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View moreA different method to dynamically compensate for the voltage drop across a known cable resistance is presented in the following section. 2 Derivation. Composed of four additional
View moreCable compensation has been used to compensate the voltage drop due to cable impedance for providing a regulated charging voltage in battery charger applications. This application note
View moreback curve implemented based on battery voltage and board temperature, to ensure that the battery isn''t excessively drained, leading to a dead battery and high on-board temperatures.
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View moreCompensation current: 0-5A. The real color of the item may be slightly different from the pictures shown on website caused by many factors such as brightness of your monitor
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View moreCable Compensation of a Primary-Side-Regulation (PSR) Power Supply Abstract Cable compensation has been used to compensate the voltage drop due to cable impedance for
View moreIn this paper, a highly accuracy CC/CV AC-DC flyback converter is proposed, and a novel cable compensation method without external capacitor is put forward.
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View moreComponents for configuring cable voltage drop compensation are typically external to the PWM controller IC to allow the IC to be adapted to different charging cables for different applications.
View moreIn this paper, a novel cable compensation method, called cable minus compensation, is proposed and fully explored. Small signal analysis is used to analyze the system performances such as
View moreBattery Resistance Wire Compensation This paper presents the calculations that UBA Console uses to compensate for the voltage drop due to wire resistance during battery discharge.
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View moreCable compensation has been used to compensate the voltage drop due to cable impedance for providing a regulated charging voltage in battery charger applications.
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View moreA Cable-Drop Compensated LDO for Rechargeable Battery Powered Systems with Load Current Management in Two-Cable or Three-Cable Structures IEEE Transactions on Power Electronics
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View moreAnalog Devices cable drop compensation technology provides tight load regulation solutions for long, highly resistive cables without requiring an additional pair of remote sense wires. Members of this portfolio continuously interrogate
View moreCable compensation has been used to compensate the voltage drop due to cable impedance for providing a regulated charging voltage in battery charger applications.
Cable compensation can be effectively accomplished by subtracting the compensation signal K∙I O from the feedback voltage V FB. However, in PSR applications, the average signal of V CS with a DC gain K CC is fed as the compensation signal instead. In order to achieve proper cable compensation, the DC gain K CC can be obtained from (7).
The desired compensation voltage can be accurately reflected on the increment of the reference voltage through the compensation signal K∙ I O, and the DC gain K can be obtained from (1). The other is called cable minus compensation.
This application note uses a novel cable compensation method, which called cable minus compensation, as an example to describe the concept and design criteria for the cable compensation of a PSR flyback converter. The analytic results are also verified by the simulation results. 1. Introduction
Feedback Control Design Cable compensation can be effectively accomplished by subtracting the compensation signal K∙I O from the feedback voltage V FB. However, in PSR applications, the average signal of V CS with a DC gain K CC is fed as the compensation signal instead.
In order to provide proper cable compensation, the output impedance is expected to have a negative impedance to mitigate the cable impedance. If the output impedance can be designed as –R cable, the cable impedance seems to be cancelled and the charging voltage is regulated without voltage drop. Figure 4.
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