The peak detector effect is a phenomenon that makes single event transients much longer once an error amplifier switches from linear to saturation zone due to the presence of external capacitors. This is so-called since it was discovered in a simple voltage reference in which a parasitic lossy peak detector was unwillingly built in the output stage. In this paper, peak detector effect is generalized to explain the appearance of long duration pulses in typical low dropout voltage regulator built with discrete devices. This effect has been related to the way in which the negative feedback loop is closed and to the kind of pass device in the output stage. Thus, if the linear voltage regulator consists in an error amplifier the output of which ...
As demand for high-speed, on-board, digital-processing integrated circuits on spacecraft increases (...
Low-dropout (LDO) voltage regulators are a widely-used device capable of regulating a stable supply...
In order to ensure a constant voltage source, we employ line regulation, load regulation and ripple ...
Shunt linear voltage regulators are still used in situations where other kinds of regulators are not...
Abstract — peak-detector circuits are used in many applications such as amplitude measurement, autom...
One of the main phenomena that commit the reliability of analog electronic systems working in the ou...
A study of the reset transient of charge-sensitive amplifiers operating with a pulsed switch in para...
A Amplifier is a gadget that is use to intensify the flag quality. The outline of superior and stabl...
This article presents a novel peak detect and hold (PDH) circuit for the measurement of the peak vol...
In this document, a simple circuit constructed using a diode, a resistor, and a capacitor, utilized ...
The influence of a load resistor on the shape of the single event transients was investigated in the...
A full on chip low Dropout Voltage Regulator (LDO) with fast transient response and small capacitor ...
With the wide application of advanced portable devices, output-capacitorless low dropout regulators ...
Typical Low Dropout Voltage regulators (LDO), uses an error amplifier in a linear closed loop. The m...
The design and simulation of a low-dropout regulator (LDO) with a dynamic biasing circuit, which is ...
As demand for high-speed, on-board, digital-processing integrated circuits on spacecraft increases (...
Low-dropout (LDO) voltage regulators are a widely-used device capable of regulating a stable supply...
In order to ensure a constant voltage source, we employ line regulation, load regulation and ripple ...
Shunt linear voltage regulators are still used in situations where other kinds of regulators are not...
Abstract — peak-detector circuits are used in many applications such as amplitude measurement, autom...
One of the main phenomena that commit the reliability of analog electronic systems working in the ou...
A study of the reset transient of charge-sensitive amplifiers operating with a pulsed switch in para...
A Amplifier is a gadget that is use to intensify the flag quality. The outline of superior and stabl...
This article presents a novel peak detect and hold (PDH) circuit for the measurement of the peak vol...
In this document, a simple circuit constructed using a diode, a resistor, and a capacitor, utilized ...
The influence of a load resistor on the shape of the single event transients was investigated in the...
A full on chip low Dropout Voltage Regulator (LDO) with fast transient response and small capacitor ...
With the wide application of advanced portable devices, output-capacitorless low dropout regulators ...
Typical Low Dropout Voltage regulators (LDO), uses an error amplifier in a linear closed loop. The m...
The design and simulation of a low-dropout regulator (LDO) with a dynamic biasing circuit, which is ...
As demand for high-speed, on-board, digital-processing integrated circuits on spacecraft increases (...
Low-dropout (LDO) voltage regulators are a widely-used device capable of regulating a stable supply...
In order to ensure a constant voltage source, we employ line regulation, load regulation and ripple ...