Tactule: A Multilayer-Bimorph Piezoelectric Tactile Display Module—System Architecture, Load-Dependent Frequency Response, and Receptor-Level Response Predictions
Takahiro Miura, Ken-ichiro Yabu, Atsushi Katagiri, Masaki Matsuo, Naoyuki Okochi, Keiichi Yasu, Masatsugu Sakajiri, Tohru IfukubeWe developed Tactule, a compact tactile display module that can be attached to host hardware ranging from PCs to game controllers, and characterized its frequency response under controlled, finger-pad-like loading. Tactule uses a 6×6 matrix of multilayer-bimorph piezoelectric pins (with the four corner pins removed; 32 channels at 2 mm pitch), together with an 8×8 variant, that delivers more than 60 μm of free displacement at AC 5 V, a regime accessible from a standard USB power supply. We measured per-pin peak-to-peak rear-face displacement at 50–800 Hz across a graded series of five silicone loads (Shore A 10 to 90) and an unloaded reference, using sinusoidal and rectangular driving signals. The unloaded response peaks at 600 Hz; Shore A 10 loading shifts the peak to 750 Hz; and above 700 Hz, the Shore A 10 amplitude exceeds the unloaded amplitude. Coupling the measured waveforms to published models of the tactile periphery shows that the module drives the Pacinian channel with a wide margin throughout the band while reaching the non-Pacinian channels only at its low-frequency edge, providing engineering knowledge for designing receptor-specific stimulation patterns in assistive applications.