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Suryudey

Suryudey offers a printed electronics manufacturing service that deposits conductive, resistive, and semiconducting inks onto flexible, stretchable and 3‑D substrates using screen‑printing and additive processes. The platform provides custom design, simulation and low‑volume production of ultra‑thin heaters, transparent antennas and biosensing sensors that can be integrated directly into wearables, smart fabrics and industrial IoT products.

Mumbai, IndiaFounded 20213700+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Traditional electronic manufacturing relies on rigid printed circuit boards and discrete components, making it difficult to integrate electronics onto curved, flexible, or textile surfaces. This limits the development of wearable medical devices, smart fabrics, and conformal sensors that require thin, stretchable, and lightweight circuitry.

Solution

Suryudey provides a printed electronics manufacturing service that deposits functional inks—conductive, resistive, and semiconducting—directly onto any substrate using screen‑printing and additive processes. By treating electronics like ink, the company creates ultra‑thin (≈50 µm) resistive heaters, transparent silver‑nanowire antennas, and biosensing sensors that conform to textiles, PET, TPU, and three‑dimensional surfaces without cracking or adding bulk. The printed circuits are inherently flexible, stretchable, and can be integrated during the material’s production, enabling seamless incorporation into medical wearables, industrial IoT devices, and smart fabrics. Suryudey’s B2B platform (SPEZL) offers custom design, simulation, and low‑volume production for startups, research institutes, and established manufacturers seeking tailored printed electronic solutions.

Target Audience

Primary customers are B2B clients such as wearable device manufacturers, medical sensor developers, industrial IoT firms, and textile brands that require custom, low‑profile electronic components integrated directly onto their products.

Features

  • Screen‑printing and inkjet deposition of conductive, resistive, and semiconducting inks onto flexible, stretchable, and 3D substrates
  • Ultra‑thin (≈50 µm) resistive heaters with optional optical transparency and integrated NTC thermistor with PID temperature control
  • Transparent silver‑nanowire antennas printed on PET, providing invisible, lightweight, and conformal RF connectivity
  • Printed biosensing sensors compatible with medical wearables, including battery‑less NFC‑powered on‑skin devices
  • Compatibility with a wide range of substrates (textiles, TPU, PET, metalized films) enabling true e‑textile and smart‑fabric integration
  • End‑to‑end design support using CAD and FEM simulation tools to optimize circuit performance before production
This profile is AI-generated and may contain inaccuracies.