cause common-mode rejection to fall below 106dB. ...
Switching Pattern-Independent Simulation Model for Brushless DC
... to set up the model equations of the system. The torque equation and the motion equation do not change, but the voltage equation can change since the current paths in the inverter vary according to the current commutation, the applied switching pattern and on/off states of the switch. The phase curr ...
... to set up the model equations of the system. The torque equation and the motion equation do not change, but the voltage equation can change since the current paths in the inverter vary according to the current commutation, the applied switching pattern and on/off states of the switch. The phase curr ...
Precision, 20MHz, 0.9pA, Low-Noise, RRIO, CMOS Operational Amplifier with Shutdown OPA320, OPA320S
... Input terminals are diode-clamped to the power-supply rails. Input signals that can swing more than 0.5V beyond the supply rails should be current limited to 10mA or less. Short-circuit to ground, one amplifier per package. ...
... Input terminals are diode-clamped to the power-supply rails. Input signals that can swing more than 0.5V beyond the supply rails should be current limited to 10mA or less. Short-circuit to ground, one amplifier per package. ...
Digital Panel Meters - Datel Digital Meters
... • Measures the true-rms value of complex AC current waveforms • Includes built-in current transformers • Available in two input ranges: 0-30.0A, and 0 to 50A • 50A model features convenient split-core CT • Easy-to-read, red LED display with 0.37"/9.4mm high digits • Two AC power options: 85-140Vac & ...
... • Measures the true-rms value of complex AC current waveforms • Includes built-in current transformers • Available in two input ranges: 0-30.0A, and 0 to 50A • 50A model features convenient split-core CT • Easy-to-read, red LED display with 0.37"/9.4mm high digits • Two AC power options: 85-140Vac & ...
module ii: basic electrical concepts and hazards
... Therefore, contacting one side of the circuit will not result in an electric shock because the circuit is not completed. Contacting both sides will complete the circuit and can result in shock. AC Circuits Since the current in an AC circuit flows in both directions, there is no positive and negative ...
... Therefore, contacting one side of the circuit will not result in an electric shock because the circuit is not completed. Contacting both sides will complete the circuit and can result in shock. AC Circuits Since the current in an AC circuit flows in both directions, there is no positive and negative ...
Wind Energy Conversion System from Electrical Perspective—A
... at the same time and the connection of all the three output phases must be made to an input phase constantly [12]. There are some advantages of matrix converters. The absence of DC link capacitor results in increased efficiency and overall life time of the converter as well as the reduced size and c ...
... at the same time and the connection of all the three output phases must be made to an input phase constantly [12]. There are some advantages of matrix converters. The absence of DC link capacitor results in increased efficiency and overall life time of the converter as well as the reduced size and c ...
CSCI 2980: Introduction to Circuits, CAD, and Instrumentation
... resistor R, we can replace this combination with a voltage source of value v(t) = i(t)R in series with the resistor R. The reverse is also true; that is, a voltage source v(t) in series with a resistor R can be replaced with a current source of value i(t) = v(t)/R in parallel with the resistor R. Pa ...
... resistor R, we can replace this combination with a voltage source of value v(t) = i(t)R in series with the resistor R. The reverse is also true; that is, a voltage source v(t) in series with a resistor R can be replaced with a current source of value i(t) = v(t)/R in parallel with the resistor R. Pa ...
Design of High Performance Arithmetic and Logic
... implementation results are presented. Finally, conclusions are presented in Section V. II. SOURCES OF POWER DISSIPATION The power consumed by CMOS circuits can be classified into two categories: A. Dynamic Power Dissipation For a fraction of an instant during the operation of a circuit, both the PMO ...
... implementation results are presented. Finally, conclusions are presented in Section V. II. SOURCES OF POWER DISSIPATION The power consumed by CMOS circuits can be classified into two categories: A. Dynamic Power Dissipation For a fraction of an instant during the operation of a circuit, both the PMO ...
