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4. Complex DC Circuits
4. Complex DC Circuits

... produces a positive voltage • I1 flows through R1 opposite to our loop, so I1R1 is positive. I2 flows through R2 in the same direction as our loop, so I2 R2 is negative ...
BDTIC TLS205B0 3.3 & 5V Version Linear Post Regulator
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... (IQ = 0mA) makes it an ideal choice. ...
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Introduction to MOS Transistor

... Our initial L1 and Lg does not produce a perfect match! ...
Electric Circuits
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... you follow the loop in the opposite direction, V<0.  When you follow the loop across a resistor in the direction of current, V<0. In a direction opposite to current, V>0. ...
How does inductive filter work
How does inductive filter work

... 4. Filters can be capacitive or inductive. Inductive filter smoothes rectified current ripple. 5. Consequence of inductive filter use is that input AC current is not sinusoidal any more. It becomes rectangular. ...
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... output. Every test pin can be switched to output and in this mode it can be directly connected to GND (0V) or VCC (5V), or it can be connected via a 680 resistor or a 470k resistor to either GND or VCC. Table 5.1 shows all possible combination of measurements. Notice, that the positive state can be ...
EUP6514 5V/12V Synchronous Buck PWM Controller
EUP6514 5V/12V Synchronous Buck PWM Controller

... respect to this pin. Ties the pin directly to the low-side MOSFET source and ground plane with the lowest impedance. Lower gate drive output. Connect to the gate of low-side power N-Channel MOSFET. This pin is monitored by the adaptive shoot-through protection circuitry to determine when the lower M ...
Class: G3a/b Topic: Bipolar transistors – part 1
Class: G3a/b Topic: Bipolar transistors – part 1

... Silicon is the main material from which semiconductors are made. Pure silicon is not a conductor. However, it can be made conductive by adding other elements to its structure, which then becomes known as N-type or P-type silicon. This process is called doping. N-type silicon is silicon that has been ...
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... III. Electric Current- a flow of charges through a wire or any conductor. Current is measured in Amperes (A) Current is the flow of electrons. Most wall sockets are 120 V in our homes. ...
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Single-Node-Pair Circuits

... Single Loop Circuit • The same current flows through each element of the circuit---the elements are in series. • We will consider circuits consisting of voltage sources and resistors. ...
AVR-20 ALTERNATOR VOLTAGE REGULATOR
AVR-20 ALTERNATOR VOLTAGE REGULATOR

... adjustment potentiometer is also provided for this purpose. The AVR-20 has a special relay-less electronic circuit design. The required minimum residual voltage for build up is 5 VAC. The unit does not include moving parts; therefore it is able to operate in highly vibrating environments. The AVR-20 ...
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Appendix C Ohm`s Law, Kirchhoff`s Laws and AC Circuits

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The DatasheetArchive - Datasheet Search Engine

A novel transistor level implementation of a high speed
A novel transistor level implementation of a high speed

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... • Diodes also have a voltage drop while they are conducting. This is called forward voltage drop. It is in the 0.5 to 0.9 volt range for silicon diodes. A typical value is 0.7 volts. • The forward drop in a germanium diode is in the 0.2 to 0.4 volt range. • Diodes also have a threshold voltage appro ...
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... greater than 1.0V for guaranteed startup (0.7V for operation once started), and less than the output voltage. A typical input voltage range would be the 2.0V to 3.3V range of a 2-cell NiCd battery. An input voltage greater than the selected output voltage (but less than 6V) will not damage the circu ...
Exercise 4
Exercise 4

... serially connect the loads end-to-end as we have done in previous exercises: The second is to connect the loads in parallel: Electrical circuits consist of some combination of these two circuit types. In this exercise, you will investigate what happens when you put loads in parallel. ...
Why bother to study crystal radios
Why bother to study crystal radios

... adjusted to the value of Vref. Instead, use the existing ±10 V supplies to provide power to a voltage reference circuit of your own design. Keep in mind that the current flowing through R1 is not negligible. You may design the voltage reference circuit around a second op-amp. Be sure to record all ...
Datasheet - UNIPOWER
Datasheet - UNIPOWER

... DC voltage is maintained within ±1/2 percent at any load from no load to full load with ±10 percent variation (or ANSI standard ranges) in the AC input voltage while floating rated number of cells. Control is accomplished with a single control board with operation on or off a battery. ...
avr-20 alternator voltage regulator
avr-20 alternator voltage regulator

... adjustment potentiometer is also provided for this purpose. The AVR-20 has a special relay-less electronic circuit design. The required minimum residual voltage for build up is 5 VAC. The unit does not include moving parts; therefore it is able to operate in highly vibrating environments. ...
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Current mirror

A current mirror is a circuit designed to copy a current through one active device by controlling the current in another active device of a circuit, keeping the output current constant regardless of loading. The current being 'copied' can be, and sometimes is, a varying signal current. Conceptually, an ideal current mirror is simply an ideal inverting current amplifier that reverses the current direction as well or it is a current-controlled current source (CCCS). The current mirror is used to provide bias currents and active loads to circuits. It can also be used to model a more realistic current source (since ideal current sources don't exist).The circuit topology covered here is one that appears in many monolithic ICs. It is a Widlar mirror without an emitter degeneration resistor in the follower (output) transistor. This topology can only be done in an IC as the matching has to be extremely close and cannot be achieved with discretes.Another topology is the Wilson mirror. The Wilson mirror solves the Early effect voltage problem in his design.
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