The pen display has 2048 levels of pen pressure sensitivity, 200 point per second (PPS) tracking speed and 5080 line per inch (LPI) touch resolution, which ensures the authenticity of each signature.
The ViewSonic pen display features battery-free V pen and superior pen-tip material design, giving it a durable 80,000-tap lifespan, no need to worry about running out of battery while writing and battery replacement, making it the best investment of digital e-signature solution.
This technology delivers intuitive and accurate handwriting with its 2048-level pen pressure sensitivity to better render digital signatures, designs, or sketches. Its 220pps response rate instantly produces written text and drawings on the screen, without any delays or visual disconnections, and 5080 LPI density produces images with superior texture.
Premium and portable, the PD1011 comes with a simplified one-cable USB design. It uses just one USB connection for both the power and input signals, offering full connectivity to your PC or laptop. This convenient connectivity makes it perfect for portable usage and easy, clutter-free installation in any working environment.
The ViewSonic pen display is compatible with Windows, as well as various digital signature software, including Adobe Reader signature, banking, retail and other customized application, for paper-free e-signature solution.
Constructed with an edge-to-edge 8H protective glass faceplate, the ViewSonic pen display is anti-scratch, anti-glare, and anti-fingerprint coating, delivering a durable and reliable user touch experience for e-signature solution in public usages.
Leveraging its hovering capability, the V Pen is able to function up to 5-15 mm away from the screen. The ViewSonic pen display can sense the V Pen’s tip before it even touches the screen. Plus, it accurately reflects the exact location where the stylus touches the screen with an accuracy of ± 0.5mm.
The PD1011 comes with ergonomic0°, 5°, 15° tilt adjustments to accommodate placement on low and high counters or other surfaces. 0°