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Chapter 20
Chapter 20

3H Spectrometer Gradient Coil Programmable
3H Spectrometer Gradient Coil Programmable

... maximum current into the 17 ohm large Z coil is typically 1.0amps. The PPSU is capable of supplying the maximum current into all the other gradient coils (see IMPORTANT conditions that follow). IMPORTANT :- The power op amp used in the design incorporates a thermal protection circuit that shuts down ...
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Ohm Presentation
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review of electrical quantities and basic circuit elements
review of electrical quantities and basic circuit elements

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EUP2518 White LED Step-Up Converter In TSOT-23 Package

... change the duty cycle of PWM signal can get different output current. According to the application circuit of Figure 5, output current is from 20.5mA to 5.5mA by adjusting the PWM duty cycle from 10% to 90%. ...
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Neural Computation Practical 2: The Hodgkin

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< 1 ... 488 489 490 491 492 493 494 495 496 ... 628 >

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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