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authorDenis Chevalier <perso@denischevalier.fr>2026-08-08 21:42:35 +0200
committerDenis Chevalier <perso@denischevalier.fr>2026-08-08 21:42:35 +0200
commitfd5cf452aa8b46329e7a0c6fcf1467c7f26c41fa (patch)
tree3c680bd0191273859d8362623e3b94b1b72b6237
parentb05bbf41c829353a70accfdad0c8006ccef11b3a (diff)
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fix typos
-rw-r--r--module-design.typ11
1 files changed, 6 insertions, 5 deletions
diff --git a/module-design.typ b/module-design.typ
index b1d84d4..bdcff31 100644
--- a/module-design.typ
+++ b/module-design.typ
@@ -134,7 +134,8 @@ operators.
[$upright("BW")$], [Bandwidth], [$unit("Hz")$],
),
-)
+ caption: [Electrical quantities],
+) <table-electrical-quantities>
==== Voltage and current subscript conventions
<voltage-and-current-subscript-conventions>
@@ -274,7 +275,7 @@ operators.
[$upright(T)$], [Temperature (absolute)], [$unit("K")$],
[$delta upright(T)$], [Temperature difference], [$unit("celsius")$ or $unit("K")$],
- [$(Delta upright(T))/(upright(d) y)$], [Vertical temperature gradient], [$unit("celsius per centimeter")$],
+ [$(Delta upright(T))/(upright(d) y)$], [Vertical temperature gradient], [$unit("celsius per centi meter")$],
[$theta_"conv"$], [Convective thermal resistance], [$unit("celsius per watt")$],
@@ -550,7 +551,7 @@ Standard SI prefixes are used throughout:
matched components along lines of constant temperature to ensure identical
thermal environments.
/ Thermal Gradient: The spatial rate of change of temperature across a surface
- or volume, typically expressed in $unit("celsius per centimeter")$. Thermal
+ or volume, typically expressed in $unit("celsius per centi meter")$. Thermal
gradients cause matched components to experience different temperatures,
degrading their matching.
/ Ovenization: The practice of enclosing a critical component (typically a
@@ -674,7 +675,7 @@ its role in maintaining system precision and usability.
All SAME modules share a common mechanical format: the single-width cassette of
$qty(38.0, "mm")$ ($qty(1.5, "inch")$) as specified in
-#ref(<cassette-shielding-and-construction>) Dual-width or multi-width modules
+#ref(<shielding-and-construction>) Dual-width or multi-width modules
are not permitted. This constraint ensures uniform thermal behavior across the
system, predictable rack utilization, and simplified inventory management. If a
function cannot be implemented within the single-width format, the design must
@@ -793,7 +794,7 @@ For example:
- A summer might display: $z = sum_i x_i$
- A multiplier might display: $z = (x y)/qty(10, "V")$
- A bounded integrator might display:
-$z = integral x upright(d) t; z_e in [qty(-10, "V"), plus qty(10, "V")]$
+$z = integral x upright(d) t; z in [qty(-10, "V"), plus qty(10, "V")]$
Complex functions requiring extensive notation may use a symbolic abbreviation
on the panel with full documentation in the module manual, but the abbreviation