Evaluates: MAX3802 MAX3802 Evaluation Kit General Description Features
... Connect power-supply ground to the GND pin (J35). Apply +3.3V to the VCC1 pin (J1). Due to a small voltage drop across the inductor, the true voltage on the part (measured across C1) is slightly lower than +3.3V. Adjust the power supply until the voltage across C1 measures +3.3V. Note: This step app ...
... Connect power-supply ground to the GND pin (J35). Apply +3.3V to the VCC1 pin (J1). Due to a small voltage drop across the inductor, the true voltage on the part (measured across C1) is slightly lower than +3.3V. Adjust the power supply until the voltage across C1 measures +3.3V. Note: This step app ...
Discrete Charge Pump Design
... Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant ...
... Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant ...
UC3851 数据资料 dataSheet 下载
... CR terminal can be used as an input port for current mode control. Conventional operational amplifier for closed-loop gain and phase compensation. Low output impedance; unity-gain stable. The output is held low by the slow start voltage at turn on in order to minimize overshoot. Precision 5.0V for i ...
... CR terminal can be used as an input port for current mode control. Conventional operational amplifier for closed-loop gain and phase compensation. Low output impedance; unity-gain stable. The output is held low by the slow start voltage at turn on in order to minimize overshoot. Precision 5.0V for i ...
compensation for non-active current components at mains supply
... compensation for non-active current components is possible without taking into account the unbalanced components of supply voltage in the algorithm of generation of compensation currents. B. Mathematical modeling of compensation system operation To confirm the results of analytical research a mathem ...
... compensation for non-active current components is possible without taking into account the unbalanced components of supply voltage in the algorithm of generation of compensation currents. B. Mathematical modeling of compensation system operation To confirm the results of analytical research a mathem ...
Tripp Lite SMART3000CRMXL SmartPro 3kVA 2880W
... Supports 3000VA/2880 watts when powered via included L5-30P input plug. Supports up to 3600VA/3600 watts when hardwired to a 120V 30A input source. Line interactive Automatic Voltage Regulation (AVR) provides two levels of voltage boost during brownouts and one level of voltage cut during overvoltag ...
... Supports 3000VA/2880 watts when powered via included L5-30P input plug. Supports up to 3600VA/3600 watts when hardwired to a 120V 30A input source. Line interactive Automatic Voltage Regulation (AVR) provides two levels of voltage boost during brownouts and one level of voltage cut during overvoltag ...
AN1645 - STMicroelectronics
... Figure 8 shows the turn-off circuit when using a diode and pull-up resistor to synchronize the STSR2P, the same configuration of Q1 and R2 can be used with a resistor divider circuit. 5.2 Discontinuous Conduction Mode As shown in figure 4, in discontinuous mode operation there can be some problems i ...
... Figure 8 shows the turn-off circuit when using a diode and pull-up resistor to synchronize the STSR2P, the same configuration of Q1 and R2 can be used with a resistor divider circuit. 5.2 Discontinuous Conduction Mode As shown in figure 4, in discontinuous mode operation there can be some problems i ...
14ELN15_Question Bank
... Explain the forward bias and reverse bias of single PN junction diode indicating barrier potential. Explain the VI characteristics of silicon diode. Explain the VI characteristics of germanium diode. Construct a DC load line on forward characteristics of diode D, connected in series with load resist ...
... Explain the forward bias and reverse bias of single PN junction diode indicating barrier potential. Explain the VI characteristics of silicon diode. Explain the VI characteristics of germanium diode. Construct a DC load line on forward characteristics of diode D, connected in series with load resist ...
Datasheet
... The CN61C series can be used to monitor battery’s voltage. The device consists of a comparator, a low current high precision voltage reference, voltage divider and output driver. It outputs a low level at RES pin whenever the VCC supply voltage declines below a preset threshold, and outputs high aft ...
... The CN61C series can be used to monitor battery’s voltage. The device consists of a comparator, a low current high precision voltage reference, voltage divider and output driver. It outputs a low level at RES pin whenever the VCC supply voltage declines below a preset threshold, and outputs high aft ...
Power Source Testing
... 5. Put the container in the ice chest with the dry ice and leave it for a half hour or so. 6. Remove the container and retrieve and save the recorded data from the HOBO. 7. Repeat the test process for other types of batteries. 8. Transfer HOBO data into Excel and plot graphs. ...
... 5. Put the container in the ice chest with the dry ice and leave it for a half hour or so. 6. Remove the container and retrieve and save the recorded data from the HOBO. 7. Repeat the test process for other types of batteries. 8. Transfer HOBO data into Excel and plot graphs. ...
HDI #94-Bulbs in Parallel WS
... Watch Hewitt-Drew-it! Bulbs in Parallel #94 and complete #1 through #10 below. 1. In a ________ circuit the current is the same in successive lightbulbs whatever their ___________. 2. Voltage ________ across particular bulbs in series depends on their ______________. 3. When bulbs are in parallel th ...
