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2006-02-24   |   4 min read

Ibsen Photonics launches USB version of it’s I-MON FBG Sensor System Interrogator

[h5]Press Release - February 24th, 2006 [/h5] Ibsen Photonics has released a new USB interfaced, high-resolution version of its I-MON Interrogation Monitor for FBG Sensor Systems Ibsen Photonics, a leading supplier of holographic Phase masks, transmission diffraction gratings and optical spectrometer modules based on diffraction gratings, today announced it's release of a new, USB interfaced version of it's I-MON Interrogation Monitor. The Interrogation Monitor builds on Ibsen high-resolution spectrometer technology, utilizing Ibsen fused silica transmission gratings. This design platform enables Ibsen's I-MON to offer fast measurement frequency and compact size as well as low power consumption. I-MON Product Manager Bjarke

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2006-01-12   |   3 min read

Ibsen Photonics Awarded Demultiplexing Patent

[h5]Press Release - Copenhagen, January 12th, 2006 [/h5] Ibsen Photonics has been awarded patent for multi-grating-based wavelength division multiplexing devices Ibsen Photonics, a leading supplier of holographic Phase masks, transmission diffraction gratings and optical spectrometer modules based on diffraction gratings, today announced that it has been granted United States Patent # 6,978,062, titled "Wavelength Division Multiplexed Device". The technology is based on using multiple transmission gratings to provide high dispersion, while at the same time taking advantage of the beam-folding properties of transmission gratings to create compact module designs. "Our optical module products - for example FBG Sensor System Interrogators

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2005-09-19   |   4 min read

Ibsen Photonics introduces polarization independent gratings for telecom modules

Ibsen Photonics, a leading supplier of holographic Phase masks, transmission diffraction gratings and spectrometer modules based on diffraction gratings, introduces polarization independent telecom gratings based on holographic stepper technology. [h5]Copenhagen, Denmark - September 19th, 2005 [/h5] Based on 100% dielectric materials, these gratings offer the comfort of fundamentally thermal and environmental reliability, combined with superior optical performance (high diffraction efficiency, low PDL). Furthermore, low angle sensitivity and convenient module design through the transmission principle make these gratings ideal for telecom ROADM / WSS applications. Grating Product Manager Kristian Buchwald explains: "We have developed a high volume process technology to produce

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2004-09-02   |   3 min read

New I-MON Interrogation Monitor released

[h5]Press Release - September 2nd, 2004 [/h5] Ibsen Photonics' new I-MON Interrogation Monitor enables fast, real-time spectrum monitoring of FBG sensor systems. Ibsen Photonics, a leading supplier of holographic Phase masks, transmission diffraction gratings and OEM spectrometer modules based on diffraction gratings, has released its new I-MON Interrogation Monitors for FBG Sensor Systems. The Interrogation Monitors build on Ibsen Diffractor based spectrometer technology, utilizing Ibsen fused silica transmission gratings. This design platform enables Ibsen's I-MON to offer kHz measurement frequency and compact size as well as low power consumption. I-MON Product Manager Bjarke Rose comments: "Our Diffractor platform spectrometer modules

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2004-08-12   |   4 min read

Patent awarded for innovative gratings

[h5]Press Release - Copenhagen, August 12th, 2004 [/h5] Ibsen Photonics has been awarded patent for innovative gratings with unique efficiency and reliability properties Fusion bonded gratings create high-efficiency, polarization controllable gratings with highly protected surfaces. Ibsen Photonics, a leading supplier of holographic Phase masks, transmission diffraction gratings and OEM spectrometer modules based on diffraction gratings, today announced that it has been granted United States Patent # 6,762,880, titled "Grating Structures and Methods of Making the Grating Structures". This technology enables pure fused silica transmission grating designs with beneficial optical properties. Design possibilities include polarization and temperature independence combined with highly

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