Physics 481 - Physics @ UIC
... values are within the tolerance from the ones specified. Now use the 5 V power supply on the breadboard to apply a voltage to the divider. Use the DMM to measure the voltage across both resistors as well as each resistor separately. Start with 10k resistors. Check if the voltage drops across each r ...
... values are within the tolerance from the ones specified. Now use the 5 V power supply on the breadboard to apply a voltage to the divider. Use the DMM to measure the voltage across both resistors as well as each resistor separately. Start with 10k resistors. Check if the voltage drops across each r ...
Rectifier Troubleshooting
... presence of voltage (Points D-E) Voltage may be measured between any of the secondary taps If the circuit breaker trips, indicating a short circuit, the transformer can be isolated by removing the link bars. If the circuit breaker continues to trip, the transformer is shorted. If the circuit breaker ...
... presence of voltage (Points D-E) Voltage may be measured between any of the secondary taps If the circuit breaker trips, indicating a short circuit, the transformer can be isolated by removing the link bars. If the circuit breaker continues to trip, the transformer is shorted. If the circuit breaker ...
Worcester Polytechnic Institute
... Without changing the physical configuration of RT and RH, modify your breadboard circuit to implement your design for the direct reading thermometer of prelab part P1. Set up the DMM so you are now measuring the voltage VT in mV. Repeat the same VSUPPLY data points as you used in part L1. Record the ...
... Without changing the physical configuration of RT and RH, modify your breadboard circuit to implement your design for the direct reading thermometer of prelab part P1. Set up the DMM so you are now measuring the voltage VT in mV. Repeat the same VSUPPLY data points as you used in part L1. Record the ...
SN105125 数据资料 dataSheet 下载
... Storage temperature range, Tstg . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −55°C to 150°C Lead temperature (soldering, 10 sec) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 260° ...
... Storage temperature range, Tstg . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −55°C to 150°C Lead temperature (soldering, 10 sec) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 260° ...
Series and Parallel PhET
... If each of the bulbs in series had different amounts of resistance would they share the battery voltage equally? If not, which one would have a greater potential difference across it? ______________________________________________________________________________ _____________________________________ ...
... If each of the bulbs in series had different amounts of resistance would they share the battery voltage equally? If not, which one would have a greater potential difference across it? ______________________________________________________________________________ _____________________________________ ...
Fly - rod Accessory Pack
... Data storage Eliminate external wiring between hip-pack and rod Weather-proof the hip-pack Separate heat from fish metrics for two separate ...
... Data storage Eliminate external wiring between hip-pack and rod Weather-proof the hip-pack Separate heat from fish metrics for two separate ...
Performance Comparison of Overhead Line Under Various
... two transmission lines is the same as the forward propagating wave. Thus, the total voltage is a pure travelling wave. Voltage and current envelopers of a pure travelling wave is constant no matter the meter is put along the line. Nevertheless, the phase will change. Fig. 2 shows a singlephase equiv ...
... two transmission lines is the same as the forward propagating wave. Thus, the total voltage is a pure travelling wave. Voltage and current envelopers of a pure travelling wave is constant no matter the meter is put along the line. Nevertheless, the phase will change. Fig. 2 shows a singlephase equiv ...
Laboratory work #3
... During the 1st half-wave of the input voltage a current is passing through the diode. The capacitor will charge up to the level of U INPMAX - 0.7V (this voltage level is less than the input voltage by the value of the direct voltage drop across the diode). Thus, during the positive half-wave the dio ...
... During the 1st half-wave of the input voltage a current is passing through the diode. The capacitor will charge up to the level of U INPMAX - 0.7V (this voltage level is less than the input voltage by the value of the direct voltage drop across the diode). Thus, during the positive half-wave the dio ...
555 Timer As Mono Stable Multi Vibrator
... during this time period “t” shown in “yellow” at output .And during this period any trigger voltage applied in the trigger pin will have no effect on the output. 6) Now the capacitor Reaches to voltage level 2Vcc/3 and exceeds the voltage, at that time in the comparator c(U) the +ve pin voltage beco ...
... during this time period “t” shown in “yellow” at output .And during this period any trigger voltage applied in the trigger pin will have no effect on the output. 6) Now the capacitor Reaches to voltage level 2Vcc/3 and exceeds the voltage, at that time in the comparator c(U) the +ve pin voltage beco ...
