Repository navigation
Packages Coil64
Calculates inductance for coils of almost any geometry
- Version recorded: 2.4.39
-
Categories:
antenna,electronics - Upstream: https://github.com/radioacoustick/Coil64
Computes inductance, and the dimensions to achieve a target inductance, for a long list of coil forms: single-layer air-cored solenoids, multilayer and sectioned windings, flat spirals, toroids on ferrite and powdered-iron cores, ferrite rods, pot cores, meander traces on a PCB, and coupled coils. It also does self-resonant frequency, Q, and the reverse calculation from a measured inductance back to a wire length.
Winding an inductor is a place where the textbook formula and the bench disagree, because the formula assumes a geometry you did not build. Coil64 covers enough forms that the one in front of you is usually there, and it computes both directions -- how many turns for this inductance, and what did I just wind. For matching networks, traps and filters that saves an evening of trimming.
None beyond a desktop session. It calculates; it talks to no hardware.
- git (qmake) — https://github.com/radioacoustick/Coil64 at
v2.4.39- build dependencies:
build-essential,qtbase5-dev,qt5-qmake,qtbase5-dev-tools - the project's build system has no install rule; the binaries listed below are copied into the prefix instead
- Built from this tag in a Debian 13 container on 2026-08-28: qmake exits 0, make exits 0, and a
Coil64executable appears in the source root. Resources are compiled in through Qt's resource system, so the binary is self-contained and copying it into a prefix is sufficient -- unlike MSHV, the catalog's other qmake unit, which reads data from directories beside itself.
- build dependencies:
Binaries this produces:
-
Coil64→coil64
Its accuracy is the accuracy of the empirical formulas behind it, which are good for the geometries they were derived for and degrade outside them -- a very short, very wide coil is where the classic solenoid formulas stop being trustworthy and the program does not warn you. Amidon and manufacturer core data is built in and ages as parts are discontinued. Measuring the finished coil with a NanoVNA remains the check.
-
qt5: unknown, checked 2026-08-28 — Builds against qtbase5-dev. Upstream has published no Qt6 plan that this check found; recorded as unknown rather than guessed.
- probe: github tags (
radioacoustick/Coil64) - strategy: rebuild
- Tagged releases, several a year. Latest is v2.4.39, and the default branch's head is b9b4e834ecb7 (read from the branch, not from GitHub's updated_at -- D-032).
Valery Kustarev. GitHub issues at the URL above; the wiki there documents which formula each calculation uses, which is worth reading before trusting a result at the edge of a geometry.
Source: catalog/packages/coil64.yaml
Generated from docs/ at commit 87965522e214. Canonical site: https://renegade-penguin.github.io/Hammunition/. Edit docs/ by pull request, not this wiki.
- Home
- Software by activity
- Activity hubs
- Installation
- Profiles
-
Guides
- Operating
- Modes
- Receiving
- In the field
- Troubleshooting
- Getting started
- Packages
-
Hardware
- Park and wake devices
- SDR receivers and transceivers
- Radios, GPS and mesh
- Security and research hardware
- Programmers
- Laptop radios and camera (parkable)
- LibreVNA (vector network analyser)
- RF security
-
Reference
- The engine
- Coverage
- Inventories
- Hardware measurements
- Verification
- Contributing