ITE-5HK250-MAG-VAC, 1200A, 2000A Medium
... material carefully. Exercise care while uncrating the circuit breaker so that no damage will occur from careless or rough handling or from exposure to moisture or dirt. Save the shipping material for storing the circuit breaker when not in use. Verify the order with the packing list to ensure that n ...
... material carefully. Exercise care while uncrating the circuit breaker so that no damage will occur from careless or rough handling or from exposure to moisture or dirt. Save the shipping material for storing the circuit breaker when not in use. Verify the order with the packing list to ensure that n ...
FAN6208 Secondary-Side Synchronous Rectifier Controller for LLC Topology FAN
... FAN6208 is a synchronous rectification (SR) controller for isolated LLC or LC resonant converters that can drive two individual SR MOSFETs emulating the behavior of rectifier diodes. FAN6208 measures the SR conduction time of each switching cycle by monitoring the drain-to-source voltage of each SR ...
... FAN6208 is a synchronous rectification (SR) controller for isolated LLC or LC resonant converters that can drive two individual SR MOSFETs emulating the behavior of rectifier diodes. FAN6208 measures the SR conduction time of each switching cycle by monitoring the drain-to-source voltage of each SR ...
PTH08T240W,
... the 2nd generation of the popular PTH series power modules and include a reduced footprint and additional features. The PTH08T241W is optimized to be used with all ceramic capacitors. Operating from an input voltage range of 4.5 V to 14 V, the PTH08T240/241W requires a single resistor to set the out ...
... the 2nd generation of the popular PTH series power modules and include a reduced footprint and additional features. The PTH08T241W is optimized to be used with all ceramic capacitors. Operating from an input voltage range of 4.5 V to 14 V, the PTH08T240/241W requires a single resistor to set the out ...
charge pumps for implantable microstimulators in low and
... high and thus extremely power consuming. Also, in order to provide biphasic current to the electrodes, there is a requirement of generating both positive and negative voltages. Generating negative voltage is very hard especially in low voltage technologies considering the technology limitations. The ...
... high and thus extremely power consuming. Also, in order to provide biphasic current to the electrodes, there is a requirement of generating both positive and negative voltages. Generating negative voltage is very hard especially in low voltage technologies considering the technology limitations. The ...
MAX8620Y µPMIC for Microprocessors or DSPs in Portable Equipment General Description
... DSPs in portable devices. The µPMIC includes a highefficiency step-down DC-DC converter, two lowdropout linear regulators (LDOs), a microprocessor reset output, and power-on/off control logic. This device maintains high efficiency at light loads with a low 115µA supply current, and its miniature TDF ...
... DSPs in portable devices. The µPMIC includes a highefficiency step-down DC-DC converter, two lowdropout linear regulators (LDOs), a microprocessor reset output, and power-on/off control logic. This device maintains high efficiency at light loads with a low 115µA supply current, and its miniature TDF ...
Harmonic Filtering
... Problems Caused by Harmonics High voltage distortion, current distortion and high neutral-to-ground voltage caused by harmonics can result in equipment failure, production down time and costly repairs to the electrical distribution network. It is critical that the consumer is aware of the costly pr ...
... Problems Caused by Harmonics High voltage distortion, current distortion and high neutral-to-ground voltage caused by harmonics can result in equipment failure, production down time and costly repairs to the electrical distribution network. It is critical that the consumer is aware of the costly pr ...
Power MOSFET technology gate current needs in a synchronous
... MOSFET technology also plays an important role in minimizing dynamic losses and improving system efficiency. In this document, the full characterization of Power MOSFET gate current is realized by bench tests and OrCAD® simulation results, focusing on the impact of Power MOSFET technology on gate cu ...
... MOSFET technology also plays an important role in minimizing dynamic losses and improving system efficiency. In this document, the full characterization of Power MOSFET gate current is realized by bench tests and OrCAD® simulation results, focusing on the impact of Power MOSFET technology on gate cu ...
R1300 GENERATOR SERVICE MANUAL
... When the generator starts running, the permanent magnet built-in to the rotor generates 3 to 6V of AC voltage in the main coil and condenser coilwound on the stator. As one or two condensers are connected to the condenser coil, the small voltage at the condenser coil generates a minute current@ whic ...
... When the generator starts running, the permanent magnet built-in to the rotor generates 3 to 6V of AC voltage in the main coil and condenser coilwound on the stator. As one or two condensers are connected to the condenser coil, the small voltage at the condenser coil generates a minute current@ whic ...
NCP1653(PFC controller)
... The NCP1653 is a controller designed for Continuous ConductionMode (CCM) Power Factor Correction (PFC) boost circuits. Itoperates in the follower boost or constant output voltage in 67 or 100kHz fixed switching frequency. Follower boost offers the benefits ofreduction of output voltage and hence red ...
... The NCP1653 is a controller designed for Continuous ConductionMode (CCM) Power Factor Correction (PFC) boost circuits. Itoperates in the follower boost or constant output voltage in 67 or 100kHz fixed switching frequency. Follower boost offers the benefits ofreduction of output voltage and hence red ...
FailSafe: A Generalized Methodology for Converter
... fault detection, identification, and remediation (FDIR) for switching power converters in nanogrids. FAIL S AFE is a dynamical systems approach to FDIR for switching power converters, and can be applied to a broad class of converters and fault types. FAIL S AFE operates as part of the control loop of ...
