
The AULA F99MAX features an intelligent digital display, full-key hot-swappable design, and an 8000mAh battery, combining convenient status monitoring, flexible switch customization, and long-lasting wireless performance.

The AULA F99MAX Keyboard features a smart display provides intuitive control over volume, brightness, speed, language, lighting effects, and color, making it easy to personalize your keyboard settings.


The AULA F99MAX features an independent circular knob for quick switching between functions, with intuitive control over volume and display settings.

The AULA F99MAX features a 2U0 large key design that puts essential functions within easy reach, making everyday controls more intuitive and convenient.

The one-switch-per-key architecture delivers ultra-smooth keystrokes, stable feedback, low noise, and exceptional consistency.

The 1.2 mm per-key slotted PCB provides smoother keystrokes, stable feedback, low noise, and consistent typing performance.

The 5-layer sound dampening system with a true soft gasket mount delivers clean, pure switch acoustics, eliminates hollow cavity noise, and provides a soft, bouncy typing feel.

The full hot-swappable design makes switch replacement easy, allowing you to personalize the keyboard to match your preferred typing feel and gaming style.

The F99 keyboard Series features AULA’s next-generation wireless transmission system, delivering faster data transfer and keystroke response. Even in complex wireless environments, it ensures fast, stable, and reliable performance.

Built-in rich RGB lighting effects paired with a smart display create a vibrant and immersive desktop atmosphere.

The 8000mAh battery provides long-lasting power for gaming and extended work sessions, reducing the need for frequent charging and keeping you focused on what matters.

The 97-key compact layout retains a full function row and numeric keypad while saving more desk space than a 104-key layout.

Supports 3-mode connectivity (Wired / Bluetooth / 2.4GHz), multiple operating systems, and seamless on-the-fly switching to adapt to different usage scenarios.