
PSpice Tutorial - the GMU ECE Department
... To add a Resistor in your schematic, use analogue library, and click open ...
... To add a Resistor in your schematic, use analogue library, and click open ...
Mana tronics 460V / 18 Amp Load For High Voltage UPS Battery Testing
... If this unit is also required to carry out Battery Discharge testing there is an option to have an in-built LVD, (Low Voltage Disconnect). This can be enabled and disabled from the front panel. It is possible to select the "End Voltage". When enabled the load monitors the overall battery Voltage and ...
... If this unit is also required to carry out Battery Discharge testing there is an option to have an in-built LVD, (Low Voltage Disconnect). This can be enabled and disabled from the front panel. It is possible to select the "End Voltage". When enabled the load monitors the overall battery Voltage and ...
4.3 Electrical Resistance Notes
... In a series circuit, when there is a break in the circuit, the current everywhere is stopped. In a series circuit, light bulb one has a resistance of 90 ohms, light bulb 2 has a resistance of 70 ohms, and light bulb 3 has a resistance of 120 ohms. What is the total resistance in the circuit? Total r ...
... In a series circuit, when there is a break in the circuit, the current everywhere is stopped. In a series circuit, light bulb one has a resistance of 90 ohms, light bulb 2 has a resistance of 70 ohms, and light bulb 3 has a resistance of 120 ohms. What is the total resistance in the circuit? Total r ...
PHYSICS 536 Experiment 9: Common Emitter Amplifier A. Introduction
... relatively small to minimize non-linearity. Monitor the input signal when the frequency is changed (refer to GIL section 4.3) For I c = 1mA , measure the midfrequency gain (vc / vb ) at 10kHz. Observe that the gain is constant in the midfrequency region by varying the signal frequency from 1kHz to 1 ...
... relatively small to minimize non-linearity. Monitor the input signal when the frequency is changed (refer to GIL section 4.3) For I c = 1mA , measure the midfrequency gain (vc / vb ) at 10kHz. Observe that the gain is constant in the midfrequency region by varying the signal frequency from 1kHz to 1 ...
PHYSICS 536 Experiment 9: Common Emitter Amplifier A. Introduction
... 1) Rs is the output resistance of signal source. 2) C2 is a “coupling capacitor” which passes AC signal from the source to amplifier input but blocks DC offsets from the source so that it does not affect the quiescent condition of the transistor. 3) C3 is a coupling capacitor, which passes the ampli ...
... 1) Rs is the output resistance of signal source. 2) C2 is a “coupling capacitor” which passes AC signal from the source to amplifier input but blocks DC offsets from the source so that it does not affect the quiescent condition of the transistor. 3) C3 is a coupling capacitor, which passes the ampli ...
Week 1: Tips for using HSPICE
... Measures the maximum current through the independent source Vdd • .MEAS peak_power PARAM=’max_current*5’ Calculates the peak power, assuming that max_current has been measured Measured values are placed in a file called filename.mt#. See p. 4-19 for more details. ...
... Measures the maximum current through the independent source Vdd • .MEAS peak_power PARAM=’max_current*5’ Calculates the peak power, assuming that max_current has been measured Measured values are placed in a file called filename.mt#. See p. 4-19 for more details. ...
Microcontroller based substation monitoring and control system
... various electrical parameters and sensor for temperature measurement. The analog and digital inputs from respective sensors are sent to the microcontroller. Microcontroller process this raw data and converts into human readable format and displays on LCD display. Microcontroller continuously checks ...
... various electrical parameters and sensor for temperature measurement. The analog and digital inputs from respective sensors are sent to the microcontroller. Microcontroller process this raw data and converts into human readable format and displays on LCD display. Microcontroller continuously checks ...
6. Ohm`s Law Lab
... 10. Connect the power supply, 100-Ω resistor, wires, and clips as shown in Figure 1 above. The positive lead from the power supply and the red terminal from the Current & Voltage Probe are connected as shown. Note: Attach the red connectors to the positive side of the power supply. 11. Make sure the ...
... 10. Connect the power supply, 100-Ω resistor, wires, and clips as shown in Figure 1 above. The positive lead from the power supply and the red terminal from the Current & Voltage Probe are connected as shown. Note: Attach the red connectors to the positive side of the power supply. 11. Make sure the ...
output - Innovetech
... systems. In many of these applications, it is desirable for the rectifier to appear as a resistor at its ac input port. However, for a given dc output voltage, the input impedance of a resonant rectifier varies in magnitude and phase as output power changes. This paper presents a design methodology ...
... systems. In many of these applications, it is desirable for the rectifier to appear as a resistor at its ac input port. However, for a given dc output voltage, the input impedance of a resonant rectifier varies in magnitude and phase as output power changes. This paper presents a design methodology ...
Lab 4 Voltage Divider and Bridge Circuits
... power supply to 5.0 volts with a current limit of 0.5 A. Complete the circuit on your PB. ...
