Scallop Imaging Leads Micro-Cluster of Boston Companies Trying to Reinvent Camera Tech

Here in the Boston area we like hard technologies. We like companies with weird names. We like companies that have vision. Ladies and gentlemen, I present to you: Tenebraex, SiOnyx, and MC10.

They are the micro-cluster of imaging tech companies. They are working on a mix of far-out stuff and closer-in products, with a multiple-focus approach that befits their chosen field. If they were superheroes, Tenebraex would have eyes in the back of its head (panoramic view); SiOnyx would see in the dark; and MC10 would morph into different shapes depending on what it was looking at. Taken together, they just might reinvent the cameras we use every day.

One example: Imagine an ultra-thin camera phone that can take high-resolution, wide-angle photos and video in a dimly-lit bar or restaurant, or outside at night. That’s what combining the companies’ capabilities could do—though, as far as I know, they are not working together.

Several months ago I first talked with Peter Jones, the CEO of Scallop Imaging, which is the fastest-growing division of Boston-based optical tech firm Tenebraex. Why am I telling you this now? One, I’ve been busy. Two, Scallop is about to debut its third camera product in September. Last week, Jones said the upcoming “as-yet-unnamed camera will be the industry’s first multi-megapixel panoramic camera for very low light environments.”

Scallop’s new camera follows in the footsteps of its earlier products: digital and analog versions of a device (see photo below) that stitches together images from five separate camera sensors into a 180-degree, distortion-free, high-res panoramic view, for security and surveillance applications. The advantage over traditional fisheye lenses and pan-and-tilt cameras? Image quality, cost, and convenience, Jones said.

Some recent customers include hotels, museums, retail stores, and the U.S. military. One of the more intriguing applications of the technology lies in robotics. Last winter, a U.S. Army research lab organized a contest at Fort Bragg, NC. A number of teams sent mobile robots into a remote area to beam back images—presumably to check out the surroundings without having to send troops in. The robot that used Scallop’s camera finished in the top two (in terms of meeting its objectives), and it was the only one that didn’t get stuck in the woods, Jones said. He attributed the performance in part to its wide field of view.

My colleague Wade first profiled Scallop Imaging back in 2008. Since then, the division has grown to about 50 people. Tenebraex, its parent company, is no flash in the pan either. The company started in 1992 and is profitable, having invested in Scallop “multiple millions” of dollars in research and development, Jones said. “The majority of our future growth will come from Scallop.”

The company’s upcoming low-light camera overlaps a bit with another local firm.

Author: Gregory T. Huang

Greg is a veteran journalist who has covered a wide range of science, technology, and business. As former editor in chief, he overaw daily news, features, and events across Xconomy's national network. Before joining Xconomy, he was a features editor at New Scientist magazine, where he edited and wrote articles on physics, technology, and neuroscience. Previously he was senior writer at Technology Review, where he reported on emerging technologies, R&D, and advances in computing, robotics, and applied physics. His writing has also appeared in Wired, Nature, and The Atlantic Monthly’s website. He was named a New York Times professional fellow in 2003. Greg is the co-author of Guanxi (Simon & Schuster, 2006), about Microsoft in China and the global competition for talent and technology. Before becoming a journalist, he did research at MIT’s Artificial Intelligence Lab. He has published 20 papers in scientific journals and conferences and spoken on innovation at Adobe, Amazon, eBay, Google, HP, Microsoft, Yahoo, and other organizations. He has a Master’s and Ph.D. in electrical engineering and computer science from MIT, and a B.S. in electrical engineering from the University of Illinois, Urbana-Champaign.