Examples of using The control loop in English and their translations into Japanese
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Colloquial
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Ecclesiastic
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Computer
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Programming
Therefore, response time is limited by the control loop bandwidth.
Another way to disturb the control loop and observe its recovery is via line transient.
But at a technical level, we need to tighten the control loop.
The control loop is composed by inner current loop and outer voltage loop. .
Otherwise, it is going to impact the equipment andaffect using the control loop.
People also translate
As part of the control loop, the microprocessor affects the loop bandwidth.
In the engineering machinery,screw thread cartridge valve is mostly used in the control loop.
At small headroom voltages, the control loop has no gain at all, and the PSRR falls to nearly zero.
To relieve our operator from the tedious task of manual control, we should automate the control loop.
Because the divider is part of the control loop, this pole becomes part of the loop characteristic.
The control loop in which each of the functions blocks operates is identified in Fig. 5 as a subscript designation.
As a result,noise can couple to the feedback node and directly affect the control loop of the power supply.
Because of the long thermaltime constants exhibit by TEC modules, the control loop must also be slow to maintain stability.
High value, low ESR capacitors can be beneficial,especially at frequencies beyond the gain-bandwidth of the control loop.
The control loop is optimized to give the best locking parameters performance in the range of standard grid frequencies: 45 Hz to 66 Hz.
For systems that employ phase-locked loops or other control loops(as does the DS1086 family),the bandwidth of the control loop limits the dither frequency.
The control loop has finite large-signal bandwidth, so the output capacitor must supply most of the load current for very fast transients.
This design approach presents a low-component-count solution and the battery's operational life is maximized since the power losses are minimized in both the regulator and the control loop.
There are watchdog functions that detect when the control loop is not regulating, when fan speeds are beyond programmed watchdog limits, and other general purpose digital functions.
This condition would be manifested in the amplifier by its output accuracy exceeding the error budget and data sheet tolerance, or in some cases going into limits,causing shutdown of the control loop.
When available, a Bode analyzer injects a signal into the control loop and then measures the signal at various points in this loop to establish the gain and phase shift between two signals.
Because the output waveform is sensed and fed back to the input of the amplifier in a closed-loop topology, deviations in the supply rail are detected at the output andcorrected by the control loop.
A μC in the control loop reads the thermistor value, provides temperature compensation, corrects the thermistor curvature through lookup tables, and compensates for gain variations due to APD manufacturing.
In a real-world application, where the extent of EMI is unknown,it can be realistically expected that the control loop will remain within its tolerance if the current sensor with internal EMI filtering is used.
The control loop diagram of Fig. 4 illustrates the communication interconnections between these function blocks using lines attaching the process and control inputs and outputs of these functions blocks.
Above the unity gain frequency of the error amplifier,the feedback of the control loop has no effect on the PSRR, which is determined by the output capacitor and any parasitics between the input and output voltages.
Other design considerationsinclude the use of external temperature sensors on the control loop, and achieving sensor linearization(i.e., nonlinearity with respect to the measured parameter) by feeding the OUT signal into this loop. .