The mirror scans in two instructions, saves energy, adjusts its view, and suits into small gadgets—constructed for versatile, low-power optical methods.

The HYPERION Analysis Equipment is a compact 2D optical scanning resolution constructed across the HYPERION BubbleMEMS Mirror. This 1.3 mm diameter MEMS mirror helps a versatile diagonal Area of View from 15° to 70°, with scan frequencies of roughly 35 kHz and 19 kHz utilizing multi-interlaced laser scanning. It’s designed for high-speed operation in a small footprint, making it appropriate for integration into space-constrained methods.
On the core of the equipment is the UltraDRIVE electronics system, developed in-house. It consists of customized Drive and Sense ASICs optimized for lead-free piezoelectric MEMS mirror structure. These ASICs function efficient vitality restoration and exact synchronization, making certain environment friendly and correct operation even in advanced scanning duties. The system additionally makes use of patented vacuum packaging and Lissajous scanning expertise to ship steady, high-resolution efficiency.
These options present a number of benefits. The scanning vary and frequency flexibility permit for adaptable optical designs with out altering {hardware}. The high-speed efficiency allows quicker picture seize or sign detection. UltraDRIVE’s vitality restoration reduces general energy consumption, and its exact timing controls assist high-accuracy functions. Vacuum sealing additional improves mechanical stability and protects the mirror from environmental put on.
A number of the key options of the HYPERION Analysis Equipment embody:
- 1.3 mm MEMS mirror for small-size scanning
- Area of View can change from 15° to 70°
- Scans at round 35 kHz and 19 kHz speeds
- Makes use of particular electronics made in-house
- Saves energy with vitality restoration system
- Vacuum-sealed for long-lasting use
- Works with 3 to five volts energy provide
Consequently, the HYPERION Analysis Equipment helps the event of compact, power-efficient gadgets comparable to wearables and transportable sensing instruments. Its computerized power-up and broad 3–5V enter vary make system integration simpler whereas serving to to increase battery life. With correct scanning, low energy wants, and powerful sturdiness, it allows dependable efficiency throughout varied use instances together with augmented actuality, biomedical gadgets, and industrial sensing.