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FAN5353 3 MHz, 3 A Synchronous Buck Regulator 
FAN5353 3 MHz, 3 A Synchronous Buck Regulator 

... may fail to start. If VOUT fails to achieve regulation within 320 µs from the beginning of soft-start, the regulator shuts down and waits 1200 µs before attempting a restart. If the regulator is at its current limit for more than about 60 µs, the regulator shuts down before restarting 1200 µs later. ...
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... overload relay (OLR). The other end of the OLR is 3. Field terminal ‘F’ (connected to field winding.) connected to the lower end of conducting lever of starter 4. Additional point N (connected to electromagnet.) handle where the spring is attached to the handle, along with these things the handle al ...
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... supplies of the device are on, this generally is not an issue, unless the total injected current is higher than the current requirements of the device, in which case, the power supply itself must be capable of handling this current. In the other case, when the power supplies are off, injection curre ...
Biela J. Aigner H., Parallel/Series Connection of Self
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... converters from the DC voltage source VDC is the same. Neglecting the magnetising current and/or magnetising inductance of the two transformers in a first step, the two resonant tank currents IS1 and IS2 must be the same since the secondaries of the two transformers are connected in series so that s ...


... the counterflow current transmitted into the sample. This maximizes the tunneling current and is achieved if we choose | f | ∼ 1. Thus, we argue that forcing at a boundary leads to a self-organized critical state, in which the driven part of the system is saturated at the threshold | f | ∼ 1. This m ...
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... The LT3021 regulator optimizes stability and transient response with low ESR, ceramic output capacitors as small as 3.3μF. Other LT3021 features include 0.05% typical line regulation and 0.2% typical load regulation. In shutdown, quiescent current typically drops to 3μA. Internal protection circuitr ...
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... should not exceed the input supply level present on the VCC pin. The AAT4621 typically consumes 40μA when operating, when off, the device draws less then 1μA. In the off state, current is prevented from flowing between the input and output. Under-voltage lockout circuitry ensures that the VCC supply ...
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... between the BOOST and SW pins and Schottky diodes are tied between the BOOST and INTVCC pins. Voltage swing at the BOOST pins is from INTVCC to (VIN + INTVCC). SW1, SW2 (Pins 25, 16): Switch Node Connections to Inductors. Voltage swing at these pins is from a Schottky diode (external) voltage drop b ...
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Battery Charging - Texas Instruments
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TRIAC



TRIAC, from triode for alternating current, is a genericized tradename for an electronic component that can conduct current in either direction when it is triggered (turned on), and is formally called a bidirectional triode thyristor or bilateral triode thyristor.TRIACs are a subset of thyristors and are closely related to silicon controlled rectifiers (SCR). However, unlike SCRs, which are unidirectional devices (that is, they can conduct current only in one direction), TRIACs are bidirectional and so allow current in either direction. Another difference from SCRs is that TRIAC current can be enabled by either a positive or negative current applied to its gate electrode, whereas SCRs can be triggered only by positive current into the gate. To create a triggering current, a positive or negative voltage has to be applied to the gate with respect to the MT1 terminal (otherwise known as A1).Once triggered, the device continues to conduct until the current drops below a certain threshold called the holding current.The bidirectionality makes TRIACs very convenient switches for alternating-current (AC) circuits, also allowing them to control very large power flows with milliampere-scale gate currents. In addition, applying a trigger pulse at a controlled phase angle in an AC cycle allows control of the percentage of current that flows through the TRIAC to the load (phase control), which is commonly used, for example, in controlling the speed of low-power induction motors, in dimming lamps, and in controlling AC heating resistors.
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