Low power switching techniques for digital-to-analog converters
US-9397676-B1 · Jul 19, 2016 · US
US10340942B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10340942-B2 |
| Application number | US-201615768815-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 10, 2016 |
| Priority date | Oct 21, 2015 |
| Publication date | Jul 2, 2019 |
| Grant date | Jul 2, 2019 |
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An analog signals generating device comprises a current pump controlled by a control code generated by a module for calculating the digital code with shaping of noise. The calculation module receives as input a digital signal representative of the analog signal to be generated and comprises at least one quantizer and a quantization error compensating stage. The current pump comprises two groups of at least one electric current generator and two groups of at least one switching means, the switching facilities being controlled by the control signal and causing the electric currents to flow between the electric current generators and the inputs of a differential amplifier exhibiting a predominantly capacitive input impedance and connected in series between the two groups of switching means.
Opening claim text (preview).
The invention claimed is: 1. An analog signals generating device comprising a current pump controlled by a digital control code generated by a module for calculating the digital code with shaping of noise, said module for calculating the digital code with shaping of noise comprising at least one quantizer and receiving as input a digital signal representative of the analog signal to be generated, said device wherein said module for calculating the digital code with shaping of noise comprises a quantization error compensating stage, and wherein said current pump comprises: a first and a second group of at least one electric current generator, each generator of the first group being complementary to a generator of the second group, two complementary generators delivering currents of opposite amplitude a differential amplifier exhibiting a predominantly capacitive input impedance, a first and a second group of at least one switching means, the first group of switching means independently directing the electric current delivered by each generator of the first group of at least one electric current generator either toward a first input or toward a second input of the differential amplifier and the second group of switching means independently directing the electric current originating either from the first input or from the second input of the differential amplifier toward each generator of the second group of at least one electric current generator, the inputs of said differential amplifier being connected in series between the two groups of switching means, the first group of switching means being controlled by the digital control code and the second group of switching means being controlled by a complementary code ( cmd ) of said digital control code; and, said current pump further comprising a regulation module configured to regulate a mean amplitude of a voltage on one of the inputs of the differential amplifier, said regulation module receiving as input a signal representative of the amplitude of the voltage at said input of the differential amplifier as well as a reference voltage of predetermined amplitude and delivering as output a control signal in a direction of each generator of one of the two groups of electric current generator, said control signal being configured to modify the amplitude of an output currents of the generators so as to compensate a possible imbalance between the amplitudes of the current delivered by the complementary current generators. 2. The device as claimed in claim 1 , wherein said device comprises a predistortion module connected between the module for calculating the digital code with shaping of noise and the current pump, said predistortion module being configured to modify the digital code so as to create predistortion and compensate non-linearities of the differential amplifier. 3. The device as claimed in claim 1 , wherein said device comprises two groups of at least two electric current generators and two groups of at least two switching facilities. 4. The device as claimed in claim 1 , wherein said device is integrated on one and the same integrated circuit. 5. A Delta modulator device comprising the analog signals generating device of claim 1 and further comprising: a summator, a quantizer, and a module for reshaping clocks.
by repetitive charge or discharge of a capacitor, analogue generators · CPC title
using current sources as quantisation value generators · CPC title
Details of sampling arrangements or methods · CPC title
Details of the final digital/analogue conversion following the digital delta-sigma modulation · CPC title
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