The compile
Developers: see which performance and efficiency cores your build just lit.
TMOG Knows Why!
One glance at TMOG shows which process and which subsystem are responsible—right now. One measuring core. Three native applications. No browser shell.
Solved case 01 · The fan
TMOG helps you connect the sound, heat, stutter, dropped frame, or drained battery to the process and subsystem that caused it.
Precision Instrumentation:
One glance at TMOG and you know why.
That promise rests on engineering rules you can verify yourself. TMOG distinguishes zero from unavailable and leaves gaps when samples stop. Every reading carries an explicit availability state, so a missing sensor cannot quietly become a plausible-looking value.
Here are the ten strongest facts behind the screen.
TMOG uses Swift and AppKit on macOS, C++ and Win32 on Windows, and C++ with Qt 6 on Linux over one shared C++20 measuring core. No Electron, no web view, no embedded browser.
Summary, Performance, Processes, System Info, Startup apps, Users, Services, Power & Freq, Connections, Installed Apps, Disk Space, and Benchmarks.
TMOG never shows a zero it did not measure. Zero means the provider measured zero.
A gap is the truth. Drawing a smooth line through missing samples would not be.
Turn on the self-monitoring option to include TMOG's own process and inspect the monitor's cost.
The CPU view color-codes them and can switch between overall, logical-processor, and NUMA views.
On macOS, Windows, and Linux, Flight Recorder records, saves, scrubs, and replays the same seven telemetry panels in one interchangeable .tmogtrace format. PRO
The Energy view shows instantaneous watts, history, power state, and the processes responsible.
TMOG pairs each PID with its creation identity so a recycled number cannot redirect an action to the wrong process.
TMOG sends no usage statistics, hardware inventory, process information, or identifiers. Its only routine request is an update check.
Six more solved cases
These are real TMOG screens, not simulated dashboards. Open any image to inspect the measurements at full size.
Developers: see which performance and efficiency cores your build just lit.
See pressure, compression, cache, swap, and the trend—not merely one used-memory total.
See every device separately or combine the entire storage path into one answer.
Adaptive live bandwidth, history, totals, identity, and link details stay together.
Before lunch disappears, see the watts and the processes responsible for spending them.
Gamers: find out whether the CPU, GPU, storage, or thermals flinched first.
Instrument, not ornament
TMOG's meters are drawn by the native app. Choose the system appearance or tune the console to the phosphor that reads best to you.
Full color · Saturation 7
Full color · Saturation 7
Classic green phosphor
Warm amber phosphor
Cool blue phosphor
Dark · Saturation 0
One solution · Three native applications
01 / macOS · 1.0.0 RTM
Native windows, tables, menus, system metrics, and hardware-aware views for Apple silicon and Intel Macs. Signed and notarized.
02 / WINDOWS · 1.0.0 RTM
Native Windows controls, process and service actions, logical processor topology, and the conventions Windows power users expect.
X64 Installer - X64 Zip ARM Installer - ARM Zip
Version —
Released
SHA-256 Not published
03 / LINUX · 1.0.0 RTM
Native Qt Widgets, direct system metrics across X11 and Wayland, and the same models and metric semantics as TMOG elsewhere.
ARM64: AppImage · .deb · .tar.gz
Needs glibc 2.35 and libstdc++ 12 or later, as in Ubuntu 22.04, Debian 12 and newer; RHEL 9 and its rebuilds, such as AlmaLinux 9, cannot run it. The .deb and .tar.gz also need Qt 6.4 or later from the system, so on Ubuntu 22.04 use the AppImage.
Version —
Released
SHA-256 Not published
Behavior, functionality, and sensor availability vary by system and platform.