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OSS Python toolkit for TOYO battery cycler data (charge/discharge, dQ/dV, cycle stats). Installable from PyPI into Origin's embedded Python.

Project description

echemplot

OSS Python toolkit for TOYO battery cycler data.

Reads output from TOYO System battery charge/discharge testers, computes cycle capacity, Coulombic efficiency, dQ/dV curves, and summary statistics. Pure Python, installable from PyPI — including into OriginLab's embedded Python.

Status: pre-alpha (0.1.x). Public API is unstable and may change without deprecation until a future stable release.

Installation

# Core library only (numpy, pandas, scipy)
pip install echemplot

# Pick one or more extras:
pip install "echemplot[plot]"    # Matplotlib plotting
pip install "echemplot[plotly]"  # Plotly + Kaleido (static image export)
pip install "echemplot[cli]"     # echemplot CLI (typer + rich)
pip install "echemplot[gui]"     # Tk desktop app (matplotlib)

# Everything non-Origin in one shot
pip install "echemplot[all]"

The [origin] extra has no runtime deps — the echemplot.origin submodule imports originpro lazily, so it only works inside Origin's embedded Python (see below).

Quick start

from echemplot import Cell

cell = Cell.from_dir("path/to/cell_dir")

cell.chdis_df.to_csv("chdis.csv")   # charge/discharge V-Q curves per cycle
cell.cap_df.to_csv("cycle.csv")     # per-cycle capacity + Coulombic efficiency
cell.dqdv_df.to_csv("dqdv.csv")     # dQ/dV per cycle

Cell.from_dir() auto-detects three TOYO layouts: 連続データ.csv (native export), 連続データ_py.csv (pre-normalized), or 6-digit raw files with a *.PTN pattern file. Mass is read from the PTN file unless you pass mass=... (grams).

CLI

Install with pip install "echemplot[cli]". All subcommands accept one or more cell directories plus the shared options --mass, --encoding, --column-lang.

# {name}_chdis.csv / {name}_cap.csv / {name}_dqdv.csv per cell
echemplot process cell_A cell_B --out ./csvs

# chdis / cycle / dqdv PNGs (one figure per kind, one Axes per cell)
echemplot plot cell_A cell_B --out ./pngs \
    --kinds chdis,cycle,dqdv --cycles 1,10,50

# Single stat_table CSV spanning all cells at the given target cycles
echemplot stats cell_A cell_B --cycles 10,50 --out stats.csv

GUI

Install with pip install "echemplot[gui]" and launch:

python -m echemplot.gui

Tk app for interactive directory selection, plot-kind toggles, per-axis ranges, and Savitzky–Golay window tuning for dQ/dV.

Plotting from Python

Matplotlib and Plotly backends expose the same three functions — pick by import path:

from echemplot import Cell
from echemplot.plotting.matplotlib_backend import plot_chdis, plot_cycle, plot_dqdv
# or: from echemplot.plotting.plotly_backend import plot_chdis, plot_cycle, plot_dqdv

cells = [Cell.from_dir(p) for p in ("cell_A", "cell_B")]
fig = plot_cycle(cells)
fig.savefig("cycle.png", dpi=150, bbox_inches="tight")  # matplotlib
# fig.write_image("cycle.png")                          # plotly

Installing into Origin's embedded Python

Open Origin, then in the Origin Python console:

import subprocess
import sys

subprocess.check_call(
    [sys.executable, "-m", "pip", "install", "echemplot[origin]"]
)

The [origin] extra pulls in matplotlib so the Tk GUI works out of the box; the three .otpu graph templates ship inside the wheel. After install, one line opens the directory picker and pushes results into the active Origin project:

from echemplot.origin import launch_gui
launch_gui()

For scripted use, echemplot.origin.push_to_origin(cells, ...) populates the current Origin project with per-cell worksheets, template graphs, and a stat sheet. It imports originpro lazily, so the submodule is importable outside Origin (push_to_origin itself raises there).

To run the same Tk GUI outside Origin (matplotlib Toplevel previews, no Origin write-back), install the [gui] extra and call from echemplot.gui import launch_gui; launch_gui() instead.

See docs/ORIGIN_SETUP.md for the full workflow.

License

MIT — see LICENSE.

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