Smartkem Unveils MiP4 Backlight Technology with 34,047 Nits Peak Brightness
Written by Emily J. Thompson, Senior Investment Analyst
Updated: Dec 01 2025
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Source: PRnewswire
- Technological Breakthrough: Smartkem will present its first MicroLED-in-Package (MiP4) backlight technology at the International Display Workshops on December 4, 2025, which simplifies production processes through low-temperature methods and significantly enhances display performance.
- Brightness Enhancement: The MiP4 backlight achieves a peak brightness of 34,047 nits, reducing GaN usage by 84% compared to traditional MiniLED solutions, which will substantially lower production costs and enhance market competitiveness.
- Market Potential: This technology aims to replace existing LCD backlight solutions, expected to drive further development in the LCD market, which represents approximately 65% of the global display industry.
- Industry Impact: Smartkem's MiP4 backlight technology not only improves display quality but also enhances production efficiency for display manufacturers by simplifying assembly and yield management, potentially leading to a technological revolution in the display industry.
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Analyst Views on SMTK
About SMTK
SmartKem, Inc. provides disruptive organic thin-film transistors, which have the potential to drive the displays. The Company’s patented TRUFLEX semiconductor and dielectric inks, or electronic polymers, are used to make transistors. Its inks enable low temperature printing processes, which are compatible with existing manufacturing infrastructure to deliver displays. Its semiconductor platform is used in various display technologies, including micro-light-emitting diode (MicroLED), LCD and AMOLED, as well as in applications in advanced computer and artificial intelligence (AI) chip packaging, sensors, and logic. The Company designs and develops its materials at its research and development facility in Manchester, the United Kingdom and provides prototyping services at the Centre for Process Innovation (CPI) in Sedgefield, the United Kingdom. The Company has an intellectual property portfolio, including 140 granted patents across 17 patent families and 40 codified trade secrets.
About the author

Emily J. Thompson
Emily J. Thompson, a Chartered Financial Analyst (CFA) with 12 years in investment research, graduated with honors from the Wharton School. Specializing in industrial and technology stocks, she provides in-depth analysis for Intellectia’s earnings and market brief reports.
Smartkem Unveils World's First All-Organic Transistor Biometric Sensor
- Technological Breakthrough: Smartkem's collaboration with Shanghai Jiao Tong University has resulted in the world's first all-organic transistor biometric sensor, significantly enhancing optical detection sensitivity for fingerprint and palm recognition on curved surfaces, thereby addressing challenges like fingerprint spoofing.
- Application Potential: This sensor employs advanced liveness detection techniques to capture subtle signals that distinguish real fingerprints from fakes, which not only opens new applications for flexible biometric devices but also enhances market competitiveness.
- Academic Publication: A paper detailing this innovation will be presented at the IEEE International Electron Devices Meeting on December 10, 2025, showcasing Smartkem's advancements in organic transistor technology and solidifying its leadership in the semiconductor field.
- Market Potential: Smartkem's TRUFLEX® semiconductor polymers can be utilized across various display technologies, with expectations to drive the commercialization of a new generation of lightweight, high-performance bio and optical sensors, thereby expanding its market share.

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Smartkem Unveils World's First All-Organic Biometric Sensor
- Technological Breakthrough: Smartkem's collaboration with Shanghai Jiao Tong University has led to the development of the world's first all-organic transistor biometric sensor, significantly enhancing optical detection sensitivity for fingerprint recognition on curved surfaces, addressing challenges like fingerprint spoofing and advancing biometric technology.
- Application Prospects: This sensor employs advanced liveness detection techniques to capture subtle signals, not only improving the differentiation between real and fake fingerprints but also potentially opening new application scenarios in flexible biometric devices, thereby enhancing market competitiveness.
- Academic Publication: A paper co-authored by Smartkem's CTO Simon Ogier will be published at the IEEE International Electron Devices Meeting on December 10, 2025, showcasing the academic value and industry impact of this technology, further elevating the company's standing in the sector.
- Market Potential: Smartkem's all-organic transistor platform not only outperforms conventional inorganic sensors in sensitivity but also paves the way for the next generation of lightweight, high-performance bio- and optical sensors, indicating broad market application potential.

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