Editorial desk
Solar Homelabs Editorial
The editorial desk that publishes Solar Homelabs. It is a byline for the site's editorial process, not a person, and this page carries no author biography because there is no individual author to describe.
How this desk works
- Articles are researched from primary sources: vendor and project documentation, published standards and specifications, release notes, advisories, and measurements published by the people who took them.
- Drafts are produced with AI assistance and then edited against those same sources before publication.
- Nothing published here claims hands-on lab testing, benchmarking, or first-hand measurement. Where a figure comes from a datasheet or someone else's test, the article names the source.
- Corrections go to editor@solarhomelabs.com and are made on the affected page. Funding is set out on the disclosure page.
Posts (5)
- power-systems
Split-Phase Inverter for an Off-Grid Homelab
This guide explains when an off-grid homelab needs a split-phase inverter, compares three 120/240 V options, and covers idle draw and panel wiring.
- charge-controllers
MPPT vs PWM Charge Controllers for Homelab Solar
How MPPT and PWM controllers differ for continuous loads: harvest, array voltage limits, LiFePO4 charge profiles, wiring freedom, and when PWM still fits.
- troubleshooting
LiFePO4 Solar Battery Not Charging? Diagnose It
Diagnose a LiFePO4 solar battery that will not charge: check BMS cutoffs, controller settings, PV faults, fuses, wiring and voltage drop in order.
- array-design
Solar Panels for a Homelab: How Many Do You Need?
Working out array wattage for a 24/7 homelab: daily energy first, then worst-month peak sun hours, derate factors, and why the answer is a range.
- power-systems
Sizing an Off-Grid Solar System for Always-On Homelab Loads
How to size solar for continuous 24/7 equipment: start from the measured load, then the battery bank, then the array, charge controller and inverter.