Single-ended to differential converter
View Patent ↗The present application provides a single-ended to differential converter for converting a single-ended input to dual outputs. The converter comprises a band pass filter having an input node for coupling to the single-ended input, an output node, and a reference node, wherein the band pass filter is arranged to band pass filter the single ended input and provide the band pass filtered input signal to the output node as an output signal, an amplifier circuit accepting the output signal as an input and providing dual outputs, and a DC biasing circuit for generating a bias voltage and applying it to the reference node of the band pass filter. By presenting the bias voltage to the reference node of the band pass filter, a number of advantages including lower noise are achieved.
1 . A single-ended to differential converter for converting a single-ended input to dual outputs, the converter comprising:
a band pass filter having an input node for coupling to the single-ended input, an output node, and a reference node, wherein the band pass filter is arranged to band pass filter the single ended input and provide the band pass filtered input signal to the output node as an output signal,
an amplifier circuit accepting the output signal as an input and providing dual outputs, and
a DC biasing circuit directly coupled to the band pass filter and configured for generating a bias voltage and applying it to the reference node of the band pass filter, wherein the amplifier circuit comprises:
a first operational amplifier having a first inverting input and a first non-inverting input and providing a first output to a first output node, wherein the output node of the band pass filter is connected to the first non-inverting input and a first feedback path is provided between the first output node and the first inverting input;
a second operational amplifier having a second inverting input and a second non-inverting input and providing a second output to a second output node wherein the reference node of the band pass filter is connected to the second non-inverting input and a second feedback path is provided between the second output node and the second inverting input; and
a gain element connected between the first inverting input and the second inverting input, wherein a first feedback resistor is provided in the first feedback path and a second feedback resistor is provided in the second feedback path and the gain element comprises a gain resistor,
and wherein the sum of the resistances of the first feedback resistor and the gain resistor are approximately equal to the resistance of the second feedback resistor.
2 . The single-ended to differential converter according to claim 1 , wherein the band pass filter is a RC bandpass filter.
3 . The single-ended to differential converter according to claim 1 , wherein a first filter capacitor is connected between the input of the band pass filter and an intermediate filter node, a first filter resistor connected between the intermediate filter node and the reference node, a second filter resistor connected between the intermediate filter node and the output node and a second filter capacitor connected between the output node and the reference node and a third filter capacitor connected between the reference node and ground.
4 . The single-ended to differential converter according to claim 1 , wherein the band pass filter is a LC bandpass filter.
5 . The single-ended to differential converter according to claim 4 , wherein a first filter capacitor is connected between the input of the band pass filter and the output node and a first filter inductor is connected between the output node and the reference node, a second filter capacitor is connected between the output node and the reference node and a third filter capacitor connected between the reference node and ground.
6 . The single-ended to differential converter according to claim 1 , wherein the band pass filter comprises a notch filter.
7 . The single-ended to differential converter according to claim 6 , wherein the band pass filter comprises a first capacitor connected at a first end to the input node and at a second end to a second capacitor connected in series with a third capacitor to the output node, with a first resistor connected between the second end of the first capacitor and the reference node, a fourth capacitor connected between the reference node and ground, a second resistor connected between a common node of the second capacitor and third capacitor and ground, a third resistor and a fourth resistor connected in series between the second end of the first capacitor and the output node with the fifth capacitor connecting a common node between the third and fourth resistors and ground.
8 . The single-ended to differential converter according to claim 1 , wherein the DC biasing circuit comprises a first bias circuit resistor connected at a first end to a voltage source and at a second end to the reference node, a second bias circuit resistor connected between the reference node and ground.
9 . The single-ended to differential converter according to claim 1 , wherein the DC biasing circuit comprises a first transistor having a first source, first gate and first drain and a second transistor having a second source, second gate and second drain wherein the first source of the first transistor is connected to a reference voltage with the first gate, second gate and the first and second drains commonly connected to the reference node and the second source connected to ground.
