Santec


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At Santec our goal is to deliver new value to the world through innovations in photonics. We have been part of the fiber optic revolution in telecommunications and continue to innovate in this field, and at the same time expand into other markets that can benefit from our expertise in optical systems. We are committed to the idea that photonic technology can bring significant improvements to our lives, the way we work, connect and relax.  Our mission is to contribute to the creation of new enlightened and human centric information society.  A future we call -OPTOPIA-

In 1984 we developed the world’s first “fully automated optical fiber geometry inspection system.”  Since then, we have supported the advancement of the fiber optic communication industry with a range of test instrumentation, initially with the development of the world’s first bench top tunable laser, the success of which was built upon with an expanding choice of unique optical test systems. In the 1990s, we introduced advanced optical component product lines that are now deployed globally in metro, long-haul and submarine optical networks as well as datacenters.

Our expertise in micro optics, advanced optical devices, tunable lasers, and optical test & measurement has enabled us to expand our product lines to non-fiber optic telecommunication applications. For example, bio-medical and optical metrology industries have benefited from our 3D sensing and imaging technology based on the Swept-Source Optical Coherence Tomography (SS-OCT). SS-OCT delivers incredibly detailed cross-sectional images of biological samples and in turn may also be used to measure mechanical thicknesses with unprecedented repeatability. 

In 2015, we introduced an advanced optical biometer, ARGOS® and entered into the medical device market. ARGOS® uses SS-OCT technology to obtain highly accurate measurements of the key parameters of the human eye, which are then used in selecting the most accurate lens implants for cataract surgery.  ARGOS® has made a significant contribution to patient QOL (Quality of Life) after cataract surgery with improved visual outcomes.

Today, we are all experiencing extraordinary growth in society through digital transformation, expansion of cloud services, 5G communication, and more, that are increasingly dependent on fiber optics. Photonic technology is a driving force for the connected society that makes the world smaller and brings us closer together.

At Santec, we continuously pursue the infinite possibilities of photonics.  We commit to advance the creation of OPTOPIA using our unique blend of photonic solutions, in tunable lasers, advanced optical components, and test systems for communication, medicine, and metrology.  We also commit to lead the market as a respected pioneer and seek to influence the world towards a brighter future, and deliver on the dreams and prosperity of our customers, suppliers, stockholders, employees and our community.

Articles

Test & Measurement

Swept photonics analyzer offers up to 90 nm scanning range

The SPA-100 swept photonics analyzer is available in O-Band configuration as an add-on module to the company’s tunable laser.
Santec
Fiber Optics

Optical switch features low wavelength dependence

The OSX-100E OEM optical switch is available in different sizes up to 80 channels.
Osx 100 Front Screen
Fiber Optics

Polarization-maintaining optical switch offers ±0.005 dB repeatability

The OSX-100 polarization-maintaining optical switch has use in applications such as lab and R&D, automated device testing, or high-volume production testing.
Santec
Test & Measurement

Optical power meter includes free-space detectors

The OPM-200 optical power meter provides measurements with a dynamic range of 8 to -80 dBm.
Santec
Test & Measurement

Swept photonics analyzer uses optical frequency domain reflectometry

The SPA-100 swept photonics analyzer uses optical frequency domain reflectometry technology to analyze compact fiber-optic and photonic devices for insertion loss and return loss...
Santec
Test & Measurement

Wafer thickness mapping system measures with 1 nm repeatability

The TMS-2000 wafer thickness mapping system uses an interferometric detection technique with a high-speed tunable laser.

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