Introductory Circuit Analysis, Tenth Edition
... tance of 2 for higher voltages. Use the axes of Fig. 4.6. If necessary, reproduce the graph. 16. Plot the linear curves of a 2-k and a 50-k resistor on the graph of Fig. 4.6. Use a horizontal scale that extends from 0 to 20 V and a vertical axis scaled off in milliamperes. If necessary, reproduc ...
... tance of 2 for higher voltages. Use the axes of Fig. 4.6. If necessary, reproduce the graph. 16. Plot the linear curves of a 2-k and a 50-k resistor on the graph of Fig. 4.6. Use a horizontal scale that extends from 0 to 20 V and a vertical axis scaled off in milliamperes. If necessary, reproduc ...
AK01415111514
... inverter output voltage sinusoidal, a simple L–C filter is normally introduced at the output of this PWM inverter. For high-power applications, the switching frequency of the two-level inverters is very much restricted due to the limitation of the available power devices. This introduces increased h ...
... inverter output voltage sinusoidal, a simple L–C filter is normally introduced at the output of this PWM inverter. For high-power applications, the switching frequency of the two-level inverters is very much restricted due to the limitation of the available power devices. This introduces increased h ...
TAP 126- 2: Measuring the charge on a capacitor
... Analysing the results Plot the readings for charge against voltage on common axes for the three capacitors. Do the shapes of your graphs support the idea that the charge stored varies in proportion to the voltage applied? Explain your reasoning. Calculate the gradient of each graph. The value obtain ...
... Analysing the results Plot the readings for charge against voltage on common axes for the three capacitors. Do the shapes of your graphs support the idea that the charge stored varies in proportion to the voltage applied? Explain your reasoning. Calculate the gradient of each graph. The value obtain ...
HMC735LP5 / 735LP5E
... The HMC735LP5(E) is a GaAs InGaP Heterojunction Bipolar Transistor (HBT) MMIC VCO. The HMC735LP5(E) integrates resonators, negative resistance devices, varactor diodes and features a divide-by-4 frequency output. The VCO’s phase noise performance is excellent over temperature, shock, and process due ...
... The HMC735LP5(E) is a GaAs InGaP Heterojunction Bipolar Transistor (HBT) MMIC VCO. The HMC735LP5(E) integrates resonators, negative resistance devices, varactor diodes and features a divide-by-4 frequency output. The VCO’s phase noise performance is excellent over temperature, shock, and process due ...
SP6887 4 CHANNEL REGULATED CHARGE PUMP WLED DRIVER
... The SP6887 is a 4-channel charge pump white LED driver, capable of driving up to 4 LEDs connected in parallel. The device operates in either 1x mode or 1.5x fractional mode, and it can switch from 1x mode to 1.5x mode automatically when the input voltage decreases. Its internal 4 current sink regula ...
... The SP6887 is a 4-channel charge pump white LED driver, capable of driving up to 4 LEDs connected in parallel. The device operates in either 1x mode or 1.5x fractional mode, and it can switch from 1x mode to 1.5x mode automatically when the input voltage decreases. Its internal 4 current sink regula ...
3Jain-Agarwal
... ABSTRACT—This paper presents a dedicated micro-controller based fuzzy logic controller for three-phase shunt active power filter. It is used to improve power quality by compensating harmonics and reactive power requirement of non-linear loads. The compensation process proposed is simple, which is ba ...
... ABSTRACT—This paper presents a dedicated micro-controller based fuzzy logic controller for three-phase shunt active power filter. It is used to improve power quality by compensating harmonics and reactive power requirement of non-linear loads. The compensation process proposed is simple, which is ba ...
Power MOSFET
A power MOSFET is a specific type of metal oxide semiconductor field-effect transistor (MOSFET) designed to handle significant power levels.Compared to the other power semiconductor devices, for example an insulated-gate bipolar transistor (IGBT) or a thyristor, its main advantages are high commutation speed and good efficiency at low voltages. It shares with the IGBT an isolated gate that makes it easy to drive. They can be subject to low gain, sometimes to degree that the gate voltage needs to be higher than the voltage under control.The design of power MOSFETs was made possible by the evolution of CMOS technology, developed for manufacturing integrated circuits in the late 1970s. The power MOSFET shares its operating principle with its low-power counterpart, the lateral MOSFET.The power MOSFET is the most widely used low-voltage (that is, less than 200 V) switch. It can be found in most power supplies, DC to DC converters, and low voltage motor controllers.