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Thomas Dehaeze 2024-08-03 11:04:01 +02:00
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## Basic Circuits {#basic-circuits}
{{< figure src="/ox-hugo/okyay16_current_amplifier_schematic.png" caption="<span class=\"figure-number\">Figure 1: </span>From <&okyay16_mechat_desig_dynam_contr_metrol>, Appendix A" >}}
### Howland Current Sources {#howland-current-sources}
See Section 4.2.5 in <&horowitz15_art_of_elect_third_edition>.
Howland current source is shown in Figure <fig:art_electronics_current_source>.
> The output current is sourced through a sense resistor \\(R\_s\\) whose value you can choose independently of the matched resistor array (with resistor pairs \\(R\_1\\) and \\(R\_2\\)).
> The best way to understand this circuit is to think of \\(IC\_1\\) as a difference amplifier whose output sense and reference connections sample the drop across \\(R\_s\\) (i.e., the current); the latter is buffered by follower IC2 so there is no current error.
<a id="figure--fig:art-electronics-current-source"></a>
{{< figure src="/ox-hugo/art_electronics_current_source.png" caption="<span class=\"figure-number\">Figure 1: </span>From <&horowitz15_art_of_elect_third_edition>" >}}
### Other circuits found in the litterature {#other-circuits-found-in-the-litterature}
{{< figure src="/ox-hugo/lafarga24_current_amplifier.png" caption="<span class=\"figure-number\">Figure 2: </span>From <&lafarga24_activ_vibrat_isolat_system_space_applic>, Appendix B" >}}
{{< figure src="/ox-hugo/okyay16_current_amplifier_schematic.png" caption="<span class=\"figure-number\">Figure 3: </span>From <&okyay16_mechat_desig_dynam_contr_metrol>, Appendix A" >}}
## Estimation of the required current noise {#estimation-of-the-required-current-noise}

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