Products

Our innovations in single photon avalanche diode (SPAD) technology push the boundaries of what image sensors can achieve, redefining applications across multiple markets. We offer noiseless performance, highly accurate photon timing, in-pixel histograms and advanced photon processing functionality.

Image

Litavis

Litavis is the world’s first SPAD sensor using in-pixel processing to unify imaging, timing, histogramming and photon statistics on a single chip.

Designed to bring unprecedented flexibility and intelligence to imaging applications, Litavis introduces a software-configurable sensing architecture capable of combining photon-counting, multi-event histogramming, programmable time gating, and advanced photon timing within a scalable SPAD array platform.

Litavis is also the first SPAD-based sensor to enable simultaneous intensity, timing and histogramming modes, and enables users to dynamically adapt sensor behaviour in software without requiring new hardware designs.

By processing photon events directly on-chip, Litavis significantly reduces the amount of raw data that must be transferred and processed externally. This enables faster decision-making, lower latency, improved power efficiency and more scalable real-time imaging systems.

Litavis supports a broad suite of configurable operating modes, including:

  • Multiple TCSPC and high throughput TDC configurations using internal or external clocks
  • High-dynamic-range photon counting modes with selectable resolution
  • Windowed and coincidence-based detection for advanced temporal analysis
  • Combined timestamping and imaging modes

Datasheet

Image

Andarta

The Andarta sensor is a testament to our vision of creating a sensor capable of performing a wide range of imaging tasks. The sensor incorporates extensive preprocessing of data, offering unparalleled flexibility and scalability in imaging, allowing users to reprogram the sensor for different tasks and is ideal for correlation spectroscopy applications.

The Andarta sensor’s miniature form factor, at just 5mm x 5mm, combined with its high sensitivity, exemplifies the potential for SPAD technology in the health and wearables space. The sensor supports multiple modes of operation including autocorrelation measurements, gated mode and ultra high speed imaging.

Techniques

  • Fluorescence Lifetime Imaging (FLIM)
  • Diffuse Correlation Spectroscopy (DCS)
  • Fluorescence Cross Correlation Spectroscopy (FCCS)
  • Burst Imaging

Datasheet

Image

Sirona

The Sirona is a 512 pixel line sensor, with two different types of SPADs in each pixel, ideal for time-resolved multispectral beam scanned imaging and microscopy. With on-chip time binning capability, this sensor is set to revolutionise spectroscopy as we know it today.

Techniques

  • Raman Spectroscopy
  • Fluorescence Lifetime Imaging (FLIM)
  • Time of Flight
  • Quantum sensing

Datasheet

 

11

  1. ↩︎

Latest publications

Singular Photonics launches world-first SPAD-based image sensor

Litavis offers programmable multi-modal capabilities on-chip, accelerating time-to-market for imaging applications.

Singular Photonics Lands Funding to Launch Next-Generation Image Sensors as Commercial Traction Grows

Fabless semiconductor startup appoints former Arm CTO to Board as demand for SPAD-based image sensors accelerates.

Harnessing the power of diversity in deep tech

Bringing together different perspectives, backgrounds and experiences can fuel better ideas, faster innovation and stronger teams.

Singular Photonics secures ISO 9001 certification

Independent audit by BSI confirms imaging firm’s commitment to quality and customer satisfaction.

Singular Photonics and Renishaw Shed New Light on Spectroscopy

Strategic collaboration integrates next-generation SPAD-based image sensor into Renishaw’s new Raman spectroscopy module to allow measurements of highly fluorescent samples.

Singular Photonics Hosts Minister for Business

Fast-growing fabless semiconductor start-up welcomes Richard Lochhead to its headquarters at the Royal Observatory in Edinburgh.