FPF2140/42/43/44/46/47 Full Function Load Switch with Reverse Current Blocking Features
... For best performance, all traces should be as short as possible. To be most effective, the input and output capacitors should be placed close to the device to minimize the effects that parasitic trace inductances may have on normal and short-circuit operation. Using wide traces for VIN, VOUT and GND ...
... For best performance, all traces should be as short as possible. To be most effective, the input and output capacitors should be placed close to the device to minimize the effects that parasitic trace inductances may have on normal and short-circuit operation. Using wide traces for VIN, VOUT and GND ...
How can power factor correction and harmonic filtering be part of
... harmonic filtering equipment can result in a healthy return of investment – depending on the utility’s demand rate structure, production quality cost due to harmonics and voltage fluctuations in the distribution system. ...
... harmonic filtering equipment can result in a healthy return of investment – depending on the utility’s demand rate structure, production quality cost due to harmonics and voltage fluctuations in the distribution system. ...
10% THD Electronic TT5 Fluorescent Ballast
... ballasts save up to 6 to 9% over standard electronic ballasts without compromising light output or lamp life. The added energy savings also provides for a quicker payback. SYSTEM DL40 is available in a two lamp and a three lamp model. Both are Universal Voltage (120-277V) models. SYSTEM DL40 provide ...
... ballasts save up to 6 to 9% over standard electronic ballasts without compromising light output or lamp life. The added energy savings also provides for a quicker payback. SYSTEM DL40 is available in a two lamp and a three lamp model. Both are Universal Voltage (120-277V) models. SYSTEM DL40 provide ...
TAS5261 数据资料 dataSheet 下载
... power-stage FET (LDMOS) fully started during all of the remaining part of the PWM cycle. In an application running at a reduced switching frequency, generally 250 kHz to 192 kHz, the bootstrap capacitor might need to be increased in value. Special attention should be paid to the power-stage power su ...
... power-stage FET (LDMOS) fully started during all of the remaining part of the PWM cycle. In an application running at a reduced switching frequency, generally 250 kHz to 192 kHz, the bootstrap capacitor might need to be increased in value. Special attention should be paid to the power-stage power su ...
Half VDD Clock-Swing Flip-Flop with Reduced Contention for up to
... from Fig. 1b that when clock signal is high, the clocked PMOSFETs cannot be efficiently turned off, resulting in a direct current path from VDD to ground and high power dissipation. This difficulty can be partially circumvented by connecting the n-well of clocked PMOSFETs to a high voltage bias to i ...
... from Fig. 1b that when clock signal is high, the clocked PMOSFETs cannot be efficiently turned off, resulting in a direct current path from VDD to ground and high power dissipation. This difficulty can be partially circumvented by connecting the n-well of clocked PMOSFETs to a high voltage bias to i ...
Switched-mode power supply
A switched-mode power supply (switching-mode power supply, switch-mode power supply, SMPS, or switcher) is an electronic power supply that incorporates a switching regulator to convert electrical power efficiently. Like other power supplies, an SMPS transfers power from a source, like mains power, to a load, such as a personal computer, while converting voltage and current characteristics. Unlike a linear power supply, the pass transistor of a switching-mode supply continually switches between low-dissipation, full-on and full-off states, and spends very little time in the high dissipation transitions, which minimizes wasted energy. Ideally, a switched-mode power supply dissipates no power. Voltage regulation is achieved by varying the ratio of on-to-off time. In contrast, a linear power supply regulates the output voltage by continually dissipating power in the pass transistor. This higher power conversion efficiency is an important advantage of a switched-mode power supply. Switched-mode power supplies may also be substantially smaller and lighter than a linear supply due to the smaller transformer size and weight.Switching regulators are used as replacements for linear regulators when higher efficiency, smaller size or lighter weight are required. They are, however, more complicated; their switching currents can cause electrical noise problems if not carefully suppressed, and simple designs may have a poor power factor.