... power supply to 5.0 volts with a current limit of 0.5 A. Complete the circuit on your PB. ...
ppt
... • It should only be connected to a 7.5v voltage source. A higher voltage can damage the equipment. The equipment may not function correctly with a lower voltage. • When it is connected to 7.5v voltage source, it will draw about 0.1A (100mA) of current from it. (c) P.Hsu 2007 ...
... • It should only be connected to a 7.5v voltage source. A higher voltage can damage the equipment. The equipment may not function correctly with a lower voltage. • When it is connected to 7.5v voltage source, it will draw about 0.1A (100mA) of current from it. (c) P.Hsu 2007 ...
Voltage Dividers and Current Dividers
... 7-1: Series Voltage Dividers VT is divided into IR voltage drops that are proportional to the series resistance values. Each resistance provides an IR voltage drop equal to its proportional part of the applied voltage: VR = (R/RT) × VT This formula can be used for any number of series resista ...
... 7-1: Series Voltage Dividers VT is divided into IR voltage drops that are proportional to the series resistance values. Each resistance provides an IR voltage drop equal to its proportional part of the applied voltage: VR = (R/RT) × VT This formula can be used for any number of series resista ...
50W - 100W, Rugged, Ultra-compact, Industrial DC/DC Converter
... depending on input/output configuration. It is a mature product with a track record in numerous applications. This converter is a complete turn-key unit with input filter, hold-up capacitors and output filter. Cooling is via baseplate to a heatsinking surface and by natural convection. Low component ...
... depending on input/output configuration. It is a mature product with a track record in numerous applications. This converter is a complete turn-key unit with input filter, hold-up capacitors and output filter. Cooling is via baseplate to a heatsinking surface and by natural convection. Low component ...
Chapter07
... 7-1: Series Voltage Dividers 7-2: Current Dividers with Two Parallel Resistances 7-3: Current Division by Parallel Conductances 7-4: Series Voltage Divider with Parallel Load Current 7-5: Design of a Loaded Voltage Divider © 2007 The McGraw-Hill Companies, Inc. All rights reserved. ...
... 7-1: Series Voltage Dividers 7-2: Current Dividers with Two Parallel Resistances 7-3: Current Division by Parallel Conductances 7-4: Series Voltage Divider with Parallel Load Current 7-5: Design of a Loaded Voltage Divider © 2007 The McGraw-Hill Companies, Inc. All rights reserved. ...
EUP3651 4-Channel, 1X/1.5X Charge Pump White LED Driver
... The EN serial pulses timing diagram see Figure 3. ...
... The EN serial pulses timing diagram see Figure 3. ...
Microcare 10kw Grid Tied Inverter
... upgraded and a range of Grid Tied Inverters using High Frequency Pulse Width Modulation (PWM) to regulate the output of the inverter has been introduced. The 10kw to 15 kw 3-phase series are applicable to all small commercial grid connected systems. This series of inverters have two MPPT trackers an ...
... upgraded and a range of Grid Tied Inverters using High Frequency Pulse Width Modulation (PWM) to regulate the output of the inverter has been introduced. The 10kw to 15 kw 3-phase series are applicable to all small commercial grid connected systems. This series of inverters have two MPPT trackers an ...
Measuring Temperature and Testing BASIC Stamp
... similar to the example shown in Figure 9 of the AD780 datasheet. Your BalloonSat may not have resistors installed at locations RV1, R5 or R6. These resistors set the gain of amplifier U6 according to the relationship Gain = 1 + R6/(RV1 + R5). What is the gain of the circuit of Figure 9 of the AD780 ...
... similar to the example shown in Figure 9 of the AD780 datasheet. Your BalloonSat may not have resistors installed at locations RV1, R5 or R6. These resistors set the gain of amplifier U6 according to the relationship Gain = 1 + R6/(RV1 + R5). What is the gain of the circuit of Figure 9 of the AD780 ...
THREE PHASE CIRCUITS
... power absorbed 150 kVAR. For the combination of load and capacitors, 250 kVA, and the pf is ⁄ 0.8 lagging. Note. Here, we did the calculations on three phase quantities. We could have thought in terms of a per phase equivalent circuit. We would have obtained the same answer for pf (all powers ...
... power absorbed 150 kVAR. For the combination of load and capacitors, 250 kVA, and the pf is ⁄ 0.8 lagging. Note. Here, we did the calculations on three phase quantities. We could have thought in terms of a per phase equivalent circuit. We would have obtained the same answer for pf (all powers ...
R - Purdue Physics
... force of the battery whose internal resistance is negligible. Which of the three resistors has the greatest current flowing through it? a) b) c) d) e) ...
... force of the battery whose internal resistance is negligible. Which of the three resistors has the greatest current flowing through it? a) b) c) d) e) ...
Current source
A current source is an electronic circuit that delivers or absorbs an electric current which is independent of the voltage across it.A current source is the dual of a voltage source. The term constant-current 'sink' is sometimes used for sources fed from a negative voltage supply. Figure 1 shows the schematic symbol for an ideal current source, driving a resistor load. There are two types - an independent current source (or sink) delivers a constant current. A dependent current source delivers a current which is proportional to some other voltage or current in the circuit.