10 . A single-ended to differential converter for converting a single-ended input to dual outputs, the converter comprising:
a band pass filter having an input node for coupling to the single-ended input, an output node, and a reference node, wherein the band pass filter is arranged to band pass filter the single ended input and provide the band pass filtered input signal to the output node as an output signal, an amplifier circuit accepting the output signal as an input and providing dual outputs, a first operational amplifier having a first inverting input and a first non-inverting input and providing a first output to a first output node, wherein the output node of the band pass filter is connected to the first non-inverting input and a first feedback path is provided between the first output node and the first inverting input;
a second operational amplifier having a second inverting input and a second non-inverting input and providing a second output to a second output node wherein the reference node of the band pass filter is connected to the second non-inverting input and a second feedback path is provided between the second output node and the second inverting input;
a gain resistor connected between the first inverting input and the second inverting input, and
wherein the reference node of the band pass filter is directly biased by a DC voltage from a DC biasing circuit, wherein a first feedback resistor is provided in the first feedback path and a second feedback resistor is provided in the second feedback path and wherein the sum of the resistances of the first feedback resistor and the gain resistor are approximately equal to the resistance of the second feedback resistor.
11 . The single-ended to differential converter according to claim 10 , wherein the band pass filter comprises a first filter capacitor connected between the input of the band pass filter and an intermediate filter node, a first filter resistor connected between the intermediate filter node and the reference node, a second filter resistor connected between the intermediate filter node and the output node and a second filter capacitor connected between the output node and the reference node.
12 . The single-ended to differential converter according to claim 10 , wherein a first filter capacitor is connected between the input of the band pass filter and the output node and a first filter inductor is connected between the output node and the reference node, a second filter capacitor is connected between the output node and the reference node and a third filter capacitor connected between the reference node and ground.
13 . The single-ended to differential converter according to claim 10 , wherein the band pass filter comprises a first capacitor connected at a first end to the input node and at a second end to a second capacitor connected in series with a third capacitor to the output node, with a first resistor connected between the second end of the first capacitor and the reference node, a fourth capacitor connected between the reference node and ground, a second resistor connected between a common node of the second capacitor and third capacitor and ground, a third resistor and fourth resistor connected in series between the second end of the first capacitor and the output node with a fifth capacitor connecting a common node between the third and fourth resistors and ground.
14 . The single-ended to differential converter according to claim 10 , wherein the DC biasing circuit comprises a first bias circuit resistor connected at a first end to a voltage source and at a second end to the reference node, a second bias circuit resistor connected between the reference node and ground and a first bias circuit capacitor connected between the reference node and ground.
15 . The single-ended to differential converter according to claim 10 , wherein the DC biasing circuit comprises a first transistor having a first source, first gate and first drain and a second transistor having a second source, second gate and second drain wherein the first source is connected to a reference voltage with the first gate, second gate and the first and second drains commonly connected to the reference node and the second source connected to ground.
16 . A single-ended to differential converter for converting a single-ended input to dual outputs, the converter comprising:
a filter having an input node for coupling to the single-ended input, an output node, and a reference node connected to a DC bias voltage, wherein the filter is arranged to filter the single ended input and provide the filtered input signal to the output node as an output signal;
a first operational amplifier having a first inverting input and a first non-inverting input and providing a first output to a first output node, wherein the output node of the filter is connected to the first non-inverting input and a first feedback path is provided between the first output node and the first inverting input;
a second operational amplifier having a second inverting input and a second non-inverting input and providing a second output to a second output node wherein the reference node of the band pass filter is connected to the second non-inverting input and a second feedback path is provided between the second output node and the second inverting input, wherein a first feedback resistor is provided in the first feedback path and a second feedback resistor is provided in the second feedback path and a gain element comprises a gain resistor and wherein the sum of the resistances of the first feedback resistor and the gain resistor are approximately equal to the resistance of the second feedback resistor; and
the gain element is connected between the first inverting input and the second inverting input.