... Watch Hewitt-Drew-it! Bulbs in Parallel #94 and complete #1 through #10 below. 1. In a ________ circuit the current is the same in successive lightbulbs whatever their ___________. 2. Voltage ________ across particular bulbs in series depends on their ______________. 3. When bulbs are in parallel th ...
experiment a1 - Mechanical Engineering : University of Rochester
... The RVDT is a useful tool and features relative low cost. The device is quite robust and is capable of working in a wide variety of environments. Like the LVDT, the RVDT has low friction resistance and as the iron core does not contact the transformer coils they typically have a very long service li ...
... The RVDT is a useful tool and features relative low cost. The device is quite robust and is capable of working in a wide variety of environments. Like the LVDT, the RVDT has low friction resistance and as the iron core does not contact the transformer coils they typically have a very long service li ...
lab6 - People @ EECS at UC Berkeley
... comment on the Vpp measured at the end of the transmission line. Record your measurements on the checkoff sheet and show the waveform to the TA. 4. Terminate the transmission line by placing two resistors at the end of the ribbon cable – 330 to VCC and 200 to ground. Since these resistors are be ...
... comment on the Vpp measured at the end of the transmission line. Record your measurements on the checkoff sheet and show the waveform to the TA. 4. Terminate the transmission line by placing two resistors at the end of the ribbon cable – 330 to VCC and 200 to ground. Since these resistors are be ...
Module for two-hand control (anti
... • Safety Category III C according to EN 574 • Safety Category 4 according to EN 954-1 • 2 NO safety outputs • 1 PNP auxiliary output • 1 NC relay auxiliary output • Dual channel input • Max delay between input 500 ms • Automatic RESET • Self monitoring • Failure diagnosis by LEDs • Approvals: TÜV NO ...
... • Safety Category III C according to EN 574 • Safety Category 4 according to EN 954-1 • 2 NO safety outputs • 1 PNP auxiliary output • 1 NC relay auxiliary output • Dual channel input • Max delay between input 500 ms • Automatic RESET • Self monitoring • Failure diagnosis by LEDs • Approvals: TÜV NO ...
1 - gtbit
... d) Impairs the line power factor 21. A phase controlled converter is designed for 220v, 50Hz supply .If this converter operates on 170v, and 50 Hz supply there is a possibility for a) Commutation failure during rectification b) Commutation failure during inversion c) Increased voltage drop d) Increa ...
... d) Impairs the line power factor 21. A phase controlled converter is designed for 220v, 50Hz supply .If this converter operates on 170v, and 50 Hz supply there is a possibility for a) Commutation failure during rectification b) Commutation failure during inversion c) Increased voltage drop d) Increa ...
Lab 2 Simple Electric Circuits
... difference or voltage. The electric current is the rate that these charges move through the circuit. Electric current is measured in amperes (A) or amps. Current direction is defined as the direction positive charges will flow (opposite to the electrons in the conductors). The electric circuits in t ...
... difference or voltage. The electric current is the rate that these charges move through the circuit. Electric current is measured in amperes (A) or amps. Current direction is defined as the direction positive charges will flow (opposite to the electrons in the conductors). The electric circuits in t ...
ADN4662 数据手册DataSheet 下载
... A differential current input signal, received via a transmission medium, such as a twisted pair cable, develops a voltage across a terminating resistor, RT. This resistor is chosen to match the characteristic impedance of the medium, typically around 100 Ω. The differential voltage is detected by th ...
... A differential current input signal, received via a transmission medium, such as a twisted pair cable, develops a voltage across a terminating resistor, RT. This resistor is chosen to match the characteristic impedance of the medium, typically around 100 Ω. The differential voltage is detected by th ...
Transfer Function - Dr. Mohammed Hawa
... than 1.0) by adding transistors or Op-Amps (operational amplifiers) to the circuit. These more advanced designs are beyond the scope of this lab, but it must be remembered that whenever possible, designers prefer to use capacitors over inductors in real-life circuits, because inductors are usually b ...
... than 1.0) by adding transistors or Op-Amps (operational amplifiers) to the circuit. These more advanced designs are beyond the scope of this lab, but it must be remembered that whenever possible, designers prefer to use capacitors over inductors in real-life circuits, because inductors are usually b ...
Datasheet
... fed power supplies. The startup current source is also supplied through the switch terminal. The FB/BIAS pin accomplishes two functions: 1) Voltage feedback function. The output voltage is normally fed back to this pin through an op-to isolator. And 2) Bias supply function. The IC’s bias power is re ...
... fed power supplies. The startup current source is also supplied through the switch terminal. The FB/BIAS pin accomplishes two functions: 1) Voltage feedback function. The output voltage is normally fed back to this pin through an op-to isolator. And 2) Bias supply function. The IC’s bias power is re ...
IDl Isl liola
... the output of a photoreceiver (wafer RG31-1 05), is shown in Figure 5. The -3 dB bandwidth o f the pholoreceiver for sinuso idal modu lated incident light lies at 8.2 GHz. The frequency response of the ORTEL laser diode itself was determined using a calibrated GEe photodiode. The circuit response to ...
... the output of a photoreceiver (wafer RG31-1 05), is shown in Figure 5. The -3 dB bandwidth o f the pholoreceiver for sinuso idal modu lated incident light lies at 8.2 GHz. The frequency response of the ORTEL laser diode itself was determined using a calibrated GEe photodiode. The circuit response to ...
Schmitt trigger
In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.