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... used in communication system and measurements such as frequency doublers, peak amplitude detector, and analog multiplier [1-6]. Squaring circuits are also widely used in other practical applications such as RMS-to-DC converters in instrumentation and non-linear signal generation in analog signal pro ...
... used in communication system and measurements such as frequency doublers, peak amplitude detector, and analog multiplier [1-6]. Squaring circuits are also widely used in other practical applications such as RMS-to-DC converters in instrumentation and non-linear signal generation in analog signal pro ...
... The Intensity Control Block gives voltage input to the PWM Controller Circuit. PWM controller circuit triggers the constant current boost IC (TPS926920) then it is given to the constant current IC via Mosfet Circuit. Mosfet is a voltage controlled device. Finally, the output of the constant current ...
EUP2571 White LED Step-Up Converter In Tiny SOT-23 Package
... backlight and keypad. Setting the divider-resistors (R1 & R2) is to get a constant output voltage that depends on the forward voltage and the numbers of series-LEDs. It can turn on backlight of main panel and keypad at the same time. Applying different duty cycle of PWM signal above 22kHz to the bac ...
... backlight and keypad. Setting the divider-resistors (R1 & R2) is to get a constant output voltage that depends on the forward voltage and the numbers of series-LEDs. It can turn on backlight of main panel and keypad at the same time. Applying different duty cycle of PWM signal above 22kHz to the bac ...
84` IIB
... A student is now given two light-dependent resistors (LDRs) and a small d.c. buzzer. The buzzer can be connected to the output of the circuit in Figure 9 and emits a loud noise when the output is high but no noise when it is low. The student is asked to add the two LDRs and the buzzer to the circuit ...
... A student is now given two light-dependent resistors (LDRs) and a small d.c. buzzer. The buzzer can be connected to the output of the circuit in Figure 9 and emits a loud noise when the output is high but no noise when it is low. The student is asked to add the two LDRs and the buzzer to the circuit ...
Circuit breaker II updated
... associated with its magnetic field appears in the form of electrostatic energy. A high voltage appears across the contacts of the circuit breaker. If this voltage is very high and more than the withstanding capacity of the gap between the contacts, the arc will strike again. Therefore, this method i ...
... associated with its magnetic field appears in the form of electrostatic energy. A high voltage appears across the contacts of the circuit breaker. If this voltage is very high and more than the withstanding capacity of the gap between the contacts, the arc will strike again. Therefore, this method i ...
Experiment 9: Driven RLC Circuits
... allowing the energy to gradually dissipate through the resistor. This time we will instead add a battery that periodically pushed current through the system. Such a battery is called an AC (alternating current) function generator, and the voltage it generates can oscillate with a given amplitude, fr ...
... allowing the energy to gradually dissipate through the resistor. This time we will instead add a battery that periodically pushed current through the system. Such a battery is called an AC (alternating current) function generator, and the voltage it generates can oscillate with a given amplitude, fr ...
Experiment 10: Inverting Amplifier
... of time, displaying at least 3 cycles. – Remove Rf from the circuit. Measure and record the resistance between pins 1 and 2. – Measure the output voltage at the following input voltages: • 0V, +/-1V, +/-2V, +/-3V, +/- 4V, and +/-5V. – use cursors in scope program ...
... of time, displaying at least 3 cycles. – Remove Rf from the circuit. Measure and record the resistance between pins 1 and 2. – Measure the output voltage at the following input voltages: • 0V, +/-1V, +/-2V, +/-3V, +/- 4V, and +/-5V. – use cursors in scope program ...
D_LKAT2_P
... DynAmp’s new LKAT2 Portable is a lightweight, extremely rugged and easy to use AC / DC measurement system for currents up to 150kA. Based on DynAmp’s well-proven 3rd Generation OLOP technology, primary measurement accuracy is 0.25% The typical system is offered with a variety of Head ‘Sides’ enablin ...
... DynAmp’s new LKAT2 Portable is a lightweight, extremely rugged and easy to use AC / DC measurement system for currents up to 150kA. Based on DynAmp’s well-proven 3rd Generation OLOP technology, primary measurement accuracy is 0.25% The typical system is offered with a variety of Head ‘Sides’ enablin ...
Experiment 10: Inverting Amplifier
... of time, displaying at least 3 cycles. – Remove Rf from the circuit. Measure and record the resistance between pins 1 and 2. – Measure the output voltage at the following input voltages: • 0V, +/-1V, +/-2V, +/-3V, +/- 4V, and +/-5V. – use cursors in scope program ...
... of time, displaying at least 3 cycles. – Remove Rf from the circuit. Measure and record the resistance between pins 1 and 2. – Measure the output voltage at the following input voltages: • 0V, +/-1V, +/-2V, +/-3V, +/- 4V, and +/-5V. – use cursors in scope program ...
Multimeter
A multimeter or a multitester, also known as a VOM (Volt-Ohm meter or Volt-Ohm-milliammeter ), is an electronic measuring instrument that combines several measurement functions in one unit. A typical multimeter would include basic features such as the ability to measure voltage, current, and resistance. Analog multimeters use a microammeter whose pointer moves over a scale calibrated for all the different measurements that can be made. Digital multimeters (DMM, DVOM) display the measured value in numerals, and may also display a bar of a length proportional to the quantity being measured. Digital multimeters are now far more common but analog multimeters are still preferable in some cases, for example when monitoring a rapidly varying value. A multimeter can be a hand-held device useful for basic fault finding and field service work, or a bench instrument which can measure to a very high degree of accuracy. They can be used to troubleshoot electrical problems in a wide array of industrial and household devices such as electronic equipment, motor controls, domestic appliances, power supplies, and wiring systems.Multimeters are available in a wide range of features and prices. Cheap multimeters can cost less than US$10, while laboratory-grade models with certified calibration can cost more than US$5,000.