// SAME Analog Modular Ecosystem // // / SPDX-FileCopyrightText: 2026 Denis Chevalier // / SPDX-License-Identifier: CC-BY-SA-4.0 // / SPDX-License-Identifier: CERN-OHL-S-2.0+ // / SPDX-License-Identifier: GPL-3.0-or-later // // The prose, explanatory text, rendered figures, tables, and mathematical // content of this specification are licensed under CC BY-SA 4.0. If a later // version of CC BY-SA is published, the author grants permission to distribute // this work under that later version as well. // // Hardware designs contained herein (schematics, PCB layouts, mechanical // drawings, and CAD models) are licensed under CERN-OHL-S-2.0+. // // All executable code, helper libraries (`lib/*`), metrology assertions, and // embedded verification scripts throughout the source documents are licensed // under the GNU General Public License v3.0 or later (GPL-3.0-or-later). #import "../lib/unify.typ": qty, unit #import "@preview/cetz:0.5.2" #import "@preview/cetz-plot:0.1.4": plot #figure( cetz.canvas({ import cetz.draw: * plot.plot( size: (12, 6), x-label: [Temperature variation $Delta T$ ($unit("celsius")$)], y-label: [Ratio / gain drift $Delta G / G_0$ ($unit("ppm")$)], x-min: 0, x-max: 10, y-min: 0, y-max: 100, x-grid: "minor", y-grid: "minor", { // 10 ppm Metrologic Error Budget Limit plot.add( ((0, 10), (10, 10)), style: ( stroke: (paint: luma(120), thickness: 0.8pt, dash: "dash-dotted"), ), label: [Metrologic budget limit], ) // Unmatched Discrete Resistors (Delta alpha = 50 ppm/°C) plot.add( domain: (0, 10), samples: 1000, style: (stroke: (paint: black, thickness: 1.5pt, dash: "solid")), label: [Unmatched discrete], t => 50 * t, ) // Matched Discrete Pair (Delta alpha = 1 ppm/°C) plot.add( domain: (0, 10), samples: 1000, style: (stroke: (paint: black, thickness: 1.5pt, dash: "dashed")), label: [Matched discrete pair], t => 1 * t, ) // Monolithic Thin-Film Network (Delta alpha = 0.1 ppm/°C) plot.add( domain: (0, 10), samples: 1000, style: (stroke: (paint: black, thickness: 1.5pt, dash: "dotted")), label: [Monolithic thin-film], t => 0.1 * t, ) }, ) }), caption: [Gain drift $Delta G / G_0$ as a function of ambient temperature variation $Delta T$, comparing unmatched discrete resistors, matched discrete pairs, and monolithic thin-film networks against the $qty(10, "ppm")$ Metrologic systematic error budget], )