... fault detection, identification, and remediation (FDIR) for switching power converters in nanogrids. FAIL S AFE is a dynamical systems approach to FDIR for switching power converters, and can be applied to a broad class of converters and fault types. FAIL S AFE operates as part of the control loop of ...
Application Note: 1 LED Power Supplies Common LED Configurations
... operate at a string voltage of 84V. A single current source provides power to each of the LEDs which, by design, all receive exactly the same current. Advantages: The implementation is very simple with only a single circuit. There are no current imbalance issues as all LEDs receive identical current ...
... operate at a string voltage of 84V. A single current source provides power to each of the LEDs which, by design, all receive exactly the same current. Advantages: The implementation is very simple with only a single circuit. There are no current imbalance issues as all LEDs receive identical current ...
MAX4854H/MAX4854HL Quad SPST, High-Bandwidth, Signal Line Protection Switch General Description
... These devices feature overvoltage protection by putting the switch into high-impedance mode when the switch input exceeds VCC. These switches have low 27.5pF on-channel capacitance, which allows for 12Mbps switching of the data signals for USB 2.0 full speed/1.1 applications. The MAX4854H/MAX4854HL ...
... These devices feature overvoltage protection by putting the switch into high-impedance mode when the switch input exceeds VCC. These switches have low 27.5pF on-channel capacitance, which allows for 12Mbps switching of the data signals for USB 2.0 full speed/1.1 applications. The MAX4854H/MAX4854HL ...
Diagnostic Procedures Manual
... cables that carry the high starter current. Excessive loss here causes slow cranking speeds, especially in cold weather. Inability to start from slow cranking can lead to starter burn-up if the starter is cranked over 30 seconds. Deeply discharged or worn-out batteries can also cause the same proble ...
... cables that carry the high starter current. Excessive loss here causes slow cranking speeds, especially in cold weather. Inability to start from slow cranking can lead to starter burn-up if the starter is cranked over 30 seconds. Deeply discharged or worn-out batteries can also cause the same proble ...
ISL9K460P3 8 A, 600 V, STEALTH II Diode —
... for low loss performance in high frequency hard switched applications. The STEALTH™ family exhibits low reverse recovery current (Irr) and exceptionally soft recovery under typical operating conditions. This device is intended for use as a free wheeling or boost diode in power supplies and other pow ...
... for low loss performance in high frequency hard switched applications. The STEALTH™ family exhibits low reverse recovery current (Irr) and exceptionally soft recovery under typical operating conditions. This device is intended for use as a free wheeling or boost diode in power supplies and other pow ...
MAX4620/MAX4630/MAX4640 ±15kV ESD-Protected, Low-Voltage, Quad, SPST, CMOS Analog Switches General Description
... normally open (NO) and normally closed (NC) pins are protected against ±15kV electrostatic discharge (ESD) without latchup or damage. Each switch can handle Rail-to-Rail® analog signals. The off-leakage current is 0.5nA at +25°C. These analog switches are suitable for low-distortion audio applicatio ...
... normally open (NO) and normally closed (NC) pins are protected against ±15kV electrostatic discharge (ESD) without latchup or damage. Each switch can handle Rail-to-Rail® analog signals. The off-leakage current is 0.5nA at +25°C. These analog switches are suitable for low-distortion audio applicatio ...
MAX44244/MAX44245/MAX44248 36V, Precision, Low-Power, 90µA, Single/Quad/Dual Op Amps General Description
... filters comprise passive devices that present significant higher impedance to higher frequency signals. See the EMIRR vs. Frequency graph in the Typical Operating Characteristics section for details. ...
... filters comprise passive devices that present significant higher impedance to higher frequency signals. See the EMIRR vs. Frequency graph in the Typical Operating Characteristics section for details. ...
Soft Magnetic Materials for Audio Transformers
... When several turns of wire were wound on a magnetizable core, such as iron, the field was greatly enhanced, and in 1825 Sturgeon produced the first electromagnet. A typical example is the Royal Institution's great electromagnet illustrated in Fig. 1. Electromagnets were constructed by Franklin in th ...
... When several turns of wire were wound on a magnetizable core, such as iron, the field was greatly enhanced, and in 1825 Sturgeon produced the first electromagnet. A typical example is the Royal Institution's great electromagnet illustrated in Fig. 1. Electromagnets were constructed by Franklin in th ...
Electrical substation
A substation is a part of an electrical generation, transmission, and distribution system. Substations transform voltage from high to low, or the reverse, or perform any of several other important functions. Between the generating station and consumer, electric power may flow through several substations at different voltage levels.Substations may be owned and operated by an electrical utility, or may be owned by a large industrial or commercial customer. Generally substations are unattended, relying on SCADA for remote supervision and control.A substation may include transformers to change voltage levels between high transmission voltages and lower distribution voltages, or at the interconnection of two different transmission voltages. The word substation comes from the days before the distribution system became a grid. As central generation stations became larger, smaller generating plants were converted to distribution stations, receiving their energy supply from a larger plant instead of using their own generators. The first substations were connected to only one power station, where the generators were housed, and were subsidiaries of that power station.