Khanjur designs and manufactures custom nickel‑titanium (NiTi and NiTi‑X) shape‑memory alloy thin films, foils, and sheets using proprietary physical vapor deposition and precision laser‑structuring processes. Their platform lets engineers tailor mechanical, thermal, and functional properties for actuation, sensing, and thermal systems, supporting rapid prototyping to scalable production with film thicknesses ranging from 20 µm to 500 µm. This enables early‑stage feasibility studies and high‑volume manufacturing of application‑specific SMA devices.
Funding
Funding not disclosed
Founders
Product
Problem
Engineers developing actuation, sensing, and thermal systems often lack access to thin‑format nickel‑titanium (NiTi) shape‑memory alloy materials with precisely tuned mechanical and thermal properties, making rapid prototyping and scale‑up difficult.
Solution
Khanjur offers a manufacturing platform that designs and produces custom NiTi and NiTi‑X shape‑memory alloy thin films, foils, and sheets. Using proprietary physical vapor deposition (PVD) and high‑precision laser structuring, the company can create materials ranging from 200 nm to 10 µm on various substrates, as well as freestanding films up to 80 µm thick. The process supports rapid iteration from laboratory‑scale feasibility studies to pilot‑scale production, enabling engineers to evaluate material behavior, geometry, and integration pathways early in development. By delivering application‑specific SMA components, Khanjur helps customers accelerate device design, reduce material development risk, and transition to commercial manufacturing.
Target Audience
Primary customers are mechanical, aerospace, and electronics engineers and R&D teams developing high‑performance actuation, sensing, or thermal management devices that require custom thin‑format shape‑memory alloys.
Features
- Proprietary PVD process for depositing NiTi and NiTi‑X thin films on semiconductor, metal, and polymer substrates
- Precision laser‑structuring of thin films and commercial NiTi sheets, enabling custom device geometries and freestanding parts
- Thickness range from 200 nm to 10 µm for substrate‑bound films and 5–80 µm for freestanding films, plus 20–500 µm for laser‑cut foils and sheets
- Capability to produce both superelastic and shape‑memory alloy configurations tailored to specific mechanical and thermal performance targets
- End‑to‑end service covering material design, prototype fabrication, and scalable production for pilot and commercial volumes