lucaslhm/flipper-irdb

A collective of different IRs for the Flipper

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Summary Information

Updated 43 minutes ago
Added to GitGenius on September 15th, 2026
Created on March 13th, 2022
Open Issues & Pull Requests: 91 (+0)
GitHub issues: Enabled
Number of forks: 1,417
Total Stargazers: 4,373 (+0)
Total Subscribers: 78 (+0)

Repository Insights (GitGenius)

Median issue/PR response: 21.5 days
Mean response time: 97.1 days
90th percentile: 389.3 days
Tracked items: 42

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How this project is maintained

100% of open issues come from outside the core team, so the backlog reflects real-world use rather than internal planning. Three people close 90% of everything that gets resolved.

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Issue Activity (beta)

Open issues: 22
New in 7 days: 0
Closed in 7 days: 0
Avg open age: 470 days
Stale 30+ days: 22
Stale 90+ days: 16

Recent activity

Opened in 7 days: 0
Closed in 7 days: 0
Comments in 7 days: 0
Events in 7 days: 0

Top labels

  • Request (19)
  • help wanted (4)
  • enhancement (2)

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Detailed Description

Flipper-irdb is a collection of infrared remote control codes for the Flipper Zero device.

The project addresses the need for a comprehensive database of infrared signals that the Flipper Zero can transmit and receive. Infrared remotes control a wide variety of household and commercial devices, but manually capturing or programming each signal is time-consuming. This collection aggregates pre-recorded IR codes organized by device type and manufacturer, allowing users to immediately control compatible devices without the setup burden.

Users adopting this collection should understand that it serves as a reference library rather than a complete universal remote database. It works best for those who own a Flipper Zero and want to expand its IR control capabilities across common consumer electronics like televisions, air conditioners, and media players. The collection is most valuable for users who prefer ready-made signal files over capturing their own codes, though individual device compatibility depends on whether the specific model and manufacturer are represented in the database.

The project shows active community engagement with regular additions of new IR codes and device support. Contributions arrive steadily as users submit codes for devices they own or have captured. The codebase remains organized and maintained, with clear structure for storing and categorizing infrared signals by device type.