EP1635239A1

Adaptive biasing concept for current mode voltage regulators

Abstract

Circuits and methods to achieve dynamic biasing for the complete loop transfer function of a current mode voltage regulator have been achieved. The circuit comprises a Mirror-Transconductor Amplifier type operational transconductance amplifier (OTA) wherein its transconductance is linearly dependent on its biasing current. This biasing current is a linearly derivative of the OTA's output current. A current amplification circuit couples the regulator output current linearly with said OTA's output current. In this configuration the iterative biasing of the OTA forms a feed-forward loop, which contains a low-pass filter for stability and a negative feedback loop is closed by connecting the regulator voltage output to the OTA input. The invention realizes a purely current mode regulator since all internal currents are generated as a fraction of the output load.

EP1635239A1, drawing sheet 1
Sheet 1 of 16

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Projected expiry passed 14 September 2024, 2 years ago.

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26 claims: 3 independent, 23 dependent

  1. 1
    A circuit for a current mode voltage regulator having dynamic biasing for the complete loop transfer function is comprising:- an operational transconductance amplifier (OTA), wherein its effective transconductance gm is linearly dependent upon its biasing current, having inputs and an output, wherein its output is connected to a means of constant current amplification and the inputs are a reference voltage and a feedback voltage from a voltage divider, wherein said biasing current, which is generated by amplification of the output current of said OTA using a constant current amplification factor is forming a feed forward loop;- said means of constant current amplification having an input and two outputs, wherein its input is said output current of said OTA and a first output is said biasing current of said OTA and a second output is the output current of said voltage regulator;- a low-pass filter stabilizing said biasing current;and - said voltage divider providing a voltage being linearly correlated to the output voltage of said voltage regulator and wherein said voltage provided by the voltage divider is used as an input of said OTA forming a negative feedback loop by connecting the regulator output to the OTA input.
  2. 11
    A circuit for a current mode voltage regulator having dynamic biasing for the complete loop transfer function is comprising:- an OTA from a Mirror-Transconductor Amplifier type, wherein its effective transconductance gm is linearly dependent upon its biasing current, comprising a differential amplifier and a first current mirror configuration, having inputs and an output, wherein the output of the OTA is connected to a second current mirror configuration for current amplification and a first input of said differential amplifier is a reference voltage and a second input of said differential amplifier is a feedback voltage from a voltage divider, and said current biasing said differential amplifier is generated by amplification of the output current of the OTA using a constant current amplification factor, wherein said biasing current forms a feed forward loop;- said second current mirror configuration for current amplification having an input and two outputs, wherein its input is said output current of said OTA and a first output is said biasing current of said OTA and a second output is the output current of said voltage regulator;- a gmc-filter type low-pass filter stabilizing said biasing current comprising a current mirror and a capacitor wherein said current mirror is amplifying said biasing current;and - said voltage divider providing a voltage being linearly correlated to the output voltage of said voltage regulator, which is connected to the second input of said differential amplifier forming a negative feedback loop by connecting the regulator output to the OTA input.
  3. 23
    A method for a current mode voltage regulator to achieve dynamic biasing for the complete loop transfer function is comprising the following steps:- provide current mode voltage regulator comprising an operational amplifier (OTA) having a transconductance, which is linearly dependent on its biasing current, a low-pass filter, a voltage divider, and a current amplifier;- feed a voltage representing the output voltage of said regulator back to said OTA;- use said voltage of the previous step to control the output current of said OTA;and - amplify said output current of said OTA using a constant current amplification factor to generate a biasing current of said OTA;stabilize said biasing current of said OTA;and amplify said output current of said OTA using a constant current amplification factor to generate the output current